WO2014047818A1 - 资源泄漏的修复的请求及修复方法、资源请求及提供设备 - Google Patents

资源泄漏的修复的请求及修复方法、资源请求及提供设备 Download PDF

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Publication number
WO2014047818A1
WO2014047818A1 PCT/CN2012/082070 CN2012082070W WO2014047818A1 WO 2014047818 A1 WO2014047818 A1 WO 2014047818A1 CN 2012082070 W CN2012082070 W CN 2012082070W WO 2014047818 A1 WO2014047818 A1 WO 2014047818A1
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WIPO (PCT)
Prior art keywords
resource
providing device
control channel
requesting device
dedicated control
Prior art date
Application number
PCT/CN2012/082070
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English (en)
French (fr)
Inventor
吴洪梅
耿婷婷
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to CN201280001819.9A priority Critical patent/CN103828462B/zh
Priority to PCT/CN2012/082070 priority patent/WO2014047818A1/zh
Publication of WO2014047818A1 publication Critical patent/WO2014047818A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management

Definitions

  • the present invention relates to the field of communications, and in particular, to a method for requesting repair of a resource leak, a method for repairing a resource leak, a resource request device, and a resource providing device.
  • the 3GPP R8 protocol introduces the uplink CELL-FACH (Enhanced Random Access Channel), which supports the UE (terminal) to use the E-DCH in the CELL-FACH state.
  • Enhanced Dedicated Control Channel which enhances the dedicated control channel for data transmission, that is, in the CELL-FACH enhanced mode, supports the uplink CCCH (Common Control Channel) / DCCH (Dedicated Control Channel) / DTCH ( Dedicated Traffic Channel (E-DCH) is used to reduce the UE's migration from CELL-FACH to CELL-DCH during data transmission, reducing UE usage power, and thus achieving higher peak rate and QoS guarantee.
  • the E-RNTK E-DCH Radio Network Temporary Identifier (E-DCH radio network temporary identifier) is initially maintained by the NodeB (base station), and the RNC (Radio Network Controller) does not have the E-RNTI allocated. ability. Since the UE migrates from the CELL-DCH state to the CELL-FACH state, the RNC deletes the E-RNTI of the user in the CELL-DCH state at the same time, which causes the E-RACH user to have no E-RNTI available in the CELL-FACH state.
  • E-DCH radio network temporary identifier E-DCH radio network temporary identifier
  • the RNC Radio Network Controller
  • E-RNTI E-RNTI resource
  • Step 1 The RNC initiates a shared channel reconfiguration request to the NodeB through a PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST message, which includes "E-RNTI” in the message body IE "Common E-DCH System Information” Request" to request the NodeB to allocate an E-RNTI to the RNC;
  • Step 2 The NodeB returns the shared channel configuration result through the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, and also passes the cell "E-RNTI" in the message body of the IE "Common E-DCH System Information Response" (maximum An array of 256 elements) carries E-RNTI resources to the RNC.
  • the NodeB After the NodeB allocates the E-RNTI resource to the RNC, the NodeB cannot re-allocate the part of the E-RNTI to the UE.
  • the current prior art has the following drawbacks:
  • the RNC and the NodeB simultaneously hold and manage the E-RNTI.
  • the NodeB allocates the E-RNTI resource to the RNC
  • the RNC does not obtain the E-RNTI resource
  • the RNC does not use the resource. It is allocated to the UE, and the NodeB considers that the resource has been allocated to the RNC, and is no longer allocated to other UEs.
  • the E-RNTI resource cannot be allocated to the UE, causing resource leakage, except for resource leakage of the E-RNTI resource.
  • other resources used by the RNC and the NodeB to utilize the same resource allocation mechanism for the E-RNTI resources also have the above drawbacks. Summary of the invention
  • the present invention provides a method for requesting repair of a resource, a method for repairing a resource leak, and related equipment, which can redistribute the leaked resource and complete the resource repair.
  • a first aspect of the present invention provides a method for requesting a repair of a resource leak, which may include: a resource requesting device sending a resource confirmation request message to a resource providing device, where the resource confirmation request message carries first indication information, where the first The indication information is used to indicate that the resource requesting device has obtained resources from the resource providing device;
  • the method may further include:
  • the audit field includes a resource confirmation field and/or a resource index, and is used to notify the resource requesting device that the resource providing device has responded to the resource confirmation request message;
  • the resource confirmation request message includes a user status update command message.
  • the resource confirmation request message includes an audit request message
  • the resource confirmation response message includes an audit response message
  • the resource confirmation request message includes a physical shared channel reconfiguration request message
  • the The resource acknowledgement response message includes a physical shared channel reconfiguration response message
  • the resource confirmation request message includes a user status update confirmation request message
  • the resource confirmation response message includes a user status update confirmation response message
  • the first indication information includes a resource index or a resource itself of a resource that the resource requesting device has acquired from the resource providing device.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device;
  • the resource index is allocated by the resource requesting device before sending the resource confirmation request message.
  • the resource requesting device needs Sending, by the resource providing device, a plurality of resource confirmation request messages, where the first indication information of each resource confirmation request message further includes association information with a next resource confirmation request message, where the association information is used to notify the resource providing Whether the device has received the resource index of the resource requested once or the resource itself.
  • the resource includes an enhanced uplink dedicated At least one of a control channel radio network temporary identifier and a public enhanced uplink dedicated control channel resource; and the resource is in a packet or non-packet form.
  • the resource requesting device includes a base station controller
  • the resource providing device includes a base station.
  • a second aspect of the present invention provides a method for requesting repair of a resource leak, which may include: The resource requesting device sends a resource acknowledgment request message to the resource providing device, where the resource acknowledgment request message carries a resource acknowledgment item, where the resource acknowledgment item is used to indicate that the resource requesting device has obtained the resource from the resource providing device;
  • the resource confirmation request message includes a physical shared channel reconfiguration response confirmation message, where the value of the resource confirmation item includes an acknowledgement and an unacknowledged, when the value of the resource confirmation item is confirmed And indicating that the resource that the resource providing device allocates to the resource requesting device is obtained by the resource requesting device, and when the value of the resource confirming item is not confirmed, indicating that the resource providing device allocates the resource to the resource requesting device Not obtained by the resource requesting device.
  • the resource includes an enhanced uplink dedicated control channel radio network temporary identifier and a public enhanced uplink dedicated control channel resource. At least one
  • resources are in a packet or non-packet form.
  • the resource requesting device includes a base station controller
  • the resource providing device includes a base station.
  • a third aspect of the present invention provides a method for repairing a resource leak, which may include:
  • the resource providing device receives the resource acknowledgment request message from the resource requesting device, where the resource acknowledgment request message carries the first indication information, where the first indication information is used to indicate that the resource requesting device has obtained the resource from the resource providing device ;
  • the resource providing device searches, according to the first indication information, a resource that the resource providing device has allocated to the resource requesting device, but the resource requesting device does not acquire;
  • the resource providing device initializes the found resource to an unassigned state.
  • the resource providing device allocates the resource providing device to the resource requesting device, but after the resource that the resource requesting device does not obtain is initialized to an unallocated state, Includes:
  • the resource providing device sends a resource confirmation response message to the resource requesting device, where the resource confirmation response message carries an audit field, where the audit field includes a resource confirmation field and/or a resource index, and is used to notify the resource request.
  • the resource providing device of the device has responded to the resource confirmation request.
  • the resource confirmation request message includes a user status update command message.
  • the resource confirmation request message includes an audit request message
  • the resource confirmation response message includes an audit response message
  • the resource acknowledgement request message includes a physical shared channel reconfiguration request message
  • the resource acknowledgement response message includes a physical shared channel reconfiguration response message
  • the resource confirmation request message includes a user status update confirmation request message
  • the resource confirmation response message includes a user status update confirmation response message
  • the first indication information includes a resource index or a resource itself of a resource that the resource requesting device has acquired from the resource providing device;
  • the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource that the resource requesting device does not obtain includes:
  • the resource providing device searches for resources that are not indicated in the resource index or that are not included in the resource itself but that the resource providing device has allocated to the resource requesting device.
  • the resource index is allocated by the resource providing device to allocate resources to the resource requesting device;
  • the resource index is allocated by the resource requesting device before sending the resource confirmation request message.
  • the resource providing device needs Receiving, by the resource requesting device, a plurality of resource confirmation request messages, where the first indication information of each resource confirmation request message further includes association information with a next resource confirmation request message, where the association information is used to notify whether the resource providing device is The resource index or resource itself of the resource that has received the request once;
  • the resource providing device confirms all resources corresponding to the resource when the request is received. After the message is requested, the resource providing device searches for the resource that the resource providing device has allocated to the resource requesting device according to the first indication information, but the resource requesting device does not acquire the resource.
  • the resource includes an enhanced uplink dedicated At least one of a control channel radio network temporary identifier and a public enhanced uplink dedicated control channel resource; and the resource is in a packet or non-packet form.
  • the resource providing device when the enhanced uplink dedicated control channel radio network temporary identifier is in a packet form, the resource providing device receives from the resource requesting device Before the resource confirmation request message, it also includes:
  • the resource providing device allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device by using a public enhanced uplink dedicated control channel resource message body in the physical shared channel reconfiguration response message, where the public enhanced uplink dedicated control channel resource
  • the structure includes an extended enhanced dedicated control channel radio network temporary identifier field, and the extended enhanced uplink dedicated control channel radio network temporary identifier field includes an enhanced uplink dedicated control channel radio network temporary identifier packet carried in the physical shared channel reconfiguration response message.
  • each of the enhanced uplink dedicated control channel radio network temporary identification packet, and the number of the initial enhanced uplink dedicated control channel radio network temporary identification in each enhanced uplink dedicated control channel radio network temporary identification packet, each The number and step size of the enhanced uplink dedicated control channel radio network temporary identifier included in the uplink dedicated control channel radio network temporary identifier packet are enhanced.
  • the resource requesting device includes a base station controller
  • the resource providing device includes a base station.
  • a fourth aspect of the present invention provides a method for repairing a resource leak, which may include: The resource providing device receives a resource acknowledgment request message from the resource requesting device, where the resource acknowledgment request message carries a resource acknowledgment item, where the resource acknowledgment item is used to indicate that the resource requesting device has obtained resources from the resource providing device;
  • the resource providing device determines whether the resource allocated by the resource providing device to the resource requesting device is not successfully allocated, the resource is initialized to an unallocated state.
  • the resource confirmation request message includes a physical shared channel reconfiguration response confirmation message, where the value of the resource confirmation item includes an acknowledgement and an unacknowledged, when the value of the resource confirmation item is confirmed And indicating that the resource that the resource providing device allocates to the resource requesting device is obtained by the resource requesting device, and when the value of the resource confirming item is not confirmed, indicating that the resource providing device allocates the resource to the resource requesting device Not obtained by the resource requesting device;
  • Determining, by the resource providing device, whether the resource allocated by the resource resource providing device to the resource requesting device has been successfully allocated according to the resource confirmation request message includes:
  • the resource providing device analyzes the value of the resource confirmation item, and when the value of the resource confirmation item is confirmed, determining that the resource allocated by the resource resource providing device to the resource requesting device has been successfully allocated, when the resource confirmation item is taken When the value is not confirmed, determining that the resource allocated by the resource resource providing device to the resource requesting device is not successfully allocated;
  • the resource providing device does not receive the physical shared channel reconfiguration response confirmation message sent by the resource requesting device, determining that the resource allocated by the resource providing device to the resource requesting device is not successfully allocated.
  • the resource includes an enhanced uplink dedicated control channel radio network temporary identifier and a public enhanced uplink dedicated control channel resource. At least one; and the resources are in a grouped or non-grouped form.
  • the resource providing device receives from the resource requesting device Before the resource confirmation request message, it also includes:
  • the resource providing device allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device by using a public enhanced uplink dedicated control channel resource message body in the physical shared channel reconfiguration response message, where the public enhanced uplink dedicated control channel resource Extended enhancement upstream a dedicated control channel radio network temporary identifier field, where the extended enhanced uplink dedicated control channel radio network temporary identifier field includes the number of enhanced uplink dedicated control channel radio network temporary identifier packets carried in the physical shared channel reconfiguration response message, each enhanced The number of the uplink dedicated control channel radio network temporary identification packet, the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each enhanced uplink dedicated control channel radio network temporary identification packet, and each enhanced uplink dedicated control channel radio network The number and step size of the enhanced uplink dedicated control channel radio network temporary identifier included in the temporary identification packet.
  • the resource requesting device includes a base station controller
  • the resource providing device includes a base station.
  • a resource requesting device may include:
  • a requesting module configured to send a resource confirmation request message to the resource providing device, where the resource confirmation request message carries the first indication information, where the first indication information is used to indicate that the resource requesting device has obtained the resource providing device The resource, so that the resource providing device determines, according to the first indication information, whether the resource indicated by the first indication information has been successfully allocated.
  • the resource requesting device further includes:
  • a receiving module configured to receive a resource confirmation response message sent by the resource providing device to the resource requesting device, where the resource confirmation response message carries an audit field, where the audit field includes a resource confirmation field and/or a resource index, And configured to notify the resource requesting device that the resource providing device has responded to the resource confirmation request message.
  • the resource confirmation request message sent by the requesting module includes a user status update command message.
  • the resource confirmation request message sent by the requesting module includes an audit request message
  • the resource confirmation response message received by the receiving module includes Audit response message
  • the resource acknowledgment request message sent by the requesting module includes a physical shared channel reconfiguration request message
  • the resource acknowledgment response message received by the receiving module includes a physical shared channel reconfiguration response message
  • the resource confirmation request message sent by the requesting module includes a user status update confirmation request message
  • the resource confirmation response message received by the receiving module includes a user status update confirmation response cancellation.
  • the first indication information includes a resource index or a resource itself of a resource that the resource requesting device has acquired from the resource providing device.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device;
  • the resource index is allocated by the resource requesting device before sending the resource confirmation request message, and the resource requesting device further includes a resource for distributing the resource! Distribution module.
  • the resource requesting device needs to Sending, by the requesting module, a plurality of resource confirmation request messages to the resource providing device, where the first indication information of each resource confirmation request message further includes association information with a next resource confirmation request message, where the association information is used to notify the Whether the resource providing device has received the resource index of the resource requested once or the resource itself.
  • the resource includes an enhanced uplink dedicated At least one of a control channel radio network temporary identifier and a public enhanced uplink dedicated control channel resource; and the resource is in a packet or non-packet form.
  • the resource requesting device includes a base station controller.
  • the sixth method of the present invention provides a resource requesting device, which may include:
  • a requesting module configured to send a resource confirmation request message to the resource providing device, where the resource confirmation request message carries a resource confirmation item, where the resource confirmation item is used to indicate that the resource requesting device has been
  • the resource providing device acquires a resource, so that the resource providing device determines, according to the resource confirmation item, whether the resource allocated by the resource providing device to the resource requesting device has been successfully allocated.
  • the resource confirmation request message sent by the requesting module includes a physical shared channel reconfiguration response confirmation message, where the value of the resource confirmation item includes an acknowledgement and an unacknowledged, when the resource confirmation item is taken
  • the value is the acknowledgment
  • the resource that is allocated by the resource providing device to the resource requesting device is obtained by the resource requesting device, and when the value of the resource acknowledgment item is not confirmed, the resource providing device is allocated to the resource.
  • the resource of the requesting device is not obtained by the resource requesting device.
  • the resource includes an enhanced uplink dedicated control channel radio network temporary identifier and a public enhanced uplink dedicated control channel resource. At least one
  • resources are in a packet or non-packet form.
  • the resource requesting device includes a base station controller.
  • a seventh aspect of the present invention provides a resource providing device, which may include:
  • a receiving module configured to receive, by the resource requesting device, a resource acknowledgment request message, where the resource acknowledgment request message carries first indication information, where the first indication information is used to indicate that the resource requesting device has obtained from the resource providing device Resource
  • An analyzing module configured to search, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource requesting device does not acquire the resource;
  • a repair module configured to initialize a resource found by the analysis module to an unassigned state.
  • the resource providing device further includes:
  • a sending module configured to send a resource acknowledgment response message to the resource requesting device, where the resource acknowledgment response message carries a resource unit, where the resource acknowledgment field and/or the resource index are used to notify the resource requesting device of the resource providing The device has responded to the resource confirmation request message.
  • the resource confirmation request message received by the receiving module includes a user status update command message.
  • the resource confirmation request message received by the receiving module includes an audit request message, and the resource confirmation sent by the sending module The response message includes an audit response message;
  • the resource acknowledgment request message received by the receiving module includes a physical shared channel reconfiguration request message, and the resource acknowledgment response message sent by the sending module includes a physical shared channel reconfiguration response message;
  • the resource confirmation request message received by the receiving module includes a user status update confirmation request message
  • the resource confirmation response message sent by the sending module includes a user status update confirmation response message
  • the first indication information includes a resource index or a resource itself of a resource that the resource requesting device has acquired from the resource providing device;
  • the analyzing module is specifically configured to search, according to the resource index or the resource itself, a resource that is not indicated in the resource index or not included in the resource itself but that the resource providing device has allocated to the resource requesting device.
  • the resource providing device needs to receive a plurality of resource confirmation request messages from the resource requesting device, where the first indication information of each resource confirmation request message further includes association information with a next resource confirmation request message, where the association information is used to notify the resource Providing whether the device has received the resource index of the resource requested once or the resource itself;
  • the analyzing module is configured to search, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, However, the resource requesting device does not acquire the resource.
  • the resource includes an enhanced uplink dedicated control channel radio network temporary identifier and a public enhanced uplink dedicated control channel At least one of the resources; and the resources are in a grouped or non-grouped form.
  • the resource providing device when the enhanced uplink dedicated control channel radio network temporary identifier is in a packet form, the resource providing device further includes: a packet resource configuration module, configured to allocate an enhanced uplink dedicated control channel radio network temporary identifier packet to the resource requesting device by using a public enhanced uplink dedicated control channel resource message body in the physical shared channel reconfiguration response message, where the public enhanced uplink dedicated
  • the structure of the control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field, and the extended enhanced uplink dedicated control channel radio network temporary identifier field includes an enhanced uplink dedicated control channel radio network carried in the physical shared channel reconfiguration response message.
  • the base station is included; and the resource requesting device includes a base station controller.
  • the eighth aspect of the present invention provides a resource providing device, which may include:
  • a receiving module configured to receive a resource confirmation request message from the resource requesting device, where the resource confirmation request message carries a resource confirmation item, where the resource confirmation item is used to indicate that the resource requesting device has obtained resources from the resource providing device;
  • an analyzing module configured to determine, according to the resource confirmation request message, whether the resource allocated by the resource resource providing device to the resource requesting device has been successfully allocated
  • a repairing module configured to initialize the resource to an unallocated state when the analyzing module determines whether the resource allocated by the resource providing device to the resource requesting device is unsuccessfully allocated.
  • the resource confirmation request message received by the receiving module includes a physical shared channel reconfiguration response confirmation message, where the value of the resource confirmation item includes an acknowledgement and an unacknowledgment, when the resource is confirmed.
  • the value of the item is a confirmation, it indicates that the resource allocated by the resource providing device to the resource requesting device has been acquired by the resource requesting device, and when the value of the resource confirming item is not confirmed, the resource providing device is allocated to the resource providing device. The resource of the resource requesting device is not obtained by the resource requesting device;
  • the analysis module is specifically configured to analyze the value of the resource confirmation item, and when the value of the resource confirmation item is Determining, determining that the resource allocated by the resource resource providing device to the resource requesting device has been successfully allocated, and determining that the resource resource providing device is allocated to the resource requesting device when the value of the resource confirming item is not confirmed The resource was not successfully allocated;
  • the analyzing module determines that the resource allocated by the resource providing device to the resource requesting device is not successfully allocated.
  • the resource includes an enhanced uplink dedicated control channel radio network temporary identifier and a public enhanced uplink dedicated control channel resource. At least one; and the resources are in a grouped or non-grouped form.
  • the resource providing device when the enhanced uplink dedicated control channel radio network temporary identifier is in a packet form, the resource providing device further includes:
  • a packet resource configuration module configured to allocate an enhanced uplink dedicated control channel radio network temporary identifier packet to the resource requesting device by using a public enhanced uplink dedicated control channel resource message body in the physical shared channel reconfiguration response message, where the public enhanced uplink dedicated
  • the structure of the control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field, and the extended enhanced uplink dedicated control channel radio network temporary identifier field includes an enhanced uplink dedicated control channel radio network carried in the physical shared channel reconfiguration response message.
  • the resource providing device includes a base station; and the resource requesting device includes a base station controller.
  • a ninth aspect of the present invention provides a resource requesting device, which may include: an input device, an output device, and a processor, where the processor performs the following steps:
  • the resource providing device Transmitting, by the output device, a resource confirmation request message to the resource providing device, where the resource confirmation request message carries the first indication information, where the first indication information is used to indicate that the resource requesting device has obtained the resource providing device resource of; And the resource providing device determines, according to the first indication information, whether the resource indicated by the first indication information has been successfully allocated.
  • the method further includes:
  • the resource confirmation request message includes a user status update command message.
  • the resource confirmation request message includes an audit request message
  • the resource confirmation response message includes an audit response message
  • the resource acknowledgement request message includes a physical shared channel reconfiguration request message
  • the resource acknowledgement response message includes a physical shared channel reconfiguration response message
  • the resource confirmation request message includes a user status update confirmation request message
  • the resource confirmation response message includes a user status update confirmation response message
  • the first indication information includes a resource index or a resource itself of a resource that the resource requesting device has acquired from the resource providing device.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device;
  • the resource index is allocated by the processor before sending the resource confirmation request message.
  • the resource requesting device needs to Sending, by the resource providing device, a plurality of resource confirmation request messages, where the first indication information of each resource confirmation request message further includes association information with the next resource confirmation request message, The association information is used to inform the resource providing device whether the resource index of the resource requested once or the resource itself has been received.
  • the resource includes an enhanced uplink dedicated At least one of a control channel radio network temporary identifier and a public enhanced uplink dedicated control channel resource; and the resource is in a packet or non-packet form.
  • the resource requesting device includes a base station controller.
  • a tenth aspect of the present invention provides a resource requesting device, which may include: an input device, an output device, and a processor, where the processor performs the following steps:
  • the resource confirmation request message includes a physical shared channel reconfiguration response confirmation message, where the value of the resource confirmation item includes an acknowledgement and an unacknowledged, when the value of the resource confirmation item is confirmed And indicating that the resource that the resource providing device allocates to the resource requesting device is obtained by the resource requesting device, and when the value of the resource confirming item is not confirmed, indicating that the resource providing device allocates the resource to the resource requesting device Not obtained by the resource requesting device.
  • the resource includes an enhanced uplink dedicated control channel radio network temporary identifier and a public enhanced uplink dedicated control channel resource. At least one
  • resources are in a packet or non-packet form.
  • the resource requesting device includes a base station controller.
  • the eleventh aspect of the present invention provides a resource providing device, which may include: an input device, an output device, and a processor, where the processor performs the following steps:
  • the processor allocates the resource providing device to the resource requesting device, but after the resource that is not acquired by the resource requesting device is initialized to an unallocated state, the processor further performs The following steps:
  • the resource confirmation request message includes a user status update command message.
  • the resource confirmation request message includes an audit request message
  • the resource confirmation response message includes an audit response message
  • the resource acknowledgement request message includes a physical shared channel reconfiguration request message
  • the resource acknowledgement response message includes a physical shared channel reconfiguration response message
  • the resource confirmation request message includes a user status update confirmation request message
  • the resource confirmation response message includes a user status update confirmation response message
  • the first indication information includes a resource index or a resource itself of a resource that the resource requesting device has acquired from the resource providing device;
  • the processor searches, according to the first indication information, that the resource providing device has been allocated to the The resource requesting device, but the resource that the resource requesting device does not obtain includes:
  • the processor searches for resources that are not indicated in the resource index or that are not included in the resource itself but that the resource providing device has allocated to the resource requesting device.
  • the resource index is allocated by the processor to allocate resources to the resource requesting device; or The resource index is allocated by the resource requesting device before transmitting the resource confirmation request message.
  • the processor needs to be Receiving, by the resource requesting device, a plurality of resource confirmation request messages, where the first indication information of each resource confirmation request message further includes association information with a next resource confirmation request message, where the association information is used to notify whether the resource providing device is The resource index or resource itself of the resource that has received the request once;
  • the processor After the processor receives all the resource confirmation request messages corresponding to the resource that is requested once, the processor performs, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, However, the resource requesting device does not acquire the resource.
  • the resource includes at least one of an enhanced uplink dedicated control channel radio network temporary identifier and a public enhanced uplink dedicated control channel resource; and the resource is in a packet or non-packet format.
  • the processor when the enhanced uplink dedicated control channel radio network temporary identifier is in a packet form, the processor receives from the resource requesting device Before the resource confirmation request message, the following steps are also performed:
  • an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device by using a common enhanced uplink dedicated control channel resource message body in the physical shared channel reconfiguration response message, where the structure of the common enhanced uplink dedicated control channel resource includes an extension An enhanced uplink dedicated control channel radio network temporary identifier field, where the extended enhanced uplink dedicated control channel radio network temporary identifier field includes an enhanced uplink dedicated control channel radio network temporary carried in the physical shared channel reconfiguration response message Identifying the number of packets, the number of each enhanced uplink dedicated control channel radio network temporary identification packet, and the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each enhanced uplink dedicated control channel radio network temporary identification packet, The number and step size of the enhanced uplink dedicated control channel radio network temporary identifier included in each of the enhanced uplink dedicated control channel radio network temporary identification packets.
  • the resource providing device includes a base station.
  • a twelfth aspect of the present invention provides a resource providing device, which may include: an input device, an output device, and a processor, where the processor performs the following steps:
  • the resource is initialized to an unallocated state.
  • the resource confirmation request message includes a physical shared channel reconfiguration response confirmation message, where the value of the resource confirmation item includes an acknowledgement and an unacknowledged, when the value of the resource confirmation item is confirmed And indicating that the resource that the resource providing device allocates to the resource requesting device is obtained by the resource requesting device, and when the value of the resource confirming item is not confirmed, indicating that the resource providing device allocates the resource to the resource requesting device Not obtained by the resource requesting device;
  • Determining, according to the resource confirmation request message, whether the resource allocated by the resource resource providing device to the resource requesting device has been successfully allocated includes:
  • the processor analyzes the value of the resource confirmation item, and determines that the resource allocated by the resource resource providing device to the resource requesting device has been successfully allocated when the value of the resource confirmation item is confirmed, when the value of the resource confirmation item is When it is not confirmed, determining that the resource resource providing device is allocated to the resource request device The reserved resources are not successfully allocated;
  • the processor determines that the resource allocated by the resource providing device to the resource requesting device is not successfully allocated.
  • the resource includes an enhanced uplink dedicated control channel radio network temporary identifier and a public enhanced uplink dedicated control channel. At least one of the resources; and the resources are in a grouped or non-grouped form.
  • the resource providing device requests a device from a resource. Before receiving the resource confirmation request message, the following steps are also performed:
  • the structure of the common enhanced uplink dedicated control channel resource includes an extension An enhanced uplink dedicated control channel radio network temporary identifier field, where the extended enhanced uplink dedicated control channel radio network temporary identifier field includes the number of enhanced uplink dedicated control channel radio network temporary identifier packets carried in the physical shared channel reconfiguration response message, a packet number of the enhanced uplink dedicated control channel radio network temporary identification packet, a number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each enhanced uplink dedicated control channel radio network temporary identification packet, and each enhanced uplink dedicated control channel The number and step size of the enhanced uplink dedicated control channel wireless network temporary identifier included in the wireless network temporary identification packet.
  • the resource providing device includes a base station.
  • a thirteenth aspect of the present invention provides a network system, which may include the resource requesting device according to the fifth aspect of the present invention and the resource providing device according to the seventh aspect of the present invention.
  • a fourteenth aspect of the present invention provides a network system, which may include the resource requesting device according to the sixth aspect of the present invention and the resource providing device according to the eighth aspect of the present invention.
  • a fifteenth aspect of the present invention provides a network system, which may include the resource requesting device according to the ninth aspect of the present invention and the resource providing device according to the eleventh aspect of the present invention.
  • a sixteenth aspect of the present invention provides a computer storage medium, the computer storage medium being storable
  • the program when executed by the program, may include some or all of the steps of the method of the present invention.
  • the resource providing device may receive a resource confirmation request message from the resource requesting device, where the resource confirmation request message carries first indication information, where the first indication information is used. And indicating that the resource requesting device has obtained the resource from the resource providing device; the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource requesting device The resource that was not obtained; and initialized the found resource to an unassigned state.
  • the resource providing device may receive the resource confirmation request message from the resource requesting device, where the resource confirmation request message carries a resource confirmation item, where the resource confirmation item is used to indicate that the resource requesting device has obtained the resource from the resource providing device.
  • the resource providing device determines, according to the resource confirmation request message, whether the resource allocated by the resource resource providing device to the resource requesting device has been successfully allocated; when the resource providing device determines that the resource providing device allocates the When the resource requesting device's resource is not successfully allocated, the resource is initialized to an unallocated state. This allows the leaked resources to be redistributed and complete the repair of resource leaks.
  • FIG. 1 is a schematic flow chart of a first embodiment of a method for requesting repair of a resource leak according to the present invention
  • Figure 1.1 is a schematic illustration of a second embodiment of a method for requesting repair of a resource leak in accordance with the present invention
  • FIG. 2 is a schematic flow chart of a third embodiment of a method for requesting repair of a resource leak according to the present invention
  • FIG. 3 is a schematic flow chart of a fourth embodiment of a method for requesting repair of a resource leak according to the present invention.
  • Figure 3.1 is a flow diagram of a fifth embodiment of a method for requesting repair of a resource leak of the present invention.
  • FIG. 4 is a schematic flowchart of a first embodiment of a method for repairing resource leakage according to the present invention
  • FIG. 4.1 is a schematic flowchart of a second embodiment of a method for repairing resource leakage according to the present invention
  • 6 is a schematic flowchart of a fourth embodiment of a method for repairing resource leakage according to the present invention
  • FIG. 6.1 is a schematic flowchart of a fifth embodiment of a method for repairing resource leakage according to the present invention. Schematic diagram of the structural composition of the first embodiment;
  • FIG. 7.1 is a schematic structural diagram of a second embodiment of a resource requesting device according to the present invention
  • FIG. 8 is a schematic structural diagram of a third embodiment of a resource requesting device according to the present invention.
  • FIG. 9 is a schematic structural diagram of a fourth embodiment of a resource requesting device according to the present invention.
  • FIG. 9 is a schematic structural diagram of a fifth embodiment of a resource requesting device according to the present invention
  • FIG. 10 is a schematic structural diagram of a sixth embodiment of a resource requesting device according to the present invention
  • FIG. 11 is a schematic structural diagram of a first embodiment of a resource providing device according to the present invention
  • FIG. 11 is a schematic structural diagram of a second embodiment of a resource providing device according to the present invention
  • FIG. 13 is a schematic structural diagram of a fourth embodiment of a resource providing device according to the present invention
  • FIG. 13 is a structural composition of a fifth embodiment of the resource providing device of the present invention
  • FIG. 14 is a schematic structural diagram of a sixth embodiment of a resource providing device according to the present invention
  • FIG. 14 is a schematic structural diagram of a seventh embodiment of a resource providing device according to the present invention.
  • Flowchart of the first embodiment of the message transmission of the repair process 15.1 is the application and repair of the resource of the present invention.
  • the flow of the second embodiment of the message transmission of the complex process is shown in FIG. 16 is a flow chart of the third embodiment of the message requesting and repairing process of the present invention.
  • FIG. 17 is the message transmission of the resource application and repair process of the present invention.
  • the flow chart of the fourth embodiment of the present invention is a schematic diagram of the fifth embodiment of the message transmission and the repair process of the present invention.
  • the resource providing device may receive a resource confirmation request message from the resource requesting device, where the resource confirmation request message carries first indication information, where the first indication information is used to indicate the resource. Requiring the resource that the device has acquired from the resource providing device; the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource requesting device does not obtain Resources; and initialize the found resources to an unassigned state. This allows the leaked resources to be redistributed and complete the repair of resource leaks.
  • the processing flow on the resource requesting device side includes:
  • the resource providing device is configured to search, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource requesting device does not acquire the resource, and the discovered resource is Initialized to an unassigned state.
  • the processing flow of the resource providing device side includes:
  • the resource requesting device And receiving, by the resource requesting device, a resource acknowledgment request message, where the resource acknowledgment request message carries first indication information, where the first indication information is used to indicate that the resource requesting device has obtained resources from the resource providing device;
  • the resource providing device searches, according to the first indication information, a resource that the resource providing device has allocated to the resource requesting device, but the resource requesting device does not acquire;
  • the resource providing device initializes the found resource to an unassigned state.
  • the resource providing device may receive the resource confirmation request message from the resource requesting device, where the resource confirmation request message carries a resource confirmation item, where the resource confirmation item is used to indicate that the resource requesting device has obtained the resource from the resource providing device.
  • the resource providing device determines, according to the resource confirmation request message, whether the resource allocated by the resource resource providing device to the resource requesting device has been successfully allocated; when the resource providing device determines that the resource providing device allocates the When the resource requesting device's resource is not successfully allocated, the resource is initialized to an unallocated state. This allows the leaked resources to be redistributed and complete the repair of resource leaks.
  • the processing flow on the resource requesting device side includes:
  • the resource requesting device sends a resource confirmation request message to the resource providing device, where the resource confirmation request
  • the message carries a resource confirmation item, where the resource confirmation item is used to indicate that the resource requesting device has obtained the resource from the resource providing device;
  • the processing flow of the resource providing device side includes:
  • the resource providing device receives a resource acknowledgment request message from the resource requesting device, where the resource acknowledgment request message carries a resource acknowledgment item, where the resource acknowledgment item is used to indicate that the resource requesting device has obtained resources from the resource providing device;
  • the resource providing device determines whether the resource allocated by the resource providing device to the resource requesting device is not successfully allocated, the resource is initialized to an unallocated state.
  • FIG. 1 is a flow chart showing a first embodiment of a method for requesting repair of a resource leak according to the present invention. As shown in FIG. 1, it may include:
  • Step S110 The resource requesting device sends a resource confirmation request message to the resource providing device, where the resource confirmation request message includes a physical shared channel reconfiguration response confirmation message (PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE CONFIRM), and the physical shared channel reconfiguration response acknowledgement message And carrying the resource confirmation item, where the resource confirmation item is used to indicate that the resource requesting device has obtained the resource from the resource providing device; and when the value of the resource confirmation item is confirmed (Confirmed), indicating that the resource is provided
  • the resource allocated by the device to the resource requesting device is obtained by the resource requesting device.
  • the value of the resource confirming item is not confirmed (Not- Confirmed)
  • the resource allocated by the resource providing device to the resource requesting device is not Obtained by the resource requesting device.
  • the resource providing device analyzes the value of the resource confirmation item, and when the value of the resource confirmation item is confirmed, determining that the resource allocated by the resource resource providing device to the resource requesting device has been successfully allocated, when the resource confirmation item is taken When the value is not confirmed, determining that the resource allocated by the resource resource providing device to the resource requesting device is not successfully allocated; or, when the resource providing device does not receive the physical shared channel reconfiguration response sent by the resource requesting device And confirming the message, determining that the resource allocated by the resource providing device to the resource requesting device is not successfully allocated.
  • the resource providing device of the present invention may include a base station (NodeB),
  • the resource requesting device may include a base station controller (RNC).
  • NodeB base station
  • RNC base station controller
  • the resources of the present invention may include at least one of an enhanced uplink dedicated control channel radio network temporary identity E-RNTI and a public enhanced uplink dedicated control channel resource CommEDCH.
  • the E-RNTI may be in a packet or non-packet format.
  • the resource carried in the resource confirmation request message may be in a packet form. E-RNTI.
  • the enhanced uplink dedicated control channel radio network temporary identifier packet may be a common enhanced uplink dedicated control channel resource message body in the physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE by the resource providing device. The device is requested for the resource allocation.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field Extended E-RNTI, and the extended enhanced uplink dedicated control channel radio network temporary identifier field
  • Extended E-RNTI Extended E-RNTI
  • extended enhanced uplink dedicated control channel radio network temporary identifier field The number of enhanced uplink dedicated control channel radio network temporary identification packets carried in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, the packet number of each enhanced uplink dedicated control channel radio network temporary identification packet, and the enhanced uplink dedicated control channel radio network temporary identifier
  • Table 1 lists the public enhancement when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the structure of the uplink dedicated control channel resource message body.
  • Table 1 IE/Group Name Presence Range IE Type
  • the structure of the public enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION
  • Extended E-RNTI the extended enhanced uplink dedicated control channel radio network temporary identification packets carried in the RESPONSE, the group index of each enhanced uplink dedicated control channel radio network temporary identification packet, and each enhanced uplink dedicated control
  • the number of the enhanced uplink dedicated control channel radio network temporary identifier packet is a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is less than a positive integer equal to 256; the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each of the enhanced uplink dedicated control channel radio network temporary identification packets is a positive integer equal to or less than 256; each of the enhanced uplink dedicated The number of the enhanced uplink dedicated control channel radio network temporary identifier included in the control channel radio network temporary identification packet is a positive integer equal to or less than 256.
  • for each PHYSICAL SHARED CHANNEL RECONFIGURATION
  • N is the maximum number of allowed E-RNTIs in each E-RNTI GROUP
  • S is the largest group of E-RNTI GROUPs Number
  • L is the maximum allowable step size between E-RNTIs within each E-RNTI GROUP.
  • the S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource providing device introduces a resource index by re-configuring the public enhanced uplink dedicated control channel resource by using a physical shared channel, where the resource index may be any identifier of the resource or an application batch number. Identification information that can uniquely correspond to the resource;
  • the resource requesting device may request the resource providing device to perform the process of the first embodiment of the method for repairing the resource leakage of the present invention before the triggering of the resource application process other than the first application of the resource, to ensure The resource providing device provides the repaired resource for the resource requesting device.
  • the resource requesting device sends a resource confirmation request message to the resource providing device, where the resource confirmation request message carries a resource confirmation item, so that the resource providing device according to the Determining, by the resource confirmation request message, whether the resource allocated to the resource requesting device has been successfully allocated, and when the resource providing device determines whether the resource allocated by the resource providing device to the resource requesting device is not successfully allocated, the resource is Initialized to an unassigned state. This allows the leaked resources to be redistributed and complete the repair of resource leaks.
  • Figure 1.1 is a flow diagram of a second embodiment of a method of requesting repair of a resource leak in accordance with the present invention. As shown in Figure 1.1, it can include:
  • Step S120 The resource requesting device sends a resource confirmation request message to the resource providing device, where the resource confirmation request message includes a user status update command message (UE STATUS UPDATE COMMAND), where the first indication information carried in the user status update command message includes a resource index (such as an E-RNTI Index information, or a Common E-DCH System Information Index information, or an E-RNTI Group Index information) or a resource itself, where the resource index may be a resource identifier or an application batch Any identification information such as a number that can uniquely correspond to the resource;
  • the requesting message is used to enable the resource providing device to search for the resource requesting device as being allocated to the resource requesting device according to the resource index or the resource itself, but the resource index is not indicated or the resource is not indicated.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the resource requesting device needs to send multiple resource confirmation request messages to the resource providing device, where each The first indication information of the resource confirmation request message further includes association information with the next resource confirmation request message, where the association information is used to notify the resource providing device whether the resource index of the resource requested once or the resource itself has been received.
  • the resource providing device of the present invention may include a base station (NodeB), and the resource requesting device may include a base station controller (RNC).
  • NodeB nodeB
  • RNC base station controller
  • the resources of the present invention may include at least one of an enhanced uplink dedicated control channel radio network temporary identity E-RNTI and a public enhanced uplink dedicated control channel resource CommEDCH.
  • the E-RNTI may be in a packet or non-packet format.
  • the resource carried in the resource confirmation request message may be in a packet form. E-RNTI.
  • the enhanced uplink dedicated control channel radio network temporary identifier packet may be a common enhanced uplink dedicated control channel resource message body in the physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE by the resource providing device. The device is requested for the resource allocation.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field Extended E-RNTI, and the extended enhanced uplink dedicated control channel radio network temporary identifier field Includes enhanced uplink dedicated control channels carried in PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE
  • the number of radio network temporary identification packets, the packet number of each enhanced uplink dedicated control channel radio network temporary identification packet, and the initial enhanced uplink dedicated control channel radio network temporary identifier in each enhanced uplink dedicated control channel radio network temporary identification packet The number, the number of steps and the step size of the enhanced uplink dedicated control channel radio network temporary identifier included in each of the enhanced uplink dedicated control channel radio network temporary identification packets.
  • Table 1 lists the public enhancement when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the uplink dedicated control channel resource message body.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE
  • the number of enhanced temporary uplink dedicated control channel radio network temporary identification packets (Extended E-RNTI), each enhanced uplink dedicated control channel radio network temporary identification packet group number (Group index), each enhanced uplink dedicated control channel radio
  • An enhanced uplink dedicated dedicated control channel radio network temporary identifier (Number of E-RNTI per group) and a step of E-RNTI per group included in the uplink dedicated control channel radio network temporary identification packet.
  • the number of the enhanced uplink dedicated control channel radio network temporary identifier packet may be a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is a positive integer less than or equal to 256; the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each of the enhanced uplink dedicated control channel radio network temporary identifier packets is a positive integer equal to or less than 256; each of the enhanced uplinks The number of the enhanced uplink dedicated control channel radio network temporary identifier included in the dedicated control channel radio network temporary identification packet is a positive integer equal to or less than 256.
  • is the maximum number of E-RNTI GROUPs (E-RNTI GROUP) allowed in each PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE message; N is the maximum allowed E-RNTI within each E-RNTI GROUP. The number is L; the maximum step size allowed between E-RNTIs in each E-RNTI GROUP; S is the maximum number of packets in the E-RNTI GROUP. S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource providing device reconfigures through a physical shared channel
  • the resource index may be introduced when the publicly-adjusts the uplink dedicated control channel resource, and the resource index may be any identifier information that may be uniquely associated with the resource, such as the identifier of the resource or the application batch number;
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the resource index is allocated by the Node B
  • the RNC receives the resource with the same resource index
  • the request message is acknowledged
  • the resource corresponding to the resource index is confirmed, and when the Node B allocates the next resource index, the resource index corresponding to the confirmed resource is added or decremented by 1; otherwise, the Node B allocates A resource still carries the previously unconfirmed resource index number assigned, and the above process is repeated. It can be understood that when the resource index reaches the maximum value or the minimum value, the resource index is reset.
  • the change rule of the resource index is the same as above.
  • the resource requesting device may request the resource providing device to perform the process of the first embodiment of the method for repairing the resource leakage of the present invention before the triggering of the resource application process other than the first application of the resource, to ensure The resource providing device provides the repaired resource for the resource requesting device.
  • the resource requesting device sends a resource confirmation request message to the resource providing device, where the resource confirmation request message carries the first indication information, where the first indication information is used. And indicating that the resource requesting device has obtained the resource from the resource providing device, so that the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource The resource that the device does not acquire is requested, and the found resource is initialized to an unallocated state. This allows the leaked resources to be redistributed and complete the repair of resource leaks.
  • FIG. 2 is a flow chart showing a third embodiment of a method for requesting repair of a resource leak according to the present invention. As shown in FIG. 2, it may include:
  • the resource requesting device sends a resource confirmation request message to the resource providing device, where the resource confirmation request message includes an audit request message (AUDIT REQUEST), and the first request information in the audit request message includes a resource index (for example, E- The RNTI index information, or the Common E-DCH System Information Index information, or the E-RNTI Group Index information, or the resource itself, where the resource index may be any identifier information that can be uniquely associated with the resource, such as the identifier of the resource or the application batch number.
  • the resource confirmation request message is used to enable the resource providing device to search, according to the resource index or the resource itself, that the resource providing device is marked as being allocated to the resource requesting device, but the resource index is not indicated. Or the resource that is not included in the resource itself, and initializes the found resource to an unallocated state.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the allocation is performed.
  • a resource index is indexed, 1 or minus 1 is added to the resource index corresponding to the confirmed resource; it can be understood that the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the resource requesting device needs to send multiple resource confirmation request messages to the resource providing device, where each The first indication information of the resource confirmation request message further includes association information with the next resource confirmation request message, where the association information is used to notify the resource providing device whether the resource index of the resource requested once or the resource itself has been received.
  • Step S211 The resource requesting device receives the resource confirmation response message sent by the resource providing device to the resource requesting device, where the resource confirmation response message includes an audit response message (AUDIT RESPONSE), where the audit response message carries an audit field.
  • the audit field includes a resource acknowledgement field (eg, an E-RNTI Audit Confirm field, or a Common E-DCH System Information Audit Confirm field;), and/or a resource index (eg, E-RNTI Index information, or Common E-DCH)
  • the system information index information, or the E-RNTI Group Index information is used to notify the resource requesting device that the resource providing device has responded to the resource confirmation request message.
  • the resource providing device of the present invention may include a base station (NodeB), and the resource requesting device may include a base station controller (RNC).
  • NodeB nodeB
  • RNC base station controller
  • the resources of the present invention may include at least one of an enhanced uplink dedicated control channel radio network temporary identity E-RNTI and a public enhanced uplink dedicated control channel resource CommEDCH.
  • the E-RNTI may be in a packet or non-packet format.
  • the resource carried in the resource confirmation request message may be in a packet form. E-RNTI.
  • the enhanced uplink dedicated control channel radio network temporary identifier packet may be a common enhanced uplink dedicated control channel resource message body in the physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE by the resource providing device. The device is requested for the resource allocation.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field Extended E-RNTI, and the extended enhanced uplink dedicated control channel radio network temporary identifier field Including PHYSICAL SHARED
  • the number of the enhanced uplink dedicated control channel radio network temporary identification packet carried in the CHANNEL RECONFIGURATION RESPONSE, the packet number of each enhanced uplink dedicated control channel radio network temporary identification packet, and each enhanced uplink dedicated control channel radio network temporary identification packet The number of the temporary enhanced identification of the uplink dedicated control channel radio network temporary identifier, and the number and step size of the enhanced uplink dedicated control channel radio network temporary identifier included in each enhanced uplink dedicated control channel radio network temporary identifier packet.
  • Table 1 lists the public enhancement when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the uplink dedicated control channel resource message body.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE
  • the number of enhanced temporary uplink dedicated control channel radio network temporary identification packets (Extended E-RNTI), each enhanced uplink dedicated control channel radio network temporary identification packet group number (Group index), each enhanced uplink dedicated control channel radio Network temporary identification group
  • the number of the enhanced uplink dedicated control channel radio network temporary identifier packet may be a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is a positive integer less than or equal to 256; the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each of the enhanced uplink dedicated control channel radio network temporary identifier packets is a positive integer equal to or less than 256; each of the enhanced uplinks The number of the enhanced uplink dedicated control channel radio network temporary identifier included in the dedicated control channel radio network temporary identification packet is a positive integer equal to or less than 256.
  • is the maximum number of E-RNTI GROUPs (E-RNTI GROUP) allowed in each PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE message; N is the maximum allowed E-RNTI within each E-RNTI GROUP. The number is L; the maximum step size allowed between E-RNTIs in each E-RNTI GROUP; S is the maximum number of packets in the E-RNTI GROUP. S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource providing device reconfigures through a physical shared channel
  • the resource index may be introduced when the publicly-adjusts the uplink dedicated control channel resource, and the resource index may be any identifier information that may be uniquely associated with the resource, such as the identifier of the resource or the application batch number;
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the resource index is allocated by the Node B, when receiving the resource confirmation request message with the same resource index of the RNC, the resource corresponding to the resource index is confirmed, and the Node B allocates the resource index number corresponding to the next resource. Add 1 or subtract 1 , otherwise Node B will still carry the previously assigned unconfirmed resource index number when it allocates the next resource. The above process is repeated. It can be understood that when the resource index reaches the maximum value or the minimum value, the resource index is reset. On the other hand, if the resource index is allocated by the RNC, the change rule of the resource index is the same as above.
  • the resource requesting device may request the resource providing device to perform the process of the first embodiment of the method for repairing the resource leakage of the present invention before the triggering of the resource application process other than the first application of the resource, to ensure The resource providing device provides the repaired resource for the resource requesting device.
  • the resource requesting device sends a resource confirmation request message to the resource providing device, where the resource confirmation request message carries the first indication information, where the first indication information is used. And indicating that the resource requesting device has obtained the resource from the resource providing device, so that the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource The resource that the device does not acquire is requested, and the found resource is initialized to an unallocated state. This allows the leaked resources to be redistributed and complete the repair of resource leaks.
  • FIG. 3 is a flow chart showing a fourth embodiment of a method for requesting repair of a resource leak according to the present invention. As shown in FIG. 3, it may include:
  • Step S310 the resource requesting device sends a resource confirmation request message to the resource providing device, where the resource confirmation request message includes a physical shared channel reconfiguration request message (PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST), which is carried in the physical shared channel reconfiguration request message.
  • the first indication information includes a resource index (for example, E-RNTI Index information, or Common E-DCH System Information Index information, or E-RNTI Group Index information) or a resource itself, and the resource index may be an identifier of the resource or a batch of applications.
  • any other identifier information that can be uniquely associated with the resource and the resource confirmation request message is configured to enable the resource providing device to search, according to the resource index or the resource itself, that the resource providing device is marked as assigned to the The resource requesting device, but the resource in the resource index is not indicated or the resource itself is not included, and the found resource is initialized to an unallocated state.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is requested by the resource requesting device The allocation is performed before the resource confirmation request message is sent.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the RNC receives the physical shared channel reconfiguration response message of the Node B with the same resource index N (PHYSICAL SHARED CHANNEL)
  • the RNC When RECONFIGURATION RESPONSE ), the RNC considers that the resource corresponding to the resource index N is confirmed, and the RNC allocates the next physical shared channel reconfiguration request message (PHYSICAL SHARED)
  • CHANNEL RECONFIGURATION REQUEST The corresponding resource index number is incremented by 1 (N+1) or minus l (N-l), otherwise the RNC allocates the next physical shared channel reconfiguration request message (PHYSICAL).
  • the corresponding resource I still carries the previously assigned unconfirmed resource index N, and the above process is repeated. It can be understood that when the resource index reaches the maximum or minimum value, the resource index is reset. On the other hand, if the resource index is allocated by the Node B, the change rule of the resource index is the same as above.
  • the resource requesting device needs to send multiple resource confirmation request messages to the resource providing device, where each The first indication information of the resource confirmation request message further includes association information with the next resource confirmation request message, where the association information is used to notify the resource providing device whether the resource index of the resource requested once or the resource itself has been received.
  • Step S311 The resource requesting device receives a resource acknowledgment response message sent by the resource providing device to the resource requesting device, where the resource acknowledgment response message includes a physical shared channel reconfiguration response message (PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE), where the physics
  • the shared channel reconfiguration response message carries an audit field, where the audit field includes a resource confirmation field and/or a resource index, where the audit field is used to notify the resource requesting device that the resource providing device has responded to the resource confirmation request message.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to a maximum or minimum value.
  • N is an integer
  • the Node B receives the physical shared channel reconfiguration request message (PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST) of the RNC with the resource index N, the Node B The received resource index N is carried in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE.
  • the RNC When the RNC receives the resource index N with the RNC allocation of the Node B, the RNC considers that the resource corresponding to the resource index N is It is confirmed that the resource index carried by the RNC when assigning the next physical shared channel reconfiguration request message (PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST) is N+1 or N1, otherwise the RNC is allocating the next physical shared channel reconfiguration request message (PHYSICAL SHARED CHANNEL) RECONFIGURATION REQUEST) The corresponding resource index still carries the previously allocated unconfirmed resource index N, and the above process is repeated; it can be understood that when the resource index reaches the maximum value or the minimum value, the resource index is reset. On the other hand, if the resource index is allocated by the Node B, the change rule of the resource index is the same as above.
  • the resource providing device of the present invention may include a base station (NodeB), and the resource requesting device may include a base station controller (RNC).
  • NodeB nodeB
  • RNC base station controller
  • the resources of the present invention may include at least one of an enhanced uplink dedicated control channel radio network temporary identity E-RNTI and a public enhanced uplink dedicated control channel resource CommEDCH.
  • the E-RNTI may be in a packet or non-packet format.
  • the resource carried in the resource confirmation request message may be in a packet form. E-RNTI.
  • the enhanced uplink dedicated control channel radio network temporary identifier packet may be a common enhanced uplink dedicated control channel resource message body in the physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE by the resource providing device. The device is requested for the resource allocation.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field Extended E-RNTI, and the extended enhanced uplink dedicated control channel radio network temporary identifier field Includes enhanced uplink dedicated control channels carried in PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE
  • the number of radio network temporary identification packets, the packet number of each enhanced uplink dedicated control channel radio network temporary identification packet, and the initial enhanced uplink dedicated control channel radio network temporary identifier in each enhanced uplink dedicated control channel radio network temporary identification packet The number, the number of steps and the step size of the enhanced uplink dedicated control channel radio network temporary identifier included in each of the enhanced uplink dedicated control channel radio network temporary identification packets.
  • Table 1 lists the public enhancement when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the uplink dedicated control channel resource message body.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE
  • the number of enhanced temporary uplink dedicated control channel radio network temporary identification packets (Extended E-RNTI), each enhanced uplink dedicated control channel radio network temporary identification packet group number (Group index), each enhanced uplink dedicated control channel radio
  • An enhanced uplink dedicated dedicated control channel radio network temporary identifier (Number of E-RNTI per group) and a step of E-RNTI per group included in the uplink dedicated control channel radio network temporary identification packet.
  • the number of the enhanced uplink dedicated control channel radio network temporary identifier packet may be a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is a positive integer less than or equal to 256; the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each of the enhanced uplink dedicated control channel radio network temporary identifier packets is a positive integer equal to or less than 256; each of the enhanced uplinks The number of the enhanced uplink dedicated control channel radio network temporary identifier included in the dedicated control channel radio network temporary identification packet is a positive integer equal to or less than 256.
  • is the maximum number of E-RNTI GROUPs (E-RNTI GROUP) allowed in each PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE message; N is the maximum allowed E-RNTI within each E-RNTI GROUP. The number is L; the maximum step size allowed between E-RNTIs in each E-RNTI GROUP; S is the maximum number of packets in the E-RNTI GROUP. S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource providing device reconfigures through a physical shared channel
  • the resource index may be introduced when the publicly-adjusts the uplink dedicated control channel resource, and the resource index may be any identifier information that may be uniquely associated with the resource, such as the identifier of the resource or the application batch number;
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value. For example, if the resource index is allocated by the Node B, when the RNC receives the resource with the same resource index, When the request message is acknowledged, the resource corresponding to the resource index is confirmed, and the resource index number corresponding to the next resource is added by the Node B by 1 or minus 1, otherwise the Node B still carries the previously unacknowledged allocation when the next resource is allocated. The resource index number, the above process is repeated. It can be understood that when the resource index reaches the maximum value or the minimum value, the resource index is reset. On the other hand, if the resource index is allocated by the RNC, the change rule of the resource index is the same as above.
  • the resource requesting device may request the resource providing device to perform the process of the first embodiment of the method for repairing the resource leakage of the present invention before the triggering of the resource application process other than the first application of the resource, to ensure The resource providing device provides the repaired resource for the resource requesting device.
  • the resource requesting device sends a resource confirmation request message to the resource providing device, where the resource confirmation request message carries the first indication information, where the first indication information is used. And indicating that the resource requesting device has obtained the resource from the resource providing device, so that the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource The resource that the device does not acquire is requested, and the found resource is initialized to an unallocated state. This allows the leaked resources to be redistributed and complete the repair of resource leaks.
  • Figure 3.1 is a flow diagram of a fifth embodiment of a method of requesting repair of a resource leak in accordance with the present invention. As shown in Figure 3.1, it can include:
  • Step S320 The resource requesting device sends a resource confirmation request message to the resource providing device, where the resource confirmation request message includes a user status update confirmation request message (UE STATUS UPDATE CONFIRM REQUEST), where the user status update confirmation request message carries the first indication.
  • the information includes a resource index (for example, E-RNTI Index information, or Common E-DCH System Information Index information, or E-RNTI Group Index information) or a resource itself, and the resource index may be a resource identifier or an application batch number.
  • the resource confirmation request message is configured to enable the resource providing device to search, according to the resource index or the resource itself, that the resource providing device is marked as being allocated to the resource requesting device And the resource index does not indicate or the resource that is not included in the resource itself, and initializes the found resource to an unallocated state.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource corresponding to the resource index is confirmed, when the next resource index is allocated, 1 or minus 1 is added to the resource index corresponding to the confirmed resource;
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the resource requesting device needs to send multiple resource confirmation request messages to the resource providing device, where each The first indication information of the resource confirmation request message further includes association information with the next resource confirmation request message, where the association information is used to notify the resource providing device whether the resource index of the resource requested once or the resource itself has been received.
  • Step S321 The resource requesting device receives a resource confirmation response message sent by the resource providing device to the resource requesting device, where the resource confirmation response message includes a UE status update acknowledgement response message (UE STATUS UPDATE CONFIRM RESPONSE ), the user status
  • the update confirmation response message carries an audit field, where the audit field includes a resource confirmation field (for example, an E-RNTI Audit Confirm field, or a Common E-DCH System Information Audit Confirm field), and/or a resource index (for example, E-RNTI)
  • the Group Index, or the E-RNTI Index, or the Common E-DCH System Information Index is used to notify the resource requesting device that the resource providing device has responded to the resource confirmation request message.
  • the resource providing device of the present invention may include a base station (NodeB), and the resource requesting device may include a base station controller (RNC).
  • NodeB nodeB
  • RNC base station controller
  • the resources of the present invention may include at least one of an enhanced uplink dedicated control channel radio network temporary identity E-RNTI and a public enhanced uplink dedicated control channel resource CommEDCH.
  • the E-RNTI may be in a packet or non-packet format.
  • the resource carried in the resource confirmation request message may be in a packet form. E-RNTI.
  • the enhanced uplink dedicated control channel radio network temporary identifier packet may be a common enhanced uplink dedicated control channel resource message body in the physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE by the resource providing device. The device is requested for the resource allocation.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced uplink dedicated control channel radio network temporary identifier field Extended E-RNTI,
  • the extended enhanced dedicated control channel radio network temporary identification field includes the number of enhanced uplink dedicated control channel radio network temporary identification packets carried in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, and the packet number of each enhanced uplink dedicated control channel radio network temporary identification packet, The number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each enhanced uplink dedicated control channel radio network temporary identifier packet, and the enhanced uplink dedicated control channel radio included in each enhanced uplink dedicated control channel radio network temporary identifier packet The number and step size of the network temporary identifier.
  • Table 1 lists the public enhancement when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the uplink dedicated control channel resource message body.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE
  • the number of enhanced uplink dedicated control channel radio network temporary identification packets (Extended E-RNTI), and each enhanced uplink dedicated control channel radio network temporary identification packet Group index, the starting enhanced enhanced uplink dedicated control channel radio network temporary identification number (Starting E-RNTI) in each enhanced uplink dedicated control channel radio network temporary identification packet, each enhanced uplink dedicated control channel wireless network The number of the enhanced uplink dedicated control channel radio network temporary identifiers (Number of E-RNTI per group) and the step size (step of E-RNTI per group) included in the temporary identification packet.
  • the number of the enhanced uplink dedicated control channel radio network temporary identifier packet may be a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is a positive integer less than or equal to 256; the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each of the enhanced uplink dedicated control channel radio network temporary identifier packets is a positive integer equal to or less than 256; each of the enhanced uplinks The number of the enhanced uplink dedicated control channel radio network temporary identifier included in the dedicated control channel radio network temporary identification packet is a positive integer equal to or less than 256.
  • is the maximum number of E-RNTI GROUPs (E-RNTI GROUP) allowed in each PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE message; N is the maximum allowed E-RNTI within each E-RNTI GROUP. The number is L; the maximum step size allowed between E-RNTIs in each E-RNTI GROUP; S is the maximum number of packets in the E-RNTI GROUP. S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource providing device reconfigures through a physical shared channel
  • the resource index may be introduced when the publicly-adjusts the uplink dedicated control channel resource, and the resource index may be any identifier information that may be uniquely associated with the resource, such as the identifier of the resource or the application batch number;
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to a maximum or minimum value. For example, if the resource index is allocated by the Node B, when receiving the resource confirmation request message with the same resource index of the RNC, the resource corresponding to the resource index is confirmed, and the Node B allocates the resource index number corresponding to the next resource. Add 1 or subtract 1 , otherwise Node B will still carry the previously assigned unconfirmed resource index number when it allocates the next resource. The above process is repeated. It can be understood that when the resource index reaches the maximum or minimum value, the resource index is reset. On the other hand, if the resource index is allocated by the RNC, the change rule of the resource index is the same as above.
  • the resource requesting device may request the resource providing device to perform the process of the first embodiment of the method for repairing the resource leakage of the present invention before the triggering of the resource application process other than the first application of the resource, to ensure The resource providing device provides the repaired resource for the resource requesting device.
  • the resource requesting device sends a resource confirmation request message to the resource providing device, where the resource confirmation request message carries the first indication information, where the first indication information is used. And indicating that the resource requesting device has obtained the resource from the resource providing device, so that the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource The resource that the device does not acquire is requested, and the found resource is initialized to an unallocated state. This allows the leaked resources to be redistributed and complete the repair of resource leaks.
  • FIG. 4 is a schematic flowchart diagram of a first embodiment of a method for repairing resource leakage according to the present invention. As shown in Figure 4, it can include:
  • Step S410 The resource providing device receives a resource confirmation request message from the resource requesting device, where the resource confirmation request message includes a physical shared channel reconfiguration response confirmation message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE CONFIRM, and the physical shared channel reconfiguration response confirmation message is carried in the message Resource confirmation item, when the value of the resource confirmation item is confirmed
  • Step S411 the resource providing device analyzes the value of the resource confirmation item, and when the value of the resource confirmation item is confirmed, determining that the resource allocated by the resource resource providing device to the resource requesting device has been successfully allocated, when the resource is confirmed. When the value of the item is not confirmed, it is determined that the resource allocated by the resource resource providing device to the resource requesting device is not successfully allocated.
  • Step S412 When the resource providing device determines whether the resource allocated by the resource providing device to the resource requesting device is not successfully allocated, the resource is initialized to an unallocated state.
  • the resource providing device of the present invention may include a base station (NodeB), and the resource requesting device may include a base station controller (RNC).
  • NodeB nodeB
  • RNC base station controller
  • the resources of the present invention may include at least one of an enhanced uplink dedicated control channel radio network temporary identity E-RNTI and a public enhanced uplink dedicated control channel resource CommEDCH.
  • the E-RNTI may be in a packet or non-packet format.
  • the method for repairing the resource leakage of the present invention may further include:
  • the resource providing device allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device by using a public enhanced uplink dedicated control channel resource message body in a physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, the public enhancement
  • the structure of the uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field Extended E-RNTI, and the extended enhanced uplink dedicated control channel radio network temporary identifier field includes an enhanced uplink dedicated carried in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE
  • the number of control channel radio network temporary identification packets, the packet number of each enhanced uplink dedicated control channel radio network temporary identification packet, and the initial enhanced uplink dedicated control channel radio network in each enhanced uplink dedicated control channel radio network temporary identification packet The number of the temporary identification, the enhanced uplink dedicated control channel included in each of the enhanced uplink dedicated control channel radio network temporary identification packets The number of steps and network temporary identity lines.
  • Table 1 lists the public boost when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the structure of the uplink dedicated control channel resource message body.
  • Table 1 IE/Group Name Presence Range IE Type
  • the structure of the public enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION
  • Extended E-RNTI the extended enhanced uplink dedicated control channel radio network temporary identification packets carried in the RESPONSE, the group index of each enhanced uplink dedicated control channel radio network temporary identification packet, and each enhanced uplink dedicated control
  • the number of the enhanced uplink dedicated control channel radio network temporary identifier packet is a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is less than a positive integer equal to 256; the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each of the enhanced uplink dedicated control channel radio network temporary identification packets is a positive integer equal to or less than 256; each of the enhanced uplink dedicated The number of the enhanced uplink dedicated control channel radio network temporary identifier included in the control channel radio network temporary identification packet is a positive integer equal to or less than 256.
  • for each PHYSICAL SHARED CHANNEL RECONFIGURATION
  • N is the maximum number of allowed E-RNTIs in each E-RNTI GROUP
  • L is within each E-RNTI GROUP
  • S is the maximum number of packets of the E-RNTI GROUP.
  • the S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the resource confirmation item thus received in step S410 also corresponds to the E-RNTI packet.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource requesting device may request the resource providing device to perform the process of the first embodiment of the method for repairing the resource leakage of the present invention before the triggering of the resource application process other than the first application of the resource, to ensure The resource providing device provides the repaired resource for the resource requesting device.
  • step S410 when the resource providing device does not receive the resource confirmation message of the resource requesting device, step S411 may be replaced by: determining that the resource allocated by the resource providing device to the resource requesting device is unsuccessful distribution.
  • the resource providing device may receive a resource confirmation request message from the resource requesting device, where the resource confirmation request message carries a resource confirmation item, where the resource confirmation item is used to indicate
  • the resource requesting device has obtained the resource from the resource providing device; the resource providing device determines, according to the resource confirmation request message, whether the resource allocated by the resource resource providing device to the resource requesting device has been successfully allocated;
  • the resource providing device determines whether the resource allocated by the resource providing device to the resource requesting device is not successfully allocated, the resource is initialized to an unallocated state. This allows the leaked resources to be redistributed and complete the repair of the resource leak.
  • FIG. 4.1 is a schematic flowchart diagram of a second embodiment of a method for repairing resource leakage according to the present invention. As shown in Figure 4.1, it can include:
  • the resource providing device receives the resource confirmation request message from the resource requesting device, where the resource confirmation request message includes a user status update command message (UE STATUS UPDATE COMMAND), and the first indication information carried in the user status update command message includes Resource index (t ⁇ , E-RNTI Index information, or Common E-DCH System Information Index
  • the resource index may be any identifier information that may be uniquely associated with the resource, such as an identifier of the resource or an application batch number; the resource confirmation request message is used to enable the
  • the resource providing device searches for, according to the resource index or the resource itself, a resource in the resource providing device that is marked as allocated to the resource requesting device, but is not indicated in the resource index or is not included in the resource itself, and The found resource is initialized to an unassigned state.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • Step S421 The resource providing device searches for, according to the resource index, a resource in the resource providing device that is marked as being allocated to the resource requesting device but not included in the resource index.
  • Step S422 the resource providing device initializes the found resource to an unassigned state.
  • the resource providing device of the present invention may include a base station (NodeB), and the resource requesting device may include a base station controller (RNC).
  • NodeB base station
  • RNC base station controller
  • the resources of the present invention may include at least one of an enhanced uplink dedicated control channel radio network temporary identity E-RNTI and a public enhanced uplink dedicated control channel resource CommEDCH.
  • the E-RNTI of the present invention may be in packet or non-packet form.
  • the method for repairing the resource leakage of the present invention may further include:
  • the resource providing device allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device by using a public enhanced uplink dedicated control channel resource message body in a physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, the public enhancement
  • the structure of the uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field Extended E-RNTI, and the extended enhanced uplink dedicated control channel radio network temporary identifier field includes an enhanced uplink dedicated carried in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE Control channel wireless network temporary identification packet number, each enhanced uplink dedicated control channel wireless network temporary identification packet The group number, the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each enhanced uplink dedicated control channel radio network temporary identifier packet, and the enhanced uplink dedicated included in each enhanced uplink dedicated control channel radio network temporary identifier packet The number and step size of the temporary identification of the control channel wireless network.
  • Table 1 lists the public boost when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the uplink dedicated control channel resource message body.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE
  • the number of enhanced temporary uplink dedicated control channel radio network temporary identification packets (Extended E-RNTI), each enhanced uplink dedicated control channel radio network temporary identification packet group number (Group index), each enhanced uplink dedicated control channel radio
  • the starting enhanced enhanced uplink dedicated control channel radio network temporary identification number (Starting E-RNTI) in the network temporary identification packet, and the enhanced uplink dedicated control included in each enhanced uplink dedicated control channel wireless network temporary identification packet The number of E-RNTI per group and the step of E-RNTI per group.
  • the number of the enhanced uplink dedicated control channel radio network temporary identifier packet is a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is less than a positive integer equal to 256; the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each of the enhanced uplink dedicated control channel radio network temporary identification packets is a positive integer equal to or less than 256; each of the enhanced uplink dedicated The number of the enhanced uplink dedicated control channel radio network temporary identifier included in the control channel radio network temporary identification packet is a positive integer equal to or less than 256.
  • the resource confirmation item thus received in step S420 also corresponds to the E-RNTI packet.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource providing device reconfigures through a physical shared channel
  • the resource index may be introduced when the publicly-adjusts the uplink dedicated control channel resource, and the resource index may be any identifier information that may be uniquely associated with the resource, such as the identifier of the resource or the application batch number;
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value. For example, if the resource index is allocated by the Node B, when receiving the resource confirmation request message with the same resource index of the RNC, the resource corresponding to the resource index is considered to be confirmed, and the Node B allocates the next resource. When the source index is added, 1 or minus 1 is added to the resource index corresponding to the confirmed resource. Otherwise, the Node B still carries the previously allocated unconfirmed resource index number when the next resource is allocated, and the process is repeated. The maximum or minimum value is reached and the resource index is reset. On the other hand, if the resource index is allocated by the RNC, the change rule of the resource index is the same as above.
  • the audit field in step S423 may be an E-RNTI Audit Confirm, and the resource requesting device receives the E-RNTI Audit Confirm field to indicate that the resource is provided.
  • the device has processed the resource confirmation request message sent by the resource requesting device.
  • the audit field in step S513 may be CommEDCH Confirm, and when the resource requesting device receives the CommEDCH Confirm field, it indicates that the resource providing device has processed the resource confirmation request message sent by the resource requesting device.
  • the resource providing device needs to receive multiple resource confirmation request messages from the resource requesting device, where each The first indication information of the resource confirmation request message further includes association information with the next resource confirmation request message, where the association information is used to notify the resource providing device whether the resource index of the resource requested once or the resource itself has been received. . Then, after the step S420 receives all the resource confirmation request messages corresponding to the resource of the one-time request, performing, according to the first indication information, searching, that the resource providing device has been allocated to the resource requesting device, However, the resource requesting device does not acquire the resource.
  • the resource requesting device may request the resource providing device to perform the process of the second embodiment of the method for repairing the resource leakage of the present invention before the triggering of the resource application process other than the first application of the resource, to ensure The resource providing device provides the repaired resource for the resource requesting device.
  • the resource providing device receives the resource confirmation request message from the resource requesting device, where the resource confirmation request message carries the first indication information, where the first indication information is used to indicate
  • the resource requesting device has obtained the resource from the resource providing device; the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource requesting device is a resource that is not acquired; the resource providing device initializes the found resource to an unallocated state. This allows the leaked resources to be reassigned and complete the repair of the resource leak.
  • FIG. 5 is a schematic flowchart diagram of a third embodiment of a method for repairing resource leakage according to the present invention.
  • the resource providing device receives a resource confirmation request message from the resource requesting device, where the resource confirmation request message includes an audit request message AUDIT REQUEST, and the first indication information carried in the audit request message includes a resource index (for example, an E-RNTI Index information, or Common E-DCH System Information Index information, or E-RNTI Group Index information, or the resource itself, the resource index may be any identification information that may correspond to the resource, such as the identifier of the resource or the application batch number;
  • the resource confirmation request message is used to enable the resource providing device to search, according to the resource index or the resource itself, that the resource providing device is marked as being allocated to the resource requesting device, but the resource index is not indicated or The resource that is not included in the resource itself, and initializes the found resource to an unallocated state.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • Step S511 The resource providing device searches for, according to the resource index, a resource that is marked as being allocated to the resource requesting device, but not included in the resource index, in the resource providing device.
  • Step S512 the resource providing device initializes the found resource to an unassigned state.
  • Step S513 the resource providing device sends a resource confirmation response message to the resource requesting device, where the resource confirmation response message includes an audit response message AUDIT RESPONSE, where the audit response message carries an audit field, and the audit field is used to notify The resource requesting device, the resource providing device, has responded to the resource confirmation request message.
  • the resource providing device of the present invention may include a base station (NodeB), and the resource requesting device may include a base station controller (RNC).
  • NodeB nodeB
  • RNC base station controller
  • the resources of the present invention may include at least one of an enhanced uplink dedicated control channel radio network temporary identity E-RNTI and a public enhanced uplink dedicated control channel resource CommEDCH.
  • the E-RNTI of the present invention may be in packet or non-packet form.
  • the audit request message in step S510 is E-RNTI AUDIT REQUEST
  • the audit response message in step S513 is E-RNTI AUDIT RESPONSE 0.
  • the audit request message in step S510 is Common E-DCH System Information AUDIT REQUEST
  • the audit response message in step S513 is Common E-DCH System Information AUDIT RESPONSE.
  • the method for repairing the resource leakage of the present invention may further include:
  • the resource providing device allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device by using a public enhanced uplink dedicated control channel resource message body in a physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, the public enhancement
  • the structure of the uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field Extended E-RNTI, and the extended enhanced uplink dedicated control channel radio network temporary identifier field includes an enhanced uplink dedicated carried in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE
  • the number of control channel radio network temporary identification packets, the packet number of each enhanced uplink dedicated control channel radio network temporary identification packet, and the initial enhanced uplink dedicated control channel radio network in each enhanced uplink dedicated control channel radio network temporary identification packet The number of the temporary identification, the enhanced uplink dedicated control channel included in each of the enhanced uplink dedicated control channel radio network temporary identification packets The number of steps and network temporary identity lines.
  • Table 1 lists the public boost when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the structure of the uplink dedicated control channel resource message body.
  • the structure of the public enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION
  • Extended E-RNTI the extended enhanced uplink dedicated control channel radio network temporary identification packets carried in the RESPONSE, the group index of each enhanced uplink dedicated control channel radio network temporary identification packet, and each enhanced uplink dedicated control
  • the number of the enhanced uplink dedicated control channel radio network temporary identifier packet is a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is less than a positive integer equal to 256; the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each of the enhanced uplink dedicated control channel radio network temporary identification packets is a positive integer equal to or less than 256; each of the enhanced uplink dedicated The number of the enhanced uplink dedicated control channel radio network temporary identifier included in the control channel radio network temporary identification packet is a positive integer equal to or less than 256.
  • for each PHYSICAL SHARED CHANNEL RECONFIGURATION
  • N is the maximum number of allowed E-RNTIs in each E-RNTI GROUP
  • L is within each E-RNTI GROUP
  • S is the maximum number of packets of the E-RNTI GROUP.
  • the S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the resource confirmation item thus received in step S510 also corresponds to the E-RNTI packet.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource providing device reconfigures through a physical shared channel
  • the resource index may be introduced when the publicly-adjusts the uplink dedicated control channel resource, and the resource index may be any identifier information that may be uniquely associated with the resource, such as the identifier of the resource or the application batch number;
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the resource index is allocated by the Node B
  • the resource confirmation request message with the same resource index of the RNC is received, the resource corresponding to the resource index is considered to be confirmed, and when the Node B allocates the next resource index, The resource index corresponding to the confirmed resource is added or decremented by 1 according to the resource index. Otherwise, the Node B still carries the previously allocated unconfirmed resource index number when the next resource is allocated, and the above process is repeated. It can be understood that when the resource index reaches the maximum value or the minimum value, the resource index is reset.
  • the change rule of the resource index is the same as above.
  • the audit field in step S513 may be an E-RNTI Audit Confirm, and the resource requesting device receives the E-RNTI Audit Confirm field to indicate that the resource is provided. The device has processed the resource confirmation request message sent by the resource requesting device.
  • the audit field in step S513 may be CommEDCH Confirm, when the resource requesting device receives the CommEDCH Confirm field, it indicates that the resource providing device has processed the resource confirmation request message sent by the resource requesting device.
  • the resource requesting device may request the resource providing device to perform the process of the second embodiment of the method for repairing the resource leakage of the present invention before the triggering of the resource application process other than the first application of the resource, to ensure The resource providing device provides the repaired resource for the resource requesting device.
  • the resource providing device needs to receive multiple resource confirmation request messages from the resource requesting device, where each The first indication information of the resource confirmation request message further includes association information with the next resource confirmation request message, where the association information is used to notify the resource providing device whether the resource index of the resource requested once or the resource itself has been received.
  • step S511 after all the resource confirmation request messages corresponding to the resource of the one request are received, the process of searching, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, is performed. However, the resource requesting device does not acquire the resource.
  • the resource providing device receives the resource confirmation request message from the resource requesting device, where the resource confirmation request message carries the first indication information, where the first indication information is used to indicate
  • the resource requesting device has obtained the resource from the resource providing device; the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource requesting device is a resource that is not acquired; the resource providing device initializes the found resource to an unallocated state. This allows the leaked resources to be reassigned and complete the repair of the resource leak.
  • FIG. 6 is a schematic flowchart diagram of a fourth embodiment of a method for repairing resource leakage according to the present invention. As shown in Figure 6, it can include:
  • Step S610 The resource providing device receives a resource confirmation request message from the resource requesting device, where the resource confirmation request message includes a physical shared channel reconfiguration request message PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST, and the first carried in the physical shared channel reconfiguration request message
  • the indication information includes a resource index (for example, E-RNTI Index information, or Common E-DCH System Information Index information, or E-RNTI Group Index information) or a resource itself, and the resource index may be a resource identifier or an application batch number.
  • the resource confirmation request message is configured to enable the resource providing device to search, according to the resource index or the resource itself, that the resource providing device is marked as assigned to the The resource requesting device, but the resource in the resource index is not indicated or the resource itself is not included, and the found resource is initialized to an unallocated state.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • Step S611 The resource providing device searches for, according to the resource index, a resource that is marked in the resource providing device as being allocated to the resource requesting device but not included in the resource index.
  • Step S612 The resource providing device initializes the found resource to an unassigned state.
  • Step S613 the resource providing device sends a resource confirmation response message to the resource requesting device, where the resource confirmation response message includes a physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, in the physical shared channel reconfiguration response message. Carrying an audit field, the audit field is used to notify the resource requesting device that the resource providing device has responded to the resource confirmation request message.
  • the resource providing device of the present invention may include a base station (NodeB), and the resource requesting device may include a base station controller (RNC).
  • NodeB nodeB
  • RNC base station controller
  • the resources of the present invention may include at least one of an enhanced uplink dedicated control channel radio network temporary identity E-RNTI and a public enhanced uplink dedicated control channel resource CommEDCH.
  • the E-RNTI of the present invention may be in packet or non-packet form. In some possible implementations, when the E-RNTI of the present invention is in the form of a packet, the method for repairing the resource leakage of the present invention may further include:
  • the resource providing device allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device by using a public enhanced uplink dedicated control channel resource message body in a physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, the public enhancement
  • the structure of the uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field Extended E-RNTI, and the extended enhanced uplink dedicated control channel radio network temporary identifier field includes PHYSICAL SHARED CHANNEL
  • the number of enhanced uplink dedicated control channel radio network temporary identification packets carried in the RECONFIGURATION RESPONSE, the packet number of each enhanced uplink dedicated control channel radio network temporary identification packet, and each enhanced uplink dedicated control channel radio network temporary identification packet And increasing the number of the temporary dedicated control channel radio network temporary identifier, and the number and step size of the enhanced uplink dedicated control channel radio network temporary identifier included in each enhanced uplink dedicated control channel radio network temporary identifier packet.
  • Table 1 lists the public boost when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the uplink dedicated control channel resource message body.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE
  • the number of enhanced temporary uplink dedicated control channel radio network temporary identification packets (Extended E-RNTI), each enhanced uplink dedicated control channel radio network temporary identification packet group number (Group index), each enhanced uplink dedicated control channel radio Network temporary identification group
  • the number of the enhanced uplink dedicated control channel radio network temporary identifier packet is a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is less than a positive integer equal to 256; the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each of the enhanced uplink dedicated control channel radio network temporary identification packets is a positive integer equal to or less than 256; each of the enhanced uplink dedicated The number of the enhanced uplink dedicated control channel radio network temporary identifier included in the control channel radio network temporary identification packet is a positive integer equal to or less than 256.
  • is the maximum number of E-RNTI Groups (E-RNTI GROUP) allowed in each PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE message; N is the maximum allowed E-RNTI within each E-RNTI GROUP The number is L; the maximum step size allowed between E-RNTIs in each E-RNTI GROUP; S is the maximum number of packets in the E-RNTI GROUP. S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the resource confirmation item thus received in step S610 also corresponds to the E-RNTI packet.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource providing device reconfigures through a physical shared channel
  • the resource index may be introduced when the publicly-adjusts the uplink dedicated control channel resource, and the resource index may be any identifier information that may be uniquely associated with the resource, such as the identifier of the resource or the application batch number;
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to a maximum or minimum value. For example, if the resource index is allocated by the Node B, when the resource confirmation request message with the same resource index of the RNC is received, the resource corresponding to the resource index is considered to be confirmed, and when the Node B allocates the next resource index, The resource index corresponding to the confirmed resource is added or decremented by 1 according to the resource index.
  • the Node B still carries the previously allocated unconfirmed resource index number when the next resource is allocated, and the above process is repeated. It can be understood that when the resource index reaches the maximum value or the minimum value, the resource index is reset. On the other hand, if the resource index is allocated by the RNC, the change rule of the resource index is the same as above.
  • the audit field in step S613 may be an E-RNTI Audit Confirm, and the resource requesting device receives the E-RNTI Audit Confirm field to indicate that the resource is provided. The device has processed the resource confirmation request message sent by the resource requesting device.
  • the audit field in step S613 may be CommEDCH Confirm, and when the resource requesting device receives the CommEDCH Confirm field, it indicates that the resource providing device has processed the resource confirmation request message sent by the resource requesting device.
  • the resource providing device needs to receive multiple resource confirmation request messages from the resource requesting device, where each The first indication information of the resource confirmation request message further includes association information with the next resource confirmation request message, where the association information is used to notify the resource providing device whether the resource index of the resource requested once or the resource itself has been received. .
  • the step S611 after receiving all the resource confirmation request messages corresponding to the resource of the one request, the step S610 is configured to search, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, However, the resource requesting device does not acquire the resource.
  • the resource requesting device may use the PHYSICAL SHARED CHANNEL resource providing device to allocate a new resource to the resource requesting device before the other resource request other than the first application for the resource.
  • the resource that the resource requesting device has acquired is repaired, and then the resource allocation is completed, and the resource providing device provides the repaired resource for the resource requesting device.
  • the resource providing device receives the resource confirmation request message from the resource requesting device, where the resource confirmation request message carries the first indication information, where the first indication information is used to indicate The resource requesting device has obtained the resource from the resource providing device And the resource providing device searches for, according to the first indication information, the resource that the resource providing device has allocated to the resource requesting device, but the resource requesting device does not acquire the resource; The discovered resources are initialized to an unassigned state. This allows the leaked resources to be redistributed and complete the repair of resource leaks.
  • FIG. 6.1 is a schematic flowchart diagram of a fifth embodiment of a method for repairing a resource leak according to the present invention. As shown in Figure 6.1, it can include:
  • Step S620 The resource providing device receives a resource confirmation request message, where the resource confirmation request message includes a user status update confirmation request message (UE STATUS UPDATE CONFIRM REQUEST), where the user status update confirmation request message carries the first
  • the indication information includes a resource index (for example, E-RNTI Index information, or Common E-DCH System Information Index information, or E-RNTI Group Index information) or a resource itself, and the resource index may be a resource identifier or an application batch number.
  • the resource confirmation request message is configured to enable the resource providing device to search for the resource requesting device to be assigned to the resource request according to the resource index or the resource itself a device, but the resource is not indicated in the resource index or the resource is not included in the resource itself, and the found resource is initialized to an unallocated state.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • Step S621 The resource providing device searches for, according to the resource index, a resource that is marked as being allocated to the resource requesting device, but not included in the resource index, in the resource providing device.
  • Step S622 the resource providing device initializes the found resource to an unassigned state.
  • Step S623 The resource providing device sends a resource acknowledgment response message to the resource requesting device, where the resource acknowledgment response message includes a UE STATUS UPDATE CONFIRM RESPONSE, where the user status update acknowledge response message is sent.
  • the audit field includes a resource confirmation field (for example, an E-RNTI Audit Confirm field, or a Common E-DCH System Information Audit Confirm field), and/or a resource index (for example, E-RNTI)
  • a resource confirmation field for example, an E-RNTI Audit Confirm field, or a Common E-DCH System Information Audit Confirm field
  • a resource index for example, E-RNTI
  • the index information, or the Common E-DCH System Information Index information, or the E-RNTI Group Index information is used to notify the resource requesting device that the resource providing device has responded to the resource confirmation request message.
  • the resource providing device of the present invention may include a base station (NodeB), and the resource requesting device may include a base station controller (RNC).
  • NodeB nodeB
  • RNC base station controller
  • the resources of the present invention may include at least one of an enhanced uplink dedicated control channel radio network temporary identity E-RNTI and a public enhanced uplink dedicated control channel resource CommEDCH.
  • the E-RNTI of the present invention may be in packet or non-packet form.
  • the method for repairing the resource leakage of the present invention may further include:
  • the resource providing device allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device by using a public enhanced uplink dedicated control channel resource message body in a physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, the public enhancement
  • the structure of the uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field Extended E-RNTI, and the extended enhanced uplink dedicated control channel radio network temporary identifier field includes an enhanced uplink dedicated carried in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE
  • the number of control channel radio network temporary identification packets, the packet number of each enhanced uplink dedicated control channel radio network temporary identification packet, and the initial enhanced uplink dedicated control channel radio network in each enhanced uplink dedicated control channel radio network temporary identification packet The number of the temporary identification, the enhanced uplink dedicated control channel included in each of the enhanced uplink dedicated control channel radio network temporary identification packets The number of steps and network temporary identity lines.
  • Table 1 lists the public boost when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the structure of the uplink dedicated control channel resource message body.
  • Table 1 IE/Group Name Presence Range IE Type
  • the structure of the public enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION
  • Extended E-RNTI the extended enhanced uplink dedicated control channel radio network temporary identification packets carried in the RESPONSE, the group index of each enhanced uplink dedicated control channel radio network temporary identification packet, and each enhanced uplink dedicated control
  • the number of the enhanced uplink dedicated control channel radio network temporary identifier packet is a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is less than a positive integer equal to 256; the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each of the enhanced uplink dedicated control channel radio network temporary identification packets is a positive integer equal to or less than 256; each of the enhanced uplink dedicated The number of the enhanced uplink dedicated control channel radio network temporary identifier included in the control channel radio network temporary identification packet is a positive integer equal to or less than 256.
  • for each PHYSICAL SHARED CHANNEL RECONFIGURATION
  • N is the maximum number of allowed E-RNTIs in each E-RNTI GROUP
  • L is within each E-RNTI GROUP
  • S is the maximum number of packets of the E-RNTI GROUP.
  • the S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the resource confirmation item thus received in step S620 also corresponds to the E-RNTI packet.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource providing device reconfigures through a physical shared channel
  • the resource index may be introduced when the publicly-adjusts the uplink dedicated control channel resource, and the resource index may be any identifier information that may be uniquely associated with the resource, such as the identifier of the resource or the application batch number;
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the resource index is allocated by the Node B
  • the resource confirmation request message with the same resource index of the RNC is received, the resource corresponding to the resource index is considered to be confirmed, and when the Node B allocates the next resource index, The resource index corresponding to the confirmed resource is added or decremented by 1 according to the resource index. Otherwise, the Node B still carries the previously allocated unconfirmed resource index number when the next resource is allocated, and the above process is repeated. It can be understood that when the resource index reaches the maximum value or the minimum value, the resource index is reset.
  • the change rule of the resource index is the same as above.
  • the resource providing device needs to receive multiple resource confirmation request messages from the resource requesting device, where each The first indication information of the resource confirmation request message further includes association information with a next resource confirmation request message, where the association information is used to notify the resource providing device Whether the resource index of the resource of the request once or the resource itself has been received. Then, in step S621, after receiving all the resource confirmation request messages corresponding to the resource of the one request, in step S620, performing, according to the first indication information, searching, that the resource providing device has been allocated to the resource requesting device, However, the resource requesting device does not acquire the resource.
  • the resource requesting device may request the resource providing device to perform the process of the second embodiment of the method for repairing the resource leakage of the present invention before the triggering of the resource application process other than the first application of the resource, to ensure The resource providing device provides the repaired resource for the resource requesting device.
  • the resource providing device receives the resource confirmation request message from the resource requesting device, where the resource confirmation request message carries the first indication information, where the first indication information is used to indicate
  • the resource requesting device has obtained the resource from the resource providing device; the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource requesting device is a resource that is not acquired; the resource providing device initializes the found resource to an unallocated state. This allows the leaked resources to be reassigned and complete the repair of the resource leak.
  • the resource providing device and the resource requesting device may pre-negotiate the resource auditing mechanism.
  • the two parties may negotiate that the resource providing device does not receive the resource after allocating resources to the resource requesting device.
  • the resource providing device Upon the resource confirmation request message sent by the resource requesting device, the resource providing device automatically initializes the already allocated resource to an unallocated state.
  • the embodiment of the present invention further provides a resource providing device, where the resource providing device may be a base station controller, which is used to provide resources for the resource requesting device base station,
  • the resource providing device may be a base station controller, which is used to provide resources for the resource requesting device base station.
  • FIG. 7 is a schematic structural diagram of a first embodiment of a resource requesting device according to an embodiment of a method for modifying a resource leak according to the present invention.
  • the resource requesting device 7 of the present invention may include a requesting module 71, configured to send a resource confirmation request message to a resource providing device, where the resource confirmation request message carries a resource confirmation item, and the resource confirmation item And indicating that the resource requesting device has acquired the resource from the resource providing device, so that the resource providing device determines, according to the resource confirmation item, whether the resource allocated by the resource providing device to the resource requesting device has been successfully allocated. .
  • the resource confirmation request message sent by the requesting module 71 includes a physical shared channel reconfiguration response acknowledgement message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE CONFIRM, and the physical shared channel reconfiguration response is The acknowledgment message carries a resource confirmation item, and when the value of the resource acknowledgment item is confirmed to be confirmed, it indicates that the resource allocated by the resource providing device to the resource requesting device has been acquired by the resource requesting device, when the resource confirmation item is obtained. When the value is not confirmed, the resource that is allocated by the resource providing device to the resource requesting device is not obtained by the resource requesting device;
  • the resource providing device analyzes the value of the resource confirmation item, and when the value of the resource confirmation item is confirmed, determining that the resource allocated by the resource resource providing device to the resource requesting device has been successfully allocated, when the resource confirmation item is taken When the value is not confirmed, determining that the resource allocated by the resource resource providing device to the resource requesting device is not successfully allocated; or, when the resource providing device does not receive the physical shared channel reconfiguration response sent by the resource requesting device And confirming the message, determining that the resource allocated by the resource providing device to the resource requesting device is not successfully allocated.
  • the resource providing device of the present invention may include a base station (NodeB), and the resource requesting device may include a base station controller (RNC).
  • NodeB nodeB
  • RNC base station controller
  • the resources of the present invention may include at least one of an enhanced uplink dedicated control channel radio network temporary identity E-RNTI and a public enhanced uplink dedicated control channel resource CommEDCH.
  • the E-RNTI may be in a packet or non-packet format.
  • the resource carried in the resource confirmation request message sent by the requesting module 71 may be in a packet form. E-RNTI.
  • the enhanced uplink dedicated control channel radio network temporary identifier packet may be a common enhanced uplink dedicated control channel resource message body in the physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE by the resource providing device. The device is requested for the resource allocation.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field Extended E-RNTI, and the extended enhanced uplink dedicated control channel radio network temporary identifier field
  • Extended E-RNTI Extended E-RNTI
  • extended enhanced uplink dedicated control channel radio network temporary identifier field The number of enhanced uplink dedicated control channel radio network temporary identification packets carried in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, the packet number of each enhanced uplink dedicated control channel radio network temporary identification packet, and the enhanced uplink dedicated control channel radio network temporary identifier
  • the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in the packet, and the enhanced uplink dedicated control channel wireless network temporary included in each enhanced uplink dedicated control channel radio network temporary identifier packet The number of tags and the step size.
  • Table 1 lists the public enhancement when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the uplink dedicated control channel resource message body.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE
  • the number of enhanced temporary uplink dedicated control channel radio network temporary identification packets (Extended E-RNTI), each enhanced uplink dedicated control channel radio network temporary identification packet group number (Group index), each enhanced uplink dedicated control channel radio
  • the enhanced uplink dedicated control channel wireless network temporary identifier The number of the packets is a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is a positive integer equal to or less than 256; each of the enhanced uplink dedicated control channel radio network temporary identifiers The number of the initial enhanced uplink dedicated control channel radio network temporary identifier in the packet is a positive integer equal to or less than 256; the enhanced uplink dedicated control channel wireless network temporary included in each of the enhanced uplink dedicated control channel radio network temporary identifier packets The number of identifiers is a positive integer less than or equal to 256.
  • M is the maximum number of E-RNTI Groups (E-RNTI GROUP) allowed in each PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE message;
  • N is the maximum allowed E-RNTI within each E-RNTI GROUP.
  • the number is L; the maximum step size allowed between E-RNTIs in each E-RNTI GROUP;
  • S is the maximum number of packets in the E-RNTI GROUP.
  • the S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource requesting device may request the resource providing device to perform the process of the first embodiment of the method for repairing the resource leakage of the present invention before the triggering of the resource application process other than the first application of the resource, to ensure The resource providing device provides the repaired resource for the resource requesting device.
  • the resource requesting device sends a resource confirmation request message to the resource providing device, where the resource confirmation request message carries a resource confirmation item, so that the resource providing device according to the Determining, by the resource confirmation request message, whether the resource allocated to the resource requesting device has been successfully allocated, and when the resource providing device determines whether the resource allocated by the resource providing device to the resource requesting device is not successfully allocated, the resource is Initialized to an unassigned state. This allows the leaked resources to be redistributed and complete the repair of resource leaks.
  • Figure 7.1 is a block diagram showing the structure of a second embodiment of a resource requesting device of a method embodiment of the present invention, which can be used to implement the present invention.
  • the resource requesting device 701 of the present invention may include a requesting module 7011, where:
  • the requesting module 7011 is configured to send a resource confirmation request message to the resource providing device, where the resource confirmation request message carries the first indication information, where the first indication information is used to indicate that the resource requesting device has been provided by the resource providing device Obtaining a resource, so that the resource providing device is based on the first finger The information is found to be allocated by the resource providing device to the resource requesting device, but the resource requesting device does not acquire the resource, and initializes the found resource to an unallocated state.
  • the resource confirmation request message sent by the requesting module 7011 includes a user status update command message (UE STATUS UPDATE COMMAND), where the user status update command message carries the first indication information, including a resource index (for example, The E-RNTI Index information, or the Common E-DCH System Information Index information, or the E-RNTI Group Index information, or the resource itself, the resource index may be a resource identifier or an application batch number, etc., which may uniquely correspond to the resource.
  • a resource index for example, The E-RNTI Index information, or the Common E-DCH System Information Index information, or the E-RNTI Group Index information, or the resource itself
  • the resource index may be a resource identifier or an application batch number, etc., which may uniquely correspond to the resource.
  • the resource confirmation request message is configured to enable the resource providing device to search, according to the resource index or the resource itself, that the resource providing device is marked as being allocated to the resource requesting device, but the resource index is A resource that is not indicated or not included in the resource itself, and initializes the found resource to an unallocated state.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the resource requesting device needs to send multiple resource confirmation request messages to the resource providing device, where each The first indication information of the resource confirmation request message further includes association information with the next resource confirmation request message, where the association information is used to notify the resource providing device whether the resource index of the resource requested once or the resource itself has been received.
  • the resource providing device of the present invention may include a base station (NodeB), and the resource requesting device may include a base station controller (RNC).
  • NodeB nodeB
  • RNC base station controller
  • the resources of the present invention may include at least one of an enhanced uplink dedicated control channel radio network temporary identity E-RNTI and a public enhanced uplink dedicated control channel resource CommEDCH.
  • the E-RNTI may be in a packet or non-packet format.
  • the resource carried in the resource confirmation request message sent by the requesting module 7011 may be in a packet form.
  • the enhanced uplink dedicated control channel radio network temporary identifier packet may be a common enhanced uplink dedicated control channel resource message body in the physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE by the resource providing device. The device is requested for the resource allocation.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field Extended E-RNTI, and the extended enhanced uplink dedicated control channel radio network temporary identifier field
  • Extended E-RNTI Extended E-RNTI
  • extended enhanced uplink dedicated control channel radio network temporary identifier field The number of enhanced uplink dedicated control channel radio network temporary identification packets carried in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, the packet number of each enhanced uplink dedicated control channel radio network temporary identification packet, and the enhanced uplink dedicated control channel radio network temporary identifier
  • Table 1 lists the public enhancement when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the structure of the uplink dedicated control channel resource message body.
  • the structure of the public enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION
  • Extended E-RNTI the extended enhanced uplink dedicated control channel radio network temporary identification packets carried in the RESPONSE, the group index of each enhanced uplink dedicated control channel radio network temporary identification packet, and each enhanced uplink dedicated control
  • the number of the enhanced uplink dedicated control channel radio network temporary identifier packet may be a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is a positive integer less than or equal to 256; the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each of the enhanced uplink dedicated control channel radio network temporary identifier packets is a positive integer equal to or less than 256; each of the enhanced uplinks The number of the enhanced uplink dedicated control channel radio network temporary identifier included in the dedicated control channel radio network temporary identification packet is a positive integer equal to or less than 256.
  • for each PHYSICAL SHARED CHANNEL RECONFIGURATION
  • N is the maximum number of allowed E-RNTIs in each E-RNTI GROUP
  • L is within each E-RNTI GROUP
  • S is the maximum number of packets of the E-RNTI GROUP.
  • the S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource providing device reconfigures through a physical shared channel
  • the resource index may be introduced when the publicly-adjusts the uplink dedicated control channel resource, and the resource index may be any identifier information that may be uniquely associated with the resource, such as the identifier of the resource or the application batch number;
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the resource index is allocated by the Node B
  • the resource confirmation request message with the same resource index of the RNC is received, the resource corresponding to the resource index is considered to be confirmed, and when the Node B allocates the next resource index, The resource index corresponding to the confirmed resource is added or decremented by 1 according to the resource index. Otherwise, the Node B still carries the previously allocated unconfirmed resource index number when the next resource is allocated, and the above process is repeated. It can be understood that when the resource index reaches the maximum value or the minimum value, the resource index is reset.
  • the change rule of the resource index is the same as above.
  • the resource requesting device may request the resource providing device to perform the process of the first embodiment of the method for repairing the resource leakage of the present invention before the triggering of the resource application process other than the first application of the resource, to ensure The resource providing device provides the repaired resource for the resource requesting device.
  • the resource requesting device sends a resource confirmation request message to the resource providing device, where the resource confirmation request message carries the first indication information
  • the first indication information is used to indicate that the resource requesting device has obtained resources from the resource providing device, so that the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the The resource requests the device, but the resource requests the device to not acquire the resource, and initializes the found resource to an unallocated state. This allows the leaked resources to be redistributed and complete the repair of resource leaks.
  • FIG. 8 is a schematic structural diagram of a third embodiment of a resource requesting device of an embodiment of a method for modifying a resource leak according to the present invention.
  • the resource requesting device 8 of the present invention may include a requesting module 81 and a receiving module 82, wherein:
  • the requesting module 81 is configured to send a resource confirmation request message to the resource providing device, where the resource confirmation request message carries the first indication information, where the first indication information is used to indicate that the resource requesting device has been provided by the resource providing device Acquiring the resource, so that the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource requesting device does not acquire the resource, and The discovered resources are initialized to an unassigned state.
  • the receiving module 82 is configured to receive a resource acknowledgment response message sent by the resource providing device to the resource requesting device, where the resource acknowledgment response message is used to notify the resource requesting device that the resource providing device has responded to the resource acknowledgment Request message.
  • the resource confirmation request message sent by the requesting module 81 includes an audit request message AUDIT REQUEST, where the first indication information carried in the audit request message includes a resource index (for example, E-RNTI Index information, or Common E-DCH System Information Index information, or E-RNTI Group Index information, or the resource itself, the resource index may be any identification information that may be uniquely associated with the resource, such as an identifier of the resource or an application batch number;
  • the request message is used to enable the resource providing device to search, according to the resource index or the resource itself, that the resource providing device is marked as being allocated to the resource requesting device, but the resource index is not indicated or the resource itself Resources not included, and the discovered resources are initialized to an unassigned state.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource requesting device needs to send multiple resource confirmation request messages to the resource providing device, where each The first indication information of the resource confirmation request message further includes association information with the next resource confirmation request message, where the association information is used to notify the resource providing device whether the resource index of the resource requested once or the resource itself has been received.
  • the resource confirmation response message received by the receiving module 82 includes an audit response message AUDIT RESPONSE, where the audit response message carries an audit field, where the audit field is used to notify the resource requesting device The resource providing device has responded to the resource confirmation request message.
  • the resource providing device of the present invention may include a base station (NodeB), and the resource requesting device may include a base station controller (RNC).
  • NodeB nodeB
  • RNC base station controller
  • the resources of the present invention may include at least one of an enhanced uplink dedicated control channel radio network temporary identity E-RNTI and a public enhanced uplink dedicated control channel resource CommEDCH.
  • the E-RNTI may be in a packet or non-packet format.
  • the resource carried in the resource confirmation request message sent by the requesting module 81 may be in a packet form. E-RNTI.
  • the enhanced uplink dedicated control channel radio network temporary identifier packet may be a common enhanced uplink dedicated control channel resource message body in the physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE by the resource providing device. The device is requested for the resource allocation.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field Extended E-RNTI, and the extended enhanced uplink dedicated control channel radio network temporary identifier field
  • Extended E-RNTI Extended E-RNTI
  • extended enhanced uplink dedicated control channel radio network temporary identifier field The number of enhanced uplink dedicated control channel radio network temporary identification packets carried in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, the packet number of each enhanced uplink dedicated control channel radio network temporary identification packet, and the enhanced uplink dedicated control channel radio network temporary identifier
  • the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in the packet, and the enhanced uplink dedicated control channel wireless network temporary included in each enhanced uplink dedicated control channel radio network temporary identifier packet The number of tags and the step size.
  • Table 1 lists the public enhancement when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the uplink dedicated control channel resource message body.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE
  • the number of enhanced temporary uplink dedicated control channel radio network temporary identification packets (Extended E-RNTI), each enhanced uplink dedicated control channel radio network temporary identification packet group number (Group index), each enhanced uplink dedicated control channel radio
  • the enhanced uplink dedicated control channel wireless network temporary identifier The number of the packets may be a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is a positive integer equal to or less than 256; each of the enhanced uplink dedicated control channel radio network temporary The number of the initial enhanced uplink dedicated control channel radio network temporary identifier in the identification packet is a positive integer equal to or less than 256; the enhanced uplink dedicated control channel wireless network included in each of the enhanced uplink dedicated control channel radio network temporary identifier packets The number of temporary identifiers is a positive integer less than or equal to 256.
  • M is the maximum number of E-RNTI Groups (E-RNTI GROUP) allowed in each PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE message;
  • N is the maximum allowed E-RNTI within each E-RNTI GROUP.
  • the number is L; the maximum step size allowed between E-RNTIs in each E-RNTI GROUP;
  • S is the maximum number of packets in the E-RNTI GROUP.
  • the S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource providing device reconfigures through a physical shared channel
  • the resource index may be introduced when the publicly-adjusts the uplink dedicated control channel resource, and the resource index may be any identifier information that may be uniquely associated with the resource, such as the identifier of the resource or the application batch number;
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the resource index is allocated by the Node B, when the resource confirmation request message with the same resource index of the RNC is received, the resource corresponding to the resource index is considered to be confirmed, and when the Node B allocates the next resource index, The resource index corresponding to the confirmed resource is added or decremented by 1 according to the resource index. Otherwise, the Node B still carries the previously allocated unconfirmed resource index number when the next resource is allocated, and the above process is repeated. It can be understood that when the resource index reaches the maximum value or the minimum value, the resource index is reset. On the contrary, if The resource index is allocated by the RNC, and the change rule of the resource index is the same as above.
  • the resource requesting device may request the resource providing device to perform the process of the first embodiment of the method for repairing the resource leakage of the present invention before the triggering of the resource application process other than the first application of the resource, to ensure The resource providing device provides the repaired resource for the resource requesting device.
  • the resource requesting device sends a resource confirmation request message to the resource providing device, where the resource confirmation request message carries the first indication information, where the first indication information is used. And indicating that the resource requesting device has obtained the resource from the resource providing device, so that the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource The resource that the device does not acquire is requested, and the found resource is initialized to an unallocated state. This allows the leaked resources to be redistributed and complete the repair of resource leaks.
  • FIG. 9 is a schematic structural diagram of a fourth embodiment of a resource requesting device of an embodiment of a method for modifying a resource leak according to the present invention.
  • the resource requesting device 9 of the present invention may include a requesting module 91 and a receiving module 92, wherein:
  • the requesting module 91 is configured to send a resource confirmation request message to the resource providing device, where the resource confirmation request message carries the first indication information, where the first indication information is used to indicate that the resource requesting device has been provided by the resource providing device Acquiring the resource, so that the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource requesting device does not acquire the resource, and
  • the discovered resources are initialized to an unassigned state.
  • the receiving module 92 is configured to receive a resource acknowledgment response message sent by the resource providing device to the resource requesting device, where the resource acknowledgment response message is used to notify the resource requesting device that the resource providing device has responded to the resource acknowledgment Request message.
  • the resource confirmation request message sent by the requesting module 91 includes a physical shared channel reconfiguration request message PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST, and the first shared indication information includes the resource in the physical shared channel reconfiguration request message.
  • Index for example, E-RNTI Index information, or Common E-DCH System Information Index information, or E-RNTI Group Index information
  • the resource index may be any identifier of the resource or the application batch number, etc.
  • the resource-recognition request message is configured to enable the resource providing device to search, according to the resource index or the resource itself, that the resource providing device is marked as being allocated to the resource requesting device, However, the resource index does not indicate or the resource that is not included in the resource itself, and initializes the found resource to an unallocated state.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the resource requesting device needs to send multiple resource confirmation request messages to the resource providing device, where each The first indication information of the resource confirmation request message further includes association information with the next resource confirmation request message, where the association information is used to notify the resource providing device whether the resource index of the resource requested once or the resource itself has been received.
  • the resource confirmation response message received by the receiving module 92 includes a physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, where the physical shared channel reconfiguration response message carries an audit field, and the audit field is used to notify the resource request The device resource providing device has responded to the resource confirmation request message.
  • the resource providing device of the present invention may include a base station (NodeB), and the resource requesting device may include a base station controller (RNC).
  • NodeB nodeB
  • RNC base station controller
  • the resources of the present invention may include at least one of an enhanced uplink dedicated control channel radio network temporary identity E-RNTI and a public enhanced uplink dedicated control channel resource CommEDCH.
  • the E-RNTI may be in a packet or non-packet format.
  • the resource carried in the resource confirmation request message sent by the requesting module 91 may be in a packet form. E-RNTI.
  • the enhanced uplink dedicated control channel radio network temporary identifier packet may be a common enhanced uplink dedicated control channel resource message body in the physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE by the resource providing device. The device is requested for the resource allocation.
  • the public enhanced uplink dedicated control channel resource structure And including an extended enhanced dedicated control channel radio network temporary identifier field Extended E-RNTI, where the extended enhanced uplink dedicated control channel radio network temporary identifier field includes an enhanced uplink dedicated control channel radio network temporary identifier group carried in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE Number, the number of each enhanced uplink dedicated control channel radio network temporary identification packet, and the number of the initial enhanced uplink dedicated control channel radio network temporary identification in each enhanced uplink dedicated control channel radio network temporary identification packet, each enhanced The number and step size of the enhanced uplink dedicated control channel radio network temporary identifier included in the uplink dedicated control channel radio network temporary identification packet.
  • the extended enhanced uplink dedicated control channel radio network temporary identifier field includes an enhanced uplink dedicated control channel radio network temporary identifier group carried in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE Number, the number of each enhanced uplink dedicated control channel radio network temporary identification packet, and the number of the initial enhanced uplink dedicated control
  • Table 1 lists the public enhancement when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the uplink dedicated control channel resource message body.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE Number of wireless network temporary identification packets carried by the enhanced uplink dedicated control channel (Extended E-RNTI), each enhanced enhanced uplink dedicated control channel radio network temporary identification packet group number (Group index), each enhanced uplink dedicated control channel radio network temporary identification packet in the initial enhanced uplink dedicated control channel wireless network The number of the temporary identification number (Starting E-RNTI), the number of the enhanced uplink dedicated control channel radio network temporary identification included in each enhanced uplink dedicated control channel radio network temporary identification packet (Number of E-RNTI per group) and the step Long (step of E-RNTI per group).
  • Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE Number of wireless network temporary identification packets carried by the enhanced uplink dedicated control channel (Extended E-RNTI
  • the number of the enhanced uplink dedicated control channel radio network temporary identifier packet may be a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is a positive integer less than or equal to 256; the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each of the enhanced uplink dedicated control channel radio network temporary identifier packets is a positive integer equal to or less than 256; each of the enhanced uplinks The number of the enhanced uplink dedicated control channel radio network temporary identifier included in the dedicated control channel radio network temporary identification packet is a positive integer equal to or less than 256.
  • is the maximum number of E-RNTI GROUPs (E-RNTI GROUP) allowed in each PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE message; N is the maximum allowed E-RNTI within each E-RNTI GROUP. The number is L; the maximum step size allowed between E-RNTIs in each E-RNTI GROUP; S is the maximum number of packets in the E-RNTI GROUP. S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource providing device reconfigures through a physical shared channel
  • the resource index may be introduced when the publicly-adjusts the uplink dedicated control channel resource, and the resource index may be any identifier information that may be uniquely associated with the resource, such as the identifier of the resource or the application batch number;
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the allocation is performed.
  • a resource index is indexed, 1 or minus 1 is added to the resource index corresponding to the confirmed resource; it can be understood that the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the resource index is allocated by the Node B, when the resource confirmation request message with the same resource index of the RNC is received, the resource corresponding to the resource index is considered to be confirmed, and when the Node B allocates the next resource index, The resource index corresponding to the confirmed resource is added or decremented by 1 according to the resource index.
  • the Node B still carries the previously allocated unconfirmed resource index number when the next resource is allocated, and the above process is repeated. It can be understood that when the resource index reaches the maximum value or the minimum value, the resource index is reset. On the other hand, if the resource index is allocated by the RNC, the change rule of the resource index is the same as above.
  • the resource requesting device may request the resource providing device to perform the process of the first embodiment of the method for repairing the resource leakage of the present invention before the triggering of the resource application process other than the first application of the resource, to ensure The resource providing device provides the repaired resource for the resource requesting device.
  • the resource requesting device sends a resource confirmation request message to the resource providing device, where the resource confirmation request message carries the first indication information, where the first indication information is used. And indicating that the resource requesting device has obtained the resource from the resource providing device, so that the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource The resource that the device does not acquire is requested, and the found resource is initialized to an unallocated state. This allows the leaked resources to be redistributed and complete the repair of resource leaks.
  • Figure 9.1 is a block diagram showing the structure of a fifth embodiment of a resource requesting device of a method embodiment for modifying a resource leak of a request for implementing the present invention.
  • the resource requesting device 901 of the present invention may include a requesting module 9011 and a receiving module 9012, where:
  • the requesting module 9011 is configured to send a resource confirmation request message to the resource providing device, where the resource confirmation request message carries the first indication information, where the first indication information is used to indicate that the resource requesting device has received the resource providing device Acquiring the resource, so that the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource requesting device does not acquire the resource, and The discovered resources are initialized to an unassigned state.
  • the receiving module 9012 is configured to receive a resource acknowledgment response message sent by the resource providing device to the resource requesting device, where the resource acknowledgment response message is used to notify the resource requesting device that the resource providing device has responded to the resource acknowledgment Request message.
  • the resource confirmation request message packet sent by the requesting module 9011 The user status update confirmation request message (UE STATUS UPDATE CONFIRM REQUEST), wherein the user status update confirmation request message carries the first indication information including a resource index (for example, E-RNTI Index information, or Common E-DCH System Information Index information).
  • a resource index for example, E-RNTI Index information, or Common E-DCH System Information Index information.
  • the resource index may be any identifier information that may be uniquely associated with the resource, such as an identifier of the resource or an application batch number; the resource confirmation request message is used to enable the resource Providing, according to the resource index or the resource itself, a resource that is marked as being allocated to the resource requesting device, but not indicated in the resource index or not included in the resource itself, and The discovered resource is initialized to an unassigned state.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the resource requesting device needs to send multiple resource confirmation request messages to the resource providing device, where each The first indication information of the resource confirmation request message further includes association information with the next resource confirmation request message, where the association information is used to notify the resource providing device whether the resource index of the resource requested once or the resource itself has been received.
  • the resource confirmation response message received by the receiving module 92 includes a UE STATUS UPDATE CONFIRM RESPONSE, where the user status update confirmation response message carries an audit field, and the audit field includes a resource confirmation field (for example, E-RNTI Audit Confirm field, or Common E-DCH System Information Audit Confirm field), and/or resource index (for example, E-RNTI Index information, or Common E-DCH System Information Index information, or E-RNTI Group Index information) ;), the audit field is used to notify the resource requesting device that the resource providing device has responded to the resource confirmation request message.
  • a resource confirmation field for example, E-RNTI Audit Confirm field, or Common E-DCH System Information Audit Confirm field
  • resource index for example, E-RNTI Index information, or Common E-DCH System Information Index information, or E-RNTI Group Index information
  • the resource providing device of the present invention may include a base station (NodeB), and the resource requesting device may include a base station controller (RNC).
  • NodeB nodeB
  • RNC base station controller
  • the resources of the present invention may include at least one of an enhanced uplink dedicated control channel radio network temporary identifier E-RNTI and a public enhanced uplink dedicated control channel resource CommEDCH.
  • E-RNTI an enhanced uplink dedicated control channel radio network temporary identifier
  • CommEDCH public enhanced uplink dedicated control channel resource
  • the E-RNTI may be in a packet or non-packet format.
  • the resource carried in the resource confirmation request message sent by the requesting module 9011 may be in a packet form. E-RNTI.
  • the enhanced uplink dedicated control channel radio network temporary identifier packet may be a common enhanced uplink dedicated control channel resource message body in the physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE by the resource providing device. The device is requested for the resource allocation.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field Extended E-RNTI, and the extended enhanced uplink dedicated control channel radio network temporary identifier field
  • Extended E-RNTI Extended E-RNTI
  • extended enhanced uplink dedicated control channel radio network temporary identifier field The number of enhanced uplink dedicated control channel radio network temporary identification packets carried in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, the packet number of each enhanced uplink dedicated control channel radio network temporary identification packet, and the enhanced uplink dedicated control channel radio network temporary identifier
  • Table 1 lists the public enhancement when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the structure of the uplink dedicated control channel resource message body.
  • the structure of the public enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION
  • Extended E-RNTI the extended enhanced uplink dedicated control channel radio network temporary identification packets carried in the RESPONSE, the group index of each enhanced uplink dedicated control channel radio network temporary identification packet, and each enhanced uplink dedicated control
  • the number of the enhanced uplink dedicated control channel radio network temporary identifier packet may be a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is a positive integer less than or equal to 256; the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each of the enhanced uplink dedicated control channel radio network temporary identifier packets is a positive integer equal to or less than 256; each of the enhanced uplinks The number of the enhanced uplink dedicated control channel radio network temporary identifier included in the dedicated control channel radio network temporary identification packet is a positive integer equal to or less than 256.
  • for each PHYSICAL SHARED CHANNEL RECONFIGURATION
  • N is the maximum number of allowed E-RNTIs in each E-RNTI GROUP
  • L is within each E-RNTI GROUP
  • S is the maximum number of packets of the E-RNTI GROUP.
  • the S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource providing device reconfigures through a physical shared channel
  • the resource index may be introduced when the publicly-adjusts the uplink dedicated control channel resource, and the resource index may be any identifier information that may be uniquely associated with the resource, such as the identifier of the resource or the application batch number;
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the resource index is allocated by the Node B
  • the resource confirmation request message with the same resource index of the RNC is received, the resource corresponding to the resource index is considered to be confirmed, and when the Node B allocates the next resource index, The resource index corresponding to the confirmed resource is added or decremented by 1 according to the resource index. Otherwise, the Node B still carries the previously allocated unconfirmed resource index number when the next resource is allocated, and the above process is repeated. It can be understood that when the resource index reaches the maximum value or the minimum value, the resource index is reset.
  • the change rule of the resource index is the same as above.
  • the resource requesting device may request the resource providing device to perform the process of the first embodiment of the method for repairing the resource leakage of the present invention before the triggering of the resource application process other than the first application of the resource, to ensure The resource providing device provides the repaired resource for the resource requesting device.
  • the resource requesting device sends a resource confirmation request message to the resource providing device, where the resource confirmation request message carries the first indication information
  • the first indication information is used to indicate that the resource requesting device has obtained resources from the resource providing device, so that the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the The resource requests the device, but the resource requests the device to not acquire the resource, and initializes the found resource to an unallocated state. This allows the leaked resources to be redistributed and complete the repair of resource leaks.
  • Figure 10 is a block diagram showing the structure of a sixth embodiment of a resource requesting device of an embodiment of a method for modifying a resource leak according to the present invention.
  • the resource requesting device 10 of the present invention may include: an input device 101, an output device 102, and a processor 103.
  • the processor 103 of the resource requesting device 10 may be multiple, and only One example is described as an example; in some possible implementations, the input device 101, the output device 102, and the processor 103 may be connected by a bus or other means, and the bus connection is taken as an example in FIG.
  • the processor 103 can perform the following steps:
  • the processor 103 after the processor 103 sends a resource confirmation request message to the resource providing device by using the output device, the processor performs the following steps:
  • the resource confirmation request message includes a user status update command message.
  • the resource confirmation request message includes an audit request message
  • the resource confirmation response message includes an audit response message
  • the resource acknowledgement request message includes a physical shared channel reconfiguration request message
  • the resource acknowledgement response message includes a physical shared channel reconfiguration response message
  • the resource confirmation request message includes a user status update confirmation request message
  • the resource confirmation response message includes a user status update confirmation response message.
  • the first indication information includes a resource index or a resource itself of a resource that the resource requesting device has acquired from the resource providing device.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device;
  • the resource index is allocated by the processor before sending the resource confirmation request message.
  • the resource requesting device needs to send multiple resource confirmation request messages to the resource providing device, where each The first indication information of the resource confirmation request message further includes association information with the next resource confirmation request message, where the association information is used to notify the resource providing device whether the resource index of the resource requested once or the resource itself has been received.
  • the resource includes at least one of an enhanced uplink dedicated control channel radio network temporary identifier and a public enhanced uplink dedicated control channel resource;
  • resources are in a packet or non-packet form.
  • the resource requesting device includes a base station controller.
  • Figure 10.1 is a block diagram showing the structure of a seventh embodiment of a resource requesting device of a method for modifying a resource leak in a request for implementing the present invention.
  • the resource requesting device 1010 of the present invention may include: an input device 1011, an output device 1012, and a processor 1013.
  • the processor 1013 of the resource requesting device 1010 may be multiple, and only in Figure 10.1 An example is given;);
  • the input device 1011, the output device 1012, and the processor 1013 may be connected by a bus or other means, and the bus connection is taken as an example in FIG. 10.1.
  • the processor 1013 can perform the following steps:
  • the resource confirmation request message includes a physical shared channel reconfiguration response confirmation message, where the value of the resource confirmation item includes an acknowledgement and an unacknowledgment, when the resource confirmation item is When the value is an acknowledgment, the resource that is allocated by the resource providing device to the resource requesting device is obtained by the resource requesting device, and when the value of the resource acknowledgment item is not confirmed, the resource providing device is allocated to the The resource of the resource requesting device is not acquired by the resource requesting device.
  • the resource includes at least one of an enhanced uplink dedicated control channel radio network temporary identifier and a public enhanced uplink dedicated control channel resource;
  • resources are in a packet or non-packet form.
  • the resource requesting device includes a base station controller.
  • the resource providing device 11 of the present invention may include a receiving module 111, an analyzing module 112, and a repairing module 113, where:
  • the receiving module 111 is configured to receive, by the resource requesting device, a resource acknowledgment request message, where the resource acknowledgment request message carries a resource acknowledgment item, where the resource acknowledgment item is used to indicate that the resource requesting device has obtained resources from the resource providing device. .
  • the analyzing module 112 is configured to determine, according to the resource confirmation request message received by the receiving module 111, whether the resource allocated by the resource resource providing device to the resource requesting device has been successfully allocated.
  • the repairing module 113 is configured to initialize the resource to an unallocated state when the analyzing module 112 determines whether the resource allocated by the resource providing device to the resource requesting device is not successfully allocated.
  • the resource confirmation request message received by the receiving module i n includes a physical shared channel reconfiguration response confirmation message PHYSICAL SHARED CHANNEL
  • the physical shared channel reconfiguration response confirmation message carries a resource confirmation item, and when the value of the resource confirmation item is confirmed Confirm, indicating that the resource allocated by the resource providing device to the resource requesting device has been When the value of the resource confirmation item is not confirmed, the resource that is allocated by the resource providing device to the resource requesting device is not acquired by the resource requesting device.
  • the analyzing module 112 is specifically configured to analyze the value of the resource confirmation item.
  • the value of the resource confirmation item is confirmed, it is determined that the resource allocated by the resource resource providing device to the resource requesting device has been successfully allocated.
  • the value of the resource confirmation item is not confirmed, determining that the resource allocated by the resource resource providing device to the resource requesting device is not successfully allocated; or, when the receiving module 111 does not receive the resource requesting device, The physical shared channel reconfiguration response acknowledgement message, the analysis module determines that the resource allocated by the resource providing device to the resource requesting device is not successfully allocated.
  • the resource of the present invention may include at least one of an enhanced uplink dedicated control channel radio network temporary identifier E-RNTI and a common enhanced uplink dedicated control channel resource CommEDCH, and the E-RNTI may be in a packet form. .
  • the resource providing device of the present invention may further include:
  • a packet resource configuration module 114 configured to allocate an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device by using a public enhanced uplink dedicated control channel resource message body in a physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE
  • the structure of the public enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field Extended E-RNTI, and the extended enhanced uplink dedicated control channel radio network temporary identifier field includes a PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE Enhancing the number of the temporary dedicated control channel radio network temporary identification packet, the packet number of each enhanced uplink dedicated control channel radio network temporary identification packet, and the initial enhanced uplink dedicated control in each enhanced uplink dedicated control channel radio network temporary identification packet Channel wireless network temporary identification number, each enhanced uplink dedicated control channel wireless network temporary identification packet included in the enhanced uplink dedicated control channel The number of steps and network temporary identity lines.
  • Table 1 lists the public boost when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the structure of the uplink dedicated control channel resource message body.
  • the structure of the public enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION
  • Extended E-RNTI the extended enhanced uplink dedicated control channel radio network temporary identification packets carried in the RESPONSE, the group index of each enhanced uplink dedicated control channel radio network temporary identification packet, and each enhanced uplink dedicated control
  • the number of the enhanced uplink dedicated control channel radio network temporary identifier packet is a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is less than a positive integer equal to 256; the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each of the enhanced uplink dedicated control channel radio network temporary identification packets is a positive integer equal to or less than 256; each of the enhanced uplink dedicated The number of the enhanced uplink dedicated control channel radio network temporary identifier included in the control channel radio network temporary identification packet is a positive integer equal to or less than 256.
  • for each PHYSICAL SHARED CHANNEL RECONFIGURATION
  • N is the maximum number of allowed E-RNTIs in each E-RNTI GROUP
  • L is within each E-RNTI GROUP
  • S is the maximum number of packets of the E-RNTI GROUP.
  • the S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the sending module 115 is configured to send the configured physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE of the packet resource configuration module 114 to the resource requesting device.
  • the resource confirmation item received by the receiving module 111 of the present invention may also be an E-RNTI packet.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource providing device may receive a resource confirmation request message from the resource requesting device, where the resource confirmation request message carries a resource confirmation item, where the resource confirmation item is used to indicate The resource requesting device has obtained the resource from the resource providing device; the resource providing device determines, according to the resource confirmation request message, whether the resource allocated by the resource resource providing device to the resource requesting device has been successfully allocated; When the resource providing device determines whether the resource allocated by the resource providing device to the resource requesting device is not successfully allocated, the resource is initialized to an unallocated state. This allows the leaked resources to be redistributed and complete the repair of the resource leak.
  • the resource providing device 120 of the present invention may include a receiving module 1201, an analyzing module 1202, and a repairing module 1203, where:
  • the receiving module 1201 is configured to receive, by the resource requesting device, a resource acknowledgment request message, where the resource acknowledgment request message carries first indication information, where the first indication information is used to indicate that the resource requesting device has obtained from the resource providing device resource of.
  • the analyzing module 1202 is configured to search, according to the first indication information received by the receiving module 1201, the resource that the resource providing device has allocated to the resource requesting device, but the resource requesting device does not acquire the resource.
  • the repairing module 1203 is configured to initialize the resources found by the analyzing module 1202 into an unallocated state.
  • the receiving, by the receiving module 1201, the received resource confirmation request message includes a user status update command message (UE STATUS UPDATE COMMAND), where the first indication information carried in the user status update command message includes: a resource index (for example, E-RNTI Index information, or Common E-DCH System Information Index information, or E-RNTI Group Index information) or a resource itself, where the resource index may be a resource identifier or an application batch number, etc.
  • a resource index for example, E-RNTI Index information, or Common E-DCH System Information Index information, or E-RNTI Group Index information
  • the resource confirmation request message is configured to enable the resource providing device to search, according to the resource index or the resource itself, that the resource providing device is marked as being allocated to the resource requesting device, but A resource that is not included in the resource index or not included in the resource itself, and initializes the found resource to an unallocated state.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the receiving module of the resource providing device needs to receive multiple resource confirmation request messages from the resource requesting device.
  • the first indication information of each resource confirmation request message further includes association information with a next resource confirmation request message, where the association information is used to notify the resource providing device whether the resource index of the once requested resource has been received. Or the resource itself;
  • the analyzing module is configured to search, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, However, the resource requesting device does not acquire the resource.
  • the resources of the present invention may include at least one of an enhanced uplink dedicated control channel radio network temporary identifier E-RNTI and a common enhanced uplink dedicated control channel resource CommEDCH, and the E-RNTI is in a packet form.
  • the resource providing device of the present invention may further include:
  • a packet resource configuration module 1204 configured to allocate an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device by using a public enhanced uplink dedicated control channel resource message body in a physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE
  • the structure of the public enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field Extended E-RNTI, and the extended enhanced uplink dedicated control channel radio network temporary identifier field includes a PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE Enhancing the number of the temporary dedicated control channel radio network temporary identification packet, the packet number of each enhanced uplink dedicated control channel radio network temporary identification packet, and the initial enhanced uplink dedicated control in each enhanced uplink dedicated control channel radio network temporary identification packet The number of the temporary identification of the channel radio network, and the enhanced uplink dedicated control signal included in each of the enhanced uplink dedicated control channel radio network temporary identification packets And the number of steps of the radio network temporary identity.
  • Table 1 lists the public boost when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the structure of the uplink dedicated control channel resource message body.
  • the structure of the public enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION
  • Extended E-RNTI the extended enhanced uplink dedicated control channel radio network temporary identification packets carried in the RESPONSE, the group index of each enhanced uplink dedicated control channel radio network temporary identification packet, and each enhanced uplink dedicated control
  • the number of the enhanced uplink dedicated control channel radio network temporary identifier packet is a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is less than a positive integer equal to 256; the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each of the enhanced uplink dedicated control channel radio network temporary identification packets is a positive integer equal to or less than 256; each of the enhanced uplink dedicated The number of the enhanced uplink dedicated control channel radio network temporary identifier included in the control channel radio network temporary identification packet is a positive integer equal to or less than 256.
  • for each PHYSICAL SHARED CHANNEL RECONFIGURATION
  • N is the maximum number of allowed E-RNTIs in each E-RNTI GROUP
  • L is within each E-RNTI GROUP
  • S is the maximum number of packets of the E-RNTI GROUP.
  • the S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the sending module 1205 is configured to send the configured physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE of the packet resource configuration module 1204 to the resource requesting device.
  • the resource confirmation item received by the receiving module 1201 of the present invention may also be an E-RNTI packet.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource providing device reconfigures through a physical shared channel
  • the resource index may be introduced when the publicly-adjusts the uplink dedicated control channel resource, and the resource index may be any identifier information that may be uniquely associated with the resource, such as the identifier of the resource or the application batch number;
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the resource index is allocated by the Node B
  • the resource confirmation request message with the same resource index of the RNC is received, the resource corresponding to the resource index is considered to be confirmed, and when the Node B allocates the next resource index, The resource index corresponding to the confirmed resource is added or decremented by 1 according to the resource index. Otherwise, the Node B still carries the previously allocated unconfirmed resource index number when the next resource is allocated, and the above process is repeated. It can be understood that when the resource index reaches the maximum value or the minimum value, the resource index is reset.
  • the change rule of the resource index is the same as above.
  • the resource providing device requests from the resource The device receives the resource confirmation request message, where the resource confirmation request message carries the first indication information, where the first indication information is used to indicate that the resource requesting device has obtained the resource from the resource providing device; Searching, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource requesting device does not acquire the resource; and the resource providing device initializes the found resource to Assign status.
  • the resource providing device 12 of the present invention may include a receiving module 121, an analyzing module 122, a repairing module 123, and a sending module 124, where:
  • the receiving module 121 is configured to receive, by the resource requesting device, a resource acknowledgment request message, where the resource acknowledgment request message carries first indication information, where the first indication information is used to indicate that the resource requesting device has obtained from the resource providing device resource of.
  • the analyzing module 122 is configured to search, according to the first indication information received by the receiving module 121, the resource that the resource providing device has allocated to the resource requesting device, but the resource requesting device does not obtain the resource.
  • the repair module 123 is configured to initialize the resources found by the analysis module 122 to an unassigned state.
  • the sending module 124 is configured to send a resource confirmation response message to the resource requesting device, where the resource confirmation response message is used to notify the resource requesting device that the resource providing device has responded to the resource confirmation request message.
  • the receiving, by the receiving module 121, the received resource confirmation request message includes an audit request message AUDIT REQUEST, and the first indication information carried in the audit request message includes a resource index (for example, an E-RNTI Index information, or Common E-DCH System Information Index information, or E-RNTI Group Index information, or the resource itself, the resource index may be any identification information that may correspond to the resource, such as the identifier of the resource or the application batch number;
  • the resource confirmation request message is used to enable the resource providing device to search, according to the resource index or the resource itself, that the resource providing device is marked as being allocated to the resource requesting device, but the resource index is not indicated or The resource that is not included in the resource itself, and initializes the found resource to an unallocated state.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource corresponding to the resource index is confirmed, when the next resource index is allocated, 1 or minus 1 is added to the resource index corresponding to the confirmed resource; it is understood that when the resource index is incremented
  • the resource index can be reset when it is decremented to the maximum or minimum value.
  • the analyzing module 122 is specifically configured to search, according to the resource index or the resource itself, a resource that is not indicated in the resource index or that is not included in the resource itself but that the resource providing device has allocated to the resource requesting device.
  • the receiving module of the resource providing device needs to receive multiple resource confirmation request messages from the resource requesting device.
  • the first indication information of each resource confirmation request message further includes association information with a next resource confirmation request message, where the association information is used to notify the resource providing device whether the resource index of the once requested resource has been received. Or the resource itself;
  • the analyzing module is configured to search, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, However, the resource requesting device does not acquire the resource.
  • the sending module 124 sends a resource confirmation response message to the resource requesting device, including an audit response message AUDIT RESPONSE, where the audit response message carries an audit field, and the audit field is used to notify the resource requesting device of the resource providing device.
  • the resource confirmation request message has been responded to.
  • the resources of the present invention may include enhancing at least one of an uplink dedicated control channel radio network temporary identifier E-RNTI and a common enhanced uplink dedicated control channel resource CommEDCH, and the E-RNTI is in a packet form.
  • the audit request message received by the receiving module 121 is E-RNTI AUDIT REQUEST
  • the audit response message sent by the sending module 124 is E-RNTI AUDIT RESPONSE.
  • the audit request message received by the receiving module 121 is Common E-DCH System Information AUDIT REQUEST
  • the audit response message sent by the sending module 124 is Common E-DCH System Information AUDIT RESPONSE.
  • the resource providing device of the present invention may further include:
  • a packet resource configuration module 125 configured to reconfigure a response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE through a physical shared channel
  • the control channel resource message body allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device, where the public enhanced uplink dedicated control channel resource structure includes an extended enhanced uplink dedicated control channel radio network temporary identifier field Extended E-RNTI
  • the extended enhanced uplink dedicated control channel radio network temporary identifier field includes the number of enhanced uplink dedicated control channel radio network temporary identifier packets carried in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, and each enhanced uplink dedicated control channel radio network temporary identifier packet a packet number, a number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each enhanced uplink dedicated control channel radio network temporary identifier packet, and an enhanced uplink dedicated included in each enhanced uplink dedicated control channel radio network temporary identifier packet The number and step size of the temporary identification of the control
  • Table 1 lists the public boost when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the uplink dedicated control channel resource message body.
  • the structure of the public enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the extended The E-RNTI field includes the number of enhanced uplink dedicated control channel radio network temporary identification packets (Extended E-RNTI) carried in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, and the packet number of each enhanced uplink dedicated control channel radio network temporary identification packet (Group) Index ), the starting enhanced enhanced uplink dedicated control channel radio network temporary identification number (Starting E-RNTI) in each enhanced uplink dedicated control channel radio network temporary identification packet, and each enhanced uplink dedicated control channel radio network temporary identification packet
  • the number of E-RNTI per group and the step of E-RNTI per group of the enhanced uplink dedicated control channel are included.
  • the number of the enhanced uplink dedicated control channel radio network temporary identifier packet is a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is less than a positive integer equal to 256; the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each of the enhanced uplink dedicated control channel radio network temporary identification packets is a positive integer equal to or less than 256; each of the enhanced uplink dedicated The number of the enhanced uplink dedicated control channel radio network temporary identifier included in the control channel radio network temporary identification packet is a positive integer equal to or less than 256.
  • is the maximum number of E-RNTI Groups (E-RNTI GROUP) allowed in each PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE message; N is the maximum allowed E-RNTI within each E-RNTI GROUP The number is L; the maximum step size allowed between E-RNTIs in each E-RNTI GROUP; S is the maximum number of packets in the E-RNTI GROUP. S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the sending module 124 of the embodiment is further configured to send the physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE configured by the packet resource configuration module 125 to the resource requesting device.
  • the resource confirmation item received by the receiving module 121 of the present invention may also be an E-RNTI packet.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource providing device reconfigures through a physical shared channel
  • the resource index is introduced when the publicly-adjusts the uplink dedicated control channel resource, and the resource index may be any identifier information that can be uniquely associated with the resource, such as the identifier of the resource or the application batch number;
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the resource index is allocated by the Node B
  • the resource confirmation request message with the same resource index of the RNC is received, the resource corresponding to the resource index is considered to be confirmed, and when the Node B allocates the next resource index, The resource index corresponding to the confirmed resource is added or decremented by 1 according to the resource index. Otherwise, the Node B still carries the previously allocated unconfirmed resource index number when the next resource is allocated, and the above process is repeated. It can be understood that when the resource index reaches the maximum value or the minimum value, the resource index is reset.
  • the change rule of the resource index is the same as above.
  • the audit field in the audit response message AUDIT RESPONSE sent by the sending module 124 may be an E-RNTI Audit Confirm, and when the resource requesting device receives the E-RN The RNTI Audit Confirm field indicates that the resource providing device has processed the resource confirmation request message sent by the resource requesting device.
  • the audit field in the audit response message AUDIT RESPONSE sent by the sending module 124 may be a CommEDCH Confirm, and when the resource requesting device receives the CommEDCH Confirm field, it indicates that the resource providing device has sent the resource requesting device. The resource confirmation request message was processed.
  • the resource providing device receives the resource confirmation request message from the resource requesting device, where the resource confirmation request message carries the first indication information, where the first indication information is used to indicate
  • the resource requesting device has obtained the resource from the resource providing device; the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource requesting device is a resource that is not acquired; the resource providing device initializes the found resource to an unallocated state. This allows the leaked resources to be redistributed and complete the repair of resource leaks.
  • the resource providing device 13 of the present invention may include a receiving module 131, an analyzing module 132, a repairing module 133, and a sending module 134, where:
  • the receiving module 131 is configured to receive, by the resource requesting device, a resource acknowledgment request message, where the resource acknowledgment request message carries first indication information, where the first indication information is used to indicate that the resource requesting device has obtained from the resource providing device resource of.
  • the analyzing module 132 is configured to search, according to the first indication information received by the receiving module 131, the resource that the resource providing device has allocated to the resource requesting device, but the resource requesting device does not obtain the resource.
  • the repair module 133 is configured to initialize the resources found by the analysis module 132 to an unassigned state.
  • the sending module 134 is configured to send a resource confirmation response message to the resource requesting device, where the resource confirmation response message is used to notify the resource requesting device that the resource providing device has responded to the resource confirmation request message.
  • the received resource confirmation request message by the receiving module 131 includes a physical shared channel reconfiguration request message PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST, and the first carried in the physical shared channel reconfiguration request message
  • the indication information includes a resource index (for example, E-RNTI Index information, or Common E-DCH System Information Index information, or E-RNTI Group Index information) or a resource itself, and the resource index may be a resource identifier or an application batch number.
  • the resource confirmation request message is configured to enable the resource providing device to search for the resource requesting device to be assigned to the resource request according to the resource index or the resource itself a device, but the resource is not indicated in the resource index or the resource is not included in the resource itself, and the found resource is initialized to an unallocated state.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the analyzing module 132 is specifically configured to search, according to the resource index or the resource itself, a resource that is not indicated in the resource index or not included in the resource itself but that the resource providing device has allocated to the resource requesting device.
  • the receiving module of the resource providing device needs to receive multiple resource confirmation request messages from the resource requesting device.
  • the first indication information of each resource confirmation request message further includes association information with a next resource confirmation request message, where the association information is used to notify the resource providing device whether the resource index of the once requested resource has been received. Or the resource itself;
  • the analyzing module is configured to search, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, However, the resource requesting device does not acquire the resource.
  • the resource acknowledgment response message sent by the sending module 134 includes a physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, where the physical shared channel reconfiguration response message carries an audit field, and the audit field is used to notify the resource.
  • the requesting device said resource providing device has responded to said resource confirmation request message.
  • the resources of the present invention may include enhancing at least one of an uplink dedicated control channel radio network temporary identifier E-RNTI and a common enhanced uplink dedicated control channel resource CommEDCH, and the E-RNTI is in a packet form.
  • the resource providing device of the present invention may further include:
  • a packet resource configuration module 135, configured to allocate, by using a common enhanced uplink dedicated control channel resource message body in a physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, an enhanced uplink dedicated control channel radio network temporary identifier for the resource requesting device, where
  • the structure of the public enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field Extended E-RNTI, and the extended enhanced uplink dedicated control channel radio network temporary identifier field includes a PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE Enhancing the number of the temporary dedicated control channel radio network temporary identification packet, the packet number of each enhanced uplink dedicated control channel radio network temporary identification packet, and the initial enhanced uplink dedicated control in each enhanced uplink dedicated control channel radio network temporary identification packet Channel wireless network temporary identification number, each enhanced uplink dedicated control channel wireless network temporary identification packet included in the enhanced uplink dedicated control channel wireless network The number and identity of the step size.
  • Table 1 lists the public enhanced uplink dedicated control channel resource message body of the NodeB through PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE (Common E-DCH System Information Response) A schematic diagram of a public enhanced uplink dedicated control channel resource message body when the resource requesting device is allocated an enhanced uplink dedicated control channel radio network temporary identifier.
  • the structure of the common enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE
  • the number of enhanced temporary uplink dedicated control channel radio network temporary identification packets (Extended E-RNTI), each enhanced uplink dedicated control channel radio network temporary identification packet group number (Group index), each enhanced uplink dedicated control channel radio
  • the number of the enhanced uplink dedicated control channel radio network temporary identifier packet is a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is less than a positive integer equal to 256; each of the enhanced uplinks
  • the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in the dedicated control channel radio network temporary identification packet is a positive integer equal to or less than 256;
  • the enhancement included in each of the enhanced uplink dedicated control channel radio network temporary identifier packets The number of temporary identifiers of the uplink dedicated control channel radio network is a positive integer less than or equal to 256.
  • M is the maximum number of E-RNTI Groups (E-RNTI GROUP) allowed in each PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE message;
  • N is the maximum allowed E-RNTI within each E-RNTI GROUP.
  • the number is L; the maximum step size allowed between E-RNTIs in each E-RNTI GROUP;
  • S is the maximum number of packets in the E-RNTI GROUP.
  • the S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE message sent by the sending module 134 of this embodiment includes the extended enhanced dedicated dedicated control channel radio network temporary identifier field Extended E-RNTI configured by the packet resource configuration module 134 in addition to the audit field.
  • the resource confirmation item received by the receiving module 131 of the present invention may also be an E-RNTI packet.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource providing device reconfigures through a physical shared channel
  • the resource index may be introduced when the publicly-adjusts the uplink dedicated control channel resource, and the resource index may be any identifier information that may be uniquely associated with the resource, such as the identifier of the resource or the application batch number;
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the resource index is allocated by the Node B, when receiving the resource confirmation request message with the same resource index of the RNC, the resource corresponding to the resource index is considered to be confirmed, and the Node B allocates the next resource.
  • the resource index corresponding to the confirmed resource is added or decremented by one. Otherwise, the Node B still carries the previously allocated unconfirmed resource index number when the next resource is allocated, and the above process is repeated. It can be understood that when the resource index reaches the maximum value or the minimum value, the resource index is reset.
  • the change rule of the resource index is the same as above.
  • the audit field in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE sent by the sending module 134 may be an E-RNTI Audit Confirm, and when the resource requesting device receives the E-RN The RNTI Audit Confirm field indicates that the resource providing device has processed the resource confirmation request message sent by the resource requesting device.
  • the audit field in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE sent by the sending module 134 may be a CommEDCH Confirm, and when the resource requesting device receives the CommEDCH Confirm field, it indicates that the resource providing device has sent the resource requesting device.
  • the resource confirmation request message was processed.
  • the resource providing device receives the resource confirmation request message from the resource requesting device, where the resource confirmation request message carries the first indication information, where the first indication information is used to indicate
  • the resource requesting device has obtained the resource from the resource providing device; the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource requesting device is a resource that is not acquired; the resource providing device initializes the found resource to an unallocated state. This allows the leaked resources to be reassigned and complete the repair of the resource leak.
  • the resource providing device 1301 of the present invention may include a receiving module 1311, an analyzing module 1312, a repairing module 1313, and a sending module 1314, where: a receiving module 1311, configured to receive a resource confirmation request message from a resource requesting device, where The resource confirmation request message carries the first indication information, where the first indication information is used to indicate that the resource requesting device has obtained resources from the resource providing device.
  • the analyzing module 1312 is configured to search, according to the first indication information received by the receiving module 1311, the resource that the resource providing device has allocated to the resource requesting device, but the resource requesting device does not acquire.
  • the repair module 1313 is configured to initialize the resources found by the analysis module 1312 into an unassigned state.
  • the sending module 1314 is configured to send a resource confirmation response message to the resource requesting device, where the resource confirmation response message is used to notify the resource requesting device that the resource providing device has responded to the resource confirmation request message.
  • the receiving, by the receiving module 1311, the received resource confirmation request message includes a UE status update acknowledgement request message (UE STATUS UPDATE CONFIRM REQUEST), where the user status update confirmation request message carries
  • An indication information includes a resource index (for example, E-RNTI Index information, or Common E-DCH System Information Index information, or E-RNTI Group Index information) or a resource itself, and the resource index may be an identifier of a resource or an application batch.
  • the resource confirmation request message is configured to enable the resource providing device to search, according to the resource index or the resource itself, that the resource providing device is marked as being allocated to the resource The device is requested, but the resource is not indicated in the resource index or the resource is not included in the resource itself, and the found resource is initialized to an unallocated state.
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value.
  • the receiving module of the resource providing device needs to receive multiple resource confirmation request messages from the resource requesting device.
  • the first indication information of each resource confirmation request message further includes association information with a next resource confirmation request message, where the association information is used to notify the resource providing device whether the resource index of the once requested resource has been received. Or the resource itself;
  • the analyzing module is configured to search, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, However, the resource requesting device does not acquire the resource.
  • the resource confirmation response message sent by the sending module 1314 includes a user status update confirmation response.
  • the message (UE STATUS UPDATE CONFIRM RESPONSE), the user status update confirmation response message carries an audit field, and the audit field includes a resource confirmation field (for example, an E-RNTIAudit Confirm field, or a Common E-DCH System Information Audit Confirm field) And/or a resource index (for example, E-RNTI Index information, or Common E-DCH System Information Index information, or E-RNTI Group Index information;), the audit field is used to notify the resource requesting device of the resource The providing device has responded to the resource confirmation request message.
  • a resource confirmation field for example, an E-RNTIAudit Confirm field, or a Common E-DCH System Information Audit Confirm field
  • a resource index for example, E-RNTI Index information, or Common E-DCH System Information Index information, or E-RNTI Group Index information
  • the resources of the present invention may include enhancing at least one of an uplink dedicated control channel radio network temporary identifier E-RNTI and a common enhanced uplink dedicated control channel resource CommEDCH, and the E-RNTI is in a packet form.
  • the resource providing device of the present invention may further include:
  • a packet resource configuration module 1315 configured to allocate an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device by using a public enhanced uplink dedicated control channel resource message body in a physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE
  • the structure of the public enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field Extended E-RNTI, and the extended enhanced uplink dedicated control channel radio network temporary identifier field includes a PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE Enhancing the number of the temporary dedicated control channel radio network temporary identification packet, the packet number of each enhanced uplink dedicated control channel radio network temporary identification packet, and the initial enhanced uplink dedicated control in each enhanced uplink dedicated control channel radio network temporary identification packet The number of the temporary identification of the channel radio network, and the enhanced uplink dedicated control signal included in each of the enhanced uplink dedicated control channel radio network temporary identification packets And the number of steps of the radio network temporary identity.
  • Table 1 lists the public boost when the NodeB allocates an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device through the Common E-DCH System Information Response of the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE. Schematic diagram of the structure of the uplink dedicated control channel resource message body.
  • Table 1 IE/Group Name Presence Range IE Type
  • the structure of the public enhanced uplink dedicated control channel resource includes an extended enhanced dedicated control channel radio network temporary identifier field (Extended E-RNTI), and the Extended E-RNTI field includes PHYSICAL SHARED CHANNEL RECONFIGURATION
  • Extended E-RNTI the extended enhanced uplink dedicated control channel radio network temporary identification packets carried in the RESPONSE, the group index of each enhanced uplink dedicated control channel radio network temporary identification packet, and each enhanced uplink dedicated control
  • the number of the enhanced uplink dedicated control channel radio network temporary identifier packet is a positive integer less than or equal to 256; the packet number of each of the enhanced uplink dedicated control channel radio network temporary identifier packets is less than a positive integer equal to 256; the number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each of the enhanced uplink dedicated control channel radio network temporary identification packets is a positive integer equal to or less than 256; each of the enhanced uplink dedicated The number of the enhanced uplink dedicated control channel radio network temporary identifier included in the control channel radio network temporary identification packet is a positive integer equal to or less than 256.
  • for each PHYSICAL SHARED CHANNEL RECONFIGURATION
  • N is the maximum number of allowed E-RNTIs in each E-RNTI GROUP
  • L is within each E-RNTI GROUP
  • S is the maximum number of packets of the E-RNTI GROUP.
  • the S may be uniquely numbered in the overall E-RNTI resource of each cell, that is, the value of S depends on the size of N.
  • the value of M is 256, the value of S is 256, and the value of N is 256.
  • the sending module 1314 of this embodiment is further configured to send a PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE message, where the message includes an extended enhanced dedicated dedicated control channel radio network temporary identifier field Extended E-RNTI configured by the packet resource configuration module 1315.
  • the resource confirmation item received by the receiving module 1311 of the present invention may also be an E-RNTI packet.
  • the E-RNTI of the present invention is in the form of a packet, the data traffic of the IUB interface between the resource providing device and the resource requesting device can be reduced, and the resource allocation and auditing rate can be improved.
  • the resource providing device reconfigures through a physical shared channel
  • the resource index may be introduced when the publicly-adjusts the uplink dedicated control channel resource, and the resource index may be any identifier information that may be uniquely associated with the resource, such as the identifier of the resource or the application batch number;
  • the resource index is allocated by the resource providing device while allocating resources to the resource requesting device; or the resource index is sent by the resource requesting device to send the resource confirmation request. Assign before the message.
  • the resource index can be reset when the resource index is incremented or decremented to the maximum or minimum value. For example, if the resource index is allocated by the Node B, when the resource confirmation request message with the same resource index of the RNC is received, the resource corresponding to the resource index is considered to be confirmed, and when the Node B allocates the next resource index, The resource index corresponding to the confirmed resource is added or decremented by 1 according to the resource index. Otherwise, the Node B still carries the previously allocated unconfirmed resource index number when the next resource is allocated, and the above process is repeated.
  • the resource index reaches the maximum value or the minimum value, the resource index is reset.
  • the change rule of the resource index is the same as above.
  • the audit field in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE sent by the sending module 134 may be an E-RNTI Audit Confirm, and when the resource requesting device receives the E-RN The RNTI Audit Confirm field indicates that the resource providing device has processed the resource confirmation request message sent by the resource requesting device.
  • the audit field in the PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE sent by the sending module 1314 may be a CommEDCH Confirm, and when the resource requesting device receives the CommEDCH Confirm field, it indicates that the resource providing device has sent the resource requesting device.
  • the resource confirmation request message was processed.
  • the resource providing device receives the resource confirmation request message from the resource requesting device, where the resource confirmation request message carries the first indication information, where the first indication information is used to indicate
  • the resource requesting device has obtained the resource from the resource providing device; the resource providing device searches, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource requesting device is a resource that is not acquired; the resource providing device initializes the found resource to an unallocated state. This allows the leaked resources to be reassigned and complete the repair of the resource leak.
  • the resource providing device 14 of the present invention may include: an input device 141, an output device 142, and a processor 143.
  • the processor 143 of the resource providing device 14 may be multiple, and only the An example is given);
  • the input device 141, the output device 142, and the processor 143 may be connected by a bus or other means, and the bus connection is exemplified in FIG.
  • the processor 143 can perform the following steps:
  • the processor allocates the resource providing device to the resource requesting device, but the resource that the resource requesting device does not acquire is initialized to an unallocated state. After that, the following steps are also performed:
  • the resource confirmation request message includes a user status update command message.
  • the resource confirmation request message includes an audit request message
  • the resource confirmation response message includes an audit response message
  • the resource acknowledgement request message includes a physical shared channel reconfiguration request message
  • the resource acknowledgement response message includes a physical shared channel reconfiguration response message
  • the resource confirmation request message includes a user status update confirmation request message
  • the resource confirmation response message includes a user status update confirmation response message
  • the first indication information includes a resource index or a resource itself of a resource that the resource requesting device has acquired from the resource providing device;
  • the processor according to the first indication information, that the resource providing device has been allocated to the resource requesting device, but the resource that the resource requesting device does not obtain includes:
  • the processor searches for resources that are not indicated in the resource index or that are not included in the resource itself but that the resource providing device has allocated to the resource requesting device.
  • the resource index is allocated by the processor while allocating resources to the resource requesting device;
  • the resource index is allocated by the resource requesting device before sending the resource confirmation request message.
  • the processor needs to receive multiple resource confirmation request messages, where each resource is requested by the resource requesting device.
  • the first indication information of the confirmation request message further includes association information with the next resource confirmation request message, where the association information is used to notify the resource providing device whether the resource index of the resource requested once or the resource itself has been received;
  • the processor After the processor receives all the resource confirmation request messages corresponding to the resource that is requested once, the processor performs, according to the first indication information, that the resource providing device has been allocated to the resource requesting device, However, the resource requesting device does not acquire the resource.
  • the resource includes at least one of an enhanced uplink dedicated control channel radio network temporary identifier and a public enhanced uplink dedicated control channel resource; and the resource is in a packet or non-packet form.
  • the processor when the enhanced uplink dedicated control channel wireless network is temporarily identified as a packet form, before the processor receives the resource confirmation request message from the resource requesting device, the processor further performs the following steps:
  • the structure of the common enhanced uplink dedicated control channel resource includes an extension An enhanced uplink dedicated control channel radio network temporary identifier field, where the extended enhanced uplink dedicated control channel radio network temporary identifier field includes the number of enhanced uplink dedicated control channel radio network temporary identifier packets carried in the physical shared channel reconfiguration response message, a packet number of the enhanced uplink dedicated control channel radio network temporary identification packet, a number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each enhanced uplink dedicated control channel radio network temporary identification packet, and each enhanced uplink dedicated control channel The number and step size of the enhanced uplink dedicated control channel wireless network temporary identifier included in the wireless network temporary identification packet.
  • the resource providing device includes a base station.
  • the resource providing device 141 of the present invention may include: an input device 1411, an output device 1412, and a processor 1413.
  • the processor 1413 of the resource providing device 141 may be multiple, and only An example is given);
  • the input device 1411, the output device 1412, and the processor 1413 may be connected by a bus or other means, and the bus connection is taken as an example in FIG. 14.1.
  • the processor 1413 can perform the following steps:
  • the resource acknowledgment request message includes a physical shared channel reconfiguration response acknowledgment message, where the value of the resource acknowledgment item includes acknowledgment and unacknowledgment, and when the value of the resource acknowledgment item is confirmed, indicating The resource allocated by the resource providing device to the resource requesting device is obtained by the resource requesting device, and when the value of the resource confirming item is not confirmed, indicating that the resource allocated by the resource providing device to the resource requesting device is not Resource request device acquisition;
  • Determining, according to the resource confirmation request message, whether the resource allocated by the resource resource providing device to the resource requesting device has been successfully allocated includes:
  • the processor analyzes the value of the resource confirmation item, and determines that the resource allocated by the resource resource providing device to the resource requesting device has been successfully allocated when the value of the resource confirmation item is confirmed, when the value of the resource confirmation item is When it is not confirmed, it is determined that the resource allocated by the resource resource providing device to the resource requesting device is not successfully allocated;
  • the processor determines that the resource allocated by the resource providing device to the resource requesting device is not successfully allocated.
  • the resource includes at least one of an enhanced uplink dedicated control channel radio network temporary identifier and a public enhanced uplink dedicated control channel resource; and the resource is in a packet or non-packet form.
  • the resource providing device when the enhanced uplink dedicated control channel radio network is temporarily identified as a packet, performs the following steps before receiving the resource confirmation request message from the resource requesting device:
  • an enhanced uplink dedicated control channel radio network temporary identifier to the resource requesting device by using a common enhanced uplink dedicated control channel resource message body in the physical shared channel reconfiguration response message, where the structure of the common enhanced uplink dedicated control channel resource includes an extension An enhanced uplink dedicated control channel radio network temporary identifier field, where the extended enhanced uplink dedicated control channel radio network temporary identifier field includes the number of enhanced uplink dedicated control channel radio network temporary identifier packets carried in the physical shared channel reconfiguration response message, a packet number of the enhanced uplink dedicated control channel radio network temporary identification packet, a number of the initial enhanced uplink dedicated control channel radio network temporary identifier in each enhanced uplink dedicated control channel radio network temporary identification packet, and each enhanced uplink dedicated control channel The number of temporary identifications of the enhanced uplink dedicated control channel wireless network included in the wireless network temporary identification packet Step size.
  • the resource providing device includes a base station.
  • the present invention also provides a network system, which may include various embodiments as described in the foregoing resource requesting device and resource providing device of the present invention.
  • a network system which may include various embodiments as described in the foregoing resource requesting device and resource providing device of the present invention.
  • the resource requesting device included in the network system is the resource requesting device shown in FIG. 1, it may include the resource providing device as shown in FIG.
  • the resource requesting device included in the network system is the resource requesting device shown in FIG. 2, it may include the resource providing device as shown in FIG. 12, and so on.
  • the resource application and the repair process of the present invention are closely related.
  • the following describes the message transmission process of the resource application and the audit in combination with several embodiments.
  • FIG. 15 is a schematic flowchart diagram of a first embodiment of message transmission of an application and repair process of an E-RNTI/CommEDCH resource according to the present invention.
  • the application and repair process of the E-RNTI/CommEDCH resource of the present invention may include:
  • Step S10 The RNC requests the E-RNTI/CommEDCH resource from the Node B through the physical shared channel reconfiguration request message PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST.
  • Step SI 1 Node B reconfigures the response message through the physical shared channel PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE sends the E-RNTI/CommEDCH resource to the RNC.
  • Step S12 The RNC re-configures the response confirmation message PHYSICAL through the physical shared channel to request an E-RNTI/CommEDCH resource audit.
  • Figure 15.1 is a flow chart showing the first embodiment of the message transmission of the application and repair process of the E-RNTI/CommEDCH resource according to the present invention.
  • the application and repair process of the NTI/CommEDCH resource of the present invention may include:
  • the application and repair process of the E-RNTI/CommEDCH resource of the present invention may include:
  • Step SOI the RNC requests the E-RNTI/CommEDCH resource from the Node B through the physical shared channel reconfiguration request message PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST.
  • Step S02 The Node B sends the E-RNTI/CommEDCH resource to the RNC through the physical shared channel reconfiguration response message PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE.
  • Step S03 The RNC requests the Node B to perform an E-RNTI/CommEDCH resource audit by using a UE STATUS UPDATE COMMAND message.
  • FIG. 16 is a schematic flowchart diagram of a third embodiment of message transmission of an application and repair process of an E-RNTI resource according to the present invention.
  • the application and repair process of the E-RNTI resource of the present invention may include: Step S20: The RNC requests an E-RNTI resource from the Node B through a physical shared channel reconfiguration request message PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST.
  • Step S21 The Node B re-configures the response message through the physical shared channel PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE to send the E-RNTI resource to the RNC.
  • Step S22 The RNC requests an E-RNTI resource audit from the Node B through an E-RNTI audit request message E-RNTI AUDIT REQUEST.
  • Step S23 The Node B sends an E-RNTI audit response message E-RNTI AUDIT RESPONSE to the RNC, and informs the RNCE-RNTI that the audit is completed.
  • the leaked E-RNTI resources can be redistributed and the resource leakage can be repaired.
  • Figure 17 is a flow chart showing the third embodiment of the message transmission of the application and repair process of the CommEDCH resource of the present invention.
  • the application and repair process of the CommEDCH resource of the present invention may include:
  • Step S30 The RNC requests the CommEDCH resource from the Node B through the physical shared channel reconfiguration request message PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST.
  • Step S31 The Node B retransmits the response message through the physical shared channel PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE to send the CommEDCH resource to the RNC.
  • Step S32 The RNC requests the CommEDCH resource audit from the Node B through the CommEDCH audit request message Common E-DCH System Information AUDIT REQUEST.
  • Step S33 the Node sends a CommEDCH audit response message Common E-DCH System Information AUDIT RESPONSE to the RNC, and informs the RNC that the CommEDCH audit is completed.
  • the leaked CommEDCH resource can be re-allocated and the resource leak can be repaired.
  • FIG. 18 is a schematic flowchart diagram of a fourth embodiment of message transmission of an application and repair process of an E-RNTI/CommEDCH resource according to the present invention.
  • the application and repair process of the E-RNTI/CommEDCH resource of the present invention may include:
  • Step S40 The RNC re-configures the request message through the physical shared channel PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST to request the E-RNTI/CommEDCH resource to the Node B and request the E-RNTI/CommEDCH resource audit before.
  • Step S41 The Node B re-configures the response message through the physical shared channel PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE to send the E-RNTI/CommEDCH resource to the RNC and informs the RNC that the audit of the E-RNTI/CommEDCH resource before the completion is completed.
  • FIG. 19 is a schematic flowchart diagram of a fifth embodiment of message transmission of an application and repair process of an E-RNTI/CommEDCH resource according to the present invention.
  • the application and repair process of the E-RNTI/CommEDCH resource of the present invention may include:
  • Step S50 The RNC requests the E-RNTI/CommEDCH resource from the Node B through the physical shared channel reconfiguration request message PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST.
  • Step S51 The Node B retransmits the response message through the physical shared channel PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE to send the E-RNTI/CommEDCH resource to the RNC.
  • Step S52 The RNC requests an E-RNTI/CommEDCH resource audit from the Node B by using a UE STATUS UPDATE CONFIRM REQUEST.
  • Step S53 The Node B sends a UE Status Update Confirmation Response message (UE STATUS UPDATE CONFIRM RESPONSE) to the RNC, and informs the RNC that the E-RNTI/CommEDCH resource audit is completed.
  • UE STATUS UPDATE CONFIRM RESPONSE UE Status Update Confirmation Response message
  • the foregoing program may be stored in a computer readable storage medium, and when executed, the program includes the steps of the foregoing method embodiment, and the foregoing storage medium includes: ROM, RAM , a variety of media that can store program code, such as a disk or an optical disk.
  • ROM read-only memory
  • RAM random access memory
  • program code such as a disk or an optical disk

Abstract

本发明涉及通信领域,特别涉及一种资源泄漏的修复方法及设备,其中所述资源泄漏的修复方法包括:资源提供设备从资源请求设备接收资源确认请求消息,所述资源确认请求消息中携带第一指示信息,所述第一指示信息用于指示所述资源请求设备已从所述资源提供设备获取的资源;所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经分配给所述资源请求设备,但所述资源请求设备并未获取到的资源;所述资源提供设备将所述查找到的资源初始化为未分配状态。本发明具有可使泄漏的资源获得重分配的机会,完成资源泄漏的修复的优点。

Description

资源泄漏的修复的请求及修复方法、 资源请求及提供设备 技术领域
本发明涉及通信领域, 特别涉及请求对资源泄漏进行修复的方法, 资源泄 漏的修复方法、 资源请求设备及资源提供设备。 背景技术
3GPP R8协议引入了上行 CELL— FACH (终端所处的一种状态)增强功能 ERACH ( Enhanced Random Access Channel, 增强随机接入信道), 支持 UE (终 端)在 CELL— FACH状态釆用 E-DCH ( Enhanced Dedicated Control Channel, 增 强专用控制信道)进行数据传输, 即在 CELL— FACH增强的模式下, 支持上行 CCCH ( Common control Channel, 公共控制信道) /DCCH ( Dedicated Control Channel, 专用控制信道) /DTCH ( Dedicated Traffic Channel, 专用业务信道) 釆用 E-DCH传输, 以减少 UE在数据传输时从 CELL— FACH到 CELL— DCH的 迁移, 降低 UE使用功率, 从而获得更高的峰值速率和 QoS保障。
R8协议修改之前,最初由 NodeB(基站)维护 E-RNTK E-DCH Radio Network Temporary Identifier, E-DCH无线网络临时标识), RNC( Radio Network Controller, 无线网络控制器) 不具备分配 E-RNTI的能力。 由于 UE从 CELL— DCH状态迁 移到 CELL— FACH状态过程中, RNC会同时删除用户在 CELL— DCH 态下的 E-RNTI, 这导致 E-RACH用户在 CELL— FACH态没有 E-RNTI可用。
R8协议修改之后,允许 RNC向 NodeB申请 E-RNTI资源( E-RNTI )。当前, RNC向 NodeB申请 E-RNTI资源的流程大概如下:
Step 1 : RNC通过 PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST (物理共享信道重配置请求消息) 向 NodeB发起共享信道重配请求, 该请求消息通过在消息体 IE "Common E-DCH System Information" 中包含 "E-RNTI Request" 来请求 NodeB为 RNC分配 E-RNTI;
Step 2: NodeB通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE (物理共享信道重配置响应消息)返回共享信道配置结果, 同样通 过 IE "Common E-DCH System Information Response"消息体里的信元 "E-RNTI" (最大 256个元素的数组)携带 E-RNTI资源给 RNC。 上述技术中, 当 NodeB将 E-RNTI资源分配给 RNC后, NodeB不能将这部 分 E-RNTI再分配给 UE。 这样目前的现有技术存在如下缺陷:
当 RNC向 NodeB 申请 E-RNTI资源后, RNC和 NodeB同时持有和管理 E-RNTI, 当 NodeB将 E-RNTI资源分配给 RNC后 , RNC未得到 E-RNTI资源 , 则 RNC不会将该资源分配给 UE, 而 NodeB认为该资源已经分配给 RNC, 则也 不再分配给其他 UE使用, 最终导致这部分 E-RNTI资源无法分配给 UE使用, 造成资源泄漏, 除 E-RNTI资源存在资源泄漏的问题外, 现有技术其他由 RNC 和 NodeB釆用对 E-RNTI资源相同资源分配机制的资源的也同样存在上述缺陷。 发明内容
鉴于此, 本发明提供一种请求对资源进行修复的方法、 资源泄漏的修复方 法及相关设备, 可对泄漏的资源进行重分配, 完成资源修复。
本发明第一方面提供一种请求对资源泄漏进行修复的方法, 可包括: 资源请求设备向资源提供设备发送资源确认请求消息, 所述资源确认请求 消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备已从 所述资源提供设备获取的资源;
以使所述资源提供设备根据所述第一指示信息确定所述第一指示信息所指 示的资源是否已经成功分配。
在第一种可能的实现方式中, 所述资源请求设备向资源提供设备发送资源 确认请求消息之后, 还可包括:
接收所述资源提供设备向所述资源请求设备发送的资源确认响应消息, 所 述资源确认响应消息中携带审计字段;
所述审计字段, 包括资源确认字段和 /或资源索引, 用于告知所述资源请求 设备所述资源提供设备已响应所述资源确认请求消息;
结合第一方面, 在第二种可能的实现方式中, 所述资源确认请求消息包括 用户状态更新命令消息。
结合第一方面的第一种可能的实现方式, 在第三种可能的实现方式中, 所 述资源确认请求消息包括审计请求消息, 且所述资源确认响应消息包括审计响 应消息;
或者, 所述资源确认请求消息包括物理共享信道重配置请求消息, 且所述 资源确认响应消息包括物理共享信道重配置响应消息;
或者, 所述资源确认请求消息包括用户状态更新确认请求消息, 且所述资 源确认响应消息包括用户状态更新确认响应消息。
结合第一方面, 或第一方面的第一种可能的实现方式, 或第一方面的第二 种可能的实现方式, 或第一方面的第三种可能的实现方式, 在第四种可能的实 现方式中, 所述第一指示信息包括所述资源请求设备已从所述资源提供设备获 取的资源的资源索引或资源本身。
结合第一方面的第四种可能的实现方式, 在第五种可能的实现方式中, 所 述资源索引由所述资源提供设备在对所述资源请求设备分配资源同时进行分 配;
或者, 所述资源索引由所述资源请求设备在发送所述资源确认请求消息前 进行分配。
结合第一方面的第四种可能的实现方式, 在第六种可能的实现方式中, 当 一条资源确认请求消息无法携带完一次请求的资源的资源索引或资源本身时 , 所述资源请求设备需向所述资源提供设备发送多条资源确认请求消息, 其中每 条资源确认请求消息的第一指示信息还包括与下一条资源确认请求消息的关联 信息, 所述关联信息用于告知所述资源提供设备是否已经接收完所述一次请求 的资源的资源索引或资源本身。
结合第一方面, 或第一方面的第一种可能的实现方式, 或第一方面的第二 种可能的实现方式, 或第一方面的第三种可能的实现方式, 或第一方面的第四 种可能的实现方式, 或第一方面的第五种可能的实现方式, 或第一方面的第六 种可能的实现方式, 在第七种可能的实现方式中, 所述资源包括增强上行专用 控制信道无线网络临时标识和公共增强上行专用控制信道资源中至少一种; 且所述资源为分组或者非分组形式。
结合第一方面, 或第一方面的第一种可能的实现方式, 或第一方面的第二 种可能的实现方式, 或第一方面的第三种可能的实现方式, 或第一方面的第四 种可能的实现方式, 或第一方面的第五种可能的实现方式, 或第一方面的第六 种可能的实现方式, 或第一方面的第七种可能的实现方式, 在第八种可能的实 现方式中, 所述资源请求设备包括基站控制器, 所述资源提供设备包括基站。
本发明第二方面提供一种请求对资源泄漏进行修复的方法, 可包括: 资源请求设备向资源提供设备发送资源确认请求消息, 所述资源确认请求 消息中携带资源确认项, 所述资源确认项用于指示所述资源请求设备已从所述 资源提供设备获取资源;
以使所述资源提供设备根据所述资源确认请求消息确定所述资源提供设备 分配给所述资源请求设备的资源是否已经成功分配。
在第一种可能的实现方式中, 所述资源确认请求消息包括物理共享信道重 配置响应确认消息, 所述资源确认项的取值包括确认和未确认, 当资源确认项 的取值为确认时, 表明所述资源提供设备分配给所述资源请求设备的资源已被 资源请求设备获取, 当资源确认项的取值为未确认时, 表明所述资源提供设备 分配给所述资源请求设备的资源未被资源请求设备获取。
结合第二方面, 或第二方面的第一种可能的实现方式, 在第二种可能的实 现方式中, 所述资源包括增强上行专用控制信道无线网络临时标识和公共增强 上行专用控制信道资源中至少一种;
且所述资源为分组或者非分组形式。
结合第二方面, 或第二方面的第一种可能的实现方式, 或第二方面的第二 种可能的实现方式, 在第三种可能的实现方式中, 所述资源请求设备包括基站 控制器, 所述资源提供设备包括基站。
本发明第三方面提供一种资源泄漏的修复方法, 可包括:
资源提供设备从资源请求设备接收资源确认请求消息, 所述资源确认请求 消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备已从 所述资源提供设备获取的资源;
所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源;
所述资源提供设备将所述查找到的资源初始化为未分配状态。
在第一种可能的实现方式中, 所述资源提供设备将所述资源提供设备已经 分配给所述资源请求设备, 但所述资源请求设备并未获取到的资源初始化为未 分配状态之后, 还包括:
所述资源提供设备向所述资源请求设备发送资源确认响应消息, 所述资源 确认响应消息中携带审计字段, 所述审计字段, 包括资源确认字段和 /或资源索 引, 用于告知所述资源请求设备所述资源提供设备已响应所述资源确认请求消 在第二种可能的实现方式中, 所述资源确认请求消息包括用户状态更新命 令消息。
结合第三方面的第一种可能的实现方式, 在第三种可能的实现方式中, 所 述资源确认请求消息包括审计请求消息, 且所述资源确认响应消息包括审计响 应消息;
或者, 所述资源确认请求消息包括物理共享信道重配置请求消息, 且所述 资源确认响应消息包括物理共享信道重配置响应消息;
或者, 所述资源确认请求消息包括用户状态更新确认请求消息, 且所述资 源确认响应消息包括用户状态更新确认响应消息。
结合第三方面, 或第三方面的第一种可能的实现方式, 或第三方面的第二 种可能的实现方式, 或第三方面的第三种可能的实现方式, 在第四种可能的实 现方式中, 所述第一指示信息包括所述资源请求设备已从所述资源提供设备获 取的资源的资源索引或资源本身;
所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源包括:
所述资源提供设备查找所述资源索引中未指示或者资源本身中不包括但资 源提供设备已经分配给所述资源请求设备的资源。
结合第三方面的第四种可能的实现方式, 在第五种可能的实现方式中, 所 述资源索引由所述资源提供设备在对所述资源请求设备分配资源同时进行分 配;
或者, 所述资源索引由所述资源请求设备在发送所述资源确认请求消息前 进行分配。
结合第三方面的第四种可能的实现方式, 在第六种可能的实现方式中, 当 一条资源确认请求消息无法携带完一次请求的资源的资源索引或资源本身时 , 所述资源提供设备需向资源请求设备接收多条资源确认请求消息, 其中每条资 源确认请求消息的第一指示信息还包括与下一条资源确认请求消息的关联信 息, 所述关联信息用于告知所述资源提供设备是否已经接收完所述一次请求的 资源的资源索引或资源本身;
所述资源提供设备在当接收完所述一次请求的资源对应的所有资源确认请 求消息后, 执行所述资源提供设备根据所述第一指示信息查找所述资源提供设 备已经分配给所述资源请求设备, 但所述资源请求设备并未获取到的资源的步 骤。
结合第三方面, 或第三方面的第一种可能的实现方式, 或第三方面的第二 种可能的实现方式, 或第三方面的第三种可能的实现方式, 或第三方面的第四 种可能的实现方式, 或第三方面的第五种可能的实现方式, 或第三方面的第六 种可能的实现方式, 在第七种可能的实现方式中, 所述资源包括增强上行专用 控制信道无线网络临时标识和公共增强上行专用控制信道资源中至少一种; 且 所述资源为分组或者非分组形式。
结合第三方面的第七种可能的实现方式, 在第八种可能的实现方式中, 当 所述增强上行专用控制信道无线网络临时标识为分组形式时, 所述资源提供设 备从资源请求设备接收资源确认请求消息之前, 还包括:
所述资源提供设备通过物理共享信道重配置响应消息中的公共增强上行专 用控制信道资源消息体为所述资源请求设备分配增强上行专用控制信道无线网 络临时标识, 所述公共增强上行专用控制信道资源的结构中包括扩展增强上行 专用控制信道无线网络临时标识字段, 所述扩展增强上行专用控制信道无线网 络临时标识字段包括物理共享信道重配置响应消息中携带的增强上行专用控制 信道无线网络临时标识分组的个数, 每一个增强上行专用控制信道无线网络临 时标识分组的分组编号、 每一个增强上行专用控制信道无线网络临时标识分组 中的起始增强上行专用控制信道无线网络临时标识的编号, 每一个增强上行专 用控制信道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络 临时标识的个数和步长。
结合第三方面, 或第三方面的第一种可能的实现方式, 或第三方面的第二 种可能的实现方式, 或第三方面的第三种可能的实现方式, 或第三方面的第四 种可能的实现方式, 或第三方面的第五种可能的实现方式, 或第三方面的第六 种可能的实现方式, 或第三方面的第七种可能的实现方式, 或第三方面的第八 种可能的实现方式, 在第九种可能的实现方式中, 所述资源请求设备包括基站 控制器, 所述资源提供设备包括基站。 本发明第四方面提供一种资源泄漏的修复方法, 可包括: 资源提供设备从资源请求设备接收资源确认请求消息, 所述资源确认请求 消息中携带资源确认项, 所述资源确认项用于指示所述资源请求设备已从所述 资源提供设备获取资源;
所述资源提供设备根据所述资源确认请求消息确定所述资源资源提供设备 分配给所述资源请求设备的资源是否已经成功分配;
当所述资源提供设备确定所述资源提供设备分配给所述资源请求设备的资 源是否未成功分配时, 将所述资源初始化为未分配状态。
在第一种可能的实现方式中, 所述资源确认请求消息包括物理共享信道重 配置响应确认消息, 所述资源确认项的取值包括确认和未确认, 当资源确认项 的取值为确认时, 表明所述资源提供设备分配给所述资源请求设备的资源已被 资源请求设备获取, 当资源确认项的取值为未确认时, 表明所述资源提供设备 分配给所述资源请求设备的资源未被资源请求设备获取;
所述资源提供设备根据所述资源确认请求消息确定所述资源资源提供设备 分配给所述资源请求设备的资源是否已经成功分配包括:
所述资源提供设备分析资源确认项的取值, 当资源确认项的取值为确认时, 确定所述资源资源提供设备分配给所述资源请求设备的资源已经成功分配, 当 资源确认项的取值为未确认时, 确定所述资源资源提供设备分配给所述资源请 求设备的资源未成功分配;
或者, 当所述资源提供设备未收到所述资源请求设备发送的物理共享信道 重配置响应确认消息, 则确定所述资源提供设备分配给所述资源请求设备的资 源未成功分配。
结合第四方面, 或第四方面的第一种可能的实现方式, 在第二种可能的实 现方式中, 所述资源包括增强上行专用控制信道无线网络临时标识和公共增强 上行专用控制信道资源中至少一种; 且所述资源为分组或者非分组形式。
结合第四方面的第二种可能的实现方式, 在第三种可能的实现方式中, 当 所述增强上行专用控制信道无线网络临时标识为分组形式时, 所述资源提供设 备从资源请求设备接收资源确认请求消息之前, 还包括:
所述资源提供设备通过物理共享信道重配置响应消息中的公共增强上行专 用控制信道资源消息体为所述资源请求设备分配增强上行专用控制信道无线网 络临时标识, 所述公共增强上行专用控制信道资源的结构中包括扩展增强上行 专用控制信道无线网络临时标识字段, 所述扩展增强上行专用控制信道无线网 络临时标识字段包括物理共享信道重配置响应消息中携带的增强上行专用控制 信道无线网络临时标识分组的个数, 每一个增强上行专用控制信道无线网络临 时标识分组的分组编号、 每一个增强上行专用控制信道无线网络临时标识分组 中的起始增强上行专用控制信道无线网络临时标识的编号, 每一个增强上行专 用控制信道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络 临时标识的个数和步长。
结合第四方面, 或第四方面的第一种可能的实现方式, 或第四方面的第二 种可能的实现方式, 或第四方面的第三种可能的实现方式, 在第四种可能的实 现方式中, 所述资源请求设备包括基站控制器, 所述资源提供设备包括基站。
本发明第五方面一种资源请求设备, 可包括:
请求模块, 用于向资源提供设备发送资源确认请求消息, 所述资源确认请 求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备已 从所述资源提供设备获取的资源 , 以使所述资源提供设备根据所述第一指示信 息确定所述第一指示信息所指示的资源是否已经成功分配。
在第一种可能的实现方式中, 所述资源请求设备还包括:
接收模块, 用于接收所述资源提供设备向所述资源请求设备发送的资源确 认响应消息, 所述资源确认响应消息中携带审计字段, 所述审计字段, 包括资 源确认字段和 /或资源索引, 用于告知所述资源请求设备所述资源提供设备已响 应所述资源确认请求消息。
在第二种可能的实现方式中, 所述请求模块发送的资源确认请求消息包括 用户状态更新命令消息。
结合第五方面的第一种可能的实现方式, 在第三种可能的实现方式中, 所 述请求模块发送的资源确认请求消息包括审计请求消息, 且所述接收模块接收 的资源确认响应消息包括审计响应消息;
或者, 所述请求模块发送的资源确认请求消息包括物理共享信道重配置请 求消息, 且所述接收模块接收的资源确认响应消息包括物理共享信道重配置响 应消息;
或者, 所述请求模块发送的资源确认请求消息包括用户状态更新确认请求 消息, 且所述接收模块接收的资源确认响应消息包括用户状态更新确认响应消 结合第五方面, 或第五方面的第一种可能的实现方式, 或第五方面的第二 种可能的实现方式, 或第五方面的第三种可能的实现方式, 在第四种可能的实 现方式中, 所述第一指示信息包括所述资源请求设备已从所述资源提供设备获 取的资源的资源索引或资源本身。
结合第五方面的第四种可能的实现方式, 在第五种可能的实现方式中, 所 述资源索引由所述资源提供设备在对所述资源请求设备分配资源同时进行分 配;
或者, 所述资源索引由所述资源请求设备在发送所述资源确认请求消息前 进行分配, 则所述资源请求设备还包括用于分配所述资源索弓!的分配模块。
结合第五方面的第五种可能的实现方式, 在第六种可能的实现方式中, 当 一条资源确认请求消息无法携带完一次请求的资源的资源索引或资源本身时 , 所述资源请求设备需通过所述请求模块向资源提供设备发送多条资源确认请求 消息, 其中每条资源确认请求消息的第一指示信息还包括与下一条资源确认请 求消息的关联信息, 所述关联信息用于告知所述资源提供设备是否已经接收完 所述一次请求的资源的资源索引或资源本身。
结合第五方面, 或第五方面的第一种可能的实现方式, 或第五方面的第二 种可能的实现方式, 或第五方面的第三种可能的实现方式, 或第五方面的第四 种可能的实现方式, 或第五方面的第五种可能的实现方式, 或第五方面的第六 种可能的实现方式, 在第七种可能的实现方式中, 所述资源包括增强上行专用 控制信道无线网络临时标识和公共增强上行专用控制信道资源中至少一种; 且所述资源为分组或者非分组形式。
结合第五方面, 或第五方面的第一种可能的实现方式, 或第五方面的第二 种可能的实现方式, 或第五方面的第三种可能的实现方式, 或第五方面的第四 种可能的实现方式, 或第五方面的第五种可能的实现方式, 或第五方面的第六 种可能的实现方式, 或第五方面的第七种可能的实现方式, 在第八种可能的实 现方式中, 该资源请求设备包括基站控制器。
本发明第六方法提供一种资源请求设备, 可包括:
请求模块, 用于向资源提供设备发送资源确认请求消息, 所述资源确认请 求消息中携带资源确认项, 所述资源确认项用于指示所述资源请求设备已从所 述资源提供设备获取资源; 以使所述资源提供设备根据所述资源确认项确定所 述资源提供设备分配给所述资源请求设备的资源是否已经成功分配。
在第一种可能的实现方式中, 所述请求模块发送的资源确认请求消息包括 物理共享信道重配置响应确认消息, 所述资源确认项的取值包括确认和未确认, 当资源确认项的取值为确认时, 表明所述资源提供设备分配给所述资源请求设 备的资源已被资源请求设备获取, 当资源确认项的取值为未确认时, 表明所述 资源提供设备分配给所述资源请求设备的资源未被资源请求设备获取。
结合第六方面, 或第六方面的第一种可能的实现方式, 在第二种可能的实 现方式中, 所述资源包括增强上行专用控制信道无线网络临时标识和公共增强 上行专用控制信道资源中至少一种;
且所述资源为分组或者非分组形式。
结合第六方面, 或第六方面的第一种可能的实现方式, 或第六方面的第二 种可能的实现方式, 在第三种可能的实现方式中, 该资源请求设备包括基站控 制器。
本发明第七方面提供一种资源提供设备, 可包括:
接收模块, 用于从资源请求设备接收资源确认请求消息, 所述资源确认请 求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备已 从该资源提供设备获取的资源;
分析模块, 用于根据所述第一指示信息查找该资源提供设备已经分配给所 述资源请求设备, 但所述资源请求设备并未获取到的资源;
修复模块, 用于将所述分析模块查找到的资源初始化为未分配状态。
在第一种可能的实现方式中, 该资源提供设备还包括:
发送模块, 用于向所述资源请求设备发送资源确认响应消息, 所述资源确 认响应消息中携带资源单元, 包括资源确认字段和 /或资源索引, 用于告知所述 资源请求设备所述资源提供设备已响应所述资源确认请求消息。
在第二种可能的实现方式中, 所述接收模块所接收到的资源确认请求消息 包括用户状态更新命令消息。
结合第七方面的第一种可能的实现方式, 在第三种可能的实现方式中, 所 述接收模块所接收到的资源确认请求消息包括审计请求消息, 且所述发送模块 所发送的资源确认响应消息包括审计响应消息; 或者, 所述接收模块所接收到的资源确认请求消息包括物理共享信道重配 置请求消息, 且所述发送模块所发送的资源确认响应消息包括物理共享信道重 配置响应消息;
或者, 所述接收模块所接收到的资源确认请求消息包括用户状态更新确认 请求消息, 且所述发送模块所发送的资源确认响应消息包括用户状态更新确认 响应消息。
结合第七方面, 或第七方面的第一种可能的实现方式, 或第七方面的第二 种可能的实现方式, 或第七方面的第三种可能的实现方式, 在第四种可能的实 现方式中, 所述第一指示信息包括所述资源请求设备已从所述资源提供设备获 取的资源的资源索引或资源本身;
所述分析模块具体用于根据所述资源索引或者资源本身 , 查找所述资源索 引中未指示或者资源本身中不包括但资源提供设备已经分配给所述资源请求设 备的资源。
结合第七方面的第四种可能的实现方式, 在第五种可能的实现方式中, 当 一条资源确认请求消息无法携带完一次请求的资源的资源索引或资源本身时 , 所述资源提供设备的接收模块需从资源请求设备接收多条资源确认请求消息, 其中每条资源确认请求消息的第一指示信息还包括与下一条资源确认请求消息 的关联信息, 所述关联信息用于告知所述资源提供设备是否已经接收完所述一 次请求的资源的资源索引或资源本身;
当所述接收模块接收完所述一次请求的资源对应的所有资源确认请求消息 后, 所述分析模块用于根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源。
结合第七方面, 或第七方面的第一种可能的实现方式, 或第七方面的第二 种可能的实现方式, 或第七方面的第三种可能的实现方式, 或第七方面的第四 种可能的实现方式, 或第七方面的第五种可能的实现方式, 在第六种可能的实 现方式中, 所述资源包括增强上行专用控制信道无线网络临时标识和公共增强 上行专用控制信道资源中至少一种; 且所述资源为分组或者非分组形式。
结合第七方面的第六种可能的实现方式, 在第七种可能的实现方式中, 当 所述增强上行专用控制信道无线网络临时标识为分组形式, 所述资源提供设备 还包括: 分组资源配置模块, 用于通过物理共享信道重配置响应消息中的公共增强 上行专用控制信道资源消息体为所述资源请求设备分配增强上行专用控制信道 无线网络临时标识分组, 所述公共增强上行专用控制信道资源的结构中包括扩 展增强上行专用控制信道无线网络临时标识字段, 所述扩展增强上行专用控制 信道无线网络临时标识字段包括物理共享信道重配置响应消息中携带的增强上 行专用控制信道无线网络临时标识分组的个数, 每一个增强上行专用控制信道 无线网络临时标识分组的分组编号、 每一个增强上行专用控制信道无线网络临 时标识分组中的起始增强上行专用控制信道无线网络临时标识的编号, 每一个 增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控制信 道无线网络临时标识的个数和步长。
结合第七方面, 或第七方面的第一种可能的实现方式, 或第七方面的第二 种可能的实现方式, 或第七方面的第三种可能的实现方式, 或第七方面的第四 种可能的实现方式, 或第七方面的第五种可能的实现方式, 或第七方面的第六 种可能的实现方式, 或第七方面的第七种可能的实现方式, 在第八种可能的实 现方式中, 包括基站; 所述资源请求设备包括基站控制器。
本发明第八方面提供一种资源提供设备, 可包括:
接收模块, 用于从资源请求设备接收资源确认请求消息, 所述资源确认请 求消息中携带资源确认项, 所述资源确认项用于指示所述资源请求设备已从所 述资源提供设备获取资源;
分析模块, 用于根据根据所述资源确认请求消息确定所述资源资源提供设 备分配给所述资源请求设备的资源是否已经成功分配;
修复模块, 用于当所述分析模块确定所述资源提供设备分配给所述资源请 求设备的资源是否未成功分配时, 将所述资源初始化为未分配状态。
在第一种可能的实现方式中, 所述接收模块所接收的所述资源确认请求消 息包括物理共享信道重配置响应确认消息, 所述资源确认项的取值包括确认和 未确认, 当资源确认项的取值为确认时, 表明所述资源提供设备分配给所述资 源请求设备的资源已被资源请求设备获取, 当资源确认项的取值为未确认时, 表明所述资源提供设备分配给所述资源请求设备的资源未被资源请求设备获 取;
所述分析模块具体用于分析资源确认项的取值, 当资源确认项的取值为确 认时, 确定所述资源资源提供设备分配给所述资源请求设备的资源已经成功分 配, 当资源确认项的取值为未确认时, 确定所述资源资源提供设备分配给所述 资源请求设备的资源未成功分配;
或者, 当所述接收模块未收到所述资源请求设备发送的物理共享信道重配 置响应确认消息, 则所述分析模块确定所述资源提供设备分配给所述资源请求 设备的资源未成功分配。
结合第八方面, 或第八方面的第一种可能的实现方式, 在第二种可能的实 现方式中, 所述资源包括增强上行专用控制信道无线网络临时标识和公共增强 上行专用控制信道资源中至少一种; 且所述资源为分组或者非分组形式。
结合第八方面的第二种可能的实现方式, 在第三种可能的实现方式中, 当 所述增强上行专用控制信道无线网络临时标识为分组形式, 所述资源提供设备 还包括:
分组资源配置模块, 用于通过物理共享信道重配置响应消息中的公共增强 上行专用控制信道资源消息体为所述资源请求设备分配增强上行专用控制信道 无线网络临时标识分组, 所述公共增强上行专用控制信道资源的结构中包括扩 展增强上行专用控制信道无线网络临时标识字段, 所述扩展增强上行专用控制 信道无线网络临时标识字段包括物理共享信道重配置响应消息中携带的增强上 行专用控制信道无线网络临时标识分组的个数, 每一个增强上行专用控制信道 无线网络临时标识分组的分组编号、 每一个增强上行专用控制信道无线网络临 时标识分组中的起始增强上行专用控制信道无线网络临时标识的编号, 每一个 增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控制信 道无线网络临时标识的个数和步长。
结合第八方面, 或第八方面的第一种可能的实现方式, 或第八方面的第二 种可能的实现方式, 或第八方面的第三种可能的实现方式, 在第四种可能的实 现方式中, 所述资源提供设备包括基站; 所述资源请求设备包括基站控制器。
本发明第九方面提供一种资源请求设备, 可包括: 输入装置、 输出装置和 处理器, 其中, 所述处理器执行如下步骤:
通过所述输出装置向资源提供设备发送资源确认请求消息, 所述资源确认 请求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备 已从所述资源提供设备获取的资源; 以使所述资源提供设备根据所述第一指示信息确定所述第一指示信息所指 示的资源是否已经成功分配。
在第一种可能的实现方式中, 所述通过所述输出装置向资源提供设备发送 资源确认请求消息之后, 还包括:
通过所述输入装置接收所述资源提供设备向所述资源请求设备发送的资源 确认响应消息, 所述资源确认响应消息中携带资源单元, 包括资源确认字段和 / 或资源索引, 用于告知所述资源请求设备所述资源提供设备已响应所述资源确 认请求消息。
结合第九方面, 在第二种可能的实现方式中, 所述资源确认请求消息包括 用户状态更新命令消息。
结合第九方面的第一种可能的实现方式, 在第三种可能的实现方式中, 所 述资源确认请求消息包括审计请求消息, 且所述资源确认响应消息包括审计响 应消息;
或者, 所述资源确认请求消息包括物理共享信道重配置请求消息, 且所述 资源确认响应消息包括物理共享信道重配置响应消息;
或者, 所述资源确认请求消息包括用户状态更新确认请求消息, 且所述资 源确认响应消息包括用户状态更新确认响应消息。
结合第九方面, 或第九方面的第一种可能的实现方式, 或第九方面的第二 种可能的实现方式, 或第九方面的第三种可能的实现方式, 在第四种可能的实 现方式中, 所述第一指示信息包括所述资源请求设备已从所述资源提供设备获 取的资源的资源索引或资源本身。
结合第九方面的第四种可能的实现方式, 在第五种可能的实现方式中, 所 述资源索引由所述资源提供设备在对所述资源请求设备分配资源同时进行分 配;
或者, 所述资源索引由所述处理器在发送所述资源确认请求消息前进行分 配。
结合第九面的第四种可能的实现方式, 在第六种可能的实现方式中, 当一 条资源确认请求消息无法携带完一次请求的资源的资源索引或资源本身时 , 所 述资源请求设备需向资源提供设备发送多条资源确认请求消息, 其中每条资源 确认请求消息的第一指示信息还包括与下一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资源提供设备是否已经接收完所述一次请求的资源 的资源索引或资源本身。
结合第九方面, 或第九方面的第一种可能的实现方式, 或第九方面的第二 种可能的实现方式, 或第九方面的第三种可能的实现方式, 或第九方面的第四 种可能的实现方式, 或第九方面的第五种可能的实现方式, 或第九方面的第六 种可能的实现方式, 在第七种可能的实现方式中, 所述资源包括增强上行专用 控制信道无线网络临时标识和公共增强上行专用控制信道资源中至少一种; 且所述资源为分组或者非分组形式。
结合第九方面, 或第九方面的第一种可能的实现方式, 或第九方面的第二 种可能的实现方式, 或第九方面的第三种可能的实现方式, 或第九方面的第四 种可能的实现方式, 或第九方面的第五种可能的实现方式, 或第九方面的第六 种可能的实现方式, 或第九方面的第七种可能的实现方式, 在第八种可能的实 现方式中, 所述资源请求设备包括基站控制器。
本发明第十方面提供一种资源请求设备, 可包括: 输入装置、 输出装置和 处理器, 其中, 所述处理器执行如下步骤:
通过所述输出装置向资源提供设备发送资源确认请求消息, 所述资源确认 请求消息中携带资源确认项, 所述资源确认项用于指示所述资源请求设备已从 所述资源提供设备获取资源;
以使所述资源提供设备根据所述资源确认项确定所述资源提供设备分配给 所述资源请求设备的资源是否已经成功分配。
在第一种可能的实现方式中, 所述资源确认请求消息包括物理共享信道重 配置响应确认消息, 所述资源确认项的取值包括确认和未确认, 当资源确认项 的取值为确认时, 表明所述资源提供设备分配给所述资源请求设备的资源已被 资源请求设备获取, 当资源确认项的取值为未确认时, 表明所述资源提供设备 分配给所述资源请求设备的资源未被资源请求设备获取。
结合第十方面, 或第十方面的第一种可能的实现方式, 在第二种可能的实 现方式中, 所述资源包括增强上行专用控制信道无线网络临时标识和公共增强 上行专用控制信道资源中至少一种;
且所述资源为分组或者非分组形式。
结合第十方面, 或第十方面的第一种可能的实现方式, 或第十方面的第二 种可能的实现方式, 在第三种可能的实现方式中, 所述资源请求设备包括基站 控制器。
本发明第十一方面提供一种资源提供设备, 可包括: 输入装置、 输出装置 和处理器, 其中, 所述处理器执行如下步骤:
通过所述输入装置从资源请求设备接收资源确认请求消息, 所述资源确认 请求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备 已从所述资源提供设备获取的资源;
根据所述第一指示信息查找所述资源提供设备已经分配给所述资源请求设 备, 但所述资源请求设备并未获取到的资源;
将所述查找到的资源初始化为未分配状态。
在第一种可能的实现方式中, 所述处理器将所述资源提供设备已经分配给 所述资源请求设备, 但所述资源请求设备并未获取到的资源初始化为未分配状 态之后, 还执行如下步骤:
通过所述输出装置向所述资源请求设备发送资源确认响应消息, 所述资源 确认响应消息中携带资源单元, 包括资源确认字段和 /或资源索引, 用于告知所 述资源请求设备所述资源提供设备已响应所述资源确认请求消息。
在第二种可能的实现方式中, 所述资源确认请求消息包括用户状态更新命 令消息。
结合第十一方面的第一种可能的实现方式, 在第三种可能的实现方式中, 所述资源确认请求消息包括审计请求消息, 且所述资源确认响应消息包括审计 响应消息;
或者, 所述资源确认请求消息包括物理共享信道重配置请求消息, 且所述 资源确认响应消息包括物理共享信道重配置响应消息;
或者, 所述资源确认请求消息包括用户状态更新确认请求消息, 且所述资 源确认响应消息包括用户状态更新确认响应消息。
结合第十一方面, 或第十一方面的第一种可能的实现方式, 或第十一方面 的第二种可能的实现方式, 或第十一方面的第三种可能的实现方式, 在第四种 可能的实现方式中, 所述第一指示信息包括所述资源请求设备已从所述资源提 供设备获取的资源的资源索引或资源本身;
所述处理器根据所述第一指示信息查找所述资源提供设备已经分配给所述 资源请求设备, 但所述资源请求设备并未获取到的资源包括:
所述处理器查找所述资源索引中未指示或者资源本身中不包括但资源提供 设备已经分配给所述资源请求设备的资源。
结合第十一方面的第四种可能的实现方式, 在第五种可能的实现方式中, 所述资源索引由所述处理器在对所述资源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备在发送所述资源确认请求消息前 进行分配。
结合第十一方面的第四种可能的实现方式, 在第六种可能的实现方式中, 当一条资源确认请求消息无法携带完一次请求的资源的资源索引或资源本身 时, 所述处理器需向资源请求设备接收多条资源确认请求消息, 其中每条资源 确认请求消息的第一指示信息还包括与下一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资源提供设备是否已经接收完所述一次请求的资源 的资源索引或资源本身;
所述处理器在当所述输入装置接收完所述一次请求的资源对应的所有资源 确认请求消息后, 执行根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源的步骤。
结合第十一方面, 或第十一方面的第一种可能的实现方式, 或第十一方面 的第二种可能的实现方式, 或第十一方面的第三种可能的实现方式, 或第十一 方面的第四种可能的实现方式, 或第十一方面的第五种可能的实现方式, 或第 十一方面的第六种可能的实现方式, 在第七种可能的实现方式中, 所述资源包 括增强上行专用控制信道无线网络临时标识和公共增强上行专用控制信道资源 中至少一种; 且所述资源为分组或者非分组形式。
结合第十一方面的第七种可能的实现方式, 在第八种可能的实现方式中, 当所述增强上行专用控制信道无线网络临时标识为分组形式时, 所述处理器从 资源请求设备接收资源确认请求消息之前, 还执行如下步骤:
通过物理共享信道重配置响应消息中的公共增强上行专用控制信道资源消 息体为所述资源请求设备分配增强上行专用控制信道无线网络临时标识, 所述 公共增强上行专用控制信道资源的结构中包括扩展增强上行专用控制信道无线 网络临时标识字段, 所述扩展增强上行专用控制信道无线网络临时标识字段包 括物理共享信道重配置响应消息中携带的增强上行专用控制信道无线网络临时 标识分组的个数, 每一个增强上行专用控制信道无线网络临时标识分组的分组 编号、 每一个增强上行专用控制信道无线网络临时标识分组中的起始增强上行 专用控制信道无线网络临时标识的编号, 每一个增强上行专用控制信道无线网 络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的个数和 步长。
结合第十一方面, 或第十一方面的第一种可能的实现方式, 或第十一方面 的第二种可能的实现方式, 或第十一方面的第三种可能的实现方式, 或第十一 方面的第四种可能的实现方式, 或第十一方面的第五种可能的实现方式, 或第 十一方面的第六种可能的实现方式, 或第十一方面的第七种可能的实现方式, 或第十一方面的第八种可能的实现方式, 在第九种可能的实现方式中, 所述资 源提供设备包括基站。
本发明第十二方面提供一种资源提供设备, 可包括: 输入装置、 输出装置 和处理器, 其中, 所述处理器执行如下步骤:
通过所述输入装置从资源请求设备接收资源确认请求消息, 所述资源确认 请求消息中携带资源确认项, 所述资源确认项用于指示所述资源请求设备已从 所述资源提供设备获取资源;
根据所述资源确认请求消息确定所述资源资源提供设备分配给所述资源请 求设备的资源是否已经成功分配;
当确定所述资源提供设备分配给所述资源请求设备的资源是否未成功分配 时, 将所述资源初始化为未分配状态。
在第一种可能的实现方式中, 所述资源确认请求消息包括物理共享信道重 配置响应确认消息, 所述资源确认项的取值包括确认和未确认, 当资源确认项 的取值为确认时, 表明所述资源提供设备分配给所述资源请求设备的资源已被 资源请求设备获取, 当资源确认项的取值为未确认时, 表明所述资源提供设备 分配给所述资源请求设备的资源未被资源请求设备获取;
所述处理器根据所述资源确认请求消息确定所述资源资源提供设备分配给 所述资源请求设备的资源是否已经成功分配包括:
所述处理器分析资源确认项的取值, 当资源确认项的取值为确认时, 确定 所述资源资源提供设备分配给所述资源请求设备的资源已经成功分配, 当资源 确认项的取值为未确认时, 确定所述资源资源提供设备分配给所述资源请求设 备的资源未成功分配;
或者, 当所述输入装置未收到所述资源请求设备发送的物理共享信道重配 置响应确认消息, 则所述处理器确定所述资源提供设备分配给所述资源请求设 备的资源未成功分配。
结合第十二方面, 或第十二方面的第一种可能的实现方式, 在第二种可能 的实现方式中, 所述资源包括增强上行专用控制信道无线网络临时标识和公共 增强上行专用控制信道资源中至少一种; 且所述资源为分组或者非分组形式。
结合第十二方面的第二种可能的实现方式, 在第三种可能的实现方式中, 当所述增强上行专用控制信道无线网络临时标识为分组形式时, 所述资源提供 设备从资源请求设备接收资源确认请求消息之前, 还执行如下步骤:
通过物理共享信道重配置响应消息中的公共增强上行专用控制信道资源消 息体为所述资源请求设备分配增强上行专用控制信道无线网络临时标识, 所述 公共增强上行专用控制信道资源的结构中包括扩展增强上行专用控制信道无线 网络临时标识字段, 所述扩展增强上行专用控制信道无线网络临时标识字段包 括物理共享信道重配置响应消息中携带的增强上行专用控制信道无线网络临时 标识分组的个数, 每一个增强上行专用控制信道无线网络临时标识分组的分组 编号、 每一个增强上行专用控制信道无线网络临时标识分组中的起始增强上行 专用控制信道无线网络临时标识的编号, 每一个增强上行专用控制信道无线网 络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的个数和 步长。
结合第十二方面, 或第十二方面的第一种可能的实现方式, 或第十二方面 的第二种可能的实现方式, 或第十二方面的第三种可能的实现方式, 在第四种 可能的实现方式中, 该资源提供设备包括基站。
本发明第十三方面提供一种网络系统, 可包括本发明第五方面所述的资源 请求设备和本发明第七方面所述的资源提供设备。
本发明第十四方面提供一种网络系统, 可包括本发明第六方面所述的资源 请求设备和本发明第八方面所述的资源提供设备。
本发明第十五方面提供一种网络系统, 可包括本发明第九方面所述的资源 请求设备和本发明第十一方面所述的资源提供设备。
本发明第十六方面提供一种计算机存储介质, 该计算机存储介质可存储有 程序, 给程序执行时可包括本发明所述方法的部分或全部步骤。 由上可见, 在本发明的一些可行的实施方式中, 资源提供设备可从资源请 求设备接收资源确认请求消息 , 所述资源确认请求消息中携带第一指示信息 , 所述第一指示信息用于指示所述资源请求设备已从所述资源提供设备获取的资 源; 所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源; 并将所述查找 到的资源初始化为未分配状态。 由此可使泄漏的资源获得重分配的机会, 完成 资源泄漏的修复。 或者, 资源提供设备可从资源请求设备接收资源确认请求消 息, 所述资源确认请求消息中携带资源确认项, 所述资源确认项用于指示所述 资源请求设备已从所述资源提供设备获取资源; 所述资源提供设备根据所述资 源确认请求消息确定所述资源资源提供设备分配给所述资源请求设备的资源是 否已经成功分配; 当所述资源提供设备确定所述资源提供设备分配给所述资源 请求设备的资源是否未成功分配时, 将所述资源初始化为未分配状态。 由此可 使泄漏的资源获得重分配的机会, 完成资源泄漏的修复。 附图说明
图 1 为本发明的请求对资源泄漏进行修复的方法的第一实施例的流程示意 图;
图 1.1 为本发明的请求对资源泄漏进行修复的方法的第二实施例的流程示 意图;
图 2 为本发明的请求对资源泄漏进行修复的方法的第三实施例的流程示意 图;
图 3 为本发明的请求对资源泄漏进行修复的方法的第四实施例的流程示意 图;
图 3.1 为本发明的请求对资源泄漏进行修复的方法的第五实施例的流程示 意图;
图 4为本发明的资源泄漏的修复方法的第一实施例的流程示意图; 图 4.1为本发明的资源泄漏的修复方法的第二实施例的流程示意图; 图 5为本发明的资源泄漏的修复方法的第三实施例的流程示意图; 图 6为本发明的资源泄漏的修复方法的第四实施例的流程示意图; 图 6.1为本发明的资源泄漏的修复方法的第五实施例的流程示意图; 图 7为本发明的资源请求设备的第一实施例的结构组成示意图;
图 7.1为本发明的资源请求设备的第二实施例的结构组成示意图; 图 8为本发明的资源请求设备的第三实施例的结构组成示意图;
图 9为本发明的资源请求设备的第四实施例的结构组成示意图;
图 9.1为本发明的资源请求设备的第五实施例的结构组成示意图; 图 10为本发明的资源请求设备的第六实施例的结构组成示意图; 图 10.1为本发明的资源请求设备的第七实施例的结构组成示意图; 图 11为本发明的资源提供设备的第一实施例的结构组成示意图; 图 11.1为本发明的资源提供设备的第二实施例的结构组成示意图; 图 12为本发明的资源提供设备的第三实施例的结构组成示意图; 图 13为本发明的资源提供设备的第四实施例的结构组成示意图; 图 13.1为本发明的资源提供设备的第五实施例的结构组成示意图; 图 14为本发明的资源提供设备的第六实施例的结构组成示意图; 图 14.1为本发明的资源提供设备的第七实施例的结构组成示意图; 图 15为本发明的资源的申请及修复过程的消息传输的第一实施例流程示意 图 15.1为本发明的资源的申请及修复过程的消息传输的第二实施例流程示 图 16为本发明的资源的申请及修复过程的消息传输的第三实施例流程示意 图 17为本发明的资源的申请及修复过程的消息传输的第三实施例流程示意 图 18为本发明的资源的申请及修复过程的消息传输的第四实施例流程示意 图 19为本发明的资源的申请及修复过程的消息传输的第五实施例流程示意
具体实施例 在本发明的一些可行的实施方式中, 资源提供设备可从资源请求设备接收 资源确认请求消息, 所述资源确认请求消息中携带第一指示信息, 所述第一指 示信息用于指示所述资源请求设备已从所述资源提供设备获取的资源; 所述资 源提供设备根据所述第一指示信息查找所述资源提供设备已经分配给所述资源 请求设备, 但所述资源请求设备并未获取到的资源; 并将所述查找到的资源初 始化为未分配状态。 由此可使泄漏的资源获得重分配的机会, 完成资源泄漏的 修复。
此时, 资源请求设备侧的处理流程包括:
向资源提供设备发送资源确认请求消息 , 所述资源确认请求消息中携带第 一指示信息, 所述第一指示信息用于指示所述资源请求设备已从所述资源提供 设备获取的资源;
以使所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经 分配给所述资源请求设备, 但所述资源请求设备并未获取到的资源, 并将所述 查找到的资源初始化为未分配状态。
而资源提供设备侧的处理流程包括:
从资源请求设备接收资源确认请求消息, 所述资源确认请求消息中携带第 一指示信息, 所述第一指示信息用于指示所述资源请求设备已从所述资源提供 设备获取的资源;
所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源;
所述资源提供设备将所述查找到的资源初始化为未分配状态。
或者, 资源提供设备可从资源请求设备接收资源确认请求消息, 所述资源 确认请求消息中携带资源确认项, 所述资源确认项用于指示所述资源请求设备 已从所述资源提供设备获取资源; 所述资源提供设备根据所述资源确认请求消 息确定所述资源资源提供设备分配给所述资源请求设备的资源是否已经成功分 配; 当所述资源提供设备确定所述资源提供设备分配给所述资源请求设备的资 源是否未成功分配时, 将所述资源初始化为未分配状态。 由此可使泄漏的资源 获得重分配的机会, 完成资源泄漏的修复。
此时, 资源请求设备侧的处理流程包括:
资源请求设备向资源提供设备发送资源确认请求消息, 所述资源确认请求 消息中携带资源确认项, 所述资源确认项用于指示所述资源请求设备已从所述 资源提供设备获取资源;
以使所述资源提供设备根据所述资源确认项确定所述资源提供设备分配给 所述资源请求设备的资源是否已经成功分配。
资源提供设备侧的处理流程包括:
资源提供设备从资源请求设备接收资源确认请求消息, 所述资源确认请求 消息中携带资源确认项, 所述资源确认项用于指示所述资源请求设备已从所述 资源提供设备获取资源;
所述资源提供设备根据所述资源确认请求消息确定所述资源资源提供设备 分配给所述资源请求设备的资源是否已经成功分配;
当所述资源提供设备确定所述资源提供设备分配给所述资源请求设备的资 源是否未成功分配时, 将所述资源初始化为未分配状态。
下面将结合附图对本发明实施例作进一步地详细描述。
图 1 为本发明的请求对资源泄漏进行修复的方法的第一实施例的流程示意 图。 如图 1所示, 其可包括:
步骤 S110, 资源请求设备向资源提供设备发送资源确认请求消息, 所述资 源确认请求消息包括物理共享信道重配置响应确认消息( PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE CONFIRM ), 所述物理共享信道 重配置响应确认消息中携带资源确认项, 所述资源确认项用于指示所述资源请 求设备已从所述资源提供设备获取资源; 当所述资源确认项的取值为确认 ( Confirmed ) 时, 表明所述资源提供设备分配给所述资源请求设备的资源已被 资源请求设备获取, 当资源确认项的取值为未确认(Not— Confirmed ) 时, 表明 所述资源提供设备分配给所述资源请求设备的资源未被资源请求设备获取。
所述资源提供设备分析资源确认项的取值, 当资源确认项的取值为确认时, 确定所述资源资源提供设备分配给所述资源请求设备的资源已经成功分配, 当 资源确认项的取值为未确认时, 确定所述资源资源提供设备分配给所述资源请 求设备的资源未成功分配; 或者, 当所述资源提供设备未收到所述资源请求设 备发送的物理共享信道重配置响应确认消息, 则确定所述资源提供设备分配给 所述资源请求设备的资源未成功分配。
在一些可行的实施方式中, 本发明的资源提供设备可包括基站(NodeB ), 所述资源请求设备可包括基站控制器( RNC )。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种。
在一些可行的实施方式中, E-RNTI 可为分组或非分组形式, 当本发明的 E-RNTI为分组形式时, 在步骤 S110时, 所述资源确认请求消息中携带的资源 可为分组形式的 E-RNTI。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组可由所述资源提供设备通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增强上行专用 控制信道资源消息体为所述资源请求设备分配。
在一些可行的实施方式中, 所述公共增强上行专用控制信道资源的结构中 包括扩展增强上行专用控制信道无线网络临时标识字段 Extended E-RNTI, 所述 扩展增强上行专用控制信道无线网络临时标识字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中携带的增强上行专用控制信道 无线网络临时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标 识分组的分组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的 起始增强上行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控 制信道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时 标识的个数和步长。 表 1列举了 NodeB通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的结构示意图。
表 1 : IE/Group Name Presence Range IE Type
and
Reference
UL Common MAC Flow L. xmaxno
Specific Information ofCommonM
Response ACFlows»
E-RNTI 0 9.2.2.139
Extended E-RNTI 0 0...<M>
>Group Index M 0...<S-1> 组编号
>Starting E-RNTI M 起始
E-RNTI
> Number of E-RNTI per M 1 ...N 组内
group E-RNTI个
>Step of E-RNTI per M 1 ...L 组内
group E-RNTI的
步长 如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index )、 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无线 网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上行 专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网络 临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信道 无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的 个数为小于等于 256 的正整数。 在表 1 中, Μ 为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; S为 E-RNTI GROUP的最大分组数; L为每个 E-RNTI GROUP内 E-RNTI 之间允许的最大步长。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S的取值取决于 N的大小。例如 N取值为 8,那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
当本发明的 E-RNTI为分组形式时,可减少资源提供设备与资源请求设备之 间的 IUB接口的数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 所述资源提供设备通过物理共享信道重配置响 所述公共增强上行专用控制信道资源时引入资源索引 , 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息;
在一些可行的实施方式中, 资源请求设备可在除首次申请资源的之外的其 他资源申请流程触发之前, 先请求资源提供设备执行本发明资源泄漏的修复方 法的第一实施例的流程 , 确保资源提供设备为资源请求设备提供修复好的资源。
由上可见, 在本发明的一些可行的实施方式中, 从资源请求设备向资源提 供设备发送资源确认请求消息, 所述资源确认请求消息中携带资源确认项; 以 使所述资源提供设备根据所述资源确认请求消息确定其分配给资源请求设备的 资源是否已经分配成功, 当所述资源提供设备确定所述资源提供设备分配给所 述资源请求设备的资源是否未成功分配时, 将所述资源初始化为未分配状态。 由此可使泄漏的资源获得重分配的机会, 完成资源泄漏的修复。
图 1.1 为本发明的请求对资源泄漏进行修复的方法的第二实施例的流程示 意图。 如图 1.1所示, 其可包括:
步骤 S120, 资源请求设备向资源提供设备发送资源确认请求消息, 所述资 源确认请求消息包括用户状态更新命令消息 ( UE STATUS UPDATE COMMAND ),所述用户状态更新命令消息中携带的第一指示信息包括资源索引 ( t匕^口, E-RNTI Index信息、, 或者 Common E-DCH System Information Index 信息, 或者 E-RNTI Group Index信息)或者资源本身, 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息; 所述资源确 认请求消息用于使所述资源提供设备根据所述资源索引或者资源本身, 查找所 述资源提供设备中标记为已分配给所述资源请求设备, 但所述资源索引中未指 示或所述资源本身未包括的资源, 并将所述查找到的资源初始化为未分配状态。
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 在分配 下一条资源时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 , 可以理 解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。
在一些可行的实施方式中, 当一条资源确认请求消息无法携带完一次请求 的资源的资源索引或资源本身时, 所述资源请求设备需向资源提供设备发送多 条资源确认请求消息, 其中每条资源确认请求消息的第一指示信息还包括与下 一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资源提供设备 是否已经接收完所述一次请求的资源的资源索引或资源本身。
在一些可行的实施方式中, 本发明的资源提供设备可包括基站(NodeB ), 所述资源请求设备可包括基站控制器( RNC )。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种。
在一些可行的实施方式中, E-RNTI 可为分组或非分组形式, 当本发明的 E-RNTI为分组形式时, 在步骤 S120时, 所述资源确认请求消息中携带的资源 可为分组形式的 E-RNTI。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组可由所述资源提供设备通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增强上行专用 控制信道资源消息体为所述资源请求设备分配。
在一些可行的实施方式中, 所述公共增强上行专用控制信道资源的结构中 包括扩展增强上行专用控制信道无线网络临时标识字段 Extended E-RNTI, 所述 扩展增强上行专用控制信道无线网络临时标识字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中携带的增强上行专用控制信道 无线网络临时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标 识分组的分组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的 起始增强上行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控 制信道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时 标识的个数和步长。 表 1列举了 NodeB通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的 示意图。
Figure imgf000030_0001
如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index )、 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数可为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无 线网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上 行专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网 络临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信 道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识 的个数为小于等于 256的正整数。 在表 1 中, Μ为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; L为每个 E-RNTI GROUP内 E-RNTI之间允许的最大步长; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
当本发明的 E-RNTI为分组形式时,可减少资源提供设备与资源请求设备之 间的 IUB接口的数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 所述资源提供设备通过物理共享信道重配置响
所述公共增强上行专用控制信道资源时引入资源索引 , 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息;
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 例 如, 如果资源索引由 Node B分配, 当收到 RNC的带有相同资源索引的资源确 认请求消息时, 则认为所述资源索引对应的资源被确认, Node B分配下一条资 源索引时,在所述被确认的资源对应的资源索引基础上加 1或减 1 ,否则 Node B 分配下一条资源时仍然携带之前分配的未确认的资源索引号, 上述过程重复。 可以理解的是, 当资源索引达到最大值或最小值, 资源索引重置。 反之, 如果 资源索引由 RNC分配, 所述资源索引的变化规则同上。
在一些可行的实施方式中, 资源请求设备可在除首次申请资源的之外的其 他资源申请流程触发之前, 先请求资源提供设备执行本发明资源泄漏的修复方 法的第一实施例的流程 , 确保资源提供设备为资源请求设备提供修复好的资源。
由上可见, 在本发明的一些可行的实施方式中, 从资源请求设备向资源提 供设备发送资源确认请求消息 , 所述资源确认请求消息中携带第一指示信息 , 所述第一指示信息用于指示所述资源请求设备已从所述资源提供设备获取的资 源; 以使所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经 分配给所述资源请求设备, 但所述资源请求设备并未获取到的资源, 并将所述 查找到的资源初始化为未分配状态。 由此可使泄漏的资源获得重分配的机会, 完成资源泄漏的修复。
图 2 为本发明的请求对资源泄漏进行修复的方法的第三实施例的流程示意 图。 如图 2所示, 其可包括:
步骤 S210, 资源请求设备向资源提供设备发送资源确认请求消息, 所述资 源确认请求消息包括审计请求消息( AUDIT REQUEST ), 所述审计请求消息中 携带第一指示信息包括资源索引 (比如, E-RNTI Index信息, 或者 Common E-DCH System Information Index信息, 或者 E-RNTI Group Index信息)或者资 源本身, 所述资源索引可为资源的标识或者申请批次编号等任何可以与资源唯 一对应的标识信息; 所述资源确认请求消息用于使所述资源提供设备根据所述 资源索引或者资源本身, 查找所述资源提供设备中标记为已分配给所述资源请 求设备, 但所述资源索引中未指示或所述资源本身未包括的资源, 并将所述查 找到的资源初始化为未分配状态。
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。
在一些可行的实施方式中, 当一条资源确认请求消息无法携带完一次请求 的资源的资源索引或资源本身时, 所述资源请求设备需向资源提供设备发送多 条资源确认请求消息, 其中每条资源确认请求消息的第一指示信息还包括与下 一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资源提供设备 是否已经接收完所述一次请求的资源的资源索引或资源本身。
步骤 S211 , 资源请求设备接收所述资源提供设备向所述资源请求设备发送 的资源确认响应消息, 所述资源确认响应消息包括审计响应消息 ( AUDIT RESPONSE ), 所述审计响应消息中携带审计字段, 所述审计字段包括资源确认 字段(比如, E-RNTI Audit Confirm字段,或者 Common E-DCH System Information Audit Confirm字段;),和 /或资源索引(比如, E-RNTI Index信息,或者 Common E-DCH System Information Index信息, 或者 E-RNTI Group Index信息), 所述审 计字段用于告知所述资源请求设备所述资源提供设备已响应所述资源确认请求 消息。
在一些可行的实施方式中, 本发明的资源提供设备可包括基站(NodeB ), 所述资源请求设备可包括基站控制器( RNC )。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种。
在一些可行的实施方式中, E-RNTI 可为分组或非分组形式, 当本发明的 E-RNTI为分组形式时, 在步骤 S210时, 所述资源确认请求消息中携带的资源 可为分组形式的 E-RNTI。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组可由所述资源提供设备通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增强上行专用 控制信道资源消息体为所述资源请求设备分配。
在一些可行的实施方式中, 所述公共增强上行专用控制信道资源的结构中 包括扩展增强上行专用控制信道无线网络临时标识字段 Extended E-RNTI, 所述 扩展增强上行专用控制信道无线网络临时标识字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中携带的增强上行专用控制信道 无线网络临时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标 识分组的分组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的 起始增强上行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控 制信道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时 标识的个数和步长。 表 1列举了 NodeB通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的 示意图。
Figure imgf000034_0001
如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index ), 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数可为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无 线网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上 行专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网 络临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信 道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识 的个数为小于等于 256的正整数。 在表 1 中, Μ为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; L为每个 E-RNTI GROUP内 E-RNTI之间允许的最大步长; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S 的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
当本发明的 E-RNTI为分组形式时,可减少资源提供设备与资源请求设备之 间的 IUB接口的数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 所述资源提供设备通过物理共享信道重配置响
所述公共增强上行专用控制信道资源时引入资源索引 , 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息;
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 例 如, 如果资源索引由 Node B分配, 当收到 RNC的带有相同资源索引的资源确 认请求消息时, 则认为所述资源索引对应的资源被确认, Node B分配下一条资 源对应的资源索引号加 1或减 1 , 否则 Node B分配下一条资源时仍然携带之前 分配的未确认的资源索引号, 上述过程重复。 可以理解的是, 当资源索引达到 最大值或最小值, 资源索引重置。 反之, 如果资源索引由 RNC分配, 所述资源 索引的变化规则同上。
在一些可行的实施方式中, 资源请求设备可在除首次申请资源的之外的其 他资源申请流程触发之前, 先请求资源提供设备执行本发明资源泄漏的修复方 法的第一实施例的流程 , 确保资源提供设备为资源请求设备提供修复好的资源。
由上可见, 在本发明的一些可行的实施方式中, 从资源请求设备向资源提 供设备发送资源确认请求消息 , 所述资源确认请求消息中携带第一指示信息 , 所述第一指示信息用于指示所述资源请求设备已从所述资源提供设备获取的资 源; 以使所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经 分配给所述资源请求设备, 但所述资源请求设备并未获取到的资源, 并将所述 查找到的资源初始化为未分配状态。 由此可使泄漏的资源获得重分配的机会, 完成资源泄漏的修复。
图 3 为本发明的请求对资源泄漏进行修复的方法的第四实施例的流程示意 图。 如图 3所示, 其可包括:
步骤 S310, 资源请求设备向资源提供设备发送资源确认请求消息, 所述资 源确认请求消息包括物理共享信道重配置请求消息 ( PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST ) , 所述物理共享信道重配置请求消 息中携带的第一指示信息包括资源索引 (比如, E-RNTI Index 信息, 或者 Common E-DCH System Information Index信息 ,或者 E-RNTI Group Index信息 ) 或者资源本身, 所述资源索引可为资源的标识或者申请批次编号等任何可以与 资源唯一对应的标识信息; 所述资源确认请求消息用于使所述资源提供设备根 据所述资源索引或者资源本身, 查找所述资源提供设备中标记为已分配给所述 资源请求设备, 但所述资源索引中未指示或所述资源本身未包括的资源, 并将 所述查找到的资源初始化为未分配状态。
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。
例如,如果资源索引 N由 RNC分配, 当 RNC收到 Node B的带有相同资源 索引 N 的物理共享信道重配置响应消息 (PHYSICAL SHARED CHANNEL
RECONFIGURATION RESPONSE ) 时, 则 RNC认为所述资源索引 N对应的资 源被确认, RNC分配下一条物理共享信道重配置请求消息( PHYSICAL SHARED
CHANNEL RECONFIGURATION REQUEST )对应的的资源索引号加 1(N+1)或 减 l(N-l), 否则 RNC 分配下一条物理共享信道重配置请求消息 (PHYSICAL
SHARED CHANNEL RECONFIGURATION REQUEST )对应的资源索 I时仍然 携带之前分配的未确认的资源索引 N, 上述过程重复。 可以理解的是, 当资源 索引达到最大值或最小值, 资源索引重置。反之,如果资源索引由 Node B分配, 所述资源索引的变化规则同上。
在一些可行的实施方式中, 当一条资源确认请求消息无法携带完一次请求 的资源的资源索引或资源本身时, 所述资源请求设备需向资源提供设备发送多 条资源确认请求消息, 其中每条资源确认请求消息的第一指示信息还包括与下 一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资源提供设备 是否已经接收完所述一次请求的资源的资源索引或资源本身。
步骤 S311 , 资源请求设备接收所述资源提供设备向所述资源请求设备发送 的资源确认响应消息, 所述资源确认响应消息包括物理共享信道重配置响应消 息( PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE ), 所述 物理共享信道重配置响应消息中携带审计字段, 所述审计字段包括资源确认字 段和 /或资源索引, 所述审计字段用于告知所述资源请求设备所述资源提供设备 已响应所述资源确认请求消息。
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 例如, 如果资源索引记为 N ( N为整数 ), 且由 RNC分配, 当 Node B收到 RNC的带有资源索引 N的物理共享信道重配置请求消息( PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST ) 时, Node B在物理共享信道重配 置 响应 消 息 ( PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE ) 中携带收到的资源索引 N; RNC收到 Node B的带有 RNC分配的 资源索引 N时, 则认为该资源索引 N对应的资源被确认, RNC在分配下一条物 理共 享信道重 配 置请求 消 息 ( PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST )时携带的资源索引为 N+l或 N-l ,否则 RNC 在分配下一条物理共享信道重配置请求消息 (PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST )对应的资源索引时仍然携带之前分配的未确 认的资源索引 N, 上述过程重复; 可以理解的是, 当资源索引达到最大值或最 小值, 资源索引重置。 反之, 如果资源索引由 Node B分配, 所述资源索引的变 化规则同上。
在一些可行的实施方式中, 本发明的资源提供设备可包括基站(NodeB ), 所述资源请求设备可包括基站控制器( RNC )。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种。
在一些可行的实施方式中, E-RNTI 可为分组或非分组形式, 当本发明的 E-RNTI为分组形式时, 在步骤 S210时, 所述资源确认请求消息中携带的资源 可为分组形式的 E-RNTI。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组可由所述资源提供设备通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增强上行专用 控制信道资源消息体为所述资源请求设备分配。
在一些可行的实施方式中, 所述公共增强上行专用控制信道资源的结构中 包括扩展增强上行专用控制信道无线网络临时标识字段 Extended E-RNTI, 所述 扩展增强上行专用控制信道无线网络临时标识字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中携带的增强上行专用控制信道 无线网络临时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标 识分组的分组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的 起始增强上行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控 制信道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时 标识的个数和步长。 表 1列举了 NodeB通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的 示意图。
Figure imgf000039_0001
如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index )、 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数可为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无 线网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上 行专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网 络临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信 道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识 的个数为小于等于 256的正整数。 在表 1 中, Μ为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; L为每个 E-RNTI GROUP内 E-RNTI之间允许的最大步长; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
当本发明的 E-RNTI为分组形式时,可减少资源提供设备与资源请求设备之 间的 IUB接口的数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 所述资源提供设备通过物理共享信道重配置响
所述公共增强上行专用控制信道资源时引入资源索引 , 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息;
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 例 如, 如果资源索引由 Node B分配, 当收到 RNC的带有相同资源索引的资源确 认请求消息时, 则认为所述资源索引对应的资源被确认, Node B分配下一条资 源对应的资源索引号加 1或减 1 , 否则 Node B分配下一条资源时仍然携带之前 分配的未确认的资源索引号, 上述过程重复。 可以理解的是, 当资源索引达到 最大值或最小值, 资源索引重置。 反之, 如果资源索引由 RNC分配, 所述资源 索引的变化规则同上。
在一些可行的实施方式中, 资源请求设备可在除首次申请资源的之外的其 他资源申请流程触发之前, 先请求资源提供设备执行本发明资源泄漏的修复方 法的第一实施例的流程 , 确保资源提供设备为资源请求设备提供修复好的资源。
由上可见, 在本发明的一些可行的实施方式中, 从资源请求设备向资源提 供设备发送资源确认请求消息 , 所述资源确认请求消息中携带第一指示信息 , 所述第一指示信息用于指示所述资源请求设备已从所述资源提供设备获取的资 源; 以使所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经 分配给所述资源请求设备, 但所述资源请求设备并未获取到的资源, 并将所述 查找到的资源初始化为未分配状态。 由此可使泄漏的资源获得重分配的机会, 完成资源泄漏的修复。
图 3.1 为本发明的请求对资源泄漏进行修复的方法的第五实施例的流程示 意图。 如图 3.1所示, 其可包括:
步骤 S320, 资源请求设备向资源提供设备发送资源确认请求消息, 所述资 源确认请求消息包括用户状态更新确认请求消息 (UE STATUS UPDATE CONFIRM REQUEST ),所述用户状态更新确认请求消息中携带第一指示信息包 括资源索引(比如, E-RNTI Index信息,或者 Common E-DCH System Information Index信息, 或者 E-RNTI Group Index信息)或者资源本身, 所述资源索引可为 资源的标识或者申请批次编号等任何可以与资源唯一对应的标识信息; 所述资 源确认请求消息用于使所述资源提供设备根据所述资源索引或者资源本身, 查 找所述资源提供设备中标记为已分配给所述资源请求设备, 但所述资源索引中 未指示或所述资源本身未包括的资源, 并将所述查找到的资源初始化为未分配 状态。
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。 在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。
在一些可行的实施方式中, 当一条资源确认请求消息无法携带完一次请求 的资源的资源索引或资源本身时, 所述资源请求设备需向资源提供设备发送多 条资源确认请求消息, 其中每条资源确认请求消息的第一指示信息还包括与下 一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资源提供设备 是否已经接收完所述一次请求的资源的资源索引或资源本身。
步骤 S321 , 资源请求设备接收所述资源提供设备向所述资源请求设备发送 的资源确认响应消息, 所述资源确认响应消息包括用户状态更新确认响应消息 ( UE STATUS UPDATE CONFIRM RESPONSE ),所述用户状态更新确认响应消 息中携带审计字段, 所述审计字段包括资源确认字段(比如, E-RNTI Audit Confirm字段, 或者 Common E-DCH System Information Audit Confirm字段) , 和 /或资源索引 (比如, E-RNTI Group Index, 或者 E-RNTI Index, 或者 Common E-DCH System Information Index ), 所述审计字段用于告知所述资源请求设备所 述资源提供设备已响应所述资源确认请求消息。
在一些可行的实施方式中, 本发明的资源提供设备可包括基站(NodeB ), 所述资源请求设备可包括基站控制器( RNC )。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种。
在一些可行的实施方式中, E-RNTI 可为分组或非分组形式, 当本发明的 E-RNTI为分组形式时, 在步骤 S320时, 所述资源确认请求消息中携带的资源 可为分组形式的 E-RNTI。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组可由所述资源提供设备通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增强上行专用 控制信道资源消息体为所述资源请求设备分配。
在一些可行的实施方式中, 所述公共增强上行专用控制信道资源的结构中 包括扩展增强上行专用控制信道无线网络临时标识字段 Extended E-RNTI, 所述 扩展增强上行专用控制信道无线网络临时标识字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中携带的增强上行专用控制信道 无线网络临时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标 识分组的分组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的 起始增强上行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控 制信道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时 标识的个数和步长。 表 1列举了 NodeB通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的 示意图。
Figure imgf000043_0001
如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index ), 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数可为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无 线网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上 行专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网 络临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信 道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识 的个数为小于等于 256的正整数。 在表 1 中, Μ为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; L为每个 E-RNTI GROUP内 E-RNTI之间允许的最大步长; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S 的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
当本发明的 E-RNTI为分组形式时,可减少资源提供设备与资源请求设备之 间的 IUB接口的数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 所述资源提供设备通过物理共享信道重配置响
所述公共增强上行专用控制信道资源时引入资源索引 , 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息;
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 例 如, 如果资源索引由 Node B分配, 当收到 RNC的带有相同资源索引的资源确 认请求消息时, 则认为所述资源索引对应的资源被确认, Node B分配下一条资 源对应的资源索引号加 1或减 1 , 否则 Node B分配下一条资源时仍然携带之前 分配的未确认的资源索引号, 上述过程重复。 可以理解的是当资源索引达到最 大值或最小值, 资源索引重置。 反之, 如果资源索引由 RNC分配, 所述资源索 引的变化规则同上。
在一些可行的实施方式中, 资源请求设备可在除首次申请资源的之外的其 他资源申请流程触发之前, 先请求资源提供设备执行本发明资源泄漏的修复方 法的第一实施例的流程 , 确保资源提供设备为资源请求设备提供修复好的资源。
由上可见, 在本发明的一些可行的实施方式中, 从资源请求设备向资源提 供设备发送资源确认请求消息 , 所述资源确认请求消息中携带第一指示信息 , 所述第一指示信息用于指示所述资源请求设备已从所述资源提供设备获取的资 源; 以使所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经 分配给所述资源请求设备, 但所述资源请求设备并未获取到的资源, 并将所述 查找到的资源初始化为未分配状态。 由此可使泄漏的资源获得重分配的机会, 完成资源泄漏的修复。
图 4 为本发明的资源泄漏的修复方法的第一实施例的流程示意图。 如图 4 所示, 其可包括:
步骤 S410, 资源提供设备从资源请求设备接收资源确认请求消息, 所述资 源确认请求消息包括物理共享信道重配置响应确认消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE CONFIRM, 所述物理共享信道重 配置响应确认消息中携带资源确认项, 当所述资源确认项的取值为确认
Confirmed时, 表明所述资源提供设备分配给所述资源请求设备的资源已被资源 请求设备获取, 当资源确认项的取值为未确认 Not— Confirmed时,表明所述资源 提供设备分配给所述资源请求设备的资源未被资源请求设备获取。
步骤 S411 , 所述资源提供设备分析资源确认项的取值, 当资源确认项的取 值为确认时, 确定所述资源资源提供设备分配给所述资源请求设备的资源已经 成功分配, 当资源确认项的取值为未确认时, 确定所述资源资源提供设备分配 给所述资源请求设备的资源未成功分配。 步骤 S412, 当所述资源提供设备确定所述资源提供设备分配给所述资源请 求设备的资源是否未成功分配时, 将所述资源初始化为未分配状态。
在一些可行的实施方式中, 本发明的资源提供设备可包括基站(NodeB ), 所述资源请求设备可包括基站控制器( RNC )。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种。
在一些可行的实施方式中, E-RNTI 可为分组或非分组形式, 当本发明的 E-RNTI为分组形式时, 本发明的资源泄漏的修复方法在步骤 S410之前, 还可 包括:
所述资源提供设备通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增强上行专用控制信道 资源消息体为所述资源请求设备分配增强上行专用控制信道无线网络临时标 识, 所述公共增强上行专用控制信道资源的结构中包括扩展增强上行专用控制 信道无线网络临时标识字段 Extended E-RNTI, 所述扩展增强上行专用控制信道 无 线 网 络 临 时 标 识 字 段 包 括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临 时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标识分组的分 组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的起始增强上 行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控制信道无线 网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的个数 和步长。 表 1 列举了 NodeB 通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的结构示意图。
表 1 : IE/Group Name Presence Range IE Type
and
Reference
UL Common MAC Flow L. xmaxno
Specific Information ofCommonM
Response ACFlows»
E-RNTI 0 9.2.2.139
Extended E-RNTI 0 0...<M>
>Group Index M 0...<S-1> 组编号
>Starting E-RNTI M 起始
E-RNTI
> Number of E-RNTI per M 1 ...N 组内
group E-RNTI个
>Step of E-RNTI per M 1 ...L 组内
group E-RNTI的
步长 如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index )、 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无线 网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上行 专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网络 临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信道 无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的 个数为小于等于 256 的正整数。 在表 1 中, Μ 为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; L为每个 E-RNTI GROUP内 E-RNTI之间允许的最大步长; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S 的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
这样在步骤 S410所接收的资源确认项也对应于 E-RNTI分组。 当本发明的 E-RNTI为分组形式时,可减少资源提供设备与资源请求设备之间的 IUB接口的 数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 资源请求设备可在除首次申请资源的之外的其 他资源申请流程触发之前, 先请求资源提供设备执行本发明资源泄漏的修复方 法的第一实施例的流程 , 确保资源提供设备为资源请求设备提供修复好的资源。
在一些可行的实施方式中, 在步骤 S410, 当资源提供设备未收到资源请求 设备的资源确认消息, 步骤 S411可替换为: 确定所述资源提供设备分配给所述 资源请求设备的资源未成功分配。
由上可见, 在本发明的一些可行的实施方式中, 资源提供设备可从资源请 求设备接收资源确认请求消息, 所述资源确认请求消息中携带资源确认项, 所 述资源确认项用于指示所述资源请求设备已从所述资源提供设备获取资源; 所 述资源提供设备根据所述资源确认请求消息确定所述资源资源提供设备分配给 所述资源请求设备的资源是否已经成功分配; 当所述资源提供设备确定所述资 源提供设备分配给所述资源请求设备的资源是否未成功分配时, 将所述资源初 始化为未分配状态。 由此可使泄漏的资源获得重分配的机会, 完成资源泄漏的 修复。
图 4.1 为本发明的资源泄漏的修复方法的第二实施例的流程示意图。 如图 4.1所示, 其可包括:
步骤 S420, 资源提供设备从资源请求设备接收资源确认请求消息, 所述资 源确认请求消息包括用户状态更新命令消息 ( UE STATUS UPDATE COMMAND ),所述用户状态更新命令消息中携带的第一指示信息包括资源索引 ( t匕^口, E-RNTI Index信息、, 或者 Common E-DCH System Information Index 信息, 或者 E-RNTI Group Index信息)或者资源本身, 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息; 所述资源确 认请求消息用于使所述资源提供设备根据所述资源索引或者资源本身 , 查找所 述资源提供设备中标记为已分配给所述资源请求设备, 但所述资源索引中未指 示或所述资源本身未包括的资源, 并将所述查找到的资源初始化为未分配状态。
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。
步骤 S421 , 所述资源提供设备根据所述资源索引, 查找所述资源提供设备 中标记为已分配给所述资源请求设备, 但所述资源索引中未包括的资源。
步骤 S422, 所述资源提供设备将所述查找到的资源初始化为未分配状态。 在一些可行的实施方式中, 本发明的资源提供设备可包括基站(NodeB ), 所述资源请求设备可包括基站控制器( RNC )。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种。
在一些可行的实施方式中, 本发明的 E-RNTI可为分组或非分组形式。
在一些可行的实施方式中, 当本发明的 E-RNTI为分组形式时, 本发明的资 源泄漏的修复方法在步骤 S420之前, 还可包括:
所述资源提供设备通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增强上行专用控制信道 资源消息体为所述资源请求设备分配增强上行专用控制信道无线网络临时标 识, 所述公共增强上行专用控制信道资源的结构中包括扩展增强上行专用控制 信道无线网络临时标识字段 Extended E-RNTI, 所述扩展增强上行专用控制信道 无 线 网 络 临 时 标 识 字 段 包 括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临 时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标识分组的分 组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的起始增强上 行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控制信道无线 网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的个数 和步长。 表 1 列举了 NodeB 通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的 示意图。
Figure imgf000050_0001
如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index )、 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无线 网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上行 专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网络 临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信道 无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的 个数为小于等于 256 的正整数。 在表 1 中, Μ 为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI 资源内唯一编号, 即 S的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取 值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其 中, M取值 256, S取值 256, N取值 256。
这样在步骤 S420所接收的资源确认项也对应于 E-RNTI分组。 当本发明的 E-RNTI为分组形式时,可减少资源提供设备与资源请求设备之间的 IUB接口的 数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 所述资源提供设备通过物理共享信道重配置响
所述公共增强上行专用控制信道资源时引入资源索引 , 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息;
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 例 如, 如果资源索引由 Node B分配, 当收到 RNC的带有相同资源索引的资源确 认请求消息时, 则认为所述资源索引对应的资源被确认, Node B分配下一条资 源索引时,在所述被确认的资源对应的资源索引基础上加 1或减 1 ,否则 Node B 分配下一条资源时仍然携带之前分配的未确认的资源索引号, 上述过程重复, 当资源索引达到最大值或最小值, 资源索引重置。 反之, 如果资源索引由 RNC 分配, 所述资源索引的变化规则同上。
在一些可行的实施方式中, 当本发明的资源为 E-RNTI时, 步骤 S423中的 审计字段可为 E-RNTI Audit Confirm, 则当资源请求设备收到 E-RNTI Audit Confirm 字段就表明资源提供设备已对资源请求设备发送的资源确认请求消息 进行了处理。 当本发明的资源为 CommEDCH时, 步骤 S513中的审计字段可为 CommEDCH Confirm,则当资源请求设备收到 CommEDCH Confirm字段就表明 资源提供设备已对资源请求设备发送的资源确认请求消息进行了处理。
在一些可行的实施方式中, 当一条资源确认请求消息无法携带完一次请求 的资源的资源索引或资源本身时, 所述资源提供设备需从资源请求设备接收多 条资源确认请求消息, 其中每条资源确认请求消息的第一指示信息还包括与下 一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资源提供设备 是否已经接收完所述一次请求的资源的资源索引或资源本身。 则在步骤 S421是 在所述步骤 S420接收完所述一次请求的资源对应的所有资源确认请求消息后, 执行根据所述第一指示信息查找所述资源提供设备已经分配给所述资源请求设 备, 但所述资源请求设备并未获取到的资源的步骤。
在一些可行的实施方式中, 资源请求设备可在除首次申请资源的之外的其 他资源申请流程触发之前, 先请求资源提供设备执行本发明资源泄漏的修复方 法的第二实施例的流程, 确保资源提供设备为资源请求设备提供修复好的资源。
由上可见, 在本发明的一些可行的实施方式中, 资源提供设备从资源请求 设备接收资源确认请求消息, 所述资源确认请求消息中携带第一指示信息, 所 述第一指示信息用于指示所述资源请求设备已从所述资源提供设备获取的资 源; 所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源; 所述资源提供 设备将所述查找到的资源初始化为未分配状态。 由此可使泄漏的资源获得重分 配的机会, 完成资源泄漏的修复。
图 5 为本发明的资源泄漏的修复方法的第三实施例的流程示意图。 如图 5 所示, 其可包括: 步骤 S510, 资源提供设备从资源请求设备接收资源确认请求消息, 所述资 源确认请求消息包括审计请求消息 AUDIT REQUEST, 所述审计请求消息中携 带的第一指示信息包括资源索引 (比如, E-RNTI Index信息, 或者 Common E-DCH System Information Index信息, 或者 E-RNTI Group Index信息)或者资 源本身, 所述资源索引可为资源的标识或者申请批次编号等任何可以与资源唯 一对应的标识信息; 所述资源确认请求消息用于使所述资源提供设备根据所述 资源索引或者资源本身, 查找所述资源提供设备中标记为已分配给所述资源请 求设备, 但所述资源索引中未指示或所述资源本身未包括的资源, 并将所述查 找到的资源初始化为未分配状态。
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。
步骤 S511 , 所述资源提供设备根据所述资源索引, 查找所述资源提供设备 中标记为已分配给所述资源请求设备, 但所述资源索引中未包括的资源。
步骤 S512, 所述资源提供设备将所述查找到的资源初始化为未分配状态。 步骤 S513 ,所述资源提供设备向所述资源请求设备发送资源确认响应消息, 所述资源确认响应消息包括审计响应消息 AUDIT RESPONSE, 所述审计响应消 息中携带审计字段, 所述审计字段用于告知所述资源请求设备所述资源提供设 备已响应所述资源确认请求消息。
在一些可行的实施方式中, 本发明的资源提供设备可包括基站(NodeB ), 所述资源请求设备可包括基站控制器( RNC )。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种。
在一些可行的实施方式中, 本发明的 E-RNTI可为分组或非分组形式。
这样当本发明的资源为 E-RNTI时,步骤 S510中的审计请求消息为 E-RNTI AUDIT REQUEST,步骤 S513中的审计响应消息为 E-RNTI AUDIT RESPONSE 0 而当本发明的资源为 CommEDCH 时, 步骤 S510 中的审计请求消息为 Common E-DCH System Information AUDIT REQUEST,步骤 S513中的审计响应 消息为 Common E-DCH System Information AUDIT RESPONSE。
在一些可行的实施方式中, 当本发明的 E-RNTI为分组形式时, 本发明的资 源泄漏的修复方法在步骤 S510之前, 还可包括:
所述资源提供设备通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增强上行专用控制信道 资源消息体为所述资源请求设备分配增强上行专用控制信道无线网络临时标 识, 所述公共增强上行专用控制信道资源的结构中包括扩展增强上行专用控制 信道无线网络临时标识字段 Extended E-RNTI, 所述扩展增强上行专用控制信道 无 线 网 络 临 时 标 识 字 段 包 括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临 时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标识分组的分 组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的起始增强上 行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控制信道无线 网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的个数 和步长。 表 1 列举了 NodeB 通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的结构示意图。
表 1 :
IE/Group Name Presence Range IE Type
and
Reference
UL Common MAC Flow L. xmaxno
Specific Information ofCommonM
Response ACFlows»
E-RNTI 0 9.2.2.139
Extended E-RNTI 0 0...<M>
>Group Index M 0...<S-1> 组编号
>Starting E-RNTI M 起始
E-RNTI
> Number of E-RNTI per M 1 ...N 组内
group E-RNTI个
>Step of E-RNTI per M 1 ...L 组内
group E-RNTI的
步长 如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index )、 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无线 网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上行 专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网络 临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信道 无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的 个数为小于等于 256 的正整数。 在表 1 中, Μ 为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; L为每个 E-RNTI GROUP内 E-RNTI之间允许的最大步长; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S 的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
这样在步骤 S510所接收的资源确认项也对应于 E-RNTI分组。 当本发明的 E-RNTI为分组形式时,可减少资源提供设备与资源请求设备之间的 IUB接口的 数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 所述资源提供设备通过物理共享信道重配置响
所述公共增强上行专用控制信道资源时引入资源索引 , 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息;
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 例 如, 如果资源索引由 Node B分配, 当收到 RNC的带有相同资源索引的资源确 认请求消息时, 则认为所述资源索引对应的资源被确认, Node B分配下一条资 源索引时,在所述被确认的资源对应的资源索引基础上加 1或减 1 ,否则 Node B 分配下一条资源时仍然携带之前分配的未确认的资源索引号, 上述过程重复。 可以理解的是, 当资源索引达到最大值或最小值, 资源索引重置。 反之, 如果 资源索引由 RNC分配, 所述资源索引的变化规则同上。
在一些可行的实施方式中, 当本发明的资源为 E-RNTI时, 步骤 S513中的 审计字段可为 E-RNTI Audit Confirm, 则当资源请求设备收到 E-RNTI Audit Confirm 字段就表明资源提供设备已对资源请求设备发送的资源确认请求消息 进行了处理。 当本发明的资源为 CommEDCH时, 步骤 S513中的审计字段可为 CommEDCH Confirm,则当资源请求设备收到 CommEDCH Confirm字段就表明 资源提供设备已对资源请求设备发送的资源确认请求消息进行了处理。
在一些可行的实施方式中, 资源请求设备可在除首次申请资源的之外的其 他资源申请流程触发之前, 先请求资源提供设备执行本发明资源泄漏的修复方 法的第二实施例的流程, 确保资源提供设备为资源请求设备提供修复好的资源。
在一些可行的实施方式中, 当一条资源确认请求消息无法携带完一次请求 的资源的资源索引或资源本身时, 所述资源提供设备需从资源请求设备接收多 条资源确认请求消息, 其中每条资源确认请求消息的第一指示信息还包括与下 一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资源提供设备 是否已经接收完所述一次请求的资源的资源索引或资源本身。 则在步骤 S511是 在所述步骤 S510接收完所述一次请求的资源对应的所有资源确认请求消息后, 执行根据所述第一指示信息查找所述资源提供设备已经分配给所述资源请求设 备, 但所述资源请求设备并未获取到的资源的步骤。
由上可见, 在本发明的一些可行的实施方式中, 资源提供设备从资源请求 设备接收资源确认请求消息, 所述资源确认请求消息中携带第一指示信息, 所 述第一指示信息用于指示所述资源请求设备已从所述资源提供设备获取的资 源; 所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源; 所述资源提供 设备将所述查找到的资源初始化为未分配状态。 由此可使泄漏的资源获得重分 配的机会, 完成资源泄漏的修复。
图 6 为本发明的资源泄漏的修复方法的第四实施例的流程示意图。 如图 6 所示, 其可包括:
步骤 S610, 资源提供设备从资源请求设备接收资源确认请求消息, 所述资 源确认请求消息包括物理共享信道重配置请求消息 PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST, 所述物理共享信道重配置请求消 息中携带的第一指示信息包括资源索引 (比如, E-RNTI Index 信息, 或者 Common E-DCH System Information Index信息 ,或者 E-RNTI Group Index信息 ) 或者资源本身, 所述资源索引可为资源的标识或者申请批次编号等任何可以与 资源唯一对应的标识信息; 所述资源确认请求消息用于使所述资源提供设备根 据所述资源索引或者资源本身, 查找所述资源提供设备中标记为已分配给所述 资源请求设备, 但所述资源索引中未指示或所述资源本身未包括的资源, 并将 所述查找到的资源初始化为未分配状态。
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。
步骤 S611 , 所述资源提供设备根据所述资源索引, 查找所述资源提供设备 中标记为已分配给所述资源请求设备, 但所述资源索引中未包括的资源。
步骤 S612, 所述资源提供设备将所述查找到的资源初始化为未分配状态。 步骤 S613 ,所述资源提供设备向所述资源请求设备发送资源确认响应消息, 所述资源确认响应消息包括物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, 所述物理共享信道重配置响应消 息中携带审计字段, 所述审计字段用于告知所述资源请求设备所述资源提供设 备已响应所述资源确认请求消息。
在一些可行的实施方式中, 本发明的资源提供设备可包括基站(NodeB ), 所述资源请求设备可包括基站控制器( RNC )。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种。
在一些可行的实施方式中, 本发明的 E-RNTI可为分组或非分组形式。在一 些可行的实施方式中, 当本发明的 E-RNTI为分组形式时, 本发明的资源泄漏的 修复方法在步骤 S610之前, 还可包括:
所述资源提供设备通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增强上行专用控制信道 资源消息体为所述资源请求设备分配增强上行专用控制信道无线网络临时标 识, 所述公共增强上行专用控制信道资源的结构中包括扩展增强上行专用控制 信道无线网络临时标识字段 Extended E-RNTI, 所述扩展增强上行专用控制信道 无 线 网 络 临 时 标 识 字 段 包 括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临 时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标识分组的分 组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的起始增强上 行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控制信道无线 网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的个数 和步长。 表 1 列举了 NodeB 通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的 示意图。
Figure imgf000059_0001
如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index ), 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无线 网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上行 专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网络 临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信道 无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的 个数为小于等于 256 的正整数。 在表 1 中, Μ 为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; L为每个 E-RNTI GROUP内 E-RNTI之间允许的最大步长; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
这样在步骤 S610所接收的资源确认项也对应于 E-RNTI分组。 当本发明的 E-RNTI为分组形式时,可减少资源提供设备与资源请求设备之间的 IUB接口的 数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 所述资源提供设备通过物理共享信道重配置响
所述公共增强上行专用控制信道资源时引入资源索引 , 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息;
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 例 如, 如果资源索引由 Node B分配, 当收到 RNC的带有相同资源索引的资源确 认请求消息时, 则认为所述资源索引对应的资源被确认, Node B分配下一条资 源索引时,在所述被确认的资源对应的资源索引基础上加 1或减 1 ,否则 Node B 分配下一条资源时仍然携带之前分配的未确认的资源索引号, 上述过程重复。 可以理解的是, 当资源索引达到最大值或最小值, 资源索引重置。 反之, 如果 资源索引由 RNC分配, 所述资源索引的变化规则同上。
在一些可行的实施方式中, 当本发明的资源为 E-RNTI时, 步骤 S613中的 审计字段可为 E-RNTI Audit Confirm, 则当资源请求设备收到 E-RNTI Audit Confirm 字段就表明资源提供设备已对资源请求设备发送的资源确认请求消息 进行了处理。 当本发明的资源为 CommEDCH时, 步骤 S613中的审计字段可为 CommEDCH Confirm,则当资源请求设备收到 CommEDCH Confirm字段就表明 资源提供设备已对资源请求设备发送的资源确认请求消息进行了处理。
在一些可行的实施方式中, 当一条资源确认请求消息无法携带完一次请求 的资源的资源索引或资源本身时, 所述资源提供设备需从资源请求设备接收多 条资源确认请求消息, 其中每条资源确认请求消息的第一指示信息还包括与下 一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资源提供设备 是否已经接收完所述一次请求的资源的资源索引或资源本身。 则在步骤 S611是 在所述步骤 S610接收完所述一次请求的资源对应的所有资源确认请求消息后, 执行根据所述第一指示信息查找所述资源提供设备已经分配给所述资源请求设 备, 但所述资源请求设备并未获取到的资源的步骤。
由上可见, 在一些可行的实施方式中, 资源请求设备可在除首次申请资源 的之外的其他资源申请的同时通过 PHYSICAL SHARED CHANNEL 资源提供设备在为所述资源请求设备分配新的资源之前, 首先对资源请求设备 已经获取的资源进行修复, 然后再完成资源分配, 确保资源提供设备为资源请 求设备提供修复好的资源。
由上可见, 在本发明的一些可行的实施方式中, 资源提供设备从资源请求 设备接收资源确认请求消息, 所述资源确认请求消息中携带第一指示信息, 所 述第一指示信息用于指示所述资源请求设备已从所述资源提供设备获取的资 源; 所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源; 所述资源提供 设备将所述查找到的资源初始化为未分配状态。 由此可使泄漏的资源获得重分 配的机会, 完成资源泄漏的修复。
图 6.1 为本发明的资源泄漏的修复方法的第五实施例的流程示意图。 如图 6.1所示, 其可包括:
步骤 S620, 资源提供设备从资源请求设备接收资源确认请求消息, 所述资 源确认请求消息包括用户状态更新确认请求消息 (UE STATUS UPDATE CONFIRM REQUEST ),所述用户状态更新确认请求消息中携带的第一指示信息 包括资源索引 (比如, E-RNTI Index 信息, 或者 Common E-DCH System Information Index信息, 或者 E-RNTI Group Index信息 )或者资源本身, 所述资 源索引可为资源的标识或者申请批次编号等任何可以与资源唯一对应的标识信 息; 所述资源确认请求消息用于使所述资源提供设备根据所述资源索引或者资 源本身, 查找所述资源提供设备中标记为已分配给所述资源请求设备, 但所述 资源索引中未指示或所述资源本身未包括的资源, 并将所述查找到的资源初始 化为未分配状态。
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。
步骤 S621 , 所述资源提供设备根据所述资源索引, 查找所述资源提供设备 中标记为已分配给所述资源请求设备, 但所述资源索引中未包括的资源。
步骤 S622, 所述资源提供设备将所述查找到的资源初始化为未分配状态。 步骤 S623 , 所述资源提供设备向所述资源请求设备发送资源确认响应消息, 所 述资源确认响应消息包括用户状态更新确认响应消息 (UE STATUS UPDATE CONFIRM RESPONSE ), 所述用户状态更新确认响应消息中携带审计字段, 所 述审计字段包括资源确认字段(比如, E-RNTI Audit Confirm字段,或者 Common E-DCH System Information Audit Confirm字段),和 /或资源索引(比如, E-RNTI Index信息 , 或者 Common E-DCH System Information Index信息 , 或者 E-RNTI Group Index信息),所述审计字段用于告知所述资源请求设备所述资源提供设备 已响应所述资源确认请求消息。
在一些可行的实施方式中, 本发明的资源提供设备可包括基站(NodeB ), 所述资源请求设备可包括基站控制器( RNC )。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种。
在一些可行的实施方式中, 本发明的 E-RNTI可为分组或非分组形式。
在一些可行的实施方式中, 当本发明的 E-RNTI为分组形式时, 本发明的资 源泄漏的修复方法在步骤 S620之前, 还可包括:
所述资源提供设备通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增强上行专用控制信道 资源消息体为所述资源请求设备分配增强上行专用控制信道无线网络临时标 识, 所述公共增强上行专用控制信道资源的结构中包括扩展增强上行专用控制 信道无线网络临时标识字段 Extended E-RNTI, 所述扩展增强上行专用控制信道 无 线 网 络 临 时 标 识 字 段 包 括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临 时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标识分组的分 组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的起始增强上 行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控制信道无线 网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的个数 和步长。 表 1 列举了 NodeB 通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的结构示意图。
表 1 : IE/Group Name Presence Range IE Type
and
Reference
UL Common MAC Flow L. xmaxno
Specific Information ofCommonM
Response ACFlows»
E-RNTI 0 9.2.2.139
Extended E-RNTI 0 0...<M>
>Group Index M 0...<S-1> 组编号
>Starting E-RNTI M 起始
E-RNTI
> Number of E-RNTI per M 1 ...N 组内
group E-RNTI个
>Step of E-RNTI per M 1 ...L 组内
group E-RNTI的
步长 如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index )、 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无线 网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上行 专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网络 临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信道 无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的 个数为小于等于 256 的正整数。 在表 1 中, Μ 为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; L为每个 E-RNTI GROUP内 E-RNTI之间允许的最大步长; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S 的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
这样在步骤 S620所接收的资源确认项也对应于 E-RNTI分组。 当本发明的 E-RNTI为分组形式时,可减少资源提供设备与资源请求设备之间的 IUB接口的 数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 所述资源提供设备通过物理共享信道重配置响
所述公共增强上行专用控制信道资源时引入资源索引 , 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息;
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 例 如, 如果资源索引由 Node B分配, 当收到 RNC的带有相同资源索引的资源确 认请求消息时, 则认为所述资源索引对应的资源被确认, Node B分配下一条资 源索引时,在所述被确认的资源对应的资源索引基础上加 1或减 1 ,否则 Node B 分配下一条资源时仍然携带之前分配的未确认的资源索引号, 上述过程重复。 可以理解的是, 当资源索引达到最大值或最小值, 资源索引重置。 反之, 如果 资源索引由 RNC分配, 所述资源索引的变化规则同上。
在一些可行的实施方式中, 当一条资源确认请求消息无法携带完一次请求 的资源的资源索引或资源本身时, 所述资源提供设备需从资源请求设备接收多 条资源确认请求消息, 其中每条资源确认请求消息的第一指示信息还包括与下 一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资源提供设备 是否已经接收完所述一次请求的资源的资源索引或资源本身。 则在步骤 S621是 在所述步骤 S620接收完所述一次请求的资源对应的所有资源确认请求消息后, 执行根据所述第一指示信息查找所述资源提供设备已经分配给所述资源请求设 备, 但所述资源请求设备并未获取到的资源的步骤。
在一些可行的实施方式中, 资源请求设备可在除首次申请资源的之外的其 他资源申请流程触发之前, 先请求资源提供设备执行本发明资源泄漏的修复方 法的第二实施例的流程, 确保资源提供设备为资源请求设备提供修复好的资源。
由上可见, 在本发明的一些可行的实施方式中, 资源提供设备从资源请求 设备接收资源确认请求消息, 所述资源确认请求消息中携带第一指示信息, 所 述第一指示信息用于指示所述资源请求设备已从所述资源提供设备获取的资 源; 所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源; 所述资源提供 设备将所述查找到的资源初始化为未分配状态。 由此可使泄漏的资源获得重分 配的机会, 完成资源泄漏的修复。
除了上述列举的实施例之外, 具体实现中, 资源提供设备和资源请求设备 之间可以预先协商资源的审计机制, 比如, 双方可以协商若资源提供设备在向 资源请求设备分配资源后, 未接收到资源请求设备发送的资源确认请求消息, 则资源提供设备就自动将已经分配的资源初始化为未分配状态。
为更好实施本发明的方法实施例的各方案, 本发明实施例还提供了资源提 供设备, 具体实现中, 该资源提供设备可为基站控制器, 其用于为资源请求设 备基站提供资源, 以下对本发明的资源提供设备的实施例进行举例说明。
图 7 为本发明的可用于实施本发明的请求对资源泄漏进行修改的方法实施 例的资源请求设备的第一实施例的结构组成示意图。 如图 7所示, 本发明的资 源请求设备 7可包括请求模块 71 , 用于用于向资源提供设备发送资源确认请求 消息, 所述资源确认请求消息中携带资源确认项, 所述资源确认项用于指示所 述资源请求设备已从所述资源提供设备获取资源; 以使所述资源提供设备根据 所述资源确认项确定所述资源提供设备分配给所述资源请求设备的资源是否已 经成功分配。 在一些可行的实施方式中, 所述请求模块 71发送的资源确认请求 消息包括物理共享信道重配置响应确认消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE CONFIRM, 所述物理共享信道重配置响应确 认消息中携带资源确认项, 当所述资源确认项的取值为确认 Confirmed时,表明 所述资源提供设备分配给所述资源请求设备的资源已被资源请求设备获取, 当 资源确认项的取值为未确认 Not— Confirmed时,表明所述资源提供设备分配给所 述资源请求设备的资源未被资源请求设备获取;
所述资源提供设备分析资源确认项的取值, 当资源确认项的取值为确认时, 确定所述资源资源提供设备分配给所述资源请求设备的资源已经成功分配, 当 资源确认项的取值为未确认时, 确定所述资源资源提供设备分配给所述资源请 求设备的资源未成功分配; 或者, 当所述资源提供设备未收到所述资源请求设 备发送的物理共享信道重配置响应确认消息, 则确定所述资源提供设备分配给 所述资源请求设备的资源未成功分配。
在一些可行的实施方式中, 本发明的资源提供设备可包括基站(NodeB ), 所述资源请求设备可包括基站控制器( RNC )。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种。
在一些可行的实施方式中, E-RNTI 可为分组或非分组形式, 当本发明的 E-RNTI为分组形式时, 所述请求模块 71发送的资源确认请求消息中携带的资 源可为分组形式的 E-RNTI。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组可由所述资源提供设备通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增强上行专用 控制信道资源消息体为所述资源请求设备分配。
在一些可行的实施方式中, 所述公共增强上行专用控制信道资源的结构中 包括扩展增强上行专用控制信道无线网络临时标识字段 Extended E-RNTI, 所述 扩展增强上行专用控制信道无线网络临时标识字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中携带的增强上行专用控制信道 无线网络临时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标 识分组的分组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的 起始增强上行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控 制信道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时 标识的个数和步长。 表 1列举了 NodeB通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的 示意图。
Figure imgf000068_0001
如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index )、 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无线 网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上行 专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网络 临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信道 无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的 个数为小于等于 256 的正整数。 在表 1 中, M 为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; L为每个 E-RNTI GROUP内 E-RNTI之间允许的最大步长; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
当本发明的 E-RNTI为分组形式时,可减少资源提供设备与资源请求设备之 间的 IUB接口的数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 资源请求设备可在除首次申请资源的之外的其 他资源申请流程触发之前, 先请求资源提供设备执行本发明资源泄漏的修复方 法的第一实施例的流程 , 确保资源提供设备为资源请求设备提供修复好的资源。
由上可见, 在本发明的一些可行的实施方式中, 从资源请求设备向资源提 供设备发送资源确认请求消息, 所述资源确认请求消息中携带资源确认项; 以 使所述资源提供设备根据所述资源确认请求消息确定其分配给资源请求设备的 资源是否已经分配成功, 当所述资源提供设备确定所述资源提供设备分配给所 述资源请求设备的资源是否未成功分配时, 将所述资源初始化为未分配状态。 由此可使泄漏的资源获得重分配的机会, 完成资源泄漏的修复。
图 7.1 为本发明的可用于实施本发明的请求对资源泄漏进行修改的方法实 施例的资源请求设备的第二实施例的结构组成示意图。如图 7.1所示, 本发明的 资源请求设备 701可包括请求模块 7011 , 其中:
请求模块 7011 , 用于向资源提供设备发送资源确认请求消息, 所述资源确 认请求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设 备已从所述资源提供设备获取的资源, 以使所述资源提供设备根据所述第一指 示信息查找所述资源提供设备已经分配给所述资源请求设备, 但所述资源请求 设备并未获取到的资源, 并将所述查找到的资源初始化为未分配状态。
在一些可行的实施方式中, 所述请求模块 7011发送的资源确认请求消息包 括用户状态更新命令消息( UE STATUS UPDATE COMMAND ), 所述用户状态 更新命令消息中携带第一指示信息包括资源索引 (比如, E-RNTI Index信息, 或者 Common E-DCH System Information Index信息, 或者 E-RNTI Group Index 信息) 或者资源本身, 所述资源索引可为资源的标识或者申请批次编号等任何 可以与资源唯一对应的标识信息; 所述资源确认请求消息用于使所述资源提供 设备根据所述资源索引或者资源本身, 查找所述资源提供设备中标记为已分配 给所述资源请求设备, 但所述资源索引中未指示或所述资源本身未包括的资源, 并将所述查找到的资源初始化为未分配状态。
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。
在一些可行的实施方式中, 当一条资源确认请求消息无法携带完一次请求 的资源的资源索引或资源本身时, 所述资源请求设备需向资源提供设备发送多 条资源确认请求消息, 其中每条资源确认请求消息的第一指示信息还包括与下 一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资源提供设备 是否已经接收完所述一次请求的资源的资源索引或资源本身。
在一些可行的实施方式中, 本发明的资源提供设备可包括基站(NodeB ), 所述资源请求设备可包括基站控制器( RNC )。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种。
在一些可行的实施方式中, E-RNTI 可为分组或非分组形式, 当本发明的 E-RNTI为分组形式时, 请求模块 7011发送的所述资源确认请求消息中携带的 资源可为分组形式的 E-RNTI。 在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组可由所述资源提供设备通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增强上行专用 控制信道资源消息体为所述资源请求设备分配。
在一些可行的实施方式中, 所述公共增强上行专用控制信道资源的结构中 包括扩展增强上行专用控制信道无线网络临时标识字段 Extended E-RNTI, 所述 扩展增强上行专用控制信道无线网络临时标识字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中携带的增强上行专用控制信道 无线网络临时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标 识分组的分组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的 起始增强上行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控 制信道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时 标识的个数和步长。 表 1列举了 NodeB通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的结构示意图。
表 1 :
IE/Group Name Presence Range IE Type
and
Reference
UL Common MAC Flow L. xmaxno
Specific Information ofCommonM
Response ACFlows»
E-RNTI 0 9.2.2.139
Extended E-RNTI 0 0...<M>
>Group Index M 0...<S-1> 组编号
>Starting E-RNTI M 起始
E-RNTI
> Number of E-RNTI per M 1 ...N 组内
group E-RNTI个
>Step of E-RNTI per M 1 ...L 组内
group E-RNTI的
步长 如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index )、 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数可为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无 线网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上 行专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网 络临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信 道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识 的个数为小于等于 256的正整数。 在表 1 中, Μ为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; L为每个 E-RNTI GROUP内 E-RNTI之间允许的最大步长; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S 的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
当本发明的 E-RNTI为分组形式时,可减少资源提供设备与资源请求设备之 间的 IUB接口的数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 所述资源提供设备通过物理共享信道重配置响
所述公共增强上行专用控制信道资源时引入资源索引 , 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息;
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 例 如, 如果资源索引由 Node B分配, 当收到 RNC的带有相同资源索引的资源确 认请求消息时, 则认为所述资源索引对应的资源被确认, Node B分配下一条资 源索引时,在所述被确认的资源对应的资源索引基础上加 1或减 1 ,否则 Node B 分配下一条资源时仍然携带之前分配的未确认的资源索引号, 上述过程重复。 可以理解的是, 当资源索引达到最大值或最小值, 资源索引重置。 反之, 如果 资源索引由 RNC分配, 所述资源索引的变化规则同上。
在一些可行的实施方式中, 资源请求设备可在除首次申请资源的之外的其 他资源申请流程触发之前, 先请求资源提供设备执行本发明资源泄漏的修复方 法的第一实施例的流程 , 确保资源提供设备为资源请求设备提供修复好的资源。
由上可见, 在本发明的一些可行的实施方式中, 从资源请求设备向资源提 供设备发送资源确认请求消息, 所述资源确认请求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备已从所述资源提供设备获取的资 源; 以使所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经 分配给所述资源请求设备, 但所述资源请求设备并未获取到的资源, 并将所述 查找到的资源初始化为未分配状态。 由此可使泄漏的资源获得重分配的机会, 完成资源泄漏的修复。
图 8 为本发明的可用于实施本发明的请求对资源泄漏进行修改的方法实施 例的资源请求设备的第三实施例的结构组成示意图。 如图 8 所示, 本发明的资 源请求设备 8可包括请求模块 81和接收模块 82, 其中:
请求模块 81 , 用于向资源提供设备发送资源确认请求消息, 所述资源确认 请求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备 已从所述资源提供设备获取的资源 , 以使所述资源提供设备根据所述第一指示 信息查找所述资源提供设备已经分配给所述资源请求设备, 但所述资源请求设 备并未获取到的资源, 并将所述查找到的资源初始化为未分配状态。
接收模块 82, 用于接收所述资源提供设备向所述资源请求设备发送的资源 确认响应消息, 所述资源确认响应消息用于告知所述资源请求设备所述资源提 供设备已响应所述资源确认请求消息。
在一些可行的实施方式中, 所述请求模块 81发送的资源确认请求消息包括 审计请求消息 AUDIT REQUEST, 所述审计请求消息中携带第一指示信息包括 资源索引(比如, E-RNTI Index信息,或者 Common E-DCH System Information Index信息, 或者 E-RNTI Group Index信息)或者资源本身, 所述资源索引可为 资源的标识或者申请批次编号等任何可以与资源唯一对应的标识信息; 所述资 源确认请求消息用于使所述资源提供设备根据所述资源索引或者资源本身, 查 找所述资源提供设备中标记为已分配给所述资源请求设备, 但所述资源索引中 未指示或所述资源本身未包括的资源, 并将所述查找到的资源初始化为未分配 状态。
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 在一些可行的实施方式中, 当一条资源确认请求消息无法携带完一次请求 的资源的资源索引或资源本身时, 所述资源请求设备需向资源提供设备发送多 条资源确认请求消息, 其中每条资源确认请求消息的第一指示信息还包括与下 一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资源提供设备 是否已经接收完所述一次请求的资源的资源索引或资源本身。
在一些可行的实施方式中, 所述接收模块 82接收的资源确认响应消息包括 审计响应消息 AUDIT RESPONSE, 所述审计响应消息中携带审计字段, 所述审 计字段用于告知所述资源请求设备所述资源提供设备已响应所述资源确认请求 消息。
在一些可行的实施方式中, 本发明的资源提供设备可包括基站(NodeB ), 所述资源请求设备可包括基站控制器( RNC )。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种。
在一些可行的实施方式中, E-RNTI 可为分组或非分组形式, 当本发明的 E-RNTI为分组形式时, 请求模块 81发送的所述资源确认请求消息中携带的资 源可为分组形式的 E-RNTI。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组可由所述资源提供设备通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增强上行专用 控制信道资源消息体为所述资源请求设备分配。
在一些可行的实施方式中, 所述公共增强上行专用控制信道资源的结构中 包括扩展增强上行专用控制信道无线网络临时标识字段 Extended E-RNTI, 所述 扩展增强上行专用控制信道无线网络临时标识字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中携带的增强上行专用控制信道 无线网络临时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标 识分组的分组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的 起始增强上行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控 制信道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时 标识的个数和步长。 表 1列举了 NodeB通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的 示意图。
Figure imgf000076_0001
如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index )、 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数可为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无 线网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上 行专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网 络临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信 道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识 的个数为小于等于 256的正整数。 在表 1 中, M为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; L为每个 E-RNTI GROUP内 E-RNTI之间允许的最大步长; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
当本发明的 E-RNTI为分组形式时,可减少资源提供设备与资源请求设备之 间的 IUB接口的数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 所述资源提供设备通过物理共享信道重配置响
所述公共增强上行专用控制信道资源时引入资源索引 , 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息;
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 例 如, 如果资源索引由 Node B分配, 当收到 RNC的带有相同资源索引的资源确 认请求消息时, 则认为所述资源索引对应的资源被确认, Node B分配下一条资 源索引时,在所述被确认的资源对应的资源索引基础上加 1或减 1 ,否则 Node B 分配下一条资源时仍然携带之前分配的未确认的资源索引号, 上述过程重复。 可以理解的是, 当资源索引达到最大值或最小值, 资源索引重置。 反之, 如果 资源索引由 RNC分配, 所述资源索引的变化规则同上。
在一些可行的实施方式中, 资源请求设备可在除首次申请资源的之外的其 他资源申请流程触发之前, 先请求资源提供设备执行本发明资源泄漏的修复方 法的第一实施例的流程 , 确保资源提供设备为资源请求设备提供修复好的资源。
由上可见, 在本发明的一些可行的实施方式中, 从资源请求设备向资源提 供设备发送资源确认请求消息 , 所述资源确认请求消息中携带第一指示信息 , 所述第一指示信息用于指示所述资源请求设备已从所述资源提供设备获取的资 源; 以使所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经 分配给所述资源请求设备, 但所述资源请求设备并未获取到的资源, 并将所述 查找到的资源初始化为未分配状态。 由此可使泄漏的资源获得重分配的机会, 完成资源泄漏的修复。
图 9 为本发明的可用于实施本发明的请求对资源泄漏进行修改的方法实施 例的资源请求设备的第四实施例的结构组成示意图。 如图 9所示, 本发明的资 源请求设备 9可包括请求模块 91和接收模块 92, 其中:
请求模块 91 , 用于向资源提供设备发送资源确认请求消息, 所述资源确认 请求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备 已从所述资源提供设备获取的资源 , 以使所述资源提供设备根据所述第一指示 信息查找所述资源提供设备已经分配给所述资源请求设备, 但所述资源请求设 备并未获取到的资源, 并将所述查找到的资源初始化为未分配状态。
接收模块 92, 用于接收所述资源提供设备向所述资源请求设备发送的资源 确认响应消息, 所述资源确认响应消息用于告知所述资源请求设备所述资源提 供设备已响应所述资源确认请求消息。
在一些可行的实施方式中, 所述请求模块 91发送的资源确认请求消息包括 物理共享信道重 配置请求 消 息 PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST, 所述物理共享信道重配置请求消息中携带第 一指示信息包括资源索引 (比如, E-RNTI Index信息, 或者 Common E-DCH System Information Index信息, 或者 E-RNTI Group Index信息)或者资源本身, 所述资源索引可为资源的标识或者申请批次编号等任何可以与资源唯一对应的 标识信息; 所述资源确认请求消息用于使所述资源提供设备根据所述资源索引 或者资源本身, 查找所述资源提供设备中标记为已分配给所述资源请求设备, 但所述资源索引中未指示或所述资源本身未包括的资源, 并将所述查找到的资 源初始化为未分配状态。
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。
在一些可行的实施方式中, 当一条资源确认请求消息无法携带完一次请求 的资源的资源索引或资源本身时, 所述资源请求设备需向资源提供设备发送多 条资源确认请求消息, 其中每条资源确认请求消息的第一指示信息还包括与下 一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资源提供设备 是否已经接收完所述一次请求的资源的资源索引或资源本身。
所述接收模块 92接收的资源确认响应消息包括物理共享信道重配置响应消 息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE, 所述物 理共享信道重配置响应消息中携带审计字段, 所述审计字段用于告知所述资源 请求设备所述资源提供设备已响应所述资源确认请求消息。
在一些可行的实施方式中, 本发明的资源提供设备可包括基站(NodeB ), 所述资源请求设备可包括基站控制器( RNC )。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种。
在一些可行的实施方式中, E-RNTI 可为分组或非分组形式, 当本发明的 E-RNTI为分组形式时, 请求模块 91发送的所述资源确认请求消息中携带的资 源可为分组形式的 E-RNTI。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组可由所述资源提供设备通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增强上行专用 控制信道资源消息体为所述资源请求设备分配。
在一些可行的实施方式中, 所述公共增强上行专用控制信道资源的结构中 包括扩展增强上行专用控制信道无线网络临时标识字段 Extended E-RNTI, 所述 扩展增强上行专用控制信道无线网络临时标识字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中携带的增强上行专用控制信道 无线网络临时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标 识分组的分组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的 起始增强上行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控 制信道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时 标识的个数和步长。 表 1列举了 NodeB通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的 示意图。
Figure imgf000080_0001
如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index )、 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数可为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无 线网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上 行专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网 络临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信 道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识 的个数为小于等于 256的正整数。 在表 1 中, Μ为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; L为每个 E-RNTI GROUP内 E-RNTI之间允许的最大步长; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S 的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
当本发明的 E-RNTI为分组形式时,可减少资源提供设备与资源请求设备之 间的 IUB接口的数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 所述资源提供设备通过物理共享信道重配置响
所述公共增强上行专用控制信道资源时引入资源索引 , 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息;
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 例 如, 如果资源索引由 Node B分配, 当收到 RNC的带有相同资源索引的资源确 认请求消息时, 则认为所述资源索引对应的资源被确认, Node B分配下一条资 源索引时,在所述被确认的资源对应的资源索引基础上加 1或减 1 ,否则 Node B 分配下一条资源时仍然携带之前分配的未确认的资源索引号, 上述过程重复。 可以理解的是, 当资源索引达到最大值或最小值, 资源索引重置。 反之, 如果 资源索引由 RNC分配, 所述资源索引的变化规则同上。
在一些可行的实施方式中, 资源请求设备可在除首次申请资源的之外的其 他资源申请流程触发之前, 先请求资源提供设备执行本发明资源泄漏的修复方 法的第一实施例的流程 , 确保资源提供设备为资源请求设备提供修复好的资源。
由上可见, 在本发明的一些可行的实施方式中, 从资源请求设备向资源提 供设备发送资源确认请求消息 , 所述资源确认请求消息中携带第一指示信息 , 所述第一指示信息用于指示所述资源请求设备已从所述资源提供设备获取的资 源; 以使所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经 分配给所述资源请求设备, 但所述资源请求设备并未获取到的资源, 并将所述 查找到的资源初始化为未分配状态。 由此可使泄漏的资源获得重分配的机会, 完成资源泄漏的修复。
图 9.1 为本发明的可用于实施本发明的请求对资源泄漏进行修改的方法实 施例的资源请求设备的第五实施例的结构组成示意图。如图 9.1所示, 本发明的 资源请求设备 901可包括请求模块 9011和接收模块 9012, 其中:
请求模块 9011 , 用于向资源提供设备发送资源确认请求消息, 所述资源确 认请求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设 备已从所述资源提供设备获取的资源, 以使所述资源提供设备根据所述第一指 示信息查找所述资源提供设备已经分配给所述资源请求设备, 但所述资源请求 设备并未获取到的资源, 并将所述查找到的资源初始化为未分配状态。
接收模块 9012, 用于接收所述资源提供设备向所述资源请求设备发送的资 源确认响应消息, 所述资源确认响应消息用于告知所述资源请求设备所述资源 提供设备已响应所述资源确认请求消息。
在一些可行的实施方式中, 所述请求模块 9011发送的资源确认请求消息包 括用户状态更新确认请求消息 ( UE STATUS UPDATE CONFIRM REQUEST ), 所述用户状态更新确认请求消息中携带第一指示信息包括资源索引 (比如, E-RNTI Index信息, 或者 Common E-DCH System Information Index信息, 或者 E-RNTI Group Index信息 )或者资源本身, 所述资源索引可为资源的标识或者申 请批次编号等任何可以与资源唯一对应的标识信息; 所述资源确认请求消息用 于使所述资源提供设备根据所述资源索引或者资源本身 , 查找所述资源提供设 备中标记为已分配给所述资源请求设备, 但所述资源索引中未指示或所述资源 本身未包括的资源, 并将所述查找到的资源初始化为未分配状态。
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。
在一些可行的实施方式中, 当一条资源确认请求消息无法携带完一次请求 的资源的资源索引或资源本身时, 所述资源请求设备需向资源提供设备发送多 条资源确认请求消息, 其中每条资源确认请求消息的第一指示信息还包括与下 一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资源提供设备 是否已经接收完所述一次请求的资源的资源索引或资源本身。
所述接收模块 92接收的资源确认响应消息包括用户状态更新确认响应消息 ( UE STATUS UPDATE CONFIRM RESPONSE ),所述用户状态更新确认响应消 息中携带审计字段, 所述审计字段包括资源确认字段(比如, E-RNTI Audit Confirm字段, 或者 Common E-DCH System Information Audit Confirm字段) , 和 /或资源索引 (比如, E-RNTI Index 信息, 或者 Common E-DCH System Information Index信息, 或者 E-RNTI Group Index信息;), 所述审计字段用于告 知所述资源请求设备所述资源提供设备已响应所述资源确认请求消息。
在一些可行的实施方式中, 本发明的资源提供设备可包括基站(NodeB ), 所述资源请求设备可包括基站控制器( RNC )。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种。
在一些可行的实施方式中, E-RNTI 可为分组或非分组形式, 当本发明的 E-RNTI为分组形式时, 请求模块 9011发送的所述资源确认请求消息中携带的 资源可为分组形式的 E-RNTI。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组可由所述资源提供设备通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增强上行专用 控制信道资源消息体为所述资源请求设备分配。
在一些可行的实施方式中, 所述公共增强上行专用控制信道资源的结构中 包括扩展增强上行专用控制信道无线网络临时标识字段 Extended E-RNTI, 所述 扩展增强上行专用控制信道无线网络临时标识字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中携带的增强上行专用控制信道 无线网络临时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标 识分组的分组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的 起始增强上行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控 制信道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时 标识的个数和步长。 表 1列举了 NodeB通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的结构示意图。
表 1 :
IE/Group Name Presence Range IE Type
and
Reference
UL Common MAC Flow L. xmaxno
Specific Information ofCommonM
Response ACFlows»
E-RNTI 0 9.2.2.139
Extended E-RNTI 0 0...<M>
>Group Index M 0...<S-1> 组编号
>Starting E-RNTI M 起始
E-RNTI
> Number of E-RNTI per M 1 ...N 组内
group E-RNTI个
>Step of E-RNTI per M 1 ...L 组内
group E-RNTI的
步长 如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index )、 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数可为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无 线网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上 行专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网 络临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信 道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识 的个数为小于等于 256的正整数。 在表 1 中, Μ为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; L为每个 E-RNTI GROUP内 E-RNTI之间允许的最大步长; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S 的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
当本发明的 E-RNTI为分组形式时,可减少资源提供设备与资源请求设备之 间的 IUB接口的数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 所述资源提供设备通过物理共享信道重配置响
所述公共增强上行专用控制信道资源时引入资源索引 , 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息;
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 例 如, 如果资源索引由 Node B分配, 当收到 RNC的带有相同资源索引的资源确 认请求消息时, 则认为所述资源索引对应的资源被确认, Node B分配下一条资 源索引时,在所述被确认的资源对应的资源索引基础上加 1或减 1 ,否则 Node B 分配下一条资源时仍然携带之前分配的未确认的资源索引号, 上述过程重复。 可以理解的是, 当资源索引达到最大值或最小值, 资源索引重置。 反之, 如果 资源索引由 RNC分配, 所述资源索引的变化规则同上。
在一些可行的实施方式中, 资源请求设备可在除首次申请资源的之外的其 他资源申请流程触发之前, 先请求资源提供设备执行本发明资源泄漏的修复方 法的第一实施例的流程 , 确保资源提供设备为资源请求设备提供修复好的资源。
由上可见, 在本发明的一些可行的实施方式中, 从资源请求设备向资源提 供设备发送资源确认请求消息, 所述资源确认请求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备已从所述资源提供设备获取的资 源; 以使所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经 分配给所述资源请求设备, 但所述资源请求设备并未获取到的资源, 并将所述 查找到的资源初始化为未分配状态。 由此可使泄漏的资源获得重分配的机会, 完成资源泄漏的修复。
图 10为本发明的可用于实施本发明的请求对资源泄漏进行修改的方法实施 例的资源请求设备的第六实施例的结构组成示意图。 如图 10所示, 本发明的资 源请求设备 10可包括: 输入装置 101、 输出装置 102和处理器 103 (具体实现 中,资源请求设备 10的处理器 103可为多个, 图 10中仅以一个为例进行说明); 在一些可行的实施方式中, 输入装置 101、输出装置 102和处理器 103可通 过总线或其他方式连接, 图 10中以总线连接为例。
在一些可行的实施方式中, 处理器 103可执行如下步骤:
通过所述输出装置向资源提供设备发送资源确认请求消息, 所述资源确认 请求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备 已从所述资源提供设备获取的资源;
以使所述资源提供设备根据所述第一指示信息确定所述第一指示信息所指 示的资源是否已经成功分配。
在一些可行的实施方式中, 所述处理器 103 通过所述输出装置向资源提供 设备发送资源确认请求消息之后, 还执行如下步骤:
通过所述输入装置接收所述资源提供设备向所述资源请求设备发送的资源 确认响应消息, 所述资源确认响应消息中携带审计字段, 所述审计字段用于告 知所述资源请求设备所述资源提供设备已响应所述资源确认请求消息。
在一些可行的实施方式中, 所述资源确认请求消息包括用户状态更新命令 消息。
在一些可行的实施方式中, 所述资源确认请求消息包括审计请求消息, 且 所述资源确认响应消息包括审计响应消息;
或者, 所述资源确认请求消息包括物理共享信道重配置请求消息, 且所述 资源确认响应消息包括物理共享信道重配置响应消息;
或者, 所述资源确认请求消息包括用户状态更新确认请求消息, 且所述资 源确认响应消息包括用户状态更新确认响应消息。 在一些可行的实施方式中, 所述第一指示信息包括所述资源请求设备已从 所述资源提供设备获取的资源的资源索引或资源本身。
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配;
或者, 所述资源索引由所述处理器在发送所述资源确认请求消息前进行分 配。
在一些可行的实施方式中, 当一条资源确认请求消息无法携带完一次请求 的资源的资源索引或资源本身时, 所述资源请求设备需向资源提供设备发送多 条资源确认请求消息, 其中每条资源确认请求消息的第一指示信息还包括与下 一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资源提供设备 是否已经接收完所述一次请求的资源的资源索引或资源本身。
在一些可行的实施方式中, 所述资源包括增强上行专用控制信道无线网络 临时标识和公共增强上行专用控制信道资源中至少一种;
且所述资源为分组或者非分组形式。
在一些可行的实施方式中, 所述资源请求设备包括基站控制器。
图 10.1为本发明的可用于实施本发明的请求对资源泄漏进行修改的方法实 施例的资源请求设备的第七实施例的结构组成示意图。 如图 10.1所示, 本发明 的资源请求设备 1010可包括:输入装置 1011、输出装置 1012和处理器 1013 (具 体实现中, 资源请求设备 1010的处理器 1013可为多个, 图 10.1中仅以一个为 例进行说明;);
在一些可行的实施方式中, 输入装置 1011、 输出装置 1012和处理器 1013 可通过总线或其他方式连接, 图 10.1中以总线连接为例。
在一些可行的实施方式中, 处理器 1013可执行如下步骤:
通过所述输出装置向资源提供设备发送资源确认请求消息, 所述资源确认 请求消息中携带资源确认项, 所述资源确认项用于指示所述资源请求设备已从 所述资源提供设备获取资源;
以使所述资源提供设备根据所述资源确认项确定所述资源提供设备分配给 所述资源请求设备的资源是否已经成功分配。
在一些可行的实施方式中, 所述资源确认请求消息包括物理共享信道重配 置响应确认消息, 所述资源确认项的取值包括确认和未确认, 当资源确认项的 取值为确认时, 表明所述资源提供设备分配给所述资源请求设备的资源已被资 源请求设备获取, 当资源确认项的取值为未确认时, 表明所述资源提供设备分 配给所述资源请求设备的资源未被资源请求设备获取。
在一些可行的实施方式中, 所述资源包括增强上行专用控制信道无线网络 临时标识和公共增强上行专用控制信道资源中至少一种;
且所述资源为分组或者非分组形式。
在一些可行的实施方式中, 所述资源请求设备包括基站控制器。 施例的结构组成示意图。 如图 11所示, 本发明的资源提供设备 11可包括接收 模块 111、 分析模块 112以及修复模块 113 , 其中:
接收模块 111 , 用于从资源请求设备接收资源确认请求消息, 所述资源确认 请求消息中携带资源确认项, 所述资源确认项用于指示所述资源请求设备已从 所述资源提供设备获取资源。
分析模块 112,用于根据所述接收模块 111接收的所述资源确认请求消息确 定所述资源资源提供设备分配给所述资源请求设备的资源是否已经成功分配。 修复模块 113 ,用于当所述分析模块 112确定所述资源提供设备分配给所述资源 请求设备的资源是否未成功分配时, 将所述资源初始化为未分配状态。
在一些可行的实施方式中, 接收模块 i n所接收的资源确认请求消息包括 物理共享信道重配置响应确认消息 PHYSICAL SHARED CHANNEL
RECONFIGURATION RESPONSE CONFIRM, 所述物理共享信道重配置响应确 认消息中携带资源确认项, 当所述资源确认项的取值为确认 Confirmed时,表明 所述资源提供设备分配给所述资源请求设备的资源已被资源请求设备获取, 当 资源确认项的取值为未确认 Not— Confirmed时,表明所述资源提供设备分配给所 述资源请求设备的资源未被资源请求设备获取。
此时, 所述分析模块 112具体用于分析资源确认项的取值, 当资源确认项 的取值为确认时, 确定所述资源资源提供设备分配给所述资源请求设备的资源 已经成功分配, 当资源确认项的取值为未确认时, 确定所述资源资源提供设备 分配给所述资源请求设备的资源未成功分配; 或者, 当所述接收模块 111 未收 到所述资源请求设备发送的物理共享信道重配置响应确认消息, 则所述分析模 块确定所述资源提供设备分配给所述资源请求设备的资源未成功分配。 在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种, 且所述 E-RNTI可为分组形式。
在一些可行的实施方式中, 当本发明的 E-RNTI为分组形式时, 本发明的资 源提供设备还可包括:
分组资源配置模块 114,用于通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增强上行专用 控制信道资源消息体为所述资源请求设备分配增强上行专用控制信道无线网络 临时标识, 所述公共增强上行专用控制信道资源的结构中包括扩展增强上行专 用控制信道无线网络临时标识字段 Extended E-RNTI, 所述扩展增强上行专用控 制信道无线网络临时标识字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临 时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标识分组的分 组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的起始增强上 行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控制信道无线 网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的个数 和步长。 表 1 列举了 NodeB 通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的结构示意图。
表 1 :
IE/Group Name Presence Range IE Type
and
Reference
UL Common MAC Flow L. xmaxno
Specific Information ofCommonM
Response ACFlows»
E-RNTI 0 9.2.2.139
Extended E-RNTI 0 0...<M>
>Group Index M 0...<S-1> 组编号
>Starting E-RNTI M 起始
E-RNTI
> Number of E-RNTI per M 1 ...N 组内
group E-RNTI个
>Step of E-RNTI per M 1 ...L 组内
group E-RNTI的
步长 如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index )、 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无线 网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上行 专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网络 临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信道 无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的 个数为小于等于 256 的正整数。 在表 1 中, Μ 为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; L为每个 E-RNTI GROUP内 E-RNTI之间允许的最大步长; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S 的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
发送模块 115 ,用于将分组资源配置模块 114的配置好的物理共享信道重配 置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 发送给资源请求设备。
这样本发明的接收模块 111所接收的资源确认项也可为 E-RNTI分组。 当本 发明的 E-RNTI为分组形式时,可减少资源提供设备与资源请求设备之间的 IUB 接口的数据流量, 提高资源分配及审计的速率。
由上可见, 在本发明的一些可行的实施方式中, 资源提供设备可从资源请 求设备接收资源确认请求消息, 所述资源确认请求消息中携带资源确认项, 所 述资源确认项用于指示所述资源请求设备已从所述资源提供设备获取资源; 所 述资源提供设备根据所述资源确认请求消息确定所述资源资源提供设备分配给 所述资源请求设备的资源是否已经成功分配; 当所述资源提供设备确定所述资 源提供设备分配给所述资源请求设备的资源是否未成功分配时, 将所述资源初 始化为未分配状态。 由此可使泄漏的资源获得重分配的机会, 完成资源泄漏的 修复。 实施例的结构组成示意图。 如图 11.1所示, 本发明的资源提供设备 120可包括 接收模块 1201、 分析模块 1202、 修复模块 1203 , 其中:
接收模块 1201 , 用于从资源请求设备接收资源确认请求消息, 所述资源确 认请求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设 备已从该资源提供设备获取的资源。
分析模块 1202,用于根据所述接收模块 1201接收的第一指示信息查找该资 源提供设备已经分配给所述资源请求设备, 但所述资源请求设备并未获取到的 资源。 修复模块 1203 ,用于将所述分析模块 1202查找到的资源初始化为未分配状 态。
在一些可行的实施方式中, 所述接收模块 1201所述接收到的资源确认请求 消息包括用户状态更新命令消息( UE STATUS UPDATE COMMAND ), 所述用 户状态更新命令消息中携带的第一指示信息包括资源索引(比如, E-RNTI Index 信息 , 或者 Common E-DCH System Information Index信息 , 或者 E-RNTI Group Index信息)或者资源本身, 所述资源索引可为资源的标识或者申请批次编号等 任何可以与资源唯一对应的标识信息; 所述资源确认请求消息用于使所述资源 提供设备根据所述资源索引或者资源本身, 查找所述资源提供设备中标记为已 分配给所述资源请求设备, 但所述资源索引中未指示或所述资源本身未包括的 资源, 并将所述查找到的资源初始化为未分配状态。 在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资源请求设备分配资源同时进行分 配; 或者, 所述资源索引由所述资源请求设备在发送所述资源确认请求消息前 进行分配。 在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下一条资源索引时,在所述被确认的资源对应的资源索引基础上加 1或减 1; 可以理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 源索引中未指示或者资源本身中不包括但资源提供设备已经分配给所述资源请 求设备的资源。
在一些可行的实施方式中, 当一条资源确认请求消息无法携带完一次请求 的资源的资源索引或资源本身时, 所述资源提供设备的接收模块需从资源请求 设备接收多条资源确认请求消息, 其中每条资源确认请求消息的第一指示信息 还包括与下一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资 源提供设备是否已经接收完所述一次请求的资源的资源索引或资源本身;
当所述接收模块接收完所述一次请求的资源对应的所有资源确认请求消息 后, 所述分析模块用于根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种, 且所述 E-RNTI为分组形式。 在一些可行的实施方式中, 当本发明的 E-RNTI为分组形式时, 本发明的资 源提供设备还可包括:
分组资源配置模块 1204 , 用于通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增 强上行专用控制信道资源消息体为所述资源请求设备分配增强上行专用控制信 道无线网络临时标识, 所述公共增强上行专用控制信道资源的结构中包括扩展 增强上行专用控制信道无线网络临时标识字段 Extended E-RNTI, 所述扩展增强 上行专用控制信道无线网络临时标识字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临 时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标识分组的分 组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的起始增强上 行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控制信道无线 网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的个数 和步长。 表 1 列举了 NodeB 通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的结构示意图。
表 1 :
IE/Group Name Presence Range IE Type
and
Reference
UL Common MAC Flow L. xmaxno
Specific Information ofCommonM
Response ACFlows»
E-RNTI 0 9.2.2.139
Extended E-RNTI 0 0...<M>
>Group Index M 0...<S-1> 组编号
>Starting E-RNTI M 起始
E-RNTI
> Number of E-RNTI per M 1 ...N 组内
group E-RNTI个
>Step of E-RNTI per M 1 ...L 组内
group E-RNTI的
步长 如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index )、 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无线 网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上行 专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网络 临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信道 无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的 个数为小于等于 256 的正整数。 在表 1 中, Μ 为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; L为每个 E-RNTI GROUP内 E-RNTI之间允许的最大步长; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S 的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
发送模块 1205 ,用于将分组资源配置模块 1204的配置好的物理共享信道重 配置响应 消 息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE发送给资源请求设备。
本发明的接收模块 1201所接收的资源确认项也可为 E-RNTI分组。 当本发 明的 E-RNTI为分组形式时, 可减少资源提供设备与资源请求设备之间的 IUB 接口的数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 所述资源提供设备通过物理共享信道重配置响
所述公共增强上行专用控制信道资源时引入资源索引 , 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息;
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 例 如, 如果资源索引由 Node B分配, 当收到 RNC的带有相同资源索引的资源确 认请求消息时, 则认为所述资源索引对应的资源被确认, Node B分配下一条资 源索引时,在所述被确认的资源对应的资源索引基础上加 1或减 1 ,否则 Node B 分配下一条资源时仍然携带之前分配的未确认的资源索引号, 上述过程重复。 可以理解的是, 当资源索引达到最大值或最小值, 资源索引重置。 反之, 如果 资源索引由 RNC分配, 所述资源索引的变化规则同上。
由上可见, 在本发明的一些可行的实施方式中, 资源提供设备从资源请求 设备接收资源确认请求消息, 所述资源确认请求消息中携带第一指示信息, 所 述第一指示信息用于指示所述资源请求设备已从所述资源提供设备获取的资 源; 所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源; 所述资源提供 设备将所述查找到的资源初始化为未分配状态。 由此可使泄漏的资源获得重分 配的机会, 完成资源泄漏的修复。 施例的结构组成示意图。 如图 12所示, 本发明的资源提供设备 12可包括接收 模块 121、 分析模块 122、 修复模块 123以及发送模块 124, 其中:
接收模块 121 , 用于从资源请求设备接收资源确认请求消息, 所述资源确认 请求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备 已从该资源提供设备获取的资源。
分析模块 122,用于根据所述接收模块 121接收的第一指示信息查找该资源 提供设备已经分配给所述资源请求设备, 但所述资源请求设备并未获取到的资 源。
修复模块 123 ,用于将所述分析模块 122查找到的资源初始化为未分配状态。 发送模块 124, 用于向所述资源请求设备发送资源确认响应消息, 所述资源 确认响应消息用于告知所述资源请求设备该资源提供设备已响应所述资源确认 请求消息。
在一些可行的实施方式中, 所述接收模块 121 所述接收到的资源确认请求 消息包括审计请求消息 AUDIT REQUEST, 所述审计请求消息中携带的第一指 示信息包括资源索引(比如, E-RNTI Index信息, 或者 Common E-DCH System Information Index信息, 或者 E-RNTI Group Index信息 )或者资源本身, 所述资 源索引可为资源的标识或者申请批次编号等任何可以与资源唯一对应的标识信 息; 所述资源确认请求消息用于使所述资源提供设备根据所述资源索引或者资 源本身, 查找所述资源提供设备中标记为已分配给所述资源请求设备, 但所述 资源索引中未指示或所述资源本身未包括的资源, 并将所述查找到的资源初始 化为未分配状态。 在一些可行的实施方式中, 所述资源索引由所述资源提供设 备在对所述资源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述 资源请求设备在发送所述资源确认请求消息前进行分配。 在一些可行的实施方 式中, 当所述资源索引对应的资源被确认时, 分配下一条资源索引时, 在所述 被确认的资源对应的资源索引基础上加 1或减 1 ; 可以理解的是, 当资源索引递 增或递减到最大或最小值时, 资源索引可以重置。
所述分析模块 122具体用于根据所述资源索引或者资源本身, 查找所述资 源索引中未指示或者资源本身中不包括但资源提供设备已经分配给所述资源请 求设备的资源。
在一些可行的实施方式中, 当一条资源确认请求消息无法携带完一次请求 的资源的资源索引或资源本身时, 所述资源提供设备的接收模块需从资源请求 设备接收多条资源确认请求消息, 其中每条资源确认请求消息的第一指示信息 还包括与下一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资 源提供设备是否已经接收完所述一次请求的资源的资源索引或资源本身;
当所述接收模块接收完所述一次请求的资源对应的所有资源确认请求消息 后, 所述分析模块用于根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源。
所述发送模块 124 向所述资源请求设备发送资源确认响应消息包括审计响 应消息 AUDIT RESPONSE, 所述审计响应消息中携带审计字段, 所述审计字段 用于告知所述资源请求设备所述资源提供设备已响应所述资源确认请求消息。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种, 且所述 E-RNTI为分组形式。
这样当本发明的资源为 E-RNTI时, 接收模块 121接收的审计请求消息为 E-RNTI AUDIT REQUEST,发送模块 124发送的审计响应消息为 E-RNTI AUDIT RESPONSE。
而当本发明的资源为 CommEDCH时, 接收模块 121接收的审计请求消息 为 Common E-DCH System Information AUDIT REQUEST,发送模块 124发送的 审计响应消息为 Common E-DCH System Information AUDIT RESPONSE。
在一些可行的实施方式中, 当本发明的 E-RNTI为分组形式时, 本发明的资 源提供设备还可包括:
分组资源配置模块 125 ,用于通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增强上行专用 控制信道资源消息体为所述资源请求设备分配增强上行专用控制信道无线网络 临时标识, 所述公共增强上行专用控制信道资源的结构中包括扩展增强上行专 用控制信道无线网络临时标识字段 Extended E-RNTI, 所述扩展增强上行专用控 制信道无线网络临时标识字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临 时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标识分组的分 组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的起始增强上 行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控制信道无线 网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的个数 和步长。 表 1 列举了 NodeB 通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的 示意图。
如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index )、 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无线 网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上行 专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网络 临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信道 无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的 个数为小于等于 256 的正整数。 在表 1 中, Μ 为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; L为每个 E-RNTI GROUP内 E-RNTI之间允许的最大步长; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
这样, 本实施例的发送模块 124还用于将分组资源配置模块 125配置好的 物理共享信道重 配置响应 消 息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE发送给资源请求设备。
这样本发明的接收模块 121所接收的资源确认项也可为 E-RNTI分组。当本 发明的 E-RNTI为分组形式时,可减少资源提供设备与资源请求设备之间的 IUB 接口的数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 所述资源提供设备通过物理共享信道重配置响 所述公共增强上行专用控制信道资源时引入资源索引, 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息;
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 例 如, 如果资源索引由 Node B分配, 当收到 RNC的带有相同资源索引的资源确 认请求消息时, 则认为所述资源索引对应的资源被确认, Node B分配下一条资 源索引时,在所述被确认的资源对应的资源索引基础上加 1或减 1 ,否则 Node B 分配下一条资源时仍然携带之前分配的未确认的资源索引号, 上述过程重复。 可以理解的是, 当资源索引达到最大值或最小值, 资源索引重置。 反之, 如果 资源索引由 RNC分配, 所述资源索引的变化规则同上。
在一些可行的实施方式中, 当本发明的资源为 E-RNTI时,发送模块 124发 送的审计响应消息 AUDIT RESPONSE 中的审计字段可为 E-RNTI Audit Confirm, 则当资源请求设备收到 E-RNTI Audit Confirm字段就表明资源提供设 备已对资源请求设备发送的资源确认请求消息进行了处理。 当本发明的资源为 CommEDCH时 , 发送模块 124发送的审计响应消息 AUDIT RESPONSE中的审 计字段可为 CommEDCH Confirm,则当资源请求设备收到 CommEDCH Confirm 字段就表明资源提供设备已对资源请求设备发送的资源确认请求消息进行了处 理。
由上可见, 在本发明的一些可行的实施方式中, 资源提供设备从资源请求 设备接收资源确认请求消息, 所述资源确认请求消息中携带第一指示信息, 所 述第一指示信息用于指示所述资源请求设备已从所述资源提供设备获取的资 源; 所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源; 所述资源提供 设备将所述查找到的资源初始化为未分配状态。 由此可使泄漏的资源获得重分 配的机会, 完成资源泄漏的修复。 施例的结构组成示意图。 如图 13所示, 本发明的资源提供设备 13可包括接收 模块 131、 分析模块 132、 修复模块 133以及发送模块 134, 其中:
接收模块 131 , 用于从资源请求设备接收资源确认请求消息, 所述资源确认 请求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备 已从该资源提供设备获取的资源。
分析模块 132,用于根据所述接收模块 131接收的第一指示信息查找该资源 提供设备已经分配给所述资源请求设备, 但所述资源请求设备并未获取到的资 源。
修复模块 133 ,用于将所述分析模块 132查找到的资源初始化为未分配状态。 发送模块 134, 用于向所述资源请求设备发送资源确认响应消息, 所述资源 确认响应消息用于告知所述资源请求设备该资源提供设备已响应所述资源确认 请求消息。
在一些可行的实施方式中, 所述接收模块 131 所述接收到的资源确认请求 消息包括物理共享信道重配置请求消息 PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST, 所述物理共享信道重配置请求消息中携带的 第一指示信息包括资源索引 (比如, E-RNTI Index信息, 或者 Common E-DCH System Information Index信息, 或者 E-RNTI Group Index信息)或者资源本身, 所述资源索引可为资源的标识或者申请批次编号等任何可以与资源唯一对应的 标识信息; 所述资源确认请求消息用于使所述资源提供设备根据所述资源索引 或者资源本身, 查找所述资源提供设备中标记为已分配给所述资源请求设备, 但所述资源索引中未指示或所述资源本身未包括的资源, 并将所述查找到的资 源初始化为未分配状态。 在一些可行的实施方式中, 所述资源索引由所述资源 提供设备在对所述资源请求设备分配资源同时进行分配; 或者, 所述资源索引 由所述资源请求设备在发送所述资源确认请求消息前进行分配。 在一些可行的 实施方式中, 当所述资源索引对应的资源被确认时, 分配下一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以理解的是, 当资源 索引递增或递减到最大或最小值时, 资源索引可以重置。
所述分析模块 132具体用于根据所述资源索引或者资源本身, 查找所述资 源索引中未指示或者资源本身中不包括但资源提供设备已经分配给所述资源请 求设备的资源。 在一些可行的实施方式中, 当一条资源确认请求消息无法携带完一次请求 的资源的资源索引或资源本身时, 所述资源提供设备的接收模块需从资源请求 设备接收多条资源确认请求消息, 其中每条资源确认请求消息的第一指示信息 还包括与下一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资 源提供设备是否已经接收完所述一次请求的资源的资源索引或资源本身;
当所述接收模块接收完所述一次请求的资源对应的所有资源确认请求消息 后, 所述分析模块用于根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源。
所述发送模块 134所发送的资源确认响应消息包括物理共享信道重配置响 应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE , 所 述物理共享信道重配置响应消息中携带审计字段, 所述审计字段用于告知所述 资源请求设备所述资源提供设备已响应所述资源确认请求消息。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种, 且所述 E-RNTI为分组形式。
在一些可行的实施方式中, 当本发明的 E-RNTI为分组形式时, 本发明的资 源提供设备还可包括:
分组资源配置模块 135 ,用于通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增强上行专用 控制信道资源消息体为所述资源请求设备分配增强上行专用控制信道无线网络 临时标识, 所述公共增强上行专用控制信道资源的结构中包括扩展增强上行专 用控制信道无线网络临时标识字段 Extended E-RNTI, 所述扩展增强上行专用控 制信道无线网络临时标识字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临 时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标识分组的分 组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的起始增强上 行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控制信道无线 网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的个数 和步长。 表 1 列举了 NodeB 通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的 示意图。
Figure imgf000104_0001
如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index )、 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无线 网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上行 专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网络 临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信道 无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的 个数为小于等于 256 的正整数。 在表 1 中, M 为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; L为每个 E-RNTI GROUP内 E-RNTI之间允许的最大步长; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
这样, 本实施例的发送模块 134发送的 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息除包括审计字段之外,还包括分组资源配 置模块 134配置的扩展增强上行专用控制信道无线网络临时标识字段 Extended E-RNTI。
这样本发明的接收模块 131所接收的资源确认项也可为 E-RNTI分组。当本 发明的 E-RNTI为分组形式时,可减少资源提供设备与资源请求设备之间的 IUB 接口的数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 所述资源提供设备通过物理共享信道重配置响
所述公共增强上行专用控制信道资源时引入资源索引 , 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息;
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 例 如, 如果资源索引由 Node B分配, 当收到 RNC的带有相同资源索引的资源确 认请求消息时, 则认为所述资源索引对应的资源被确认, Node B分配下一条资 源索引时,在所述被确认的资源对应的资源索引基础上加 1或减 1 ,否则 Node B 分配下一条资源时仍然携带之前分配的未确认的资源索引号, 上述过程重复。 可以理解的是, 当资源索引达到最大值或最小值, 资源索引重置。 反之, 如果 资源索引由 RNC分配, 所述资源索引的变化规则同上。
在一些可行的实施方式中, 当本发明的资源为 E-RNTI时,发送模块 134发 送的 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的审 计字段可为 E-RNTI Audit Confirm, 则当资源请求设备收到 E-RNTI Audit Confirm 字段就表明资源提供设备已对资源请求设备发送的资源确认请求消息 进行了处理。 当本发明的资源为 CommEDCH 时, 发送模块 134 发送的 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的审计字 段可为 CommEDCH Confirm,则当资源请求设备收到 CommEDCH Confirm字段 就表明资源提供设备已对资源请求设备发送的资源确认请求消息进行了处理。
由上可见, 在本发明的一些可行的实施方式中, 资源提供设备从资源请求 设备接收资源确认请求消息, 所述资源确认请求消息中携带第一指示信息, 所 述第一指示信息用于指示所述资源请求设备已从所述资源提供设备获取的资 源; 所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源; 所述资源提供 设备将所述查找到的资源初始化为未分配状态。 由此可使泄漏的资源获得重分 配的机会, 完成资源泄漏的修复。 实施例的结构组成示意图。 如图 13.1所示, 本发明的资源提供设备 1301可包括 接收模块 1311、 分析模块 1312、 修复模块 1313以及发送模块 1314, 其中: 接收模块 1311 , 用于从资源请求设备接收资源确认请求消息, 所述资源确 认请求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设 备已从该资源提供设备获取的资源。
分析模块 1312,用于根据所述接收模块 1311接收的第一指示信息查找该资 源提供设备已经分配给所述资源请求设备, 但所述资源请求设备并未获取到的 资源。
修复模块 1313 ,用于将所述分析模块 1312查找到的资源初始化为未分配状 态。 发送模块 1314, 用于向所述资源请求设备发送资源确认响应消息, 所述资 源确认响应消息用于告知所述资源请求设备该资源提供设备已响应所述资源确 认请求消息。
在一些可行的实施方式中, 所述接收模块 1311所述接收到的资源确认请求 消息包括用户状态更新确认请求消息 ( UE STATUS UPDATE CONFIRM REQUEST ), 所述用户状态更新确认请求消息中携带的的第一指示信息包括资 源索引 (比如, E-RNTI Index信息, 或者 Common E-DCH System Information Index信息, 或者 E-RNTI Group Index信息)或者资源本身, 所述资源索引可为 资源的标识或者申请批次编号等任何可以与资源唯一对应的标识信息; 所述资 源确认请求消息用于使所述资源提供设备根据所述资源索引或者资源本身, 查 找所述资源提供设备中标记为已分配给所述资源请求设备, 但所述资源索引中 未指示或所述资源本身未包括的资源, 并将所述查找到的资源初始化为未分配 状态。 在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述 资源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设 备在发送所述资源确认请求消息前进行分配。 在一些可行的实施方式中, 当所 述资源索引对应的资源被确认时, 分配下一条资源索引时, 在所述被确认的资 源对应的资源索引基础上加 1或减 1 ; 可以理解的是, 当资源索引递增或递减到 最大或最小值时, 资源索引可以重置。 源索引中未指示或者资源本身中不包括但资源提供设备已经分配给所述资源请 求设备的资源。
在一些可行的实施方式中, 当一条资源确认请求消息无法携带完一次请求 的资源的资源索引或资源本身时, 所述资源提供设备的接收模块需从资源请求 设备接收多条资源确认请求消息, 其中每条资源确认请求消息的第一指示信息 还包括与下一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资 源提供设备是否已经接收完所述一次请求的资源的资源索引或资源本身;
当所述接收模块接收完所述一次请求的资源对应的所有资源确认请求消息 后, 所述分析模块用于根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源。
所述发送模块 1314所发送的资源确认响应消息包括用户状态更新确认响应 消息( UE STATUS UPDATE CONFIRM RESPONSE ), 所述用户状态更新确认响 应消息中携带审计字段, 所述审计字段包括资源确认字段(比如, E-RNTIAudit Confirm字段, 或者 Common E-DCH System Information Audit Confirm字段) , 和 /或资源索引 (比如, E-RNTI Index 信息, 或者 Common E-DCH System Information Index信息, 或者 E-RNTI Group Index信息;), 所述审计字段用于告 知所述资源请求设备所述资源提供设备已响应所述资源确认请求消息。
在一些可行的实施方式中, 本发明的资源可包括增强上行专用控制信道无 线网络临时标识 E-RNTI和公共增强上行专用控制信道资源 CommEDCH中至少 一种, 且所述 E-RNTI为分组形式。
在一些可行的实施方式中, 当本发明的 E-RNTI为分组形式时, 本发明的资 源提供设备还可包括:
分组资源配置模块 1315 , 用于通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的公共增 强上行专用控制信道资源消息体为所述资源请求设备分配增强上行专用控制信 道无线网络临时标识, 所述公共增强上行专用控制信道资源的结构中包括扩展 增强上行专用控制信道无线网络临时标识字段 Extended E-RNTI, 所述扩展增强 上行专用控制信道无线网络临时标识字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临 时标识分组的个数, 每一个增强上行专用控制信道无线网络临时标识分组的分 组编号、 每一个增强上行专用控制信道无线网络临时标识分组中的起始增强上 行专用控制信道无线网络临时标识的编号, 每一个增强上行专用控制信道无线 网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的个数 和步长。 表 1 列举了 NodeB 通过 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 的公共增强上行专用控制信道资源消息体 ( Common E-DCH System Information Response ) 为所述资源请求设备分配增强 上行专用控制信道无线网络临时标识时, 公共增强上行专用控制信道资源消息 体的结构示意图。
表 1 : IE/Group Name Presence Range IE Type
and
Reference
UL Common MAC Flow L. xmaxno
Specific Information ofCommonM
Response ACFlows»
E-RNTI 0 9.2.2.139
Extended E-RNTI 0 0...<M>
>Group Index M 0...<S-1> 组编号
>Starting E-RNTI M 起始
E-RNTI
> Number of E-RNTI per M 1 ...N 组内
group E-RNTI个
>Step of E-RNTI per M 1 ...L 组内
group E-RNTI的
步长 如表 1 可知, 所述公共增强上行专用控制信道资源的结构中包括扩展增强 上行专用控制信道无线网络临时标识字段 ( Extended E-RNTI ), 所述 Extended E-RNTI 字段包括 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE 中携带的增强上行专用控制信道无线网络临时标识分组的个数 ( Extended E-RNTI ),每一个增强上行专用控制信道无线网络临时标识分组的分 组编号( Group index )、 每一个增强上行专用控制信道无线网络临时标识分组中 的起始增强上行专用控制信道无线网络临时标识的编号 (Starting E-RNTI ), 每 一个增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控 制信道无线网络临时标识的个数 ( Number of E-RNTI per group )和步长( step of E-RNTI per group )。
在一些可行的实施方式中, 所述增强上行专用控制信道无线网络临时标识 分组的个数为小于等于 256 的正整数; 所述每一个增强上行专用控制信道无线 网络临时标识分组的分组编号为小于等于 256 的正整数; 所述每一个增强上行 专用控制信道无线网络临时标识分组中的起始增强上行专用控制信道无线网络 临时标识的编号为小于等于 256 的正整数; 所述每一个增强上行专用控制信道 无线网络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的 个数为小于等于 256 的正整数。 在表 1 中, Μ 为每条 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息中允许携带的最大 E-RNTI分 组( E-RNTI GROUP )个数; N为每个 E-RNTI GROUP内的允许的最大 E-RNTI 个数; L为每个 E-RNTI GROUP内 E-RNTI之间允许的最大步长; S为 E-RNTI GROUP的最大分组数。 其中, S可在每小区的整体 E-RNTI资源内唯一编号, 即 S 的取值取决于 N的大小。 例如 N取值为 8, 那么 S的取值应为(65536/8 = )8192; N取 256, 则 S的取值对应为 ( 65536/256= ) 256。 其中, M取值 256, S取值 256, N取值 256。
这样, 本实施例的发送模块 1314 还用于发送 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE消息 ,该消息包括分组资源配置模 块 1315 配置的扩展增强上行专用控制信道无线网络临时标识字段 Extended E-RNTI。
这样本发明的接收模块 1311所接收的资源确认项也可为 E-RNTI分组。 当 本发明的 E-RNTI 为分组形式时, 可减少资源提供设备与资源请求设备之间的 IUB接口的数据流量, 提高资源分配及审计的速率。
在一些可行的实施方式中, 所述资源提供设备通过物理共享信道重配置响
所述公共增强上行专用控制信道资源时引入资源索引 , 所述资源索引可为资源 的标识或者申请批次编号等任何可以与资源唯一对应的标识信息;
在一些可行的实施方式中, 所述资源索引由所述资源提供设备在对所述资 源请求设备分配资源同时进行分配; 或者, 所述资源索引由所述资源请求设备 在发送所述资源确认请求消息前进行分配。
在一些可行的实施方式中, 当所述资源索引对应的资源被确认时, 分配下 一条资源索引时, 在所述被确认的资源对应的资源索引基础上加 1或减 1 ; 可以 理解的是, 当资源索引递增或递减到最大或最小值时, 资源索引可以重置。 例 如, 如果资源索引由 Node B分配, 当收到 RNC的带有相同资源索引的资源确 认请求消息时, 则认为所述资源索引对应的资源被确认, Node B分配下一条资 源索引时,在所述被确认的资源对应的资源索引基础上加 1或减 1 ,否则 Node B 分配下一条资源时仍然携带之前分配的未确认的资源索引号, 上述过程重复。 可以理解的是, 当资源索引达到最大值或最小值, 资源索引重置。 反之, 如果 资源索引由 RNC分配, 所述资源索引的变化规则同上。 在一些可行的实施方式中, 当本发明的资源为 E-RNTI时,发送模块 134发 送的 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的审 计字段可为 E-RNTI Audit Confirm, 则当资源请求设备收到 E-RNTI Audit Confirm 字段就表明资源提供设备已对资源请求设备发送的资源确认请求消息 进行了处理。 当本发明的资源为 CommEDCH 时, 发送模块 1314 发送的 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE中的审计字 段可为 CommEDCH Confirm,则当资源请求设备收到 CommEDCH Confirm字段 就表明资源提供设备已对资源请求设备发送的资源确认请求消息进行了处理。
由上可见, 在本发明的一些可行的实施方式中, 资源提供设备从资源请求 设备接收资源确认请求消息, 所述资源确认请求消息中携带第一指示信息, 所 述第一指示信息用于指示所述资源请求设备已从所述资源提供设备获取的资 源; 所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源; 所述资源提供 设备将所述查找到的资源初始化为未分配状态。 由此可使泄漏的资源获得重分 配的机会, 完成资源泄漏的修复。 施例的结构组成示意图。 如图 14所示, 本发明的资源提供设备 14可包括: 输 入装置 141、 输出装置 142和处理器 143 (具体实现中, 资源提供设备 14的处 理器 143可为多个, 图 14中仅以一个为例进行说明);
在一些可行的实施方式中, 输入装置 141、输出装置 142和处理器 143可通 过总线或其他方式连接, 图 14中以总线连接为例。
在一些可行的实施方式中, 处理器 143可执行如下步骤:
通过所述输入装置从资源请求设备接收资源确认请求消息, 所述资源确认 请求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备 已从所述资源提供设备获取的资源;
根据所述第一指示信息查找所述资源提供设备已经分配给所述资源请求设 备, 但所述资源请求设备并未获取到的资源;
将所述查找到的资源初始化为未分配状态。
在一些可行的实施方式中, 所述处理器将所述资源提供设备已经分配给所 述资源请求设备, 但所述资源请求设备并未获取到的资源初始化为未分配状态 之后, 还执行如下步骤:
通过所述输出装置向所述资源请求设备发送资源确认响应消息, 所述审计 响应消息中携带审计字段, 所述审计字段用于告知所述资源请求设备所述资源 提供设备已响应所述资源确认请求消息。
在一些可行的实施方式中, 所述资源确认请求消息包括用户状态更新命令 消息。
在一些可行的实施方式中, 所述资源确认请求消息包括审计请求消息, 且 所述资源确认响应消息包括审计响应消息;
或者, 所述资源确认请求消息包括物理共享信道重配置请求消息, 且所述 资源确认响应消息包括物理共享信道重配置响应消息;
或者, 所述资源确认请求消息包括用户状态更新确认请求消息, 且所述资 源确认响应消息包括用户状态更新确认响应消息。
在一些可行的实施方式中, 所述第一指示信息包括所述资源请求设备已从 所述资源提供设备获取的资源的资源索引或资源本身;
所述处理器根据所述第一指示信息查找所述资源提供设备已经分配给所述 资源请求设备, 但所述资源请求设备并未获取到的资源包括:
所述处理器查找所述资源索引中未指示或者资源本身中不包括但资源提供 设备已经分配给所述资源请求设备的资源。
在一些可行的实施方式中, 所述资源索引由所述处理器在对所述资源请求 设备分配资源同时进行分配;
或者, 所述资源索引由所述资源请求设备在发送所述资源确认请求消息前 进行分配。
在一些可行的实施方式中, 当一条资源确认请求消息无法携带完一次请求 的资源的资源索引或资源本身时, 所述处理器需向资源请求设备接收多条资源 确认请求消息, 其中每条资源确认请求消息的第一指示信息还包括与下一条资 源确认请求消息的关联信息, 所述关联信息用于告知所述资源提供设备是否已 经接收完所述一次请求的资源的资源索引或资源本身;
所述处理器在当所述输入装置接收完所述一次请求的资源对应的所有资源 确认请求消息后, 执行根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源的步骤。 在一些可行的实施方式中, 所述资源包括增强上行专用控制信道无线网络 临时标识和公共增强上行专用控制信道资源中至少一种; 且所述资源为分组或 者非分组形式。
在一些可行的实施方式中, 当所述增强上行专用控制信道无线网络临时标 识为分组形式时, 所述处理器从资源请求设备接收资源确认请求消息之前, 还 执行如下步骤:
通过物理共享信道重配置响应消息中的公共增强上行专用控制信道资源消 息体为所述资源请求设备分配增强上行专用控制信道无线网络临时标识, 所述 公共增强上行专用控制信道资源的结构中包括扩展增强上行专用控制信道无线 网络临时标识字段, 所述扩展增强上行专用控制信道无线网络临时标识字段包 括物理共享信道重配置响应消息中携带的增强上行专用控制信道无线网络临时 标识分组的个数, 每一个增强上行专用控制信道无线网络临时标识分组的分组 编号、 每一个增强上行专用控制信道无线网络临时标识分组中的起始增强上行 专用控制信道无线网络临时标识的编号, 每一个增强上行专用控制信道无线网 络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的个数和 步长。
在一些可行的实施方式中, 所述资源提供设备包括基站。
实施例的结构组成示意图。 如图 14.1所示, 本发明的资源提供设备 141可包括: 输入装置 1411、 输出装置 1412和处理器 1413 (具体实现中, 资源提供设备 141 的处理器 1413可为多个, 图 14.1中仅以一个为例进行说明);
在一些可行的实施方式中, 输入装置 1411、 输出装置 1412和处理器 1413 可通过总线或其他方式连接, 图 14.1中以总线连接为例。
在一些可行的实施方式中, 处理器 1413可执行如下步骤:
通过所述输入装置从资源请求设备接收资源确认请求消息, 所述资源确认 请求消息中携带资源确认项, 所述资源确认项用于指示所述资源请求设备已从 所述资源提供设备获取资源;
根据所述资源确认请求消息确定所述资源资源提供设备分配给所述资源请 求设备的资源是否已经成功分配;
当确定所述资源提供设备分配给所述资源请求设备的资源是否未成功分配 时, 将所述资源初始化为未分配状态。
在一些可行的实施方式中, 所述资源确认请求消息包括物理共享信道重配 置响应确认消息, 所述资源确认项的取值包括确认和未确认, 当资源确认项的 取值为确认时, 表明所述资源提供设备分配给所述资源请求设备的资源已被资 源请求设备获取, 当资源确认项的取值为未确认时, 表明所述资源提供设备分 配给所述资源请求设备的资源未被资源请求设备获取;
所述处理器根据所述资源确认请求消息确定所述资源资源提供设备分配给 所述资源请求设备的资源是否已经成功分配包括:
所述处理器分析资源确认项的取值, 当资源确认项的取值为确认时, 确定 所述资源资源提供设备分配给所述资源请求设备的资源已经成功分配, 当资源 确认项的取值为未确认时, 确定所述资源资源提供设备分配给所述资源请求设 备的资源未成功分配;
或者, 当所述输入装置未收到所述资源请求设备发送的物理共享信道重配 置响应确认消息, 则所述处理器确定所述资源提供设备分配给所述资源请求设 备的资源未成功分配。
在一些可行的实施方式中, 所述资源包括增强上行专用控制信道无线网络 临时标识和公共增强上行专用控制信道资源中至少一种; 且所述资源为分组或 者非分组形式。
在一些可行的实施方式中, 当所述增强上行专用控制信道无线网络临时标 识为分组形式时, 所述资源提供设备从资源请求设备接收资源确认请求消息之 前, 还执行如下步骤:
通过物理共享信道重配置响应消息中的公共增强上行专用控制信道资源消 息体为所述资源请求设备分配增强上行专用控制信道无线网络临时标识, 所述 公共增强上行专用控制信道资源的结构中包括扩展增强上行专用控制信道无线 网络临时标识字段, 所述扩展增强上行专用控制信道无线网络临时标识字段包 括物理共享信道重配置响应消息中携带的增强上行专用控制信道无线网络临时 标识分组的个数, 每一个增强上行专用控制信道无线网络临时标识分组的分组 编号、 每一个增强上行专用控制信道无线网络临时标识分组中的起始增强上行 专用控制信道无线网络临时标识的编号, 每一个增强上行专用控制信道无线网 络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的个数和 步长。
在一些可行的实施方式中, 所述资源提供设备包括基站。
除此之外, 本发明还提供网络系统, 所述网络系统可包括本发明前述的资 源请求设备和资源提供设备所述的各种实施例。 比如, 当网络系统包括的资源 请求设备为图 1所示的资源请求设备时,其可包括如图 11所示的资源提供设备。 而当网络系统包括的资源请求设备为图 2所示的资源请求设备时, 其可包括如 图 12所示的资源提供设备, 以此类推。
具体实现中, 本发明的资源申请及修复过程息息相关, 下面结合几个实施 例对资源申请及审计的消息传输流程进行举例说明。
图 15为本发明的 E-RNTI/CommEDCH资源的申请及修复过程的消息传输 的第一实施例流程示意图。 如图 15所示, 本发明的 E-RNTI/CommEDCH资源 的申请及修复过程可包括:
步骤 S10, RNC通过物理共享信道重配置请求消息 PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST 向 Node B 请 求 E-RNTI/CommEDCH资源。
步骤 SI 1 , Node B通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE向 RNC发送 E-RNTI/CommEDCH 资源。
步骤 S12 , RNC 通过物理共享信道重配置响应确认消息 PHYSICAL 求 E-RNTI/CommEDCH资源审计。
通过上述流程可使泄漏的 E-RNTI/CommEDCH资源获得重分配的机会, 完 成资源泄漏的修复。
图 15.1为本发明的 E-RNTI/CommEDCH资源的申请及修复过程的消息传输 的第一实施例流程示意图。 如图 15.1所示, 本发明的 NTI/CommEDCH资源的 申请及修复过程可包括:
本发明的 E-RNTI/CommEDCH资源的申请及修复过程可包括:
步骤 SOI , RNC通过物理共享信道重配置请求消息 PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST 向 Node B 请 求 E-RNTI/CommEDCH资源。 步骤 S02, Node B通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE向 RNC发送 E-RNTI/CommEDCH 资源。
步骤 S03 , RNC 通过用户状态更新命令消息 (UE STATUS UPDATE COMMAND ) 向 Node B请求 E-RNTI/CommEDCH资源审计。
通过上述流程可使泄漏的 E-RNTI/CommEDCH资源获得重分配的机会, 完 成资源泄漏的修复。
图 16为本发明的 E-RNTI资源的申请及修复过程的消息传输的第三实施例 流程示意图。 如图 16所示, 本发明的 E-RNTI资源的申请及修复过程可包括: 步骤 S20, RNC通过物理共享信道重配置请求消息 PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST向 Node B请求 E-RNTI资源。
步骤 S21 , Node B通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE向 RNC发送 E-RNTI资源。
步骤 S22, RNC通过 E-RNTI 审计请求消息 E-RNTI AUDIT REQUEST向 Node B请求 E-RNTI资源审计。
步骤 S23 , Node B 向 RNC发送 E-RNTI 审计响应消息 E-RNTI AUDIT RESPONSE, 告知所述 RNCE-RNTI审计完成。
通过上述流程可使泄漏的 E-RNTI资源获得重分配的机会,完成资源泄漏的 修复。
图 17为本发明的 CommEDCH资源的申请及修复过程的消息传输的第三实 施例流程示意图。 如图 17所示, 本发明的 CommEDCH资源的申请及修复过程 可包括:
步骤 S30, RNC通过物理共享信道重配置请求消息 PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST向 Node B请求 CommEDCH资源。
步骤 S31 , Node B通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE向 RNC发送 CommEDCH资源。
步骤 S32, RNC通过 CommEDCH 审计请求消息 Common E-DCH System Information AUDIT REQUEST向 Node B请求 CommEDCH资源审计。
步骤 S33 , Node Β向 RNC发送 CommEDCH审计响应消息 Common E-DCH System Information AUDIT RESPONSE, 告知所述 RNC CommEDCH审计完成。 通过上述流程可使泄漏的 CommEDCH 资源获得重分配的机会, 完成资源 泄漏的修复。
图 18为本发明的 E-RNTI/CommEDCH资源的申请及修复过程的消息传输 的第四实施例流程示意图。 如图 18所示, 本发明的 E-RNTI/CommEDCH资源 的申请及修复过程可包括:
步骤 S40, RNC通过物理共享信道重配置请求消息 PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST 向 Node B 请 求 E-RNTI/CommEDCH资源及请求在此之前的 E-RNTI/CommEDCH资源审计。
步骤 S41 , Node B通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE向 RNC发送 E-RNTI/CommEDCH 资源并告知 RNC对在此之前的 E-RNTI/CommEDCH资源的审计完成。
通过上述流程可使泄漏的 E-RNTI/CommEDCH资源获得重分配的机会, 完 成资源泄漏的修复。
图 19为本发明的 E-RNTI/CommEDCH资源的申请及修复过程的消息传输 的第五实施例流程示意图。 如图 19所示, 本发明的 E-RNTI/CommEDCH资源 的申请及修复过程可包括:
步骤 S50, RNC通过物理共享信道重配置请求消息 PHYSICAL SHARED CHANNEL RECONFIGURATION REQUEST 向 Node B 请 求 E-RNTI/CommEDCH资源。
步骤 S51 , Node B通过物理共享信道重配置响应消息 PHYSICAL SHARED CHANNEL RECONFIGURATION RESPONSE向 RNC发送 E-RNTI/CommEDCH 资源。
步骤 S52, RNC通过用户状态更新确认请求消息(UE STATUS UPDATE CONFIRM REQUEST ) 向 Node B请求 E-RNTI/CommEDCH资源审计。
步骤 S53 , Node B向 RNC发送用户状态更新确认响应消息( UE STATUS UPDATE CONFIRM RESPONSE ), 告知所述 RNC对 E-RNTI/CommEDCH资源 审计完成。
通过上述流程可使泄漏的 E-RNTI/CommEDCH资源获得重分配的机会, 完 成资源泄漏的修复。
本领域普通技术人员可以理解: 实现上述方法实施例的全部或部分步骤可 以通过程序指令相关的硬件来完成, 前述的程序可以存储于一计算机可读取存 储介质中, 该程序在执行时, 执行包括上述方法实施例的步骤, 而前述的存储 介质包括: ROM、 RAM, 磁碟或者光盘等各种可以存储程序代码的介质。 明的精神和范围。 这样, 倘若本发明的这些修改和变型属于本发明权利要求及 其等同技术的范围之内, 则本发明也意图包含这些改动和变型在内。

Claims

权 利 要 求
1、 一种请求对资源泄漏进行修复的方法, 其特征在于, 包括: 资源请求设备向资源提供设备发送资源确认请求消息, 所述资源确认请求 消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备已从 所述资源提供设备获取的资源;
以使所述资源提供设备根据所述第一指示信息确定所述第一指示信息所指 示的资源是否已经成功分配。
2、 如权利要求 1所述的请求对资源泄漏进行修复的方法, 其特征在于, 所 述资源请求设备向资源提供设备发送资源确认请求消息之后, 还包括:
接收所述资源提供设备向所述资源请求设备发送的资源确认响应消息, 所 述资源确认响应消息中携带审计字段;
所述审计字段, 包括资源确认字段和 /或资源索引, 用于告知所述资源请求 设备所述资源提供设备已响应所述资源确认请求消息;
3、 如权利要求 1所述的请求对资源泄漏进行修复的方法, 其特征在于, 所 述资源确认请求消息包括用户状态更新命令消息。
4、 如权利要求 2所述的请求对资源泄漏进行修复的方法, 其特征在于, 所 述资源确认请求消息包括审计请求消息, 且所述资源确认响应消息包括审计响 应消息;
或者, 所述资源确认请求消息包括物理共享信道重配置请求消息, 且所述 资源确认响应消息包括物理共享信道重配置响应消息;
或者, 所述资源确认请求消息包括用户状态更新确认请求消息, 且所述资 源确认响应消息包括用户状态更新确认响应消息。
5、 如权利要求 1-4中任一项所述的请求对资源泄漏进行修复的方法, 其特 征在于, 所述第一指示信息包括所述资源请求设备已从所述资源提供设备获取 的资源的资源索引或资源本身。
6、 如权利要求 5所述的请求对资源泄漏进行修复的方法, 其特征在于, 所 述资源索引由所述资源提供设备在对所述资源请求设备分配资源同时进行分 配;
或者, 所述资源索引由所述资源请求设备在发送所述资源确认请求消息前 进行分配。
7、 如权利要求 5所述的请求对资源泄漏进行修复的方法, 其特征在于, 当 一条资源确认请求消息无法携带完一次请求的资源的资源索引或资源本身时 , 所述资源请求设备需向所述资源提供设备发送多条资源确认请求消息, 其中每 条资源确认请求消息的第一指示信息还包括与下一条资源确认请求消息的关联 信息, 所述关联信息用于告知所述资源提供设备是否已经接收完所述一次请求 的资源的资源索引或资源本身。
8、 如权利要求 1-7中任一项所述的请求对资源泄漏进行修复的方法, 其特 征在于, 所述资源包括增强上行专用控制信道无线网络临时标识和公共增强上 行专用控制信道资源中至少一种;
且所述资源为分组或者非分组形式。
9、 如权利要求 1-8中任一项所述的请求对资源泄漏进行修复的方法, 其特 征在于, 所述资源请求设备包括基站控制器, 所述资源提供设备包括基站。
10、 一种请求对资源泄漏进行修复的方法, 其特征在于, 包括: 资源请求设备向资源提供设备发送资源确认请求消息, 所述资源确认请求 消息中携带资源确认项, 所述资源确认项用于指示所述资源请求设备已从所述 资源提供设备获取资源;
以使所述资源提供设备根据所述资源确认请求消息确定所述资源提供设备 分配给所述资源请求设备的资源是否已经成功分配。
11、 如权利要求 10所述的请求对资源泄漏进行修复的方法, 其特征在于, 所述资源确认请求消息包括物理共享信道重配置响应确认消息, 所述资源确认 项的取值包括确认和未确认, 当资源确认项的取值为确认时, 表明所述资源提 供设备分配给所述资源请求设备的资源已被资源请求设备获取, 当资源确认项 的取值为未确认时, 表明所述资源提供设备分配给所述资源请求设备的资源未 被资源请求设备获取。
12、 如权利要求 10或 11所述的请求对资源泄漏进行修复的方法, 其特征 在于, 所述资源包括增强上行专用控制信道无线网络临时标识和公共增强上行 专用控制信道资源中至少一种;
且所述资源为分组或者非分组形式。
13、如权利要求 10-12中任一项所述的请求对资源泄漏进行修复的方法,其 特征在于, 所述资源请求设备包括基站控制器, 所述资源提供设备包括基站。
14、 一种资源泄漏的修复方法, 其特征在于, 包括:
资源提供设备从资源请求设备接收资源确认请求消息, 所述资源确认请求 消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备已从 所述资源提供设备获取的资源;
所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源;
所述资源提供设备将所述查找到的资源初始化为未分配状态。
15、 如权利要求 14所述的资源泄漏的修复方法, 其特征在于, 所述资源提 供设备将所述资源提供设备已经分配给所述资源请求设备, 但所述资源请求设 备并未获取到的资源初始化为未分配状态之后, 还包括:
所述资源提供设备向所述资源请求设备发送资源确认响应消息, 所述资源 确认响应消息中携带审计字段, 所述审计字段, 包括资源确认字段和 /或资源索 引, 用于告知所述资源请求设备所述资源提供设备已响应所述资源确认请求消
16、 如权利要求 14所述的资源泄漏的修复方法, 其特征在于, 所述资源确 认请求消息包括用户状态更新命令消息。
17、 如权利要求 15所述的资源泄漏的修复方法, 其特征在于, 所述资源确 认请求消息包括审计请求消息, 且所述资源确认响应消息包括审计响应消息; 或者, 所述资源确认请求消息包括物理共享信道重配置请求消息, 且所述 资源确认响应消息包括物理共享信道重配置响应消息;
或者, 所述资源确认请求消息包括用户状态更新确认请求消息, 且所述资 源确认响应消息包括用户状态更新确认响应消息。
18、 如权利要求 14-17中任一项所述的资源泄漏的修复方法, 其特征在于, 所述第一指示信息包括所述资源请求设备已从所述资源提供设备获取的资源的 资源索引或资源本身;
所述资源提供设备根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源包括:
所述资源提供设备查找所述资源索引中未指示或者资源本身中不包括但资 源提供设备已经分配给所述资源请求设备的资源。
19、 如权利要求 18所述的资源泄漏的修复方法, 其特征在于, 所述资源索 引由所述资源提供设备在对所述资源请求设备分配资源同时进行分配;
或者, 所述资源索引由所述资源请求设备在发送所述资源确认请求消息前 进行分配。
20、 如权利要求 18所述的资源泄漏的修复方法, 其特征在于, 当一条资源 确认请求消息无法携带完一次请求的资源的资源索引或资源本身时 , 所述资源 提供设备需向资源请求设备接收多条资源确认请求消息, 其中每条资源确认请 求消息的第一指示信息还包括与下一条资源确认请求消息的关联信息, 所述关 联信息用于告知所述资源提供设备是否已经接收完所述一次请求的资源的资源 索引或资源本身;
所述资源提供设备在当接收完所述一次请求的资源对应的所有资源确认请 求消息后, 执行所述资源提供设备根据所述第一指示信息查找所述资源提供设 备已经分配给所述资源请求设备, 但所述资源请求设备并未获取到的资源的步 骤。
21、 如权利要求 14-20中任一项所述的资源泄漏的修复方法, 其特征在于, 所述资源包括增强上行专用控制信道无线网络临时标识和公共增强上行专用控 制信道资源中至少一种; 且所述资源为分组或者非分组形式。
22、 如权利要求 21所述的资源泄漏的修复方法, 其特征在于, 当所述增强 上行专用控制信道无线网络临时标识为分组形式时, 所述资源提供设备从资源 请求设备接收资源确认请求消息之前, 还包括:
所述资源提供设备通过物理共享信道重配置响应消息中的公共增强上行专 用控制信道资源消息体为所述资源请求设备分配增强上行专用控制信道无线网 络临时标识, 所述公共增强上行专用控制信道资源的结构中包括扩展增强上行 专用控制信道无线网络临时标识字段, 所述扩展增强上行专用控制信道无线网 络临时标识字段包括物理共享信道重配置响应消息中携带的增强上行专用控制 信道无线网络临时标识分组的个数, 每一个增强上行专用控制信道无线网络临 时标识分组的分组编号、 每一个增强上行专用控制信道无线网络临时标识分组 中的起始增强上行专用控制信道无线网络临时标识的编号, 每一个增强上行专 用控制信道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络 临时标识的个数和步长。
23、 如权利要求 14-22中任一项所述的资源泄漏的修复方法, 其特征在于, 所述资源请求设备包括基站控制器, 所述资源提供设备包括基站。
24、 一种资源泄漏的修复方法, 其特征在于, 包括:
资源提供设备从资源请求设备接收资源确认请求消息, 所述资源确认请求 消息中携带资源确认项, 所述资源确认项用于指示所述资源请求设备已从所述 资源提供设备获取资源;
所述资源提供设备根据所述资源确认请求消息确定所述资源资源提供设备 分配给所述资源请求设备的资源是否已经成功分配;
当所述资源提供设备确定所述资源提供设备分配给所述资源请求设备的资 源是否未成功分配时, 将所述资源初始化为未分配状态。
25、 如权利要求 24所述的资源泄漏的修复方法, 其特征在于, 所述资源确 认请求消息包括物理共享信道重配置响应确认消息, 所述资源确认项的取值包 括确认和未确认, 当资源确认项的取值为确认时, 表明所述资源提供设备分配 给所述资源请求设备的资源已被资源请求设备获取, 当资源确认项的取值为未 确认时, 表明所述资源提供设备分配给所述资源请求设备的资源未被资源请求 设备获取;
所述资源提供设备根据所述资源确认请求消息确定所述资源资源提供设备 分配给所述资源请求设备的资源是否已经成功分配包括:
所述资源提供设备分析资源确认项的取值, 当资源确认项的取值为确认时, 确定所述资源资源提供设备分配给所述资源请求设备的资源已经成功分配, 当 资源确认项的取值为未确认时, 确定所述资源资源提供设备分配给所述资源请 求设备的资源未成功分配;
或者, 当所述资源提供设备未收到所述资源请求设备发送的物理共享信道 重配置响应确认消息, 则确定所述资源提供设备分配给所述资源请求设备的资 源未成功分配。
26、 如权利要求 24或 25所述的资源泄漏的修复方法, 其特征在于, 所述 资源包括增强上行专用控制信道无线网络临时标识和公共增强上行专用控制信 道资源中至少一种; 且所述资源为分组或者非分组形式。
27、 如权利要求 26所述的资源泄漏的修复方法, 其特征在于, 当所述增强 上行专用控制信道无线网络临时标识为分组形式时, 所述资源提供设备从资源 请求设备接收资源确认请求消息之前, 还包括:
所述资源提供设备通过物理共享信道重配置响应消息中的公共增强上行专 用控制信道资源消息体为所述资源请求设备分配增强上行专用控制信道无线网 络临时标识, 所述公共增强上行专用控制信道资源的结构中包括扩展增强上行 专用控制信道无线网络临时标识字段, 所述扩展增强上行专用控制信道无线网 络临时标识字段包括物理共享信道重配置响应消息中携带的增强上行专用控制 信道无线网络临时标识分组的个数, 每一个增强上行专用控制信道无线网络临 时标识分组的分组编号、 每一个增强上行专用控制信道无线网络临时标识分组 中的起始增强上行专用控制信道无线网络临时标识的编号, 每一个增强上行专 用控制信道无线网络临时标识分组中所包括的增强上行专用控制信道无线网络 临时标识的个数和步长。
28、 如权利要求 25-27中任一项所述的资源泄漏的修复方法, 其特征在于, 所述资源请求设备包括基站控制器, 所述资源提供设备包括基站。
29、 一种资源请求设备, 其特征在于, 包括:
请求模块, 用于向资源提供设备发送资源确认请求消息, 所述资源确认请 求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备已 从所述资源提供设备获取的资源 , 以使所述资源提供设备根据所述第一指示信 息确定所述第一指示信息所指示的资源是否已经成功分配。
30、 如权利要求 29所述的资源请求设备, 其特征在于, 还包括:
接收模块, 用于接收所述资源提供设备向所述资源请求设备发送的资源确 认响应消息, 所述资源确认响应消息中携带审计字段, 所述审计字段, 包括资 源确认字段和 /或资源索引, 用于告知所述资源请求设备所述资源提供设备已响 应所述资源确认请求消息。
31、 如权利要求 29所述的资源请求设备, 其特征在于, 所述请求模块发送 的资源确认请求消息包括用户状态更新命令消息。
32、 如权利要求 30所述的资源请求设备, 其特征在于, 所述请求模块发送 的资源确认请求消息包括审计请求消息, 且所述接收模块接收的资源确认响应 消息包括审计响应消息;
或者, 所述请求模块发送的资源确认请求消息包括物理共享信道重配置请 求消息, 且所述接收模块接收的资源确认响应消息包括物理共享信道重配置响 应消息;
或者, 所述请求模块发送的资源确认请求消息包括用户状态更新确认请求 消息, 且所述接收模块接收的资源确认响应消息包括用户状态更新确认响应消
33、 如权利要求 29-32中任一项所述的资源请求设备, 其特征在于, 所述第 一指示信息包括所述资源请求设备已从所述资源提供设备获取的资源的资源索 引或资源本身。
34、 如权利要求 33所述的资源请求设备, 其特征在于, 所述资源索引由所 述资源提供设备在对所述资源请求设备分配资源同时进行分配;
或者, 所述资源索引由所述资源请求设备在发送所述资源确认请求消息前 进行分配, 则所述资源请求设备还包括用于分配所述资源索引的分配模块。
35、 如权利要求 34所述的资源请求设备, 其特征在于, 当一条资源确认请 求消息无法携带完一次请求的资源的资源索引或资源本身时, 所述资源请求设 备需通过所述请求模块向资源提供设备发送多条资源确认请求消息, 其中每条 资源确认请求消息的第一指示信息还包括与下一条资源确认请求消息的关联信 息, 所述关联信息用于告知所述资源提供设备是否已经接收完所述一次请求的 资源的资源索引或资源本身。
36、 如权利要求 29-35中任一项所述的资源请求设备, 其特征在于, 所述资 源包括增强上行专用控制信道无线网络临时标识和公共增强上行专用控制信道 资源中至少一种;
且所述资源为分组或者非分组形式。
37、 如权利要求 29-36中任一项所述的资源请求设备, 其特征在于, 包括基 站控制器。
38、 一种资源请求设备, 其特征在于, 包括:
请求模块, 用于向资源提供设备发送资源确认请求消息, 所述资源确认请 求消息中携带资源确认项, 所述资源确认项用于指示所述资源请求设备已从所 述资源提供设备获取资源; 以使所述资源提供设备根据所述资源确认项确定所 述资源提供设备分配给所述资源请求设备的资源是否已经成功分配。
39、 如权利要求 38所述的资源请求设备, 其特征在于, 所述请求模块发送 的资源确认请求消息包括物理共享信道重配置响应确认消息, 所述资源确认项 的取值包括确认和未确认, 当资源确认项的取值为确认时, 表明所述资源提供 设备分配给所述资源请求设备的资源已被资源请求设备获取, 当资源确认项的 取值为未确认时, 表明所述资源提供设备分配给所述资源请求设备的资源未被 资源请求设备获取。
40、 如权利要求 38或 39所述的资源请求设备, 其特征在于, 所述资源包 括增强上行专用控制信道无线网络临时标识和公共增强上行专用控制信道资源 中至少一种;
且所述资源为分组或者非分组形式。
41、 如权利要求 38-40中任一项所述的资源请求设备, 其特征在于, 包括基 站控制器。
42、 一种资源提供设备, 其特征在于, 包括:
接收模块, 用于从资源请求设备接收资源确认请求消息, 所述资源确认请 求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备已 从该资源提供设备获取的资源;
分析模块, 用于根据所述第一指示信息查找该资源提供设备已经分配给所 述资源请求设备, 但所述资源请求设备并未获取到的资源;
修复模块, 用于将所述分析模块查找到的资源初始化为未分配状态。
43、 如权利要求 42所述的资源提供设备, 其特征在于, 还包括: 发送模块, 用于向所述资源请求设备发送资源确认响应消息, 所述资源确 认响应消息中携带资源单元, 包括资源确认字段和 /或资源索引, 用于告知所述 资源请求设备所述资源提供设备已响应所述资源确认请求消息。
44、 如权利要求 42所述的资源提供设备, 其特征在于, 所述接收模块所接 收到的资源确认请求消息包括用户状态更新命令消息。
45、 如权利要求 43所述的资源提供设备, 其特征在于, 所述接收模块所接 收到的资源确认请求消息包括审计请求消息, 且所述发送模块所发送的资源确 认响应消息包括审计响应消息;
或者, 所述接收模块所接收到的资源确认请求消息包括物理共享信道重配 置请求消息, 且所述发送模块所发送的资源确认响应消息包括物理共享信道重 配置响应消息;
或者, 所述接收模块所接收到的资源确认请求消息包括用户状态更新确认 请求消息, 且所述发送模块所发送的资源确认响应消息包括用户状态更新确认 响应消息。
46、 如权利要求 42-45中任一项所述的资源提供设备, 其特征在于, 所述第 一指示信息包括所述资源请求设备已从所述资源提供设备获取的资源的资源索 引或资源本身;
所述分析模块具体用于根据所述资源索引或者资源本身 , 查找所述资源索 引中未指示或者资源本身中不包括但资源提供设备已经分配给所述资源请求设 备的资源。
47、 如权利要求 46中所述的资源提供设备, 其特征在于, 当一条资源确认 请求消息无法携带完一次请求的资源的资源索引或资源本身时, 所述资源提供 设备的接收模块需从资源请求设备接收多条资源确认请求消息, 其中每条资源 确认请求消息的第一指示信息还包括与下一条资源确认请求消息的关联信息, 所述关联信息用于告知所述资源提供设备是否已经接收完所述一次请求的资源 的资源索引或资源本身; 当所述接收模块接收完所述一次请求的资源对应的所有资源确认请求消息 后, 所述分析模块用于根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源。
48、 如权利要求 42-47中任一项所述的资源提供设备, 其特征在于, 所述资 源包括增强上行专用控制信道无线网络临时标识和公共增强上行专用控制信道 资源中至少一种; 且所述资源为分组或者非分组形式。
49、 如权利要求 48所述的资源提供设备, 其特征在于, 当所述增强上行专 用控制信道无线网络临时标识为分组形式, 所述资源提供设备还包括:
分组资源配置模块, 用于通过物理共享信道重配置响应消息中的公共增强 上行专用控制信道资源消息体为所述资源请求设备分配增强上行专用控制信道 无线网络临时标识分组, 所述公共增强上行专用控制信道资源的结构中包括扩 展增强上行专用控制信道无线网络临时标识字段, 所述扩展增强上行专用控制 信道无线网络临时标识字段包括物理共享信道重配置响应消息中携带的增强上 行专用控制信道无线网络临时标识分组的个数, 每一个增强上行专用控制信道 无线网络临时标识分组的分组编号、 每一个增强上行专用控制信道无线网络临 时标识分组中的起始增强上行专用控制信道无线网络临时标识的编号, 每一个 增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控制信 道无线网络临时标识的个数和步长。
50、 如权利要求 42-49中任一项所述的资源提供设备, 其特征在于, 包括基 站; 所述资源请求设备包括基站控制器。
51、 一种资源提供设备, 其特征在于, 包括:
接收模块, 用于从资源请求设备接收资源确认请求消息, 所述资源确认请 求消息中携带资源确认项, 所述资源确认项用于指示所述资源请求设备已从所 述资源提供设备获取资源;
分析模块, 用于根据根据所述资源确认请求消息确定所述资源资源提供设 备分配给所述资源请求设备的资源是否已经成功分配; 修复模块, 用于当所述分析模块确定所述资源提供设备分配给所述资源请 求设备的资源是否未成功分配时, 将所述资源初始化为未分配状态。
52、 如权利要求 51所述的资源提供设备, 其特征在于, 所述接收模块所接 收的所述资源确认请求消息包括物理共享信道重配置响应确认消息, 所述资源 确认项的取值包括确认和未确认, 当资源确认项的取值为确认时, 表明所述资 源提供设备分配给所述资源请求设备的资源已被资源请求设备获取, 当资源确 认项的取值为未确认时, 表明所述资源提供设备分配给所述资源请求设备的资 源未被资源请求设备获取;
所述分析模块具体用于分析资源确认项的取值, 当资源确认项的取值为确 认时, 确定所述资源资源提供设备分配给所述资源请求设备的资源已经成功分 配, 当资源确认项的取值为未确认时, 确定所述资源资源提供设备分配给所述 资源请求设备的资源未成功分配;
或者, 当所述接收模块未收到所述资源请求设备发送的物理共享信道重配 置响应确认消息, 则所述分析模块确定所述资源提供设备分配给所述资源请求 设备的资源未成功分配。
53、 如权利要求 51或 52所述的资源提供设备, 其特征在于, 所述资源包 括增强上行专用控制信道无线网络临时标识和公共增强上行专用控制信道资源 中至少一种; 且所述资源为分组或者非分组形式。
54、 如权利要求 53所述的资源提供设备, 其特征在于, 当所述增强上行专 用控制信道无线网络临时标识为分组形式, 所述资源提供设备还包括:
分组资源配置模块, 用于通过物理共享信道重配置响应消息中的公共增强 上行专用控制信道资源消息体为所述资源请求设备分配增强上行专用控制信道 无线网络临时标识分组, 所述公共增强上行专用控制信道资源的结构中包括扩 展增强上行专用控制信道无线网络临时标识字段, 所述扩展增强上行专用控制 信道无线网络临时标识字段包括物理共享信道重配置响应消息中携带的增强上 行专用控制信道无线网络临时标识分组的个数, 每一个增强上行专用控制信道 无线网络临时标识分组的分组编号、 每一个增强上行专用控制信道无线网络临 时标识分组中的起始增强上行专用控制信道无线网络临时标识的编号, 每一个 增强上行专用控制信道无线网络临时标识分组中所包括的增强上行专用控制信 道无线网络临时标识的个数和步长。
55、 如权利要求 51-54中任一项所述的资源提供设备, 其特征在于, 包括基 站; 所述资源请求设备包括基站控制器。
56、 一种资源请求设备, 其特征在于, 包括: 输入装置、 输出装置和处理 器, 其中, 所述处理器执行如下步骤:
通过所述输出装置向资源提供设备发送资源确认请求消息, 所述资源确认 请求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备 已从所述资源提供设备获取的资源;
以使所述资源提供设备根据所述第一指示信息确定所述第一指示信息所指 示的资源是否已经成功分配。
57、 如权利要求 56所述的资源请求设备, 其特征在于, 所述通过所述输出 装置向资源提供设备发送资源确认请求消息之后, 还包括:
通过所述输入装置接收所述资源提供设备向所述资源请求设备发送的资源 确认响应消息, 所述资源确认响应消息中携带资源单元, 包括资源确认字段和 / 或资源索引, 用于告知所述资源请求设备所述资源提供设备已响应所述资源确 认请求消息。
58、 如权利要求 56所述的资源请求设备, 其特征在于, 所述资源确认请求 消息包括用户状态更新命令消息。
59、 如权利要求 57所述的资源请求设备, 其特征在于, 所述资源确认请求 消息包括审计请求消息, 且所述资源确认响应消息包括审计响应消息;
或者, 所述资源确认请求消息包括物理共享信道重配置请求消息, 且所述 资源确认响应消息包括物理共享信道重配置响应消息;
或者, 所述资源确认请求消息包括用户状态更新确认请求消息, 且所述资 源确认响应消息包括用户状态更新确认响应消息。
60、 如权利要求 56-59中任一项所述的资源请求设备, 其特征在于, 所述第 一指示信息包括所述资源请求设备已从所述资源提供设备获取的资源的资源索 引或资源本身。
61、 如权利要求 60所述的资源请求设备, 其特征在于, 所述资源索引由所 述资源提供设备在对所述资源请求设备分配资源同时进行分配;
或者, 所述资源索引由所述处理器在发送所述资源确认请求消息前进行分 配。
62、 如权利要求 60所述的资源请求设备, 其特征在于, 当一条资源确认请 求消息无法携带完一次请求的资源的资源索引或资源本身时, 所述资源请求设 备需向资源提供设备发送多条资源确认请求消息, 其中每条资源确认请求消息 的第一指示信息还包括与下一条资源确认请求消息的关联信息, 所述关联信息 用于告知所述资源提供设备是否已经接收完所述一次请求的资源的资源索引或 资源本身。
63、 如权利要求 42-49中任一项所述的资源请求设备, 其特征在于, 所述资 源包括增强上行专用控制信道无线网络临时标识和公共增强上行专用控制信道 资源中至少一种;
且所述资源为分组或者非分组形式。
64、 如权利要求 56-63中任一项所述的资源请求设备, 其特征在于, 所述资 源请求设备包括基站控制器。
65、 一种资源请求设备, 其特征在于, 包括: 输入装置、 输出装置和处理 器, 其中, 所述处理器执行如下步骤:
通过所述输出装置向资源提供设备发送资源确认请求消息, 所述资源确认 请求消息中携带资源确认项, 所述资源确认项用于指示所述资源请求设备已从 所述资源提供设备获取资源;
以使所述资源提供设备根据所述资源确认项确定所述资源提供设备分配给 所述资源请求设备的资源是否已经成功分配。
66、 如权利要求 65所述的资源请求设备, 其特征在于, 所述资源确认请求 消息包括物理共享信道重配置响应确认消息, 所述资源确认项的取值包括确认 和未确认, 当资源确认项的取值为确认时, 表明所述资源提供设备分配给所述 资源请求设备的资源已被资源请求设备获取, 当资源确认项的取值为未确认时, 表明所述资源提供设备分配给所述资源请求设备的资源未被资源请求设备获 取。
67、 如权利要求 65或 66所述的资源请求设备, 其特征在于, 所述资源包 括增强上行专用控制信道无线网络临时标识和公共增强上行专用控制信道资源 中至少一种;
且所述资源为分组或者非分组形式。
68、 如权利要求 65-67中任一项所述的资源请求设备, 其特征在于, 所述资 源请求设备包括基站控制器。
69、 一种资源提供设备, 其特征在于, 包括: 输入装置、 输出装置和处理 器, 其中, 所述处理器执行如下步骤:
通过所述输入装置从资源请求设备接收资源确认请求消息, 所述资源确认 请求消息中携带第一指示信息, 所述第一指示信息用于指示所述资源请求设备 已从所述资源提供设备获取的资源;
根据所述第一指示信息查找所述资源提供设备已经分配给所述资源请求设 备, 但所述资源请求设备并未获取到的资源;
将所述查找到的资源初始化为未分配状态。
70、 如权利要求 69所述的资源提供设备, 其特征在于, 所述处理器将所述 资源提供设备已经分配给所述资源请求设备, 但所述资源请求设备并未获取到 的资源初始化为未分配状态之后, 还执行如下步骤:
通过所述输出装置向所述资源请求设备发送资源确认响应消息, 所述资源 确认响应消息中携带资源单元, 包括资源确认字段和 /或资源索引, 用于告知所 述资源请求设备所述资源提供设备已响应所述资源确认请求消息。
71、 如权利要求 69所述的资源提供设备, 其特征在于, 所述资源确认请求 消息包括用户状态更新命令消息。
72、 如权利要求 70所述的资源提供设备, 其特征在于, 所述资源确认请求 消息包括审计请求消息, 且所述资源确认响应消息包括审计响应消息;
或者, 所述资源确认请求消息包括物理共享信道重配置请求消息, 且所述 资源确认响应消息包括物理共享信道重配置响应消息;
或者, 所述资源确认请求消息包括用户状态更新确认请求消息, 且所述资 源确认响应消息包括用户状态更新确认响应消息。
73、 如权利要求 69-72中任一项所述的资源提供设备, 其特征在于, 所述第 一指示信息包括所述资源请求设备已从所述资源提供设备获取的资源的资源索 引或资源本身;
所述处理器根据所述第一指示信息查找所述资源提供设备已经分配给所述 资源请求设备, 但所述资源请求设备并未获取到的资源包括:
所述处理器查找所述资源索引中未指示或者资源本身中不包括但资源提供 设备已经分配给所述资源请求设备的资源。
74、 如权利要求 73所述的资源提供设备, 其特征在于, 所述资源索引由所 述处理器在对所述资源请求设备分配资源同时进行分配;
或者, 所述资源索引由所述资源请求设备在发送所述资源确认请求消息前 进行分配。
75、 如权利要求 73所述的资源提供设备, 其特征在于, 当一条资源确认请 求消息无法携带完一次请求的资源的资源索引或资源本身时, 所述处理器需向 资源请求设备接收多条资源确认请求消息, 其中每条资源确认请求消息的第一 指示信息还包括与下一条资源确认请求消息的关联信息, 所述关联信息用于告 知所述资源提供设备是否已经接收完所述一次请求的资源的资源索引或资源本 身;
所述处理器在当所述输入装置接收完所述一次请求的资源对应的所有资源 确认请求消息后, 执行根据所述第一指示信息查找所述资源提供设备已经分配 给所述资源请求设备, 但所述资源请求设备并未获取到的资源的步骤。
76、 如权利要求 69-75中任一项所述的资源提供设备, 其特征在于, 所述资 源包括增强上行专用控制信道无线网络临时标识和公共增强上行专用控制信道 资源中至少一种; 且所述资源为分组或者非分组形式。
77、 如权利要求 76所述的资源提供设备, 其特征在于, 当所述增强上行专 用控制信道无线网络临时标识为分组形式时, 所述处理器从资源请求设备接收 资源确认请求消息之前, 还执行如下步骤:
通过物理共享信道重配置响应消息中的公共增强上行专用控制信道资源消 息体为所述资源请求设备分配增强上行专用控制信道无线网络临时标识, 所述 公共增强上行专用控制信道资源的结构中包括扩展增强上行专用控制信道无线 网络临时标识字段, 所述扩展增强上行专用控制信道无线网络临时标识字段包 括物理共享信道重配置响应消息中携带的增强上行专用控制信道无线网络临时 标识分组的个数, 每一个增强上行专用控制信道无线网络临时标识分组的分组 编号、 每一个增强上行专用控制信道无线网络临时标识分组中的起始增强上行 专用控制信道无线网络临时标识的编号, 每一个增强上行专用控制信道无线网 络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的个数和 步长。
78、 如权利要求 69-77中任一项所述的资源提供设备, 其特征在于, 所述资 源提供设备包括基站。
79、 一种资源提供设备, 其特征在于, 包括: 输入装置、 输出装置和处理 器, 其中, 所述处理器执行如下步骤:
通过所述输入装置从资源请求设备接收资源确认请求消息, 所述资源确认 请求消息中携带资源确认项, 所述资源确认项用于指示所述资源请求设备已从 所述资源提供设备获取资源;
根据所述资源确认请求消息确定所述资源资源提供设备分配给所述资源请 求设备的资源是否已经成功分配;
当确定所述资源提供设备分配给所述资源请求设备的资源是否未成功分配 时, 将所述资源初始化为未分配状态。
80、 如权利要求 79所述的资源提供设备, 其特征在于, 所述资源确认请求 消息包括物理共享信道重配置响应确认消息, 所述资源确认项的取值包括确认 和未确认, 当资源确认项的取值为确认时, 表明所述资源提供设备分配给所述 资源请求设备的资源已被资源请求设备获取, 当资源确认项的取值为未确认时, 表明所述资源提供设备分配给所述资源请求设备的资源未被资源请求设备获 取;
所述处理器根据所述资源确认请求消息确定所述资源资源提供设备分配给 所述资源请求设备的资源是否已经成功分配包括:
所述处理器分析资源确认项的取值, 当资源确认项的取值为确认时, 确定 所述资源资源提供设备分配给所述资源请求设备的资源已经成功分配, 当资源 确认项的取值为未确认时, 确定所述资源资源提供设备分配给所述资源请求设 备的资源未成功分配;
或者, 当所述输入装置未收到所述资源请求设备发送的物理共享信道重配 置响应确认消息, 则所述处理器确定所述资源提供设备分配给所述资源请求设 备的资源未成功分配。
81、 如权利要求 79或 80所述的资源提供设备, 其特征在于, 所述资源包 括增强上行专用控制信道无线网络临时标识和公共增强上行专用控制信道资源 中至少一种; 且所述资源为分组或者非分组形式。
82、 如权利要求 81所述的资源提供设备, 其特征在于, 当所述增强上行专 用控制信道无线网络临时标识为分组形式时, 所述资源提供设备从资源请求设 备接收资源确认请求消息之前, 还执行如下步骤:
通过物理共享信道重配置响应消息中的公共增强上行专用控制信道资源消 息体为所述资源请求设备分配增强上行专用控制信道无线网络临时标识, 所述 公共增强上行专用控制信道资源的结构中包括扩展增强上行专用控制信道无线 网络临时标识字段, 所述扩展增强上行专用控制信道无线网络临时标识字段包 括物理共享信道重配置响应消息中携带的增强上行专用控制信道无线网络临时 标识分组的个数, 每一个增强上行专用控制信道无线网络临时标识分组的分组 编号、 每一个增强上行专用控制信道无线网络临时标识分组中的起始增强上行 专用控制信道无线网络临时标识的编号, 每一个增强上行专用控制信道无线网 络临时标识分组中所包括的增强上行专用控制信道无线网络临时标识的个数和 步长。
83、 如权利要求 79-82中任一项所述的资源提供设备, 其特征在于, 包括基 站。
84、一种网络系统, 其特征在于, 包括如权利要求 29-37中任一项所述的资 源请求设备和如权利要求 42-50中任一项所述的资源提供设备。
85、一种网络系统, 其特征在于, 包括如权利要求 38-41中任一项所述的资 源请求设备和如权利要求 51-55中任一项所述的资源提供设备。
86、一种网络系统, 其特征在于, 包括如权利要求 65-68中任一项所述的资 源请求设备和如权利要求 79-84中任一项所述的资源提供设备。
87、 一种计算机存储介质, 其特征在于, 该计算机存储介质可存储有程序, 给程序执行时可包括如权利要求 1-9中任一项所述方法的部分或全部步骤。
88、 一种计算机存储介质, 其特征在于, 该计算机存储介质可存储有程序, 给程序执行时可包括如权利要求 10-13中任一项所述方法的部分或全部步骤。
89、 一种计算机存储介质, 其特征在于, 该计算机存储介质可存储有程序, 给程序执行时可包括如权利要求 14-23中任一项所述方法的部分或全部步骤。
90、 一种计算机存储介质, 其特征在于, 该计算机存储介质可存储有程序, 给程序执行时可包括如权利要求 24-28中任一项所述方法的部分或全部步骤。
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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101370275A (zh) * 2007-08-16 2009-02-18 华为技术有限公司 一种发送接入确认消息的方法、系统和装置
CN101730244A (zh) * 2008-10-30 2010-06-09 大唐移动通信设备有限公司 一种资源分配的方法、基站和用户终端
CN101939941A (zh) * 2008-02-07 2011-01-05 三星电子株式会社 用于分配确认信道的方法和设备

Family Cites Families (3)

* Cited by examiner, † Cited by third party
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CN100488286C (zh) * 2006-02-23 2009-05-13 鼎桥通信技术有限公司 多载波td-scdma系统中的hsdpa资源管理方法
CN101374328B (zh) * 2007-08-24 2012-12-19 电信科学技术研究院 一种资源配置方法和装置
JP2011515964A (ja) * 2008-03-21 2011-05-19 インターデイジタル パテント ホールディングス インコーポレイテッド 発展型hspaネットワーク内でセル再選択をサポートする方法

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101370275A (zh) * 2007-08-16 2009-02-18 华为技术有限公司 一种发送接入确认消息的方法、系统和装置
CN101939941A (zh) * 2008-02-07 2011-01-05 三星电子株式会社 用于分配确认信道的方法和设备
CN101730244A (zh) * 2008-10-30 2010-06-09 大唐移动通信设备有限公司 一种资源分配的方法、基站和用户终端

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