WO2015027455A1 - 一种无线通信网络数据传输的控制方法及装置 - Google Patents

一种无线通信网络数据传输的控制方法及装置 Download PDF

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Publication number
WO2015027455A1
WO2015027455A1 PCT/CN2013/082641 CN2013082641W WO2015027455A1 WO 2015027455 A1 WO2015027455 A1 WO 2015027455A1 CN 2013082641 W CN2013082641 W CN 2013082641W WO 2015027455 A1 WO2015027455 A1 WO 2015027455A1
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Prior art keywords
scheduling
information
data
attribute information
base station
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PCT/CN2013/082641
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English (en)
French (fr)
Inventor
韩广林
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华为技术有限公司
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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 PCT/CN2013/082641 priority Critical patent/WO2015027455A1/zh
Priority to CN201380001716.7A priority patent/CN104604287B/zh
Priority to EP13892525.0A priority patent/EP3032870B1/en
Publication of WO2015027455A1 publication Critical patent/WO2015027455A1/zh
Priority to US15/054,624 priority patent/US10028293B2/en

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/12Wireless traffic scheduling

Definitions

  • the present invention relates to the field of wireless communications, and in particular, to a method and apparatus for controlling data transmission in a wireless communication network. Background technique
  • LTE Long term Evolution, Long Term Evolution
  • 3GPP 3 rd Generation Partnership Project, Third Generation Partnership Project
  • UMTS Universal Mobile Telecommunication System
  • RRC Radio Resource Control
  • the UE After establishing the radio bearer with the eNode B, the UE sends a scheduling request (SR, Scheduling Request) to the eNode B to request radio resource scheduling.
  • SR Scheduling Request
  • the eNode B serves multiple UEs at the same time and the radio resources are limited, the eNode B allocates a small amount of radio resources to the UE.
  • the UE receives a small amount of radio resources allocated by the eNode B, and cannot meet the requirements of the radio resource transmission of the UE.
  • the UE sends a scheduling request to the eNode B again, requesting radio resource scheduling, and the eNode B allocates a small amount of radio resources to the UE again, and repeats until the data. The transfer is complete.
  • Embodiments of the present invention provide a method and an apparatus for controlling data transmission in a wireless communication network.
  • the scheduling pause message/scheduling start message may be sent to the terminal according to the transmission attribute information, which avoids the congestion of the base station, reduces the scheduling time, and improves the efficiency of data transmission in the wireless communication network.
  • a first aspect of the embodiments of the present invention provides a method for controlling data transmission in a wireless communication network, including:
  • the base station acquires transmission attribute information, where the transmission attribute information includes attribute information of the data to be transmitted and Base station scheduling attribute information;
  • the base station Determining whether the acquired base station scheduling attribute information satisfies a preset scheduling condition; if yes, the base station sends a scheduling suspension message and/or a scheduling start message to the terminal according to the transmission attribute information.
  • a second aspect of the embodiments of the present invention provides a method for controlling data transmission in a wireless communication network, including:
  • the terminal sends a resource request to the base station according to the scheduling pause message, where the scheduling suspension message includes: attribute information of the scheduling suspension object; if the terminal receives the scheduling The start message is sent to the base station according to the scheduling start message, where the scheduling start message includes: attribute information of the scheduling start object.
  • a third aspect of the embodiments of the present invention provides a method for controlling data transmission in a wireless communication network, including:
  • the multi-level scheduling device acquires transmission attribute information, where the transmission attribute information includes attribute information of the data to be transmitted and base station scheduling attribute information;
  • the multi-stage scheduling device sends a control message including the transmission attribute information to the base station, so that the base station sends a scheduling suspension message and/or a scheduling start message to the terminal according to the control message.
  • a fourth aspect of the embodiments of the present invention provides a device for controlling data transmission in a wireless communication network, including:
  • a first acquiring module configured to acquire transmission attribute information, where the transmission attribute information includes attribute information of the data to be transmitted and base station scheduling attribute information;
  • a determining module configured to determine whether the scheduling attribute information of the base station acquired by the first acquiring module meets a preset scheduling condition
  • a first processing module configured to send a scheduling suspension message and/or a scheduling start message to the terminal according to the transmission attribute information when the determining result of the determining module is YES.
  • a fifth aspect of the embodiments of the present invention provides a base station, including: an input device, an output device, a memory, and a processor, where the memory stores a set of program codes, and the processor is configured to call the program code stored in the memory, where Do the following: Obtaining transmission attribute information, where the transmission attribute information includes attribute information of the data to be transmitted and base station scheduling attribute information;
  • the base station Determining whether the acquired base station scheduling attribute information satisfies a preset scheduling condition; if yes, the base station sends a scheduling suspension message and/or a scheduling start message to the terminal according to the transmission attribute information.
  • a device for controlling data transmission in a wireless communication network includes:
  • a receiving module configured to receive a scheduling suspension message and/or a scheduling start message sent by the base station, where the scheduling suspension processing module is configured to: when the receiving module receives the scheduling suspension message, pause according to the scheduling suspension message to the The base station sends a resource request, where the scheduling pause message includes: scheduling attribute information of the suspended object;
  • a scheduling start processing module configured to: when the receiving module receives the scheduling start message, send, to the base station, data to be transmitted according to the scheduling start message, where the scheduling start message includes: attribute information of a scheduling start object.
  • a seventh aspect of the embodiments of the present invention provides a terminal, including: an input device, an output device, a memory, and a processor, where the memory stores a set of program codes, and the processor is configured to call the program code stored in the memory, where Do the following:
  • the resource suspension request is suspended according to the scheduling suspension message, and the scheduling suspension message includes: attribute information of the scheduling suspension object;
  • the to-be-transmitted data is sent to the base station according to the scheduling start message, where the scheduling start message includes: attribute information of the scheduling start object.
  • An eighth aspect of the embodiments of the present invention provides a device for controlling data transmission in a wireless communication network, including:
  • a third acquiring module configured to acquire transmission attribute information, where the transmission attribute information includes attribute information of the data to be transmitted and base station scheduling attribute information;
  • a second processing module configured to send, to the base station, a control message that includes the transmission attribute information acquired by the third acquiring module, so that the base station sends a scheduling pause to the terminal according to the control message.
  • Information and/or scheduling start messages are included in the control message.
  • a ninth aspect of the embodiments of the present invention provides a multi-stage scheduling apparatus, including: an input device, an output device, a memory, and a processor, wherein the memory stores a set of program codes, and the processor is configured to call the program code stored in the memory. , to do the following:
  • the transmission attribute information includes attribute information of the data to be transmitted and base station scheduling attribute information
  • a tenth aspect of the embodiments of the present invention provides a control system for data transmission in a wireless communication network, including: a base station and a terminal.
  • the system further includes a multi-level scheduling device.
  • the scheduling suspension message and/or the scheduling start message may be sent to the terminal according to the transmission attribute information. If the scheduling suspension message is sent to the terminal, the terminal may suspend sending the resource request to the base station according to the scheduling suspension message, and if the terminal sends the resource request to the terminal, By scheduling the start message, it is possible to start allocating transmission resources for the data to be transmitted.
  • the scheduling of data resources of the wireless communication network can be implemented according to the transmission attribute information, the congestion of the base station is avoided, the scheduling time is reduced, and the efficiency of data transmission of the wireless communication network is improved.
  • FIG. 1 is a flow chart of a method for controlling data transmission in a wireless communication network according to an embodiment of the present invention
  • FIG. 2 is a flowchart of a method for controlling data transmission in a wireless communication network according to a first embodiment of the present invention
  • FIG. 3 is a control method for data transmission of a wireless communication network according to a second embodiment of the present invention.
  • FIG. 4 is a flowchart of a method for controlling data transmission in a wireless communication network according to a third embodiment of the present invention.
  • FIG. 5 is a flowchart of a method for controlling data transmission in a wireless communication network according to a fourth embodiment of the present invention.
  • FIG. 6 is a flowchart of a method for controlling data transmission in a wireless communication network according to a fifth embodiment of the present invention.
  • FIG. 7 is a flowchart of a method for controlling data transmission in a wireless communication network according to a sixth embodiment of the present invention.
  • FIG. 8 is a flowchart of a method for controlling data transmission in a wireless communication network according to a seventh embodiment of the present invention.
  • FIG. 9 is a schematic structural diagram of a device for controlling data transmission in a wireless communication network according to an embodiment of the present invention.
  • FIG. 10 is a schematic structural diagram of another apparatus for controlling data transmission in a wireless communication network according to an embodiment of the present invention.
  • FIG. 11 is a schematic structural diagram of still another apparatus for controlling data transmission in a wireless communication network according to an embodiment of the present invention.
  • FIG. 12 is a schematic structural diagram of a control system for data transmission of a wireless communication network according to an embodiment of the present invention.
  • FIG. 13 is a schematic structural diagram of another control system for data transmission of a wireless communication network according to an embodiment of the present invention.
  • FIG. 14 is a schematic structural diagram of a base station according to an embodiment of the present disclosure.
  • FIG. 15 is a schematic structural diagram of a terminal according to an embodiment of the present disclosure.
  • FIG. 16 is a schematic structural diagram of a multi-level scheduling device according to an embodiment of the present invention. detailed description
  • FIG. 1 is a flowchart of a method for controlling data transmission in a wireless communication network according to an embodiment of the present invention.
  • the embodiment of the present invention can be implemented in a base station, and the process in this embodiment is as follows:
  • the base station acquires transmission attribute information, where the transmission attribute information includes attribute information of the to-be-transmitted data and base station scheduling attribute information.
  • the attribute information of the data to be transmitted includes: terminal identification information, terminal priority information, data amount information of the to-be-transmitted data, priority information of the to-be-transmitted data, and delay requirement information of the to-be-transmitted data.
  • the base station scheduling attribute information includes: one or more of a network resource occupancy rate, scheduling time information, and a scheduling resource amount.
  • the terminal identification information can be uniquely encoded by the device, for example: 3 ⁇ 4P IMEI (International Mobile Equipment Identity, a globally unique electronic serial number assigned to each mobile phone after assembly), IMSI ( International Mobile Subscriber Identification Number, International Mobile Subscriber Identity 1 J Code), TMSI (Temporary Mobile Subscriber Identity).
  • the data amount information of the data to be transmitted for example, the total data amount of the data to be transmitted is 10 M Bytes, 1 G Bytes, the total data amount range of the data to be transmitted, lG ⁇ 1.5 GBytes, and the like.
  • the delay requirement information of the data to be transmitted is the delay tolerance of the data to be transmitted, for example, 4000 seconds, 100 seconds, 30 seconds, and the like.
  • the network resource occupancy rate is the ratio of the current network resource occupation.
  • the scheduling time information is the time required for the base station to schedule the data to be transmitted, and the scheduling resource quantity is the amount of scheduling resources that the base station can provide for the data to be transmitted.
  • the base station may obtain the attribute information of the data to be transmitted from the terminal, the multi-level scheduling device, or the local device, and the base station may obtain the base station scheduling attribute information locally.
  • the acquiring, by the base station, the transmission attribute information includes: receiving, by the base station, a transmission request message that includes the attribute information of the data to be transmitted sent by the terminal; or sending, by the base station, a multi-level scheduling device (MLS, Multi-level Scheduler) a control message containing attribute information of data to be transmitted; or the base station reads attribute information of data to be transmitted locally.
  • MLS Multi-level scheduling device
  • the base station can obtain the attribute information of one or more data to be transmitted. Specifically, the base station can obtain attribute information of one or more data to be transmitted of one terminal, or obtain attribute information of the data to be transmitted of multiple terminals.
  • the preset scheduling condition may include: a preset first scheduling condition and/or a preset second scheduling condition, where the preset first scheduling condition includes but is not limited to: the network resource occupancy rate is greater than a preset number.
  • a threshold value the preset second scheduling condition includes but is not limited to: the network resource occupancy rate is less than a preset second threshold value.
  • determining whether the acquired base station scheduling attribute information meets the preset scheduling condition may include: determining whether the acquired base station scheduling attribute information meets a preset first scheduling condition, or determining the acquired base station scheduling attribute information. Whether the preset second scheduling condition is met, or whether the scheduling attribute information of the base station satisfies the preset first scheduling condition, and the second time determines whether the acquired scheduling attribute information of the base station satisfies the preset second scheduling. condition.
  • the base station sends a scheduling suspension message and/or a scheduling start message to the terminal according to the transmission attribute information.
  • the base station sends a scheduling suspension message/scheduling start message to the terminal according to the transmission attribute information. Specifically, if the acquired base station scheduling attribute information satisfies a preset first scheduling condition, the base station sends a scheduling suspension message to the terminal according to the transmission attribute information, so that the terminal suspends sending the resource request to the base station according to the scheduling suspension message; The base station scheduling attribute information satisfies a preset second scheduling condition, and the base station sends a scheduling start message to the terminal according to the transmission attribute information, and starts to allocate transmission resources for the to-be-transmitted data.
  • the obtained multiple transmission attribute information is compared, and if the terminal priority information in the transmission attribute information is the lowest priority, Or the data amount information of the data to be transmitted is the maximum data amount, or the priority information of the data to be transmitted is the lowest priority, or the delay requirement information of the data to be transmitted is the highest delay tolerance, or
  • the scheduling time information is the longest time information, or the scheduling resource quantity is the minimum resource quantity, the corresponding terminal identification information is determined, and the scheduling suspension message is sent to the terminal corresponding to the terminal identification information.
  • the quantity, or the priority information of the data to be transmitted is the lowest priority, or the delay requirement information of the data to be transmitted is the highest delay tolerance, and correspondingly, determining the base station scheduling
  • the scheduling time information in the attribute information is the longest time information, or the scheduling resource quantity is the minimum resource amount.
  • the scheduling suspension message may include: a connection release message or a scheduling request suspension message.
  • the scheduling pause message may further include: scheduling attribute information of the suspended object, where the attribute information of the scheduling pause object includes: terminal identification information of scheduling the suspended object, data type of the scheduling suspended object, and priority information of the scheduling suspended object And scheduling one or more of terminal priority information of the suspended object and scheduling delay information of the suspended object.
  • the obtained multiple transmission attribute information is compared, and if the terminal priority information in the transmission attribute information is the highest priority, Or the data amount information of the data to be transmitted is a minimum data amount, or the priority information of the data to be transmitted is the highest priority, or the delay requirement information of the data to be transmitted is a minimum delay tolerance, or
  • the scheduling time information is the shortest time information, or the scheduling resource quantity is the most resource quantity, and the corresponding terminal identification information is determined, and the scheduling start message is sent to the terminal corresponding to the terminal identification information.
  • the quantity, or the priority information of the data to be transmitted is the highest priority, or the delay requirement information of the data to be transmitted is the lowest delay tolerance, and correspondingly, determining the scheduling time information in the scheduling attribute information of the base station For the shortest time information, or the amount of scheduling resources is the maximum amount of resources.
  • the scheduling start message may include: resource allocation indication information of the to-be-transmitted data sent by the base station to the terminal or a resource allocation message of the to-be-transmitted data sent by the base station to the terminal.
  • the scheduling start message may further include: attribute information of the scheduling start object, where the attribute information of the scheduling start object includes: terminal identification information of the scheduling start object, a data type of the scheduling start object, and priority information of the scheduling start object. And one or more of the terminal priority information of the scheduling start object and the delay information of the scheduling start object.
  • a method for controlling data transmission in a wireless communication network may send a scheduling suspension message/scheduling start message to the terminal according to the obtained transmission attribute information. If the scheduling suspension message is sent to the terminal, the terminal may pause according to the scheduling. The message is suspended to send a resource request to the base station. If a scheduling start message is sent to the terminal, the transmission resource may be allocated for the data to be transmitted.
  • the embodiment can perform scheduling of data resources of the wireless communication network according to the transmission attribute information, avoiding congestion of the base station, reducing scheduling time, and improving data transmission efficiency of the wireless communication network.
  • FIG. 2 it is a flowchart of a method for controlling data transmission in a wireless communication network according to the first embodiment of the present invention.
  • the embodiment of the present invention can be implemented in a base station, and the process in this embodiment includes S201 ⁇ S203 as shown in the figure.
  • the base station acquires transmission attribute information, where the transmission attribute information includes attribute information of the to-be-transmitted data and base station scheduling attribute information.
  • the attribute information of the data to be transmitted includes: one or more of terminal identification information, terminal priority information, data volume information of data to be transmitted, priority information of data to be transmitted, and delay requirement information of data to be transmitted.
  • the base station scheduling attribute information includes: one or more of network resource occupancy rate, scheduling time information, and scheduling resource amount.
  • S202 Determine whether the acquired base station scheduling attribute information meets a preset first scheduling condition. If the result of the determination is yes, execute S203, and if the result of the determination is no, return to S201.
  • the preset first scheduling condition includes, but is not limited to: the network resource occupancy rate is greater than a preset first threshold.
  • S203 The base station sends a scheduling suspension message to the terminal according to the transmission attribute information, so that the terminal suspends sending the resource request to the base station according to the scheduling suspension message.
  • the obtained multiple transmission attribute information is compared, and if the terminal priority information in the transmission attribute information is the lowest priority, Or the data amount information of the data to be transmitted is the maximum data amount, or the priority information of the data to be transmitted is the lowest priority, or the delay requirement information of the data to be transmitted is the highest delay tolerance, or
  • the scheduling time information is the longest time information, or the scheduling resource quantity is the minimum resource quantity, the corresponding terminal identification information is determined, and the scheduling suspension message is sent to the terminal corresponding to the terminal identification information.
  • the quantity, or the priority information of the data to be transmitted is the lowest priority, or the delay requirement information of the data to be transmitted is the highest delay tolerance, and correspondingly, determining the base station scheduling
  • the scheduling time information in the attribute information is the longest time information, or the scheduling resource quantity is the minimum resource amount.
  • the base station may send a scheduling suspension message to the terminal according to the obtained transmission attribute information, for example, including suspending the terminal priority information as the lowest priority or the data to be transmitted.
  • the data amount information is the maximum data amount, or the priority information of the data to be transmitted is the lowest priority, or the delay requirement information of the data to be transmitted is the highest delay tolerance, or the scheduling time information is the longest time information, or the scheduling resource.
  • the scheduling pause message of the data to be transmitted corresponding to the transmission attribute information, such as the minimum resource quantity suspends the scheduling of the data to be transmitted of the transmission attribute information, avoids the congestion of the base station, reduces the scheduling time, and improves the data of the wireless communication network.
  • FIG. 3 it is a flowchart of a method for controlling data transmission in a wireless communication network according to a second embodiment of the present invention.
  • the embodiment of the present invention can be implemented in a base station, and the process in this embodiment includes S301 ⁇ S303.
  • the base station acquires transmission attribute information, where the transmission attribute information includes attribute information of the to-be-transmitted data and base station scheduling attribute information.
  • the attribute information of the data to be transmitted includes: one or more of terminal identification information, terminal priority information, data volume information of data to be transmitted, priority information of data to be transmitted, and delay requirement information of data to be transmitted.
  • the base station scheduling attribute information includes: one or more of network resource occupancy rate, scheduling time information, and scheduling resource amount.
  • S302. Determine whether the acquired base station scheduling attribute information meets a preset second scheduling condition. If the result of the determination is yes, execute S303, and if the result of the determination is no, return to S301.
  • the preset second scheduling condition includes but is not limited to: the network resource occupancy rate is less than a preset second threshold value.
  • the base station sends a scheduling start message to the terminal according to the transmission attribute information, and starts to allocate a transmission resource for the to-be-transmitted data.
  • the acquired base station scheduling attribute information meets the preset second scheduling condition, compare the obtained multiple transmission attribute information, if the terminal priority information in the transmission attribute information
  • the highest priority, or the data amount information of the data to be transmitted is the minimum data amount, or the priority information of the data to be transmitted is the highest priority, or the delay requirement information of the data to be transmitted is the lowest delay
  • the tolerance, or the scheduling time information is the shortest time information, or the scheduling resource quantity is the most resource quantity, and the corresponding terminal identification information is determined, and the scheduling start message is sent to the terminal corresponding to the terminal identification information.
  • the quantity, or the priority information of the data to be transmitted is the highest priority, or the delay requirement information of the data to be transmitted is the lowest delay tolerance, and correspondingly, determining the scheduling time information in the scheduling attribute information of the base station For the shortest time information, or the amount of scheduling resources is the maximum amount of resources.
  • the base station may send a scheduling start message to the terminal according to the obtained transmission attribute information, for example, including suspending the terminal priority information as the highest priority or the data to be transmitted.
  • the data amount information is the minimum data amount, or the priority information of the data to be transmitted is the highest priority, or the delay requirement information of the data to be transmitted is the lowest delay tolerance, or the scheduling time information is the shortest time information, or the scheduling resource amount Sending a scheduling start message for the data to be transmitted corresponding to the transmission attribute information, such as the most resource quantity, to start the scheduling of the data to be transmitted of the transmission attribute information, avoiding the congestion of the base station, reducing the scheduling time, and improving the data transmission of the wireless communication network. s efficiency.
  • FIG. 4 it is a flowchart of a method for controlling data transmission in a wireless communication network according to a third embodiment of the present invention.
  • the embodiment of the present invention can be implemented in a base station, and the process in this embodiment includes S401 ⁇ S405 as shown in the figure.
  • the base station acquires transmission attribute information, where the transmission attribute information includes attribute information of the to-be-transmitted data and base station scheduling attribute information.
  • S402. Determine whether the acquired base station scheduling attribute information meets a preset first scheduling condition. If the result of the determination is yes, execute S403, and if the result of the determination is no, return to S401.
  • the preset first scheduling condition includes, but is not limited to: the network resource occupancy rate is greater than a preset first threshold.
  • the base station sends a scheduling suspension message to the terminal according to the transmission attribute information, so that the terminal root The resource request is suspended from the base station according to the scheduling pause message.
  • the obtained multiple transmission attribute information is compared, and if the terminal priority information in the transmission attribute information is the lowest priority, Or the data amount information of the data to be transmitted is the maximum data amount, or the priority information of the data to be transmitted is the lowest priority, or the delay requirement information of the data to be transmitted is the highest delay tolerance, or
  • the scheduling time information is the longest time information, or the scheduling resource quantity is the minimum resource quantity, the corresponding terminal identification information is determined, and the scheduling suspension message is sent to the terminal corresponding to the terminal identification information.
  • the quantity, or the priority information of the data to be transmitted is the lowest priority, or the delay requirement information of the data to be transmitted is the highest delay tolerance, and correspondingly, determining the scheduling time information in the scheduling attribute information of the base station
  • the maximum amount of information, or the amount of scheduling resources is the minimum amount of resources.
  • S404 Determine whether the scheduling attribute information of the base station meets a preset second scheduling condition. If the judgment result is yes, execute S405, and if the judgment result is no, return to S401.
  • the preset second scheduling condition includes but is not limited to: the network resource occupancy rate is less than a preset second threshold value.
  • the base station sends a scheduling start message to the terminal according to the transmission attribute information, and starts to allocate a transmission resource for the to-be-transmitted data.
  • the obtained multiple transmission attribute information is compared, and if the terminal priority information in the transmission attribute information is the highest priority, Or the data amount information of the data to be transmitted is a minimum data amount, or the priority information of the data to be transmitted is the highest priority, or the delay requirement information of the data to be transmitted is a minimum delay tolerance, or
  • the scheduling time information is the shortest time information, or the scheduling resource quantity is the most resource quantity, and the corresponding terminal identification information is determined, and the scheduling start message is sent to the terminal corresponding to the terminal identification information.
  • the scheduling time information in the scheduling attribute information of the base station is determined to be the shortest time information, or the scheduling resource quantity is the maximum resource quantity.
  • S402 ⁇ S403, S404 ⁇ S405 can be executed without any order, and any group can be executed first, such as executing S402 ⁇ S403 first, then executing S404 ⁇ S405, or executing S402 ⁇ S403 first, and then executing S404 ⁇ S405. .
  • a method for controlling data transmission in a wireless communication network When the scheduling information of the base station satisfies a preset first scheduling condition, the base station may send a scheduling suspension message to the terminal according to the acquired transmission attribute information, when the base station When the scheduling attribute information meets the preset second scheduling condition, the base station may send a scheduling start message to the terminal according to the transmission attribute information, thereby suspending scheduling and starting scheduling according to the transmission attribute information, thereby avoiding congestion of the base station, reducing scheduling time, and improving The efficiency of data transmission in wireless communication networks.
  • FIG. 5 it is a flowchart of a method for controlling data transmission in a wireless communication network according to a fourth embodiment of the present invention. As shown in the figure, the flow in this embodiment includes S501 ⁇ S509.
  • the terminal acquires attribute information of the data to be transmitted.
  • the terminal acquires at least one attribute information of the data to be transmitted, and the attribute information of the data to be transmitted includes: terminal identification information, terminal priority information, data amount information of the data to be transmitted, priority information of the data to be transmitted, and data to be transmitted. One or more of the delay requirement information.
  • the terminal sends a transmission request message to the base station, where the transmission request message includes attribute information of the data to be transmitted.
  • the transmission request message may be an RRC connection request, and the transmission request message includes attribute information of the data to be transmitted.
  • the base station sends an RRC connection setup message to the terminal, and the terminal establishes an RRC connection with the base station, and the base station sends an RRC connection reconfiguration message to the terminal, and the terminal configures the radio bearer according to the RRC connection reconfiguration message, and sends the RRC.
  • the terminal After the reconfiguration complete message is connected to the base station, the terminal establishes an RRC radio bearer with the base station.
  • one or more terminals may send a transmission request message to the base station, or one terminal may send a different transmission request message corresponding to the to-be-transmitted data to the base station.
  • the base station acquires transmission attribute information, where the transmission attribute information includes attribute information of the data to be transmitted. And the base station scheduling attribute information.
  • the base station obtains the attribute information of the data to be transmitted from the received transmission request message, and stores the attribute information.
  • the base station obtains the base station scheduling attribute information from the local area, and the base station scheduling attribute information includes one or more of a network resource occupancy rate, scheduling time information, and a scheduling resource quantity.
  • the base station may obtain attribute information of one or more data to be transmitted. Specifically, the base station may acquire attribute information of one or more data to be transmitted of one terminal, or obtain attributes of data to be transmitted of multiple terminals. information.
  • the base station determines that the acquired base station scheduling attribute information meets a preset first scheduling condition.
  • the preset first scheduling condition includes, but is not limited to: the network resource occupancy rate is greater than a preset first threshold.
  • the base station sends a scheduling suspension message to the terminal according to the transmission attribute information, where the scheduling suspension message includes: scheduling attribute information of the suspended object.
  • the obtained multiple transmission attribute information is compared, and if the terminal priority information in the transmission attribute information is the lowest priority, Or the data amount information of the data to be transmitted is the maximum data amount, or the priority information of the data to be transmitted is the lowest priority, or the delay requirement information of the data to be transmitted is the highest delay tolerance, or
  • the scheduling time information is the longest time information, or the scheduling resource quantity is the minimum resource quantity, the corresponding terminal identification information is determined, and the scheduling suspension message is sent to the terminal corresponding to the terminal identification information.
  • the quantity, or the priority information of the data to be transmitted is the lowest priority, or the delay requirement information of the data to be transmitted is the highest delay tolerance, and correspondingly, determining the scheduling time information in the scheduling attribute information of the base station
  • the maximum amount of information, or the amount of scheduling resources is the minimum amount of resources.
  • the scheduling pause message includes: scheduling attribute information of the suspended object, and scheduling attribute information of the suspended object includes: scheduling identifier information of the suspended object, scheduling data type of the suspended object, scheduling priority information of the suspended object, and scheduling the suspended object One or more of priority information, scheduling delay information of the suspended object.
  • the scheduling pause object may be at least one data to be transmitted of one terminal, or all data to be transmitted of one terminal, or data to be transmitted of multiple terminals.
  • the scheduling suspension message includes: a connection release message or a scheduling request suspension message.
  • the terminal suspends sending a resource request to the base station according to the scheduling pause message.
  • the scheduling suspension message includes: scheduling attribute information of the suspended object, when detecting attribute information of the data to be transmitted and the scheduling The attribute information of the suspended object is the same, or the priority information of the data to be transmitted is lower than the data priority information of the scheduling pause object, or the terminal priority information of the terminal is lower than the terminal priority information of the scheduling pause object, Or, when the delay requirement information of the data to be transmitted is higher than the data delay information of the scheduling suspension object, the resource request transmission of the data to be transmitted is suspended.
  • the terminal may suspend the resource request transmission of all the data to be transmitted of the terminal, or may suspend at least one of the terminals.
  • a resource request to transmit data is sent.
  • the base station determines that the acquired base station scheduling attribute information meets a preset second scheduling condition.
  • the preset second scheduling condition includes but is not limited to: the network resource occupancy rate is less than a preset second threshold value.
  • the base station sends a scheduling start message to the terminal according to the transmission attribute information, where the scheduling start message includes: attribute information of a scheduling start object.
  • the attribute information of the scheduling start object includes: terminal identification information of the scheduling start object, a data type of the scheduling start object, priority information of the scheduling start object, terminal priority information of the scheduling start object, and delay information of the scheduling start object. One or more.
  • the scheduling start message may include: resource allocation indication information of the to-be-transmitted data sent by the base station to the terminal or a resource allocation message of the to-be-transmitted data sent by the base station to the terminal.
  • the terminal sends, to the base station, data to be transmitted according to the scheduling start message.
  • the terminal After receiving the scheduling start message, the terminal sends the data to be transmitted to the base station according to the scheduling start message, and when the attribute information of the data to be transmitted is detected, the attribute information of the scheduling start object is And the priority information of the data to be transmitted is higher than the data priority information of the scheduling suspension object, or the terminal priority information of the terminal priority information is higher than the scheduling priority object, or the to-be-transmitted When the delay requirement information of the data is lower than the data delay information of the scheduling suspension object, the data to be transmitted is sent to the base station.
  • the sending of the data to be transmitted of the terminal may be started, or at least one data to be transmitted in the terminal may be started.
  • a method for controlling data transmission in a wireless communication network When the scheduling information of the base station satisfies a preset first scheduling condition, the base station may send a scheduling suspension message to the terminal according to the obtained transmission attribute information, and the terminal pauses. Sending a resource request to the base station, when the base station scheduling attribute information meets the preset second scheduling condition, the base station may send a scheduling start message to the terminal according to the transmission attribute information, and the terminal sends the to-be-transmitted data to the base station, so that the scheduling may be suspended according to the transmission attribute information. And start scheduling, avoiding the congestion of the base station, reducing the scheduling time, and improving the efficiency of data transmission in the wireless communication network.
  • FIG. 6 is a flowchart of a method for controlling data transmission in a wireless communication network according to a fifth embodiment of the present invention. As shown in the figure, the flow in this embodiment includes S601 to S613.
  • the terminal acquires attribute information of the data to be transmitted.
  • the terminal acquires at least one attribute information of the data to be transmitted, and the attribute information of the data to be transmitted includes: terminal identification information, terminal priority information, data amount information of the data to be transmitted, priority information of the data to be transmitted, and data to be transmitted. One or more of the delay requirement information.
  • the base station sends a data report request message to the terminal.
  • the terminal reports the attribute information of the to-be-transmitted data to the base station according to the data report request message.
  • the base station acquires transmission attribute information, where the transmission attribute information includes attribute information of the to-be-transmitted data and base station scheduling attribute information.
  • the base station receives the attribute information of the data to be transmitted reported by the terminal, acquires the attribute information of the data to be transmitted, and stores the attribute information.
  • the base station acquires the base station scheduling attribute information locally, and the base station schedules the genus
  • the sexual information includes: one or more of network resource occupancy rate, scheduling time information, and scheduling resource amount.
  • the base station may obtain attribute information of one or more data to be transmitted.
  • the base station may acquire attribute information of one or more data to be transmitted of one terminal, or obtain attributes of data to be transmitted of multiple terminals. information.
  • the base station determines that the acquired base station scheduling attribute information meets a preset first scheduling condition.
  • the preset first scheduling condition includes, but is not limited to: the network resource occupancy rate is greater than a preset first threshold.
  • the base station sends a scheduling suspension message to the terminal according to the transmission attribute information, where the scheduling suspension message includes: attribute information of the scheduling suspension object.
  • the obtained multiple transmission attribute information is compared, and if the terminal priority information in the transmission attribute information is the lowest priority, Or the data amount information of the data to be transmitted is the maximum data amount, or the priority information of the data to be transmitted is the lowest priority, or the delay requirement information of the data to be transmitted is the highest delay tolerance, or
  • the scheduling time information is the longest time information, or the scheduling resource quantity is the minimum resource quantity, the corresponding terminal identification information is determined, and the scheduling suspension message is sent to the terminal corresponding to the terminal identification information.
  • the quantity, or the priority information of the data to be transmitted is the lowest priority, or the delay requirement information of the data to be transmitted is the highest delay tolerance, and correspondingly, determining the scheduling time information in the scheduling attribute information of the base station
  • the maximum amount of information, or the amount of scheduling resources is the minimum amount of resources.
  • the scheduling pause message includes: scheduling attribute information of the suspended object, and scheduling attribute information of the suspended object includes: scheduling identifier information of the suspended object, scheduling data type of the suspended object, scheduling priority information of the suspended object, and scheduling the suspended object One or more of priority information, scheduling delay information of the suspended object.
  • the scheduling pause object may be at least one data to be transmitted of one terminal, or all data to be transmitted of one terminal, or data to be transmitted of multiple terminals.
  • the scheduling suspension message includes: a connection release message or a scheduling request suspension message.
  • the terminal suspends sending a resource request to the base station according to the scheduling pause message.
  • the scheduling suspension message includes: scheduling attribute information of the suspended object, when detecting attribute information of the data to be transmitted and the scheduling The attribute information of the suspended object is the same, or the priority information of the data to be transmitted is lower than the data priority information of the scheduling pause object, or the terminal priority information of the terminal is lower than the terminal priority information of the scheduling pause object, Or, when the delay requirement information of the data to be transmitted is higher than the data delay information of the scheduling suspension object, the resource request transmission of the data to be transmitted is suspended.
  • the terminal may suspend the resource request transmission of all the data to be transmitted of the terminal, or may suspend at least one of the terminals.
  • a resource request to transmit data is sent.
  • the base station reads the transmission attribute information locally.
  • S604 has obtained the transmission attribute information, and then S608 directly reads the transmission attribute information from the local.
  • the base station determines that the read base station scheduling attribute information meets a preset second scheduling condition.
  • the preset second scheduling condition includes but is not limited to: the network resource occupancy rate is less than a preset second threshold value.
  • the base station sends a scheduling start message to the terminal according to the transmission attribute information, where the scheduling start message includes: resource allocation indication information of the data to be transmitted.
  • the scheduling start message may further include: scheduling attribute information of the start object.
  • the attribute information of the scheduling start object includes: terminal identification information of the scheduling start object, a data type of the scheduling start object, priority information of the scheduling start object, terminal priority information of the scheduling start object, and delay information of the scheduling start object. One or more.
  • the terminal sends a resource allocation request to the base station according to the resource allocation indication information of the to-be-transmitted data.
  • the terminal After receiving the scheduling start message, the terminal sends the resource to the base station according to the scheduling start message. Assigning a request, when it is detected that the attribute information of the data to be transmitted is the same as the attribute information of the scheduling start object, or the priority information of the data to be transmitted is higher than the data priority information of the scheduling suspended object, or the terminal When the priority information is higher than the terminal priority information of the scheduling suspension object, or the delay requirement information of the data to be transmitted is lower than the data delay information of the scheduling suspension object, the data to be transmitted is sent to the base station. Resource allocation request.
  • the sending of the resource allocation request of all the data to be transmitted of the terminal may be started, or at least one of the terminals may be started.
  • the terminal sends the data to be transmitted to the base station according to the resource allocation message of the to-be-transmitted data.
  • a method for controlling data transmission in a wireless communication network is provided.
  • the base station may instruct the terminal to report attribute information of the data to be transmitted, and send a scheduling suspension message/scheduling start message to the terminal according to the obtained transmission attribute information, thereby transmitting according to the transmission.
  • the attribute information is scheduled to avoid congestion of the base station, reduce the scheduling time, and improve the efficiency of data transmission in the wireless communication network.
  • FIG. 7 is a flowchart of a method for controlling data transmission in a wireless communication network according to a sixth embodiment of the present invention.
  • the flow in this embodiment as shown in the figure includes S701 to S714.
  • the terminal acquires attribute information of the data to be transmitted.
  • the terminal acquires at least one attribute information of the data to be transmitted, and the attribute information of the data to be transmitted includes: terminal identification information, terminal priority information, data amount information of the data to be transmitted, priority information of the data to be transmitted, and data to be transmitted. One or more of the delay requirement information.
  • S702 The terminal sends a transmission request message to the base station, where the transmission request message includes attribute information of the to-be-transmitted data.
  • the transmission request message may be an RRC connection request, and the transmission request message includes attribute information of the data to be transmitted.
  • the base station sends an RRC connection setup message to the terminal, and the terminal establishes an RRC connection with the base station, and the base station sends an RRC connection reconfiguration message to the terminal, and the terminal configures the radio bearer according to the RRC connection reconfiguration message, and sends the RRC.
  • Connection reconfiguration complete message To the base station, the terminal establishes an RRC radio bearer with the base station.
  • one or more terminals may send a transmission request message to the base station, or one terminal may send a different transmission request message corresponding to the to-be-transmitted data to the base station.
  • the base station acquires transmission attribute information, where the transmission attribute information includes attribute information of the to-be-transmitted data and base station scheduling attribute information.
  • the base station obtains the attribute information of the data to be transmitted from the received transmission request message, and stores the attribute information.
  • the base station obtains the base station scheduling attribute information from the local area, and the base station scheduling attribute information includes one or more of a network resource occupancy rate, scheduling time information, and a scheduling resource quantity.
  • the base station may obtain attribute information of one or more data to be transmitted. Specifically, the base station may acquire attribute information of one or more data to be transmitted of one terminal, or obtain attributes of data to be transmitted of multiple terminals. information.
  • the base station determines that the acquired base station scheduling attribute information meets a preset first scheduling condition.
  • the preset first scheduling condition includes, but is not limited to: the network resource occupancy rate is greater than a preset first threshold.
  • the base station sends a control request message to the multi-level scheduling device, where the control request message includes the transmission attribute information.
  • the base station sends a control request message to the multi-level scheduling device MLS, where the control request message includes transmission attribute information, where the transmission attribute information includes attribute information of the to-be-transmitted data and base station scheduling attribute information.
  • the multi-level scheduling device acquires the transmission attribute information according to the control request message. After receiving the control request message, the multi-level scheduling device obtains the transmission attribute information from the control request message and stores the information.
  • the multi-level scheduling device sends a first control message to the base station according to the obtained transmission attribute information.
  • the sending, by the multi-level scheduling device, the first control message to the base station according to the obtained transmission attribute information may include:
  • the data amount information of the data is the maximum data amount, or the priority information of the data to be transmitted is the lowest priority, or the delay requirement information of the data to be transmitted is the highest delay tolerance, or the scheduling time information is The maximum time information, or the amount of scheduling resources is the minimum amount of resources, and the corresponding terminal identification information is determined; the attribute information of the corresponding scheduling pause object is obtained according to the determined terminal identification information; the multi-level scheduling device sends the first control message to the base station.
  • the first control message includes: attribute information of the scheduling pause object.
  • the attribute information of the scheduling pause object includes: a terminal identifier information of the scheduling pause object, a data type of the scheduling pause object, a priority information of the scheduling pause object, a terminal priority information of the scheduling pause object, and a delay information of the scheduling pause object. One or more.
  • the base station sends a scheduling suspension message to the terminal according to the first control message, where the scheduling suspension message includes: scheduling attribute information of the suspended object.
  • the terminal suspends sending a resource request to the base station according to the scheduling pause message.
  • the base station determines that the acquired base station scheduling attribute information meets a preset second scheduling condition.
  • the preset second scheduling condition includes but is not limited to: the network resource occupancy rate is less than a preset second threshold value.
  • the base station sends a transmission control request message to the multi-level scheduling device.
  • the multi-stage scheduling device sends a second control message to the base station according to the transmission control request message, where the multi-level scheduling device sends the second control message to the base station according to the transmission control request message, which may include:
  • the terminal priority information in the transmission attribute information is the highest priority, or the data amount information of the data to be transmitted is the minimum data amount, or the priority information of the data to be transmitted is the highest priority, or The delay requirement information of the data to be transmitted is the minimum delay tolerance, or the scheduling time information is the shortest time information, or the scheduling resource quantity is the most resource quantity, and the corresponding terminal identification information is determined;
  • the information acquisition attribute information of the corresponding scheduling start object; the multi-level scheduling device sends a second control message to the base station, where the second control message includes: attribute information of the scheduling start object.
  • the attribute information of the scheduling start object includes: terminal identification information of the scheduling start object, a data type of the scheduling start object, priority information of the scheduling start object, terminal priority information of the scheduling start object, and delay information of the scheduling start object. One or more.
  • the base station sends a scheduling start message to the terminal according to the second control message, where the scheduling start message includes: attribute information of the scheduling start object.
  • the terminal sends, to the base station, data to be transmitted according to the scheduling start message.
  • a method for controlling data transmission in a wireless communication network may send a scheduling pause message and/or a scheduling start message to the terminal according to the control message sent by the multi-level scheduling device, so as to perform scheduling according to the transmission attribute information, to avoid The congestion of the base station reduces the scheduling time and improves the efficiency of data transmission in the wireless communication network.
  • FIG. 8 is a flowchart of a method for controlling data transmission in a wireless communication network according to a seventh embodiment of the present invention. The flow in this embodiment as shown in the figure includes S801 to S817.
  • the terminal acquires attribute information of the data to be transmitted.
  • the terminal acquires at least one attribute information of the data to be transmitted, and the attribute information of the data to be transmitted includes: terminal identification information, terminal priority information, data amount information of the data to be transmitted, priority information of the data to be transmitted, and data to be transmitted. One or more of the delay requirement information.
  • the base station sends a data report request message to the terminal.
  • the terminal reports the attribute information of the to-be-transmitted data to the base station according to the data report request message.
  • the base station acquires transmission attribute information, where the transmission attribute information includes attribute information of the to-be-transmitted data and base station scheduling attribute information.
  • the base station obtains the attribute information of the data to be transmitted from the received transmission request message, and stores the attribute information.
  • the base station obtains the base station scheduling attribute information from the local area, and the base station scheduling attribute information includes one or more of a network resource occupancy rate, scheduling time information, and a scheduling resource quantity.
  • the base station may obtain attribute information of one or more data to be transmitted. Specifically, the base station may acquire attribute information of one or more data to be transmitted of one terminal, or obtain attributes of data to be transmitted of multiple terminals. information. S805. The base station determines that the acquired base station scheduling attribute information meets a preset first scheduling condition.
  • the preset first scheduling condition includes, but is not limited to: the network resource occupancy rate is greater than a preset first threshold.
  • the base station sends a control request message to the multi-level scheduling device, where the control request message includes the transmission attribute information.
  • the multi-level scheduling device acquires the transmission attribute information according to the control request message.
  • the multi-level scheduling device sends a first control message to the base station according to the obtained transmission attribute information.
  • the sending, by the multi-level scheduling device, the first control message to the base station according to the obtained transmission attribute information may include:
  • the terminal priority information in the transmission attribute information is the lowest priority, or the data amount information of the data to be transmitted is the maximum data amount, or the priority information of the data to be transmitted is the lowest priority, or The delay requirement information of the data to be transmitted is the highest delay tolerance, or the scheduling time information is the longest time information, or the scheduling resource quantity is the minimum resource quantity, and the corresponding terminal identification information is determined;
  • the identifier information acquires attribute information of the corresponding scheduling pause object; the multi-level scheduling device sends a first control message to the base station, where the first control message includes: attribute information of the scheduling pause object.
  • the attribute information of the scheduling pause object includes: a terminal identifier information of the scheduling pause object, a data type of the scheduling pause object, a priority information of the scheduling pause object, a terminal priority information of the scheduling pause object, and a delay information of the scheduling pause object. One or more.
  • the base station sends a scheduling suspension message to the terminal according to the first control message, where the scheduling suspension message includes: scheduling attribute information of the suspended object.
  • the terminal suspends sending a resource request to the base station according to the scheduling pause message.
  • the scheduling suspension message includes: scheduling attribute information of the suspended object, when detecting attribute information of the data to be transmitted and the scheduling The attribute information of the suspended object is the same, or the priority information of the data to be transmitted is lower than the data priority information of the scheduling suspended object, or the terminal is superior. Suspending the resource request of the data to be transmitted when the priority information is lower than the terminal priority information of the scheduling suspension object or the delay requirement information of the data to be transmitted is higher than the data delay information of the scheduling suspension object send.
  • the terminal may suspend the resource request transmission of all the data to be transmitted of the terminal, or may suspend at least one of the terminals.
  • a resource request to transmit data is sent.
  • the base station determines that the acquired base station scheduling attribute information meets a preset second scheduling condition.
  • the preset second scheduling condition includes but is not limited to: the network resource occupancy rate is less than a preset second threshold value.
  • the base station sends a transmission control request message to the multi-level scheduling device, where the transmission control request message includes the transmission attribute information.
  • the multi-level scheduling device acquires the transmission attribute information according to the transmission control request message.
  • the multi-level scheduling device sends a second control message to the base station according to the acquired transmission attribute information.
  • the sending, by the multi-level scheduling device, the second control message to the base station according to the transmission control request message may specifically include:
  • the terminal priority information in the transmission attribute information is the highest priority, or the data amount information of the data to be transmitted is the minimum data amount, or the priority information of the data to be transmitted is the highest priority, or The delay requirement information of the data to be transmitted is the minimum delay tolerance, or the scheduling time information is the shortest time information, or the scheduling resource quantity is the most resource quantity, and the corresponding terminal identification information is determined;
  • the information acquisition attribute information of the corresponding scheduling start object; the multi-level scheduling device sends a second control message to the base station, where the second control message includes: attribute information of the scheduling start object.
  • the attribute information of the scheduling start object includes: terminal identification information of the scheduling start object, a data type of the scheduling start object, priority information of the scheduling start object, terminal priority information of the scheduling start object, and delay information of the scheduling start object. One or more.
  • the base station sends a scheduling start message to the terminal according to the second control message, and the scheduling starts to be cancelled.
  • the information includes: resource allocation indication information of the data to be transmitted.
  • the scheduling start message may further include: scheduling attribute information of the start object.
  • the attribute information of the scheduling start object includes: terminal identification information of the scheduling start object, a data type of the scheduling start object, priority information of the scheduling start object, terminal priority information of the scheduling start object, and delay information of the scheduling start object. One or more.
  • the terminal sends a resource allocation request to the base station according to the resource allocation indication information of the to-be-transmitted data.
  • the terminal After receiving the scheduling start message, the terminal sends a resource allocation request to the base station according to the scheduling start message, when detecting that the attribute information of the data to be transmitted is the same as the attribute information of the scheduling start object, or the priority of the data to be transmitted.
  • the information is higher than the data priority information of the scheduling pause object, or the terminal priority information of the terminal priority information is higher than the scheduling priority information, or the delay requirement information of the data to be transmitted is lower than the scheduling
  • the resource allocation request of the data to be transmitted is sent to the base station.
  • the sending of the resource allocation request of all the data to be transmitted of the terminal may be started, or at least one of the terminals may be started.
  • the terminal sends the data to be transmitted to the base station according to the resource allocation message of the to-be-transmitted data.
  • a method for controlling data transmission in a wireless communication network is provided.
  • the base station may send a scheduling suspension message/scheduling start message to the terminal according to the control message sent by the multi-level scheduling device, thereby performing scheduling according to the transmission attribute information, thereby avoiding the base station.
  • the scheduling time is reduced, and the efficiency of data transmission in the wireless communication network is improved.
  • the control device for data transmission of the wireless communication network provided by the embodiment of the present invention will be described in detail below with reference to FIG. 9 to FIG.
  • control device for data transmission of the wireless communication network shown in FIG. 9 is used to execute the method of the embodiment shown in FIG. 1 to FIG. 4 of the present invention.
  • the control device for data transmission of the wireless communication network shown in FIG. 9 is used to execute the method of the embodiment shown in FIG. 1 to FIG. 4 of the present invention.
  • the present invention is shown.
  • the specific technical details are not disclosed. Please refer to the embodiment shown in Figs. 1 to 4 of the present invention.
  • FIG. 9 is a schematic structural diagram of a control device for data transmission in a wireless communication network according to an embodiment of the present invention.
  • the device may include:
  • the first obtaining module 901 is configured to obtain transmission attribute information, where the transmission attribute information includes attribute information of the to-be-transmitted data and base station scheduling attribute information.
  • the attribute information of the data to be transmitted includes: terminal identification information, terminal priority information, data amount information of the to-be-transmitted data, priority information of the to-be-transmitted data, and delay requirement information of the to-be-transmitted data.
  • the base station scheduling attribute information includes: one or more of a network resource occupancy rate, scheduling time information, and a scheduling resource amount.
  • the terminal identification information may be a unique identification code of the device, such as IMEI.
  • the amount of data of the data to be transmitted such as 10Mbs, 1G, and so on.
  • the delay requirement information of the data to be transmitted is the delay tolerance of the data to be transmitted, for example, 4000 seconds, 100 seconds, 30 seconds, and the like.
  • the network resource occupancy rate is the ratio of the current network resource occupation.
  • the scheduling time information is the time required for the base station to schedule the data to be transmitted.
  • the scheduling resource quantity is the amount of scheduling resources that the base station can provide for the data to be transmitted.
  • the first obtaining module 901 may obtain the attribute information of the data to be transmitted from the terminal, the multi-level scheduling device, or the local device, and the base station may acquire the base station scheduling attribute information locally.
  • the first obtaining module 901 may include: a first receiving unit, a second receiving unit, or a local acquiring unit, where: the first receiving unit is configured to receive, by the terminal, attribute information that includes the to-be-transmitted data Transmission request message;
  • a second receiving unit configured to receive, by the multi-level scheduling device, a control message that includes the attribute information of the data to be transmitted;
  • the local obtaining unit is configured to read the attribute information of the data to be transmitted from the local.
  • the first obtaining module 901 may obtain the attribute information of one or more data to be transmitted. Specifically, the first obtaining module 901 may obtain attribute information of one or more data to be transmitted of one terminal, or may acquire multiple terminals. Attribute information of the data to be transmitted.
  • the determining module 902 is configured to determine whether the scheduling attribute information of the base station acquired by the first acquiring module 901 meets a preset scheduling condition.
  • the determining module 902 may include: a first determining unit and/or a second determining unit, where the first determining unit is configured to determine whether the scheduling attribute information of the base station acquired by the first acquiring module meets a preset first scheduling condition.
  • the second determining unit is configured to determine whether the scheduling attribute information of the base station acquired by the first acquiring module meets a preset second scheduling condition.
  • the first scheduling condition of the preset includes, but is not limited to: the network resource occupancy rate is greater than a preset first threshold.
  • the preset second scheduling condition includes but is not limited to: the network resource occupancy is less than a preset second threshold.
  • the first processing module 903 is configured to: when the determination result of the determining module 902 is YES, send a scheduling suspension message and/or a scheduling start message to the terminal according to the transmission attribute information.
  • the first processing module 903 may include: a first processing unit and/or a second processing unit, where the first processing unit is configured to: when the first determining unit determines that the result is yes, according to the transmission attribute information, to the terminal Sending a scheduling pause message, so that the terminal pauses to send a resource request to the base station according to the scheduling pause message; and a second processing unit, configured to: when the second determining unit determines that the result is yes, according to the transmission attribute information The terminal sends a scheduling start message and starts to allocate transmission resources for the data to be transmitted.
  • the first processing unit is specifically configured to: when the terminal priority information in the transmission attribute information is the lowest priority, or the data volume information of the to-be-transmitted data is a maximum data amount, or the to-be-transmitted
  • the priority information of the data is the lowest priority, or the delay requirement information of the data to be transmitted is the highest delay tolerance, or the scheduling time information is the longest time information, or the scheduling resource quantity is the minimum resource quantity.
  • determining the corresponding terminal identification information and sending a scheduling suspension message to the terminal corresponding to the terminal identification information.
  • the first determining unit determines that the acquired base station scheduling attribute information meets the preset first scheduling condition, compares the obtained multiple transmission attribute information, if the terminal priority in the transmission attribute information
  • the information is the lowest priority, or the data amount information of the data to be transmitted is the maximum data amount, or the priority information of the data to be transmitted is the lowest priority, or the delay requirement information of the data to be transmitted is the highest
  • the delay tolerance, or the scheduling time information is the longest time information, or the scheduling resource quantity is the minimum resource quantity, the corresponding terminal identification information is determined, and the scheduling suspension message is sent to the terminal corresponding to the terminal identification information.
  • the terminal priority information is the lowest priority, or the data volume information of the to-be-transmitted data is the maximum data amount, or the priority information of the to-be-transmitted data is the lowest
  • the priority or the delay requirement information of the data to be transmitted is the highest delay tolerance, and correspondingly, determining that the scheduling time information in the base station scheduling attribute information is the longest time information, or the scheduling resource quantity is the least Resources.
  • the scheduling suspension message may include: a connection release message or a scheduling request suspension message.
  • the scheduling pause message may further include: scheduling attribute information of the suspended object, where the attribute information of the scheduling pause object includes: terminal identification information of scheduling the suspended object, data type of the scheduling suspended object, and priority information of the scheduling suspended object And scheduling one or more of terminal priority information of the suspended object and scheduling delay information of the suspended object.
  • the second processing unit is configured to: when the terminal priority information in the transmission attribute information is the highest priority, or the data amount information of the to-be-transmitted data is a minimum data amount, or the to-be-transmitted
  • the priority information of the data is the highest priority, or the delay requirement information of the data to be transmitted is the lowest delay tolerance, or the scheduling time information is the shortest time information, or the scheduling resource quantity is the maximum resource quantity, and is determined.
  • the second determining unit determines that the acquired base station scheduling attribute information meets the preset second scheduling condition, compares the obtained multiple transmission attribute information, if the terminal priority in the transmission attribute information
  • the information is the highest priority, or the data amount information of the data to be transmitted is the minimum data amount, or the priority information of the data to be transmitted is the highest priority, or the delay requirement information of the data to be transmitted is the lowest
  • the delay tolerance, or the scheduling time information is the shortest time information, or the scheduling resource quantity is the most resource quantity, and the corresponding terminal identification information is determined, and the scheduling start message is sent to the terminal corresponding to the terminal identification information.
  • the scheduling start message may include: the resource allocation indication information of the to-be-transmitted data sent by the first processing module 903 to the terminal, or the to-be-sent sent by the first processing module 903 to the terminal A resource allocation message that transmits data.
  • the scheduling start message may further include: attribute information of the scheduling start object, where the attribute information of the scheduling start object includes: terminal identification information of the scheduling start object, a data type of the scheduling start object, and priority information of the scheduling start object. And one or more of the terminal priority information of the scheduling start object and the delay information of the scheduling start object.
  • control device for data transmission of the wireless communication network in the embodiment of the present invention may further include: a report request sending module 904.
  • the report request sending module 904 is configured to send a data report request message to the terminal, so that the terminal reports the attribute information of the data to be transmitted to the base station according to the data report request message.
  • the report request sending module 904 sends a data report request message to the terminal to indicate the attribute information of the data to be transmitted by the terminal.
  • the first obtaining module 901 acquires attribute information of the data to be transmitted.
  • control device for data transmission of the wireless communication network in the embodiment of the present invention may further include: a control request sending module 905.
  • the control request sending module 905 is configured to send a control request message to the multi-level scheduling device, so that the multi-level scheduling device sends the attribute information of the to-be-transmitted data to the base station according to the control request message.
  • the control request sending module 905 sends a control request message to the multi-level scheduling device to request
  • the control device for controlling the data transmission of the wireless communication network in the embodiment of the present invention may further include: a transmission control request sending module 906.
  • the transmission control request sending module 906 is configured to send a transmission control request message to the multi-level scheduling device, so that the multi-level scheduling device sends the attribute information of the to-be-transmitted data to the base station according to the transmission control request message.
  • the transmission control request sending module 906 sends a transmission control request message to the multi-level scheduling device.
  • the multi-level scheduling device is requested to control the transmission of the base station and return attribute information of the data to be transmitted.
  • a control device for data transmission of a wireless communication network may send a scheduling suspension message/scheduling start message to the terminal according to the transmission attribute information acquired by the first obtaining module, if the scheduling pause is sent to the terminal.
  • the message may be sent to the base station according to the scheduling pause message.
  • the scheduling start message is sent to the terminal, the transmission resource may be allocated for the data to be transmitted.
  • the scheduling of the data resources of the wireless communication network can be performed according to the transmission attribute information, the congestion of the base station is avoided, the scheduling time is reduced, and the efficiency of data transmission of the wireless communication network is improved.
  • FIG. 10 is a schematic structural diagram of another apparatus for controlling data transmission in a wireless communication network according to an embodiment of the present invention; the apparatus may include:
  • the receiving module 1001 is configured to receive a scheduling suspension message and/or a scheduling start message sent by the base station.
  • the scheduling suspension processing module 1002 is configured to: when the receiving module 1001 receives the scheduling suspension message, send a resource request to the base station according to the scheduling suspension message, where the scheduling suspension message includes: attribute information of the scheduling suspension object.
  • the attribute information of the scheduling pause object includes: one or more of terminal identifier information, a data type of scheduling a pause object, priority information of a scheduling pause object, terminal priority information of a scheduling pause object, and delay information of a scheduling pause object.
  • the scheduling suspension processing module 1002 is specifically configured to: when detecting that the attribute information of the data to be transmitted is the same as the attribute information of the scheduling suspension object, or the priority information of the data to be transmitted is lower than the scheduling The data priority information of the suspended object, or the terminal priority information of the terminal suspended priority object or the delay requirement information of the data to be transmitted is higher than the data delay of the scheduling suspended object When the information is received, the resource request transmission of the data to be transmitted is suspended.
  • the terminal may suspend the resource request transmission of all the data to be transmitted of the terminal, or may be suspended. At least one resource requesting to transmit data in the terminal is sent.
  • the scheduling start processing module 1003 is configured to: when the receiving module 1001 receives the scheduling start message, send the data to be transmitted to the base station according to the scheduling start message, where the scheduling start message includes: attribute information of the scheduling start object.
  • the scheduling start message includes: resource allocation indication information of the to-be-transmitted data sent by the base station or a resource allocation message of the to-be-transmitted data sent by the base station.
  • the scheduling start processing module 1003 is specifically configured to: when detecting that the attribute information of the data to be transmitted is the same as the attribute information of the scheduling start object, or the priority information of the data to be transmitted is higher than the scheduling suspended object Data priority information, or the terminal priority information is higher than the terminal priority information of the scheduling suspension object, or the delay requirement information of the data to be transmitted is lower than the data delay information of the scheduling suspension object. Sending the to-be-transmitted data to the base station
  • the sending of the data to be transmitted of the terminal may be started, or at least one data to be transmitted in the terminal may be started.
  • control device for data transmission of the wireless communication network in the embodiment of the present invention may further include: a second obtaining module 1004 and a sending module 1005.
  • the second obtaining module 1004 is configured to obtain attribute information of the data to be transmitted.
  • the terminal acquires at least one attribute information of the data to be transmitted, and the attribute information of the data to be transmitted includes: terminal identification information, terminal priority information, data quantity information of the to-be-transmitted data, priority information of the to-be-transmitted data, One or more of the delay requirement information of the data to be transmitted.
  • the sending module 1005 is configured to send a transmission request message to the base station, where the transmission request message includes attribute information of the data to be transmitted acquired by the second acquiring module.
  • the transmission request message may be an RRC connection request, and the transmission request message includes attribute information of the data to be transmitted.
  • the base station sends an RRC connection setup message to the terminal, and the terminal establishes an RRC connection with the base station, and the base station sends an RRC connection reconfiguration message to the terminal, and the terminal configures the radio bearer according to the RRC connection reconfiguration message, and sends the RRC.
  • the terminal After the reconfiguration complete message is connected to the base station, the terminal establishes an RRC radio bearer with the base station.
  • one or more terminals may send a transmission request message to the base station, or a terminal to the base
  • the station sends different transmission request messages corresponding to the data to be transmitted.
  • control device for data transmission of the wireless communication network in the embodiment of the present invention may further include: a report request receiving module 1006 and a report module 1007.
  • the report request receiving module 1006 is configured to receive a data report request message sent by the base station.
  • the reporting module 1007 is configured to report the attribute information of the data to be transmitted to the base station according to the data report request message received by the report request receiving module.
  • FIG. 11 is a schematic structural diagram of another apparatus for controlling data transmission of a wireless communication network according to an embodiment of the present invention.
  • the apparatus may include:
  • the third obtaining module 1101 is configured to obtain transmission attribute information, where the transmission attribute information includes attribute information of the data to be transmitted and base station scheduling attribute information.
  • the multi-level scheduling device After receiving the control request message sent by the base station, the multi-level scheduling device obtains the transmission attribute information from the control request message and stores the information.
  • the control request message includes transmission attribute information including attribute information of the data to be transmitted and base station scheduling attribute information.
  • the attribute information of the data to be transmitted includes one or more of terminal identification information, terminal priority information, data amount information of the data to be transmitted, priority information of data to be transmitted, and delay requirement information of data to be transmitted.
  • the base station scheduling attribute information includes: one or more of network resource occupancy rate, scheduling time information, and scheduling resource amount.
  • the third obtaining module 1101 may include: a control request receiving unit 11011 and an obtaining unit 11012, where:
  • the control request receiving unit 11011 is configured to receive a control request message sent by the base station, where the control request message includes: transmission attribute information.
  • the obtaining unit 11012 is configured to acquire the transmission attribute information according to the control request message received by the control request receiving unit 11011.
  • the third obtaining module 1101 may further include:
  • the transmission control request receiving unit 11013 is configured to receive a transmission control request message sent by the base station, where the transmission control request message includes: transmission attribute information.
  • the second processing module 1102 is configured to send, to the base station, a control message that includes the transmission attribute information acquired by the third obtaining module 1101, so that the base station sends a scheduling suspension message to the terminal according to the control message, and/or the scheduling starts. Message.
  • the second processing module 1102 may include: a first control message processing unit, where: the first control message processing unit 11021 is configured to send, according to the transmission attribute information acquired by the obtaining unit 11012, the first control message to the base station. So that the base station sends a scheduling suspension message to the terminal according to the first control message.
  • the attribute information of the scheduling suspended object includes: scheduling terminal information of the suspended object, scheduling a data type of the suspended object, scheduling priority information of the suspended object, scheduling priority information of the suspended object, and scheduling delay of the suspended object One or more of the information.
  • the first control message processing unit 11021 may include: a first determining subunit, a first obtaining subunit, and a first sending subunit, where:
  • a first determining subunit configured to: when the terminal attribute information in the transmission attribute information is the lowest priority, or the data amount information of the to-be-transmitted data is a maximum data amount, or a priority of the to-be-transmitted data
  • the information is the lowest priority, or the delay requirement information of the data to be transmitted is the highest delay tolerance, or the scheduling time information is the longest time information, or the scheduling resource quantity is the minimum resource quantity, and the corresponding terminal is determined.
  • a first acquiring subunit configured to acquire attribute information of the corresponding scheduling pause object according to the terminal identification information determined by the first determining subunit;
  • the first sending subunit is configured to send a first control message to the base station, where the first control message includes: attribute information of the scheduling pause object acquired by the first acquiring subunit.
  • the second processing module 1102 may further include: a second control message processing unit 11022, where: The second control message processing unit 11022 is configured to send, according to the transmission control request message received by the transmission control request receiving unit, a second control message to the base station, so that the base station sends the second control message to the terminal according to the second control message. Send a schedule start message.
  • the attribute information of the scheduling start object includes: terminal identifier information of the scheduling start object, a data type of the scheduling start object, priority information of the scheduling start object, terminal priority information of the scheduling start object, and a delay of the scheduling start object.
  • terminal identifier information of the scheduling start object includes: terminal identifier information of the scheduling start object, a data type of the scheduling start object, priority information of the scheduling start object, terminal priority information of the scheduling start object, and a delay of the scheduling start object.
  • the second control message processing unit 11022 may include: a second determining subunit, a second obtaining subunit, and a second sending subunit, where:
  • a second determining subunit configured to: when the terminal priority information in the transmission attribute information is the highest priority, or the data amount information of the to-be-transmitted data is a minimum data amount, or a priority of the to-be-transmitted data
  • the information is the highest priority, or the delay requirement information of the data to be transmitted is the lowest delay tolerance, or the scheduling time information is the shortest time information, or the scheduling resource quantity is the most resource quantity, and the corresponding terminal identifier is determined.
  • a second obtaining subunit configured to acquire attribute information of the corresponding scheduling start object according to the terminal identification information determined by the second determining subunit;
  • the second sending subunit is configured to send a second control message to the base station, where the second control message includes: attribute information of the scheduling start object acquired by the second acquiring subunit.
  • a control device for data transmission in a wireless communication network may send a control message to the base station according to the transmission attribute information, so that the base station sends a scheduling suspension message and/or a scheduling start message to the terminal according to the control message. Therefore, scheduling is performed according to the transmission attribute information, the congestion of the base station is avoided, the scheduling time is reduced, and the efficiency of data transmission in the wireless communication network is improved.
  • a control system for data transmission of a wireless communication network includes a base station 1 and a terminal 2, wherein the base station 1 is as shown in FIG. 9, and the terminal 2 is as shown in FIG.
  • a control system for data transmission of a wireless communication network includes a base station 1, a terminal 2, and a multi-stage scheduling device 3, wherein the base station 1 is as shown in FIG. 2, as shown in FIG. 10, the multi-stage scheduling device 3 is as shown in FIG. 11, and the base station 1 and the terminal 2 can be connected through a wireless network.
  • the structure and function of the device can be seen in FIG. 9, FIG. 10, FIG.
  • FIG. 14 is a schematic structural diagram of a base station according to an embodiment of the present invention.
  • the base station provided in this embodiment corresponds to the method shown in any one of FIG. 1 to FIG.
  • An executive body of a control method for data transmission of a wireless communication network is as shown in FIG. 14.
  • the base station of the embodiment of the present invention includes: an input device 11, an output device 12, a memory 13, and a processor 14, wherein the memory 13 stores a set of program codes, and the processor 14 is used by the processor 14
  • the program code stored in the memory 13 is called to perform the following operations:
  • the transmission attribute information includes attribute information of the data to be transmitted and base station scheduling attribute information
  • the base station transmits a scheduling suspension message and/or a scheduling start message to the terminal according to the transmission attribute information.
  • the processor 14 obtains the transmission attribute information specifically for:
  • the processor 14 before the processor 14 obtains the transmission attribute information, the processor 14 is further configured to:
  • the processor 14 may be a central processing unit (CPU), an application-specific integrated circuit (ASIC), or the like.
  • the base station in this embodiment may further include a bus 15.
  • the input device 11, the output device 12, the memory 13, and the processor 14 can be connected and communicated via the bus 15.
  • a base station is configured to send a scheduling suspension message/scheduling start message to the terminal according to the obtained transmission attribute information, and if the scheduling suspension message is sent to the terminal, the resource request may be suspended from the base station according to the scheduling suspension message, if Sending a scheduling start message to the terminal, you can start to allocate transmission resources for the data to be transmitted.
  • the data resource scheduling of the wireless communication network can be performed according to the transmission attribute information, the congestion of the base station is avoided, the scheduling time is reduced, and the efficiency of data transmission of the wireless communication network is improved.
  • FIG. 15 is a schematic structural diagram of a terminal according to an embodiment of the present invention. As shown in FIG. 15, the terminal of the embodiment of the present invention includes: an input device 21, an output device 22, a memory 23, and a processor 24, where A set of program codes is stored in the memory 23, and the processor 24 is configured to call the program code stored in the memory 23 for performing the following operations:
  • the resource suspension request is suspended according to the scheduling suspension message, and the scheduling suspension message includes: attribute information of the scheduling suspension object;
  • the to-be-transmitted data is sent to the base station according to the scheduling start message, where the scheduling start message includes: attribute information of the scheduling start object.
  • the processor 24 before receiving the scheduling pause message and/or the scheduling start message sent by the base station, the processor 24 is further configured to:
  • the processor 24 before receiving the scheduling pause message and/or the scheduling start message sent by the base station, the processor 24 is further configured to:
  • the attribute information of the data to be transmitted is reported to the base station according to the data report request message.
  • the terminal can be a mobile device such as a mobile phone or a tablet.
  • Processor 24 can be a central processing unit, an application specific integrated circuit, or the like.
  • the terminal in this embodiment may further include a bus 25.
  • the input device 21, the output device 22, the memory 23, and the processor 24 can be connected and communicated via the bus 25.
  • a terminal receives a scheduling pause message and/or a scheduling start message sent by the base station. If the scheduling pause message is sent, the terminal may send a resource request to the base station according to the scheduling pause message, and if it is a scheduling start message, Start sending data to be transmitted to the base station.
  • the data resource scheduling of the wireless communication network can be performed according to the transmission attribute information, the congestion of the base station is avoided, the scheduling time is reduced, and the data transmission efficiency of the wireless communication network is improved.
  • FIG. 16 is a schematic structural diagram of a multi-level scheduling device according to an embodiment of the present invention. As shown in FIG.
  • the multi-level scheduling device of the embodiment of the present invention includes: an input device 31, an output device 32, a memory 33, and
  • the processor 34 is configured to store a set of program codes in the memory 33, and the processor 34 is configured to call the program code stored in the memory 33 for performing the following operations:
  • the transmission attribute information includes attribute information of the data to be transmitted and base station scheduling attribute information
  • the processor 34 obtains the transmission attribute information specifically for:
  • control request message includes: transmission attribute information
  • the processor 34 sends a control message that includes the transmission attribute information to the base station, specifically for: Sending, by the base station, the first control message to the base station according to the obtained transmission attribute information, so that the base station sends a scheduling suspension message to the terminal according to the first control message.
  • the processor 34 sends the control message that includes the transmission attribute information to the base station, and is specifically used to:
  • Processor 33 can be a central processing unit, an application specific integrated circuit, or the like.
  • the terminal in this embodiment may further include a bus 35.
  • the input device 31, the output device 32, the memory 33, and the processor 34 can be connected and communicated via the bus 35.
  • the foregoing technical solution provides a multi-level scheduling device, which can send a control message to a base station according to the transmission attribute information, so that the base station sends a scheduling suspension message and/or a scheduling start message to the terminal according to the control message, thereby scheduling according to the transmission attribute information.
  • the base station is congested, the scheduling time is reduced, and the efficiency of data transmission in the wireless communication network is improved.
  • Computer readable media includes both computer storage media and communication media including any medium that facilitates transfer of a computer program from one location to another.
  • a storage medium may be any available media that can be accessed by a computer.
  • computer readable media may comprise RAM, ROM, EEPROM, CD-ROM or other optical disk storage, disk storage media or other magnetic storage device, or can be used for carrying or storing in the form of an instruction or data structure.
  • any connection may suitably be a computer readable medium.
  • the software is transmitted from a website, server, or other remote source using coaxial cable, fiber optic cable, twisted pair, digital subscriber line (DSL), or wireless technologies such as infrared, radio, and microwave
  • the coaxial cable , fiber optic cable, twisted pair, DSL or wireless technologies such as infrared, wireless and microwave are included in the medium Fixing.
  • a disk and a disc include a compact disc (CD), a laser disc, a disc, a digital versatile disc (DVD), a floppy disk, and a Blu-ray disc, wherein the disc is usually magnetically copied, and the disc is The laser is used to optically replicate the data. Combinations of the above should also be included within the scope of the computer readable media.

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Abstract

本发明实施例提供一种无线通信网络数据传输的控制方法及装置,该方法包括:基站获取传输属性信息,所述传输属性信息包括待传输数据的属性信息和基站调度属性信息;判断所述获取到的基站调度属性信息是否满足预设的调度条件;若是,基站根据所述传输属性信息向终端发送调度暂停消息和/或调度开始消息。通过本发明实施例,可根据传输属性信息向终端发送调度暂停消息/调度开始消息,从而根据传输属性信息进行无线通信网络数据资源的调度,避免了基站拥塞的情况,减少了调度时间,提高了无线通信网络数据传输的效率。

Description

一种无线通信网络数据传输的控制方法及装置
技术领域
本发明涉及无线通信领域,尤其涉及一种无线通信网络数据传输的控制方 法及装置。 背景技术
LTE ( Long term Evolution, 长期演进)是 3GPP ( 3rd Generation Partnership Project , 第三代合作伙伴计划 ) 组织制定的 UMTS ( Universal Mobile Telecommunication System, 通用移动通讯系统)技术的长期演进。 在 LTE系 统中,终端( UE , User Equipment ,用户设备 )与基站( eNode B , Evolved NodeB , 演进的基站 )之间的无线通道资源可通过无线资源控制( RRC, Radio Resource Control )协议进行分配控制。
UE与 eNode B建立无线 载后,向 eNode B发送调度请求( SR, Scheduling Request ), 请求无线资源调度。 如果 eNode B同时服务于多个 UE, 无线资源 有限, eNode B为 UE分配少量的无线资源。 UE接收到 eNode B分配的少量 无线资源, 不能满足 UE无线资源传输的需求, UE再次向 eNode B发送调度 请求, 请求无线资源调度, eNode B再次为 UE分配少量的无线资源, 不断重 复, 直到数据传输完成。 当多个 UE请求无线资源调度且 UE传输的数据量大 时, 易导致基站拥塞, 且数据传输的总时间较长, UE耗电量多, 降低了数据 传输的效率。 发明内容
本发明实施例在于提供一种无线通信网络数据传输的控制方法及装置。可 根据传输属性信息向终端发送调度暂停消息 /调度开始消息, 避免了基站拥塞 的情况, 减少了调度时间, 提高了无线通信网络数据传输的效率。
本发明实施例第一方面提供了一种无线通信网络数据传输的控制方法,包 括:
基站获取传输属性信息,所述传输属性信息包括待传输数据的属性信息和 基站调度属性信息;
判断所述获取到的基站调度属性信息是否满足预设的调度条件; 若是, 所述基站根据所述传输属性信息向终端发送调度暂停消息和 /或调 度开始消息。
本发明实施例第二方面提供了一种无线通信网络数据传输的控制方法,包 括:
终端接收基站发送的调度暂停消息和 /或调度开始消息;
所述终端若接收到所述调度暂停消息,根据所述调度暂停消息暂停向所述 基站发送资源请求, 所述调度暂停消息包括: 调度暂停对象的属性信息; 所述终端若接收到所述调度开始消息,根据所述调度开始消息向所述基站 发送待传输数据, 所述调度开始消息包括: 调度开始对象的属性信息。
本发明实施例第三方面提供了一种无线通信网络数据传输的控制方法,包 括:
多级调度设备获取传输属性信息,所述传输属性信息包括待传输数据的属 性信息和基站调度属性信息;
所述多级调度设备向基站发送包含有所述传输属性信息的控制消息,以使 所述基站根据所述控制消息向终端发送调度暂停消息和 /或调度开始消息。
本发明实施例第四方面提供了一种无线通信网络数据传输的控制装置,包 括:
第一获取模块, 用于获取传输属性信息, 所述传输属性信息包括待传输数 据的属性信息和基站调度属性信息;
判断模块,用于判断所述第一获取模块获取到的基站调度属性信息是否满 足预设的调度条件;
第一处理模块, 用于当所述判断模块的判断结果为是时,根据所述传输属 性信息向终端发送调度暂停消息和 /或调度开始消息。
本发明实施例第五方面提供了一种基站, 包括: 输入装置、 输出装置、 存 储器和处理器, 其中, 存储器中存储一组程序代码, 且处理器用于调用存储器 中存储的程序代码, 用于执行以下操作: 获取传输属性信息,所述传输属性信息包括待传输数据的属性信息和基站 调度属性信息;
判断所述获取到的基站调度属性信息是否满足预设的调度条件; 若是, 基站根据所述传输属性信息向终端发送调度暂停消息和 /或调度开 始消息。
本发明实施例第六方面提供的一种无线通信网络数据传输的控制装置,包 括:
接收模块, 用于接收基站发送的调度暂停消息和 /或调度开始消息; 调度暂停处理模块, 用于当所述接收模块接收到所述调度暂停消息时,根 据所述调度暂停消息暂停向所述基站发送资源请求, 所述调度暂停消息包括: 调度暂停对象的属性信息;
调度开始处理模块, 用于当所述接收模块接收到所述调度开始消息时,根 据所述调度开始消息向所述基站发送待传输数据, 所述调度开始消息包括: 调 度开始对象的属性信息。
本发明实施例第七方面提供了一种终端, 包括: 输入装置、 输出装置、 存 储器和处理器, 其中, 存储器中存储一组程序代码, 且处理器用于调用存储器 中存储的程序代码, 用于执行以下操作:
接收基站发送的调度暂停消息和 /或调度开始消息;
当接收到所述调度暂停消息时,根据所述调度暂停消息暂停向基站发送资 源请求, 所述调度暂停消息包括: 调度暂停对象的属性信息;
当接收到所述调度开始消息时,根据所述调度开始消息向基站发送待传输 数据, 所述调度开始消息包括: 调度开始对象的属性信息。
本发明实施例第八方面提供了一种无线通信网络数据传输的控制装置,包 括:
第三获取模块, 用于获取传输属性信息, 所述传输属性信息包括待传输数 据的属性信息和基站调度属性信息;
第二处理模块,用于向基站发送包含所述第三获取模块获取到的所述传输 属性信息的控制消息,以使所述基站根据所述控制消息向终端发送调度暂停消 息和 /或调度开始消息。
本发明实施例第九方面提供了一种多级调度设备, 包括: 输入装置、 输出 装置、 存储器和处理器, 其中, 存储器中存储一组程序代码, 且处理器用于调 用存储器中存储的程序代码, 用于执行以下操作:
获取传输属性信息,所述传输属性信息包括待传输数据的属性信息和基站 调度属性信息;
向基站发送包含有所述传输属性信息的控制消息,以使所述基站根据所述 控制消息向终端发送调度暂停消息和 /或调度开始消息。
本发明实施例第十方面提供了一种无线通信网络数据传输的控制系统,包 括: 基站和终端。
在第十方面的第一种可能的实现方式中, 所述系统还包括多级调度设备。 实施本发明实施例,可根据传输属性信息控制向终端发送调度暂停消息和 /或调度开始消息, 若向终端发送调度暂停消息, 终端可根据调度暂停消息暂 停向基站发送资源请求, 若向终端发送调度开始消息, 则可开始为待传输数据 分配传输资源。 可实现根据传输属性信息进行无线通信网络数据资源的调度, 避免了基站拥塞的情况, 减少了调度时间,提高了无线通信网络数据传输的效 率。 附图说明
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例描述中所 需要使用的附图作筒单地介绍,显而易见地, 下面描述中的附图仅仅是本发明 的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提 下, 还可以根据这些附图获得其他的附图。
图 1 是本发明实施例提供的一种无线通信网络数据传输的控制方法的流 程图;
图 2是本发明第一实施例提供的一种无线通信网络数据传输的控制方法 的流程图;
图 3 是本发明第二实施例提供的一种无线通信网络数据传输的控制方法 的流程图;
图 4是本发明第三实施例提供的一种无线通信网络数据传输的控制方法 的流程图;
图 5 是本发明第四实施例提供的一种无线通信网络数据传输的控制方法 的流程图;
图 6是本发明第五实施例提供的一种无线通信网络数据传输的控制方法 的流程图;
图 7是本发明第六实施例提供的一种无线通信网络数据传输的控制方法 的流程图;
图 8是本发明第七实施例提供的一种无线通信网络数据传输的控制方法 的流程图;
图 9是本发明实施例提供的一种无线通信网络数据传输的控制装置的结 构示意图;
图 10是本发明实施例提供的另一种无线通信网络数据传输的控制装置的 结构示意图;
图 11是本发明实施例提供的又一种无线通信网络数据传输的控制装置的 结构示意图;
图 12是本发明实施例提供的一种无线通信网络数据传输的控制系统的结 构示意图;
图 13是本发明实施例提供的另一种无线通信网络数据传输的控制系统的 结构示意图;
图 14是本发明实施例提供的一种基站的结构示意图;
图 15是本发明实施例提供的一种终端的结构示意图;
图 16是本发明实施例提供的一种多级调度设备的结构示意图。 具体实施方式
为了使本发明所要解决的技术问题、 技术方案及有益效果更加清楚明白, 以下结合附图及实施例, 对本发明进行进一步详细说明。 如图 1所示,是本发明实施例提供的一种无线通信网络数据传输的控制方 法的流程图。本发明实施例可以实现在基站中,如图所示本实施例中的流程包 括:
5101 ,基站获取传输属性信息,所述传输属性信息包括待传输数据的属性 信息和基站调度属性信息。
其中, 待传输数据的属性信息包括: 终端标识信息、 终端优先级信息、 所 述待传输数据的数据量信息、所述待传输数据的优先级信息、所述待传输数据 的时延需求信息中的一个或多个。 基站调度属性信息包括: 网络资源占用率、 调度时间信息、调度资源量中的一个或多个。 终端标识信息可以为设备的唯一 标只编码, 例: ¾P IMEI ( International Mobile Equipment Identity, 国际移动设备 身份码, 为每台手机在组装完成后被赋予的一个全球唯一的电子串号)、 IMSI (International Mobile Subscriber Identification Number, 国际移动用户识另1 J码)、 TMSI (Temporary Mobile Subscriber Identity, 临时移动用户标识)等。 待传输数 据的数据量信息, 例如待传输数据的总数据量 10M Bytes、 1G Bytes, 待传输 数据总数据量范围, lG ~ 1.5GBytes等。 待传输数据的时延需求信息为该待传 输数据的时延容忍度, 例如 4000秒、 100秒、 30秒等。 网络资源占用率为当 前的网络资源被占用的比例,调度时间信息为基站调度该待传输数据需要的时 间, 调度资源量为基站可为该待传输数据提供的调度资源量。
具体实现中,基站可从终端、 多级调度设备或本地获取待传输数据的属性 信息, 基站可从本地获取基站调度属性信息。 可选的, 基站获取传输属性信息 具体包括:所述基站接收终端发送的包含待传输数据的属性信息的传输请求消 息; 或所述基站接收多级调度设备(MLS, Multi-level Scheduler )发送的包含 待传输数据的属性信息的控制消息;或所述基站从本地读取待传输数据的属性 信息。
其中, 基站可以获取一个或多个待传输数据的属性信息, 具体的, 基站可 以获取一个终端的一个或多个待传输数据的属性信息,或可以获取多个终端的 待传输数据的属性信息。
5102,判断所述获取到的基站调度属性信息是否满足预设的调度条件,如 果怕判断结果为是, 执行 S103 , 如果判断结果为否, 返回 S101。
其中, 预设的调度条件可以包括: 预设的第一调度条件和 /或预设的第二 调度条件,预设的第一调度条件包括但不局限于: 网络资源占用率大于预设的 第一门限值,预设的第二调度条件包括但不局限于: 网络资源占用率小于预设 的第二门限值。具体的, 判断所述获取到的基站调度属性信息是否满足预设的 调度条件可以包括:判断获取到的基站调度属性信息是否满足预设的第一调度 条件, 或判断获取到的基站调度属性信息是否满足预设的第二调度条件,或第 一时间判断所述基站调度属性信息是否满足预设的第一调度条件,第二时间判 断获取到的基站调度属性信息是否满足预设的第二调度条件。
S103 , 基站根据所述传输属性信息向终端发送调度暂停消息和 /或调度开 始消息。
其中, 若 S102的判断结果为是, 即判断获取到的基站调度属性信息满足 预设的调度条件时, 基站根据传输属性信息向终端发送调度暂停消息 /调度开 始消息。 具体的, 如果获取到的基站调度属性信息满足预设的第一调度条件, 基站根据传输属性信息向终端发送调度暂停消息,以使终端根据调度暂停消息 暂停向基站发送资源请求;如果获取到的基站调度属性信息满足预设的第二调 度条件,基站根据传输属性信息向终端发送调度开始消息, 并开始为待传输数 据分配传输资源。
其中, 当获取到的基站调度属性信息满足预设的第一调度条件时,对获取 到的多个传输属性信息进行比较,若所述传输属性信息中所述终端优先级信息 为最低优先级、或所述待传输数据的数据量信息为最大数据量、或所述待传输 数据的优先级信息为最低优先级、或所述待传输数据的时延需求信息为最高时 延容忍度、或所述调度时间信息为最长时间信息、或所述调度资源量为最少资 源量,确定对应的终端标识信息, 并向所述终端标识信息对应的终端发送调度 暂停消息。 可选的, 如果仅获取到一个待传输数据的属性信息, 则确定该待传 输数据的属性信息中所述终端优先级信息为最低优先级、或所述待传输数据的 数据量信息为最大数据量、或所述待传输数据的优先级信息为最低优先级、或 所述待传输数据的时延需求信息为最高时延容忍度,对应的,确定该基站调度 属性信息中所述调度时间信息为最长时间信息、或所述调度资源量为最少资源 量。
可选的, 调度暂停消息可以包括: 连接释放消息或调度请求暂停消息。 可选的, 调度暂停消息还可以包括: 调度暂停对象的属性信息, 其中, 调 度暂停对象的属性信息包括: 调度暂停对象的终端标识信息、调度暂停对象的 数据类型、 调度暂停对象的优先级信息、 调度暂停对象的终端优先级信息、 调 度暂停对象的时延信息中的一个或多个。
其中, 当获取到的基站调度属性信息满足预设的第二调度条件时,对获取 到的多个传输属性信息进行比较,若所述传输属性信息中所述终端优先级信息 为最高优先级、或所述待传输数据的数据量信息为最小数据量、或所述待传输 数据的优先级信息为最高优先级、或所述待传输数据的时延需求信息为最低时 延容忍度、或所述调度时间信息为最短时间信息、或调度资源量为最多资源量, 确定对应的终端标识信息,并向所述终端标识信息对应的终端发送调度开始消 息。 可选的, 如果仅获取到一个待传输数据的属性信息, 则确定该待传输数据 的属性信息中所述终端优先级信息为最高优先级、或所述待传输数据的数据量 信息为最小数据量、或所述待传输数据的优先级信息为最高优先级、或所述待 传输数据的时延需求信息为最低时延容忍度,对应的,确定该基站调度属性信 息中所述调度时间信息为最短时间信息、 或调度资源量为最多资源量。
可选的,调度开始消息可以包括: 基站向终端发送的待传输数据的资源分 配指示信息或基站向终端发送的待传输数据的资源分配消息。
可选的, 调度开始消息还可以包括: 调度开始对象的属性信息, 其中, 调 度开始对象的属性信息包括: 调度开始对象的终端标识信息、调度开始对象的 数据类型、 调度开始对象的优先级信息、 调度开始对象的终端优先级信息、 调 度开始对象的时延信息中的一个或多个。
上述技术方案中,提供一种无线通信网络数据传输的控制方法,基站可根 据获取到的传输属性信息向终端发送调度暂停消息 /调度开始消息, 若向终端 发送调度暂停消息, 终端可根据调度暂停消息暂停向基站发送资源请求,若向 终端发送调度开始消息, 则可开始为待传输数据分配传输资源。通过本发明实 施例, 可根据传输属性信息进行无线通信网络数据资源的调度,避免了基站拥 塞的情况, 减少了调度时间, 提高了无线通信网络数据传输的效率。 可选的,如图 2所示,是本发明第一实施例提供的一种无线通信网络数据 传输的控制方法的流程图。本发明实施例可以实现在基站中,如图所示本实施 例中的流程包括 S201~S203。
5201 ,基站获取传输属性信息,所述传输属性信息包括待传输数据的属性 信息和基站调度属性信息。
其中, 待传输数据的属性信息包括: 终端标识信息、 终端优先级信息、 待 传输数据的数据量信息、待传输数据的优先级信息、待传输数据的时延需求信 息中的一个或多个。基站调度属性信息包括: 网络资源占用率、调度时间信息、 调度资源量中的一个或多个。
5202, 判断所述获取到的基站调度属性信息是否满足预设的第一调度条 件。 如果判断结果为是, 执行 S203 , 如果判断结果为否, 返回 S201。
其中,预设的第一调度条件包括但不局限于: 网络资源占用率大于预设的 第一门限值。
5203 ,基站根据所述传输属性信息向终端发送调度暂停消息, 以使终端根 据调度暂停消息暂停向基站发送资源请求。
其中, 当获取到的基站调度属性信息满足预设的第一调度条件时,对获取 到的多个传输属性信息进行比较,若所述传输属性信息中所述终端优先级信息 为最低优先级、或所述待传输数据的数据量信息为最大数据量、或所述待传输 数据的优先级信息为最低优先级、或所述待传输数据的时延需求信息为最高时 延容忍度、或所述调度时间信息为最长时间信息、或所述调度资源量为最少资 源量,确定对应的终端标识信息, 并向所述终端标识信息对应的终端发送调度 暂停消息。 可选的, 如果仅获取到一个待传输数据的属性信息, 则确定该待传 输数据的属性信息中所述终端优先级信息为最低优先级、或所述待传输数据的 数据量信息为最大数据量、或所述待传输数据的优先级信息为最低优先级、或 所述待传输数据的时延需求信息为最高时延容忍度,对应的,确定该基站调度 属性信息中所述调度时间信息为最长时间信息、或所述调度资源量为最少资源 量。
上述技术方案中,提供一种无线通信网络数据传输的控制方法,基站可根 据获取到的传输属性信息向终端发送调度暂停消息,例如包括暂停终端优先级 信息为最低优先级、或待传输数据的数据量信息为最大数据量、或待传输数据 的优先级信息为最低优先级、 或待传输数据的时延需求信息为最高时延容忍 度、或调度时间信息为最长时间信息、或调度资源量为最少资源量等传输属性 信息对应的待传输数据发送调度暂停消息,以暂停该传输属性信息的待传输数 据的调度, 避免了基站拥塞的情况, 减少了调度时间, 提高了无线通信网络数 据传输的效率。 可选的,如图 3所示,是本发明第二实施例提供的一种无线通信网络数据 传输的控制方法的流程图。本发明实施例可以实现在基站中,如图所示本实施 例中的流程包括 S301~S303。
S301 ,基站获取传输属性信息,所述传输属性信息包括待传输数据的属性 信息和基站调度属性信息。
其中, 待传输数据的属性信息包括: 终端标识信息、 终端优先级信息、 待 传输数据的数据量信息、待传输数据的优先级信息、待传输数据的时延需求信 息中的一个或多个。基站调度属性信息包括: 网络资源占用率、调度时间信息、 调度资源量中的一个或多个。
S302, 判断所述获取到的基站调度属性信息是否满足预设的第二调度条 件。 如果判断结果为是, 执行 S303 , 如果判断结果为否, 返回 S301。
其中,预设的第二调度条件包括但不局限于: 网络资源占用率小于预设的 第二门限值。
S303 ,基站根据所述传输属性信息向终端发送调度开始消息,并开始为待 传输数据分配传输资源。
其中, 当获取到的基站调度属性信息满足预设的第二调度条件时,对获取 到的多个传输属性信息进行比较,若所述传输属性信息中所述终端优先级信息 为最高优先级、或所述待传输数据的数据量信息为最小数据量、或所述待传输 数据的优先级信息为最高优先级、或所述待传输数据的时延需求信息为最低时 延容忍度、或所述调度时间信息为最短时间信息、或调度资源量为最多资源量, 确定对应的终端标识信息,并向所述终端标识信息对应的终端发送调度开始消 息。 可选的, 如果仅获取到一个待传输数据的属性信息, 则确定该待传输数据 的属性信息中所述终端优先级信息为最高优先级、或所述待传输数据的数据量 信息为最小数据量、或所述待传输数据的优先级信息为最高优先级、或所述待 传输数据的时延需求信息为最低时延容忍度,对应的,确定该基站调度属性信 息中所述调度时间信息为最短时间信息、 或调度资源量为最多资源量。
上述技术方案中,提供一种无线通信网络数据传输的控制方法,基站可根 据获取到的传输属性信息向终端发送调度开始消息,例如包括暂停终端优先级 信息为最高优先级、或待传输数据的数据量信息为最小数据量、或待传输数据 的优先级信息为最高优先级、 或待传输数据的时延需求信息为最低时延容忍 度、或调度时间信息为最短时间信息、或调度资源量为最多资源量等传输属性 信息对应的待传输数据发送调度开始消息,以开始该传输属性信息的待传输数 据的调度, 避免了基站拥塞的情况, 减少了调度时间, 提高了无线通信网络数 据传输的效率。 可选的,如图 4所示,是本发明第三实施例提供的一种无线通信网络数据 传输的控制方法的流程图。本发明实施例可以实现在基站中,如图所示本实施 例中的流程包括 S401~S405。
5401 ,基站获取传输属性信息,所述传输属性信息包括待传输数据的属性 信息和基站调度属性信息。
5402, 判断所述获取到的基站调度属性信息是否满足预设的第一调度条 件。 如果判断结果为是, 执行 S403 , 如果判断结果为否, 返回 S401。
其中,预设的第一调度条件包括但不局限于: 网络资源占用率大于预设的 第一门限值。
5403 ,基站根据所述传输属性信息向终端发送调度暂停消息, 以使终端根 据调度暂停消息暂停向基站发送资源请求。
其中, 当获取到的基站调度属性信息满足预设的第一调度条件时,对获取 到的多个传输属性信息进行比较,若所述传输属性信息中所述终端优先级信息 为最低优先级、或所述待传输数据的数据量信息为最大数据量、或所述待传输 数据的优先级信息为最低优先级、或所述待传输数据的时延需求信息为最高时 延容忍度、或所述调度时间信息为最长时间信息、或所述调度资源量为最少资 源量,确定对应的终端标识信息, 并向所述终端标识信息对应的终端发送调度 暂停消息。 可选的, 如果仅获取到一个待传输数据的属性信息, 则确定该待传 输数据的属性信息中所述终端优先级信息为最低优先级、或所述待传输数据的 数据量信息为最大数据量、或所述待传输数据的优先级信息为最低优先级、或 所述待传输数据的时延需求信息为最高时延容忍度,对应的,确定该基站调度 属性信息中所述调度时间信息为最长时间信息、或所述调度资源量为最少资源 量。
5404,判断所述基站调度属性信息是否满足预设的第二调度条件。如果判 断结果为是, 执行 S405 , 如果判断结果为否, 返回 S401。
其中,预设的第二调度条件包括但不局限于: 网络资源占用率小于预设的 第二门限值。
5405 ,基站根据所述传输属性信息向终端发送调度开始消息,并开始为待 传输数据分配传输资源。
其中, 当获取到的基站调度属性信息满足预设的第二调度条件时,对获取 到的多个传输属性信息进行比较,若所述传输属性信息中所述终端优先级信息 为最高优先级、或所述待传输数据的数据量信息为最小数据量、或所述待传输 数据的优先级信息为最高优先级、或所述待传输数据的时延需求信息为最低时 延容忍度、或所述调度时间信息为最短时间信息、或调度资源量为最多资源量, 确定对应的终端标识信息,并向所述终端标识信息对应的终端发送调度开始消 息。 可选的, 如果仅获取到一个待传输数据的属性信息, 则确定该待传输数据 的属性信息中所述终端优先级信息为最高优先级、或所述待传输数据的数据量 信息为最小数据量、或所述待传输数据的优先级信息为最高优先级、或所述待 传输数据的时延需求信息为最低时延容忍度,对应的,确定该基站调度属性信 息中所述调度时间信息为最短时间信息、 或调度资源量为最多资源量。
进一步可选的, S402~S403 , S404~S405执行无先后之分, 可以先执行任 意一组, 如先执行 S402~S403 , 再执行 S404~S405 , 或先执行 S402~S403 , 再 执行 S404~S405。
上述技术方案中,提供一种无线通信网络数据传输的控制方法, 当基站调 度属性信息满足预设的第一调度条件时,基站可根据获取到的传输属性信息向 终端发送调度暂停消息, 当基站调度属性信息满足预设的第二调度条件时,基 站可根据传输属性信息向终端发送调度开始消息,从而根据传输属性信息暂停 调度和开始调度, 避免了基站拥塞的情况, 减少了调度时间, 提高了无线通信 网络数据传输的效率。 可选的,如图 5所示,是本发明第四实施例提供的一种无线通信网络数据 传输的控制方法的流程图。 如图所示本实施例中的流程包括 S501~S509。
S501 , 终端获取待传输数据的属性信息。
其中, 终端获取至少一个待传输数据的属性信息,待传输数据的属性信息 包括: 终端标识信息、 终端优先级信息、 待传输数据的数据量信息、 待传输数 据的优先级信息、 待传输数据的时延需求信息中的一个或多个。
5502,终端向基站发送传输请求消息,传输请求消息包括待传输数据的属 性信息。
其中, 传输请求消息可以为 RRC连接请求, 传输请求消息包括待传输数 据的属性信息。终端向基站发送 RRC连接请求后,基站发送 RRC连接建立消 息给终端, 则终端与基站建立了 RRC连接,基站发送 RRC连接重配消息给终 端, 终端根据 RRC连接重配消息配置无线承载,发送 RRC连接重配完成消息 给基站, 则终端与基站建立 RRC无线承载。
可选的, 可以一个或多个终端向基站发送传输请求消息, 或一个终端向基 站发送不同的待传输数据对应的传输请求消息。
5503 ,基站获取传输属性信息,传输属性信息包括待传输数据的属性信息 和基站调度属性信息。
其中,基站从接收到的传输请求消息中获取到待传输数据的属性信息, 并 进行存储。 基站从本地获取到基站调度属性信息, 基站调度属性信息包括: 网 络资源占用率、 调度时间信息、 调度资源量中的一个或多个。
可选的, 基站可以获取一个或多个待传输数据的属性信息, 具体的, 基站 可以获取一个终端的一个或多个待传输数据的属性信息,或可以获取多个终端 的待传输数据的属性信息。
5504, 基站确定获取到的基站调度属性信息满足预设的第一调度条件。 其中,预设的第一调度条件包括但不局限于: 网络资源占用率大于预设的 第一门限值。
5505 ,基站根据传输属性信息向终端发送调度暂停消息,所述调度暂停消 息包括: 调度暂停对象的属性信息。
其中, 当获取到的基站调度属性信息满足预设的第一调度条件时,对获取 到的多个传输属性信息进行比较,若所述传输属性信息中所述终端优先级信息 为最低优先级、或所述待传输数据的数据量信息为最大数据量、或所述待传输 数据的优先级信息为最低优先级、或所述待传输数据的时延需求信息为最高时 延容忍度、或所述调度时间信息为最长时间信息、或所述调度资源量为最少资 源量,确定对应的终端标识信息, 并向所述终端标识信息对应的终端发送调度 暂停消息。 可选的, 如果仅获取到一个待传输数据的属性信息, 则确定该待传 输数据的属性信息中所述终端优先级信息为最低优先级、或所述待传输数据的 数据量信息为最大数据量、或所述待传输数据的优先级信息为最低优先级、或 所述待传输数据的时延需求信息为最高时延容忍度,对应的,确定该基站调度 属性信息中所述调度时间信息为最长时间信息、或所述调度资源量为最少资源 量。
其中, 调度暂停消息包括: 调度暂停对象的属性信息, 调度暂停对象的属 性信息包括: 调度暂停对象的终端标识信息、调度暂停对象的数据类型、调度 暂停对象的优先级信息、调度暂停对象的终端优先级信息、调度暂停对象的时 延信息中的一个或多个。 可选的,调度暂停对象可以为一个终端的至少一个待传输数据,也可以为 一个终端的全部待传输数据, 也可以为多个终端的待传输数据。
可选的, 调度暂停消息包括: 连接释放消息或调度请求暂停消息。
S506, 终端根据所述调度暂停消息暂停向基站发送资源请求。
其中, 终端接收到调度暂停信息后,终端根据调度暂停对象的属性信息暂 停向基站发送资源请求, 调度暂停消息包括: 调度暂停对象的属性信息, 当检 测到待传输数据的属性信息与所述调度暂停对象的属性信息相同、或所述待传 输数据的优先级信息低于所述调度暂停对象的数据优先级信息、或所述终端优 先级信息低于所述调度暂停对象的终端优先级信息、或所述待传输数据的时延 需求信息高于所述调度暂停对象的数据时延信息时,暂停所述待传输数据的资 源请求发送。
可选的,当该终端优先级信息等于或低于调度暂停对象的终端优先级信息 时, 可以为终端暂停该终端所有的待传输数据的资源请求发送,也可以为暂停 该终端中至少一个待传输数据的资源请求发送。
S507 , 基站确定所述获取到的基站调度属性信息满足预设的第二调度条 件。
其中,预设的第二调度条件包括但不局限于: 网络资源占用率小于预设的 第二门限值。
5508,基站根据所述传输属性信息向终端发送调度开始消息,所述调度开 始消息包括: 调度开始对象的属性信息。
其中, 调度开始对象的属性信息包括: 调度开始对象的终端标识信息、 调 度开始对象的数据类型、调度开始对象的优先级信息、调度开始对象的终端优 先级信息、 调度开始对象的时延信息中的一个或多个。
可选的,调度开始消息可以包括: 基站向终端发送的待传输数据的资源分 配指示信息或基站向终端发送的待传输数据的资源分配消息。
5509, 终端根据所述调度开始消息向基站发送待传输数据。
其中, 终端接收到调度开始消息之后,根据调度开始消息向基站发送待传 输数据, 当检测到待传输数据的属性信息与所述调度开始对象的属性信息相 同、 或所述待传输数据的优先级信息高于所述调度暂停对象的数据优先级信 息、或所述终端优先级信息高于所述调度暂停对象的终端优先级信息、或所述 待传输数据的时延需求信息低于所述调度暂停对象的数据时延信息时,向基站 发送所述待传输数据。
可选的,当该终端优先级信息等于或高于调度开始对象的终端优先级信息 时, 可以为开始该终端的所有待传输数据的发送,也可以为开始该终端中至少 一个待传输数据发送。
上述技术方案中,提供一种无线通信网络数据传输的控制方法, 当基站调 度属性信息满足预设的第一调度条件时,基站可根据获取到的传输属性信息向 终端发送调度暂停消息, 终端暂停向基站发送资源请求, 当基站调度属性信息 满足预设的第二调度条件时,基站可根据传输属性信息向终端发送调度开始消 息, 终端向基站发送待传输数据,从而可根据传输属性信息暂停调度和开始调 度, 避免了基站拥塞的情况, 减少了调度时间, 提高了无线通信网络数据传输 的效率。 可选的,如图 6所示,是本发明第五实施例提供的一种无线通信网络数据 传输的控制方法的流程图。 如图所示本实施例中的流程包括 S601~S613。
5601 , 终端获取待传输数据的属性信息。
其中, 终端获取至少一个待传输数据的属性信息,待传输数据的属性信息 包括: 终端标识信息、 终端优先级信息、 待传输数据的数据量信息、 待传输数 据的优先级信息、 待传输数据的时延需求信息中的一个或多个。
5602, 基站向终端发送数据上报请求消息。
5603 ,终端根据所述数据上报告请求消息将所述待传输数据的属性信息上 报给基站。
S604,基站获取传输属性信息,所述传输属性信息包括所述待传输数据的 属性信息和基站调度属性信息。
其中,基站接收到终端上报的待传输数据的属性信息, 获取到待传输数据 的属性信息, 并进行存储。基站从本地获取到基站调度属性信息, 基站调度属 性信息包括: 网络资源占用率、 调度时间信息、 调度资源量中的一个或多个。 可选的, 基站可以获取一个或多个待传输数据的属性信息, 具体的, 基站 可以获取一个终端的一个或多个待传输数据的属性信息,或可以获取多个终端 的待传输数据的属性信息。
S605 , 基站确定所述获取到的基站调度属性信息满足预设的第一调度条 件。
其中,预设的第一调度条件包括但不局限于: 网络资源占用率大于预设的 第一门限值。
S606,基站根据所述传输属性信息向终端发送调度暂停消息,所述调度暂 停消息包括: 调度暂停对象的属性信息。
其中, 当获取到的基站调度属性信息满足预设的第一调度条件时,对获取 到的多个传输属性信息进行比较,若所述传输属性信息中所述终端优先级信息 为最低优先级、或所述待传输数据的数据量信息为最大数据量、或所述待传输 数据的优先级信息为最低优先级、或所述待传输数据的时延需求信息为最高时 延容忍度、或所述调度时间信息为最长时间信息、或所述调度资源量为最少资 源量,确定对应的终端标识信息, 并向所述终端标识信息对应的终端发送调度 暂停消息。 可选的, 如果仅获取到一个待传输数据的属性信息, 则确定该待传 输数据的属性信息中所述终端优先级信息为最低优先级、或所述待传输数据的 数据量信息为最大数据量、或所述待传输数据的优先级信息为最低优先级、或 所述待传输数据的时延需求信息为最高时延容忍度,对应的,确定该基站调度 属性信息中所述调度时间信息为最长时间信息、或所述调度资源量为最少资源 量。
其中, 调度暂停消息包括: 调度暂停对象的属性信息, 调度暂停对象的属 性信息包括: 调度暂停对象的终端标识信息、调度暂停对象的数据类型、调度 暂停对象的优先级信息、调度暂停对象的终端优先级信息、调度暂停对象的时 延信息中的一个或多个。
可选的,调度暂停对象可以为一个终端的至少一个待传输数据,也可以为 一个终端的全部待传输数据, 也可以为多个终端的待传输数据。 可选的, 调度暂停消息包括: 连接释放消息或调度请求暂停消息。
5607, 终端根据所述调度暂停消息暂停向基站发送资源请求。
其中, 终端接收到调度暂停信息后,终端根据调度暂停对象的属性信息暂 停向基站发送资源请求, 调度暂停消息包括: 调度暂停对象的属性信息, 当检 测到待传输数据的属性信息与所述调度暂停对象的属性信息相同、或所述待传 输数据的优先级信息低于所述调度暂停对象的数据优先级信息、或所述终端优 先级信息低于所述调度暂停对象的终端优先级信息、或所述待传输数据的时延 需求信息高于所述调度暂停对象的数据时延信息时,暂停所述待传输数据的资 源请求发送。
可选的,当该终端优先级信息等于或低于调度暂停对象的终端优先级信息 时, 可以为终端暂停该终端所有的待传输数据的资源请求发送,也可以为暂停 该终端中至少一个待传输数据的资源请求发送。
5608, 基站从本地读取到所述传输属性信息。
其中, S604已获取传输属性信息, 则 S608直接从本地读取到传输属性信 息。
5609, 基站确定所述读取到的基站调度属性信息满足预设的第二调度条 件。
其中,预设的第二调度条件包括但不局限于: 网络资源占用率小于预设的 第二门限值。
S610,基站根据所述传输属性信息向终端发送调度开始消息,调度开始消 息包括: 待传输数据的资源分配指示信息。
可选的, 调度开始消息还可以包括: 调度开始对象的属性信息。 其中, 调 度开始对象的属性信息包括: 调度开始对象的终端标识信息、调度开始对象的 数据类型、 调度开始对象的优先级信息、 调度开始对象的终端优先级信息、 调 度开始对象的时延信息中的一个或多个。
S611 ,终端根据所述待传输数据的资源分配指示信息向基站发送资源分配 请求。
其中, 终端接收到调度开始消息之后,根据调度开始消息向基站发送资源 分配请求,当检测到待传输数据的属性信息与所述调度开始对象的属性信息相 同、 或所述待传输数据的优先级信息高于所述调度暂停对象的数据优先级信 息、或所述终端优先级信息高于所述调度暂停对象的终端优先级信息、或所述 待传输数据的时延需求信息低于所述调度暂停对象的数据时延信息时,向基站 发送所述待传输数据的资源分配请求。
可选的,当该终端优先级信息等于或高于调度开始对象的终端优先级信息 时, 可以为开始该终端的所有待传输数据的资源分配请求的发送,也可以为开 始该终端中至少一个待传输数据的资源分配请求的发送。
S612, 基^ i
S613 , 终端根据所述待传输数据的资源分配消息向基站发送待传输数据。 上述技术方案中,提供一种无线通信网络数据传输的控制方法,基站可指 示终端上报待传输数据的属性信息,根据获取到的传输属性信息向终端发送调 度暂停消息 /调度开始消息, 从而根据传输属性信息进行调度, 避免了基站拥 塞的情况, 减少了调度时间, 提高了无线通信网络数据传输的效率。 可选的,如图 7所示,是本发明第六实施例提供的一种无线通信网络数据 传输的控制方法的流程图。 如图所示本实施例中的流程包括 S701~S714。
5701 , 终端获取待传输数据的属性信息。
其中, 终端获取至少一个待传输数据的属性信息,待传输数据的属性信息 包括: 终端标识信息、 终端优先级信息、 待传输数据的数据量信息、 待传输数 据的优先级信息、 待传输数据的时延需求信息中的一个或多个。
5702,终端向基站发送传输请求消息,所述传输请求消息包括所述待传输 数据的属性信息。
其中, 传输请求消息可以为 RRC连接请求, 传输请求消息包括待传输数 据的属性信息。终端向基站发送 RRC连接请求后,基站发送 RRC连接建立消 息给终端, 则终端与基站建立了 RRC连接,基站发送 RRC连接重配消息给终 端, 终端根据 RRC连接重配消息配置无线承载,发送 RRC连接重配完成消息 给基站, 则终端与基站建立 RRC无线承载。
可选的, 可以一个或多个终端向基站发送传输请求消息, 或一个终端向基 站发送不同的待传输数据对应的传输请求消息。
5703 ,基站获取传输属性信息,所述传输属性信息包括所述待传输数据的 属性信息和基站调度属性信息。
其中,基站从接收到的传输请求消息中获取到待传输数据的属性信息, 并 进行存储。 基站从本地获取到基站调度属性信息, 基站调度属性信息包括: 网 络资源占用率、 调度时间信息、 调度资源量中的一个或多个。
可选的, 基站可以获取一个或多个待传输数据的属性信息, 具体的, 基站 可以获取一个终端的一个或多个待传输数据的属性信息,或可以获取多个终端 的待传输数据的属性信息。
5704 , 基站确定所述获取到的基站调度属性信息满足预设的第一调度条 件。
其中,预设的第一调度条件包括但不局限于: 网络资源占用率大于预设的 第一门限值。
5705 ,基站向多级调度设备发送控制请求消息,控制请求消息包括所述传 输属性信息。
其中, 基站向多级调度设备 MLS发送控制请求消息, 控制请求消息包括 传输属性信息, 传输属性信息包括待传输数据的属性信息和基站调度属性信 息。
5706, 多级调度设备根据所述控制请求消息获取所述传输属性信息。 其中, 多级调度设备接收到控制请求消息后,从控制请求消息中获取传输 属性信息, 并进行存储。
5707,多级调度设备根据所述获取到的传输属性信息向基站发送第一控制 消息。
其中,多级调度设备根据获取到的传输属性信息向基站发送第一控制消息 具体可以包括:
若所述传输属性信息中所述终端优先级信息为最低优先级、或所述待传输 数据的数据量信息为最大数据量、或所述待传输数据的优先级信息为最低优先 级、或所述待传输数据的时延需求信息为最高时延容忍度、或所述调度时间信 息为最长时间信息、 或调度资源量为最少资源量, 确定对应的终端标识信息; 根据所述确定的终端标识信息获取对应的调度暂停对象的属性信息; 多级调度设备向基站发送第一控制消息, 第一控制消息包括: 所述调度暂 停对象的属性信息。
其中, 调度暂停对象的属性信息包括: 调度暂停对象的终端标识信息、 调 度暂停对象的数据类型、调度暂停对象的优先级信息、调度暂停对象的终端优 先级信息、 调度暂停对象的时延信息中的一个或多个。
S708,基站根据所述第一控制消息向终端发送调度暂停消息,所述调度暂 停消息包括: 调度暂停对象的属性信息。
5709, 终端根据所述调度暂停消息暂停向基站发送资源请求。
5710, 基站确定所述获取到的基站调度属性信息满足预设的第二调度条 件。
其中,预设的第二调度条件包括但不局限于: 网络资源占用率小于预设的 第二门限值。
5711 , 基站向多级调度设备发送传输控制请求消息。
5712, 多级调度设备根据所述传输控制请求消息向基站发送第二控制消 其中,多级调度设备根据所述传输控制请求消息向基站发送第二控制消息 具体可以包括:
若所述传输属性信息中所述终端优先级信息为最高优先级、或所述待传输 数据的数据量信息为最小数据量、或所述待传输数据的优先级信息为最高优先 级、或所述待传输数据的时延需求信息为最低时延容忍度、或所述调度时间信 息为最短时间信息、 或调度资源量为最多资源量, 确定对应的终端标识信息; 根据所述确定的终端标识信息获取对应的调度开始对象的属性信息; 多级调度设备向基站发送第二控制消息, 第二控制消息包括: 所述调度开 始对象的属性信息。 其中, 调度开始对象的属性信息包括: 调度开始对象的终端标识信息、 调 度开始对象的数据类型、调度开始对象的优先级信息、调度开始对象的终端优 先级信息、 调度开始对象的时延信息中的一个或多个。
5713 ,基站根据所述第二控制消息向终端发送调度开始消息,所述调度开 始消息包括: 调度开始对象的属性信息。
5714, 终端根据所述调度开始消息向基站发送待传输数据。
上述技术方案中,提供一种无线通信网络数据传输的控制方法,基站可根 据多级调度设备发送的控制消息向终端发送调度暂停消息和 /或调度开始消 息, 从而根据传输属性信息进行调度, 避免了基站拥塞的情况, 减少了调度时 间, 提高了无线通信网络数据传输的效率。 可选的,如图 8所示,是本发明第七实施例提供的一种无线通信网络数据 传输的控制方法的流程图。 如图所示本实施例中的流程包括 S801~S817。
5801 , 终端获取待传输数据的属性信息。
其中, 终端获取至少一个待传输数据的属性信息,待传输数据的属性信息 包括: 终端标识信息、 终端优先级信息、 待传输数据的数据量信息、 待传输数 据的优先级信息、 待传输数据的时延需求信息中的一个或多个。
5802, 基站向终端发送数据上报请求消息。
5803 ,终端根据所述数据上报请求消息将所述待传输数据的属性信息上报 给基站。
5804,基站获取传输属性信息,所述传输属性信息包括所述待传输数据的 属性信息和基站调度属性信息。
其中,基站从接收到的传输请求消息中获取到待传输数据的属性信息, 并 进行存储。 基站从本地获取到基站调度属性信息, 基站调度属性信息包括: 网 络资源占用率、 调度时间信息、 调度资源量中的一个或多个。
可选的, 基站可以获取一个或多个待传输数据的属性信息, 具体的, 基站 可以获取一个终端的一个或多个待传输数据的属性信息,或可以获取多个终端 的待传输数据的属性信息。 S805 , 基站确定所述获取到的基站调度属性信息满足预设的第一调度条 件。
其中,预设的第一调度条件包括但不局限于: 网络资源占用率大于预设的 第一门限值。
S806,基站向多级调度设备发送控制请求消息,控制请求消息包括所述传 输属性信息。
5807, 多级调度设备根据所述控制请求消息获取所述传输属性信息。
5808,多级调度设备根据所述获取到的传输属性信息向基站发送第一控制 消息。
其中,多级调度设备根据获取到的传输属性信息向基站发送第一控制消息 具体可以包括:
若所述传输属性信息中所述终端优先级信息为最低优先级、或所述待传输 数据的数据量信息为最大数据量、或所述待传输数据的优先级信息为最低优先 级、或所述待传输数据的时延需求信息为最高时延容忍度、或所述调度时间信 息为最长时间信息、 或调度资源量为最少资源量, 确定对应的终端标识信息; 根据所述确定的终端标识信息获取对应的调度暂停对象的属性信息; 多级调度设备向基站发送第一控制消息, 第一控制消息包括: 所述调度暂 停对象的属性信息。
其中, 调度暂停对象的属性信息包括: 调度暂停对象的终端标识信息、 调 度暂停对象的数据类型、调度暂停对象的优先级信息、调度暂停对象的终端优 先级信息、 调度暂停对象的时延信息中的一个或多个。
5809,基站根据所述第一控制消息向终端发送调度暂停消息,所述调度暂 停消息包括: 调度暂停对象的属性信息。
5810, 终端根据所述调度暂停消息暂停向基站发送资源请求。
其中, 终端接收到调度暂停信息后,终端根据调度暂停对象的属性信息暂 停向基站发送资源请求, 调度暂停消息包括: 调度暂停对象的属性信息, 当检 测到待传输数据的属性信息与所述调度暂停对象的属性信息相同、或所述待传 输数据的优先级信息低于所述调度暂停对象的数据优先级信息、或所述终端优 先级信息低于所述调度暂停对象的终端优先级信息、或所述待传输数据的时延 需求信息高于所述调度暂停对象的数据时延信息时,暂停所述待传输数据的资 源请求发送。
可选的,当该终端优先级信息等于或低于调度暂停对象的终端优先级信息 时, 可以为终端暂停该终端所有的待传输数据的资源请求发送,也可以为暂停 该终端中至少一个待传输数据的资源请求发送。
5811 , 基站确定所述获取到的基站调度属性信息满足预设的第二调度条 件。
其中,预设的第二调度条件包括但不局限于: 网络资源占用率小于预设的 第二门限值。
5812,基站向多级调度设备发送传输控制请求消息,传输控制请求消息包 括所述传输属性信息。
5813 , 多级调度设备根据所述传输控制请求消息获取所述传输属性信息。
5814,多级调度设备根据所述获取到的传输属性信息向基站发送第二控制 消息。
其中,多级调度设备根据所述传输控制请求消息向基站发送第二控制消息 具体可以包括:
若所述传输属性信息中所述终端优先级信息为最高优先级、或所述待传输 数据的数据量信息为最小数据量、或所述待传输数据的优先级信息为最高优先 级、或所述待传输数据的时延需求信息为最低时延容忍度、或所述调度时间信 息为最短时间信息、 或调度资源量为最多资源量, 确定对应的终端标识信息; 根据所述确定的终端标识信息获取对应的调度开始对象的属性信息; 多级调度设备向基站发送第二控制消息, 第二控制消息包括: 所述调度开 始对象的属性信息。
其中, 调度开始对象的属性信息包括: 调度开始对象的终端标识信息、 调 度开始对象的数据类型、调度开始对象的优先级信息、调度开始对象的终端优 先级信息、 调度开始对象的时延信息中的一个或多个。
5815 ,基站根据所述第二控制消息向终端发送调度开始消息,调度开始消 息包括: 待传输数据的资源分配指示信息。
可选的, 调度开始消息还可以包括: 调度开始对象的属性信息。 其中, 调 度开始对象的属性信息包括: 调度开始对象的终端标识信息、调度开始对象的 数据类型、 调度开始对象的优先级信息、 调度开始对象的终端优先级信息、 调 度开始对象的时延信息中的一个或多个。
S816,终端根据所述待传输数据的资源分配指示信息向基站发送资源分配 请求。
其中, 终端接收到调度开始消息之后,根据调度开始消息向基站发送资源 分配请求,当检测到待传输数据的属性信息与所述调度开始对象的属性信息相 同、 或所述待传输数据的优先级信息高于所述调度暂停对象的数据优先级信 息、或所述终端优先级信息高于所述调度暂停对象的终端优先级信息、或所述 待传输数据的时延需求信息低于所述调度暂停对象的数据时延信息时,向基站 发送所述待传输数据的资源分配请求。
可选的,当该终端优先级信息等于或高于调度开始对象的终端优先级信息 时, 可以为开始该终端的所有待传输数据的资源分配请求的发送,也可以为开 始该终端中至少一个待传输数据的资源分配请求的发送。
S818, 终端根据所述待传输数据的资源分配消息向基站发送待传输数据。 上述技术方案中,提供一种无线通信网络数据传输的控制方法,基站可根 据多级调度设备发送的控制消息向终端发送调度暂停消息 /调度开始消息, 从 而根据传输属性信息进行调度, 避免了基站拥塞的情况, 减少了调度时间, 提 高了无线通信网络数据传输的效率。 下面将结合附图 9~图 11 , 对本发明实施例提供的无线通信网络数据传输 的控制装置进行详细介绍。
需要说明的是, 附图 9所示的无线通信网络数据传输的控制装置, 用于执 行本发明图 1~图 4所示实施例的方法, 为了便于说明, 仅示出了与本发明实 施例相关的部分, 具体技术细节未揭示的, 请参照本发明图 1~图 4所示的实 施例。
请参见图 9, 为本发明实施例提供的一种无线通信网络数据传输的控制装 置的结构示意图; 该装置可包括:
第一获取模块 901 , 用于获取传输属性信息, 所述传输属性信息包括待传 输数据的属性信息和基站调度属性信息。
其中, 待传输数据的属性信息包括: 终端标识信息、 终端优先级信息、 所 述待传输数据的数据量信息、所述待传输数据的优先级信息、所述待传输数据 的时延需求信息中的一个或多个。 基站调度属性信息包括: 网络资源占用率、 调度时间信息、调度资源量中的一个或多个。 终端标识信息可以为设备的唯一 标识编码, 例如 IMEI等。 待传输数据的数据量信息, 例如 10Mbs、 1G等。 待传输数据的时延需求信息为该待传输数据的时延容忍度, 例如 4000秒、 100 秒、 30秒等。 网络资源占用率为当前的网络资源被占用的比例, 调度时间信 息为基站调度该待传输数据需要的时间,调度资源量为基站可为该待传输数据 提供的调度资源量。
具体实现中, 第一获取模块 901可从终端、 多级调度设备或本地获取待传 输数据的属性信息, 基站可从本地获取基站调度属性信息。 可选的, 第一获取 模块 901可以包括: 第一接收单元、 第二接收单元或本地获取单元, 其中: 第一接收单元,用于接收所述终端发送的包含所述待传输数据的属性信息 的传输请求消息;
第二接收单元,用于接收多级调度设备发送的包含所述待传输数据的属性 信息的控制消息;
本地获取单元, 用于从本地读取所述待传输数据的属性信息。
其中, 第一获取模块 901可以获取一个或多个待传输数据的属性信息, 具 体的,第一获取模块 901可以获取一个终端的一个或多个待传输数据的属性信 息, 或可以获取多个终端的待传输数据的属性信息。
判断模块 902, 用于判断所述第一获取模块 901获取到的基站调度属性信 息是否满足预设的调度条件。 其中, 判断模块 902可以包括: 第一判断单元和 /或第二判断单元, 第一 判断单元,用于判断所述第一获取模块获取到的基站调度属性信息是否满足预 设的第一调度条件; 第二判断单元, 用于判断所述第一获取模块获取到的基站 调度属性信息是否满足预设的第二调度条件。
可断的,预设的第一调度条件包括但不局限于: 网络资源占用率大于预设 的第一门限值。预设的第二调度条件包括但不局限于: 网络资源占用率小于预 设的第二门限值。
第一处理模块 903 , 用于当所述判断模块 902的判断结果为是时, 根据所 述传输属性信息向终端发送调度暂停消息和 /或调度开始消息。
其中, 第一处理模块 903 可以包括: 第一处理单元和 /或第二处理单元, 第一处理单元, 用于当所述第一判断单元判断结果为是时,根据所述传输属性 信息向终端发送调度暂停消息,以使所述终端根据所述调度暂停消息暂停向基 站发送资源请求; 第二处理单元, 用于当所述第二判断单元判断结果为是时, 根据所述传输属性信息向终端发送调度开始消息,并开始为待传输数据分配传 输资源。
可选的, 第一处理单元具体用于: 当所述传输属性信息中所述终端优先级 信息为最低优先级、或所述待传输数据的数据量信息为最大数据量、或所述待 传输数据的优先级信息为最低优先级、或所述待传输数据的时延需求信息为最 高时延容忍度、或所述调度时间信息为最长时间信息、或所述调度资源量为最 少资源量时,确定对应的终端标识信息, 并向所述终端标识信息对应的终端发 送调度暂停消息。
其中,当第一判断单元判断到获取到的基站调度属性信息满足预设的第一 调度条件时,对获取到的多个传输属性信息进行比较,若所述传输属性信息中 所述终端优先级信息为最低优先级、或所述待传输数据的数据量信息为最大数 据量、或所述待传输数据的优先级信息为最低优先级、或所述待传输数据的时 延需求信息为最高时延容忍度、或所述调度时间信息为最长时间信息、或所述 调度资源量为最少资源量,确定对应的终端标识信息, 并向所述终端标识信息 对应的终端发送调度暂停消息。可选的,如果仅获取到一个待传输数据的属性 信息, 则确定该待传输数据的属性信息中所述终端优先级信息为最低优先级、 或所述待传输数据的数据量信息为最大数据量、或所述待传输数据的优先级信 息为最低优先级、或所述待传输数据的时延需求信息为最高时延容忍度,对应 的,确定该基站调度属性信息中所述调度时间信息为最长时间信息、或所述调 度资源量为最少资源量。
可选的, 调度暂停消息可以包括: 连接释放消息或调度请求暂停消息。 可选的, 调度暂停消息还可以包括: 调度暂停对象的属性信息, 其中, 调 度暂停对象的属性信息包括: 调度暂停对象的终端标识信息、调度暂停对象的 数据类型、 调度暂停对象的优先级信息、 调度暂停对象的终端优先级信息、 调 度暂停对象的时延信息中的一个或多个。
可选的, 第二处理单元具体用于: 当所述传输属性信息中所述终端优先级 信息为最高优先级、或所述待传输数据的数据量信息为最小数据量、或所述待 传输数据的优先级信息为最高优先级、或所述待传输数据的时延需求信息为最 低时延容忍度、或所述调度时间信息为最短时间信息、或调度资源量为最多资 源量时,确定对应的终端标识信息, 并向所述终端标识信息对应的终端发送调 度开始消息。
其中,当第二判断单元判断到获取到的基站调度属性信息满足预设的第二 调度条件时,对获取到的多个传输属性信息进行比较,若所述传输属性信息中 所述终端优先级信息为最高优先级、或所述待传输数据的数据量信息为最小数 据量、或所述待传输数据的优先级信息为最高优先级、或所述待传输数据的时 延需求信息为最低时延容忍度、或所述调度时间信息为最短时间信息、或调度 资源量为最多资源量,确定对应的终端标识信息, 并向所述终端标识信息对应 的终端发送调度开始消息。可选的,如果仅获取到一个待传输数据的属性信息, 则确定该待传输数据的属性信息中所述终端优先级信息为最高优先级、或所述 待传输数据的数据量信息为最小数据量、或所述待传输数据的优先级信息为最 高优先级、 或所述待传输数据的时延需求信息为最低时延容忍度, 对应的, 确 定该基站调度属性信息中所述调度时间信息为最短时间信息、或调度资源量为 最多资源量。 可选的,调度开始消息可以包括: 所述第一处理模块 903向所述终端发送 的所述待传输数据的资源分配指示信息或所述第一处理模块 903 向所述终端 发送的所述待传输数据的资源分配消息。
可选的, 调度开始消息还可以包括: 调度开始对象的属性信息, 其中, 调 度开始对象的属性信息包括: 调度开始对象的终端标识信息、调度开始对象的 数据类型、 调度开始对象的优先级信息、 调度开始对象的终端优先级信息、 调 度开始对象的时延信息中的一个或多个。
进一步可选的,本发明实施例的无线通信网络数据传输的控制装置还可以 包括: 上报请求发送模块 904。
上报请求发送模块 904, 用于向所述终端发送数据上报请求消息, 以使所 述终端根据所述数据上报请求消息将所述待传输数据的属性信息上报给基站。
具体实现中, 上报请求发送模块 904向终端发送数据上报请求消息, 以指 示终端上报待传输数据的属性信息。进而第一获取模块 901获取到待传输数据 的属性信息。
进一步可选的,本发明实施例的无线通信网络数据传输的控制装置还可以 包括: 控制请求发送模块 905。
控制请求发送模块 905 , 用于向多级调度设备发送控制请求消息, 以使所 述多级调度设备根据所述控制请求消息将所述待传输数据的属性信息发送给 基站。
具体实现中,当第一判断单元判断到第一获取模块 901获取到的基站调度 属性信息满足预设的第一调度条件时,控制请求发送模块 905向多级调度设备 发送控制请求消息,以请求多级调度设备控制基站并返回待传输数据的属性信 进一步可选的,本发明实施例的无线通信网络数据传输的控制装置还可以 包括: 传输控制请求发送模块 906。
传输控制请求发送模块 906, 用于向多级调度设备发送传输控制请求消 息,以使所述多级调度设备根据所述传输控制请求消息将所述待传输数据的属 性信息发送给基站。 具体实现中,当第二判断单元判断到第一获取模块 901获取到的基站调度 属性信息满足预设的第二调度条件时,传输控制请求发送模块 906向多级调度 设备发送传输控制请求消息,以请求多级调度设备控制基站的传输并返回待传 输数据的属性信息。
上述技术方案中,提供一种无线通信网络数据传输的控制装置, 第一处理 模块可根据第一获取模块获取到的传输属性信息向终端发送调度暂停消息 /调 度开始消息, 若向终端发送调度暂停消息, 可根据调度暂停消息暂停向基站发 送资源请求, 若向终端发送调度开始消息, 则可开始为待传输数据分配传输资 源。通过本发明实施例, 可根据传输属性信息进行无线通信网络数据资源的调 度, 避免了基站拥塞的情况, 减少了调度时间, 提高了无线通信网络数据传输 的效率。 请参见图 10, 为本发明实施例提供的另一种无线通信网络数据传输的控 制装置的结构示意图; 该装置可包括:
接收模块 1001 , 用于接收基站发送的调度暂停消息和 /或调度开始消息。 调度暂停处理模块 1002, 用于当接收模块 1001接收到所述调度暂停消息 时,根据所述调度暂停消息暂停向所述基站发送资源请求, 所述调度暂停消息 包括: 调度暂停对象的属性信息。
其中, 调度暂停对象的属性信息包括: 终端标识信息、 调度暂停对象的数 据类型、 调度暂停对象的优先级信息、 调度暂停对象的终端优先级信息、调度 暂停对象的时延信息中的一个或多个。
可选的, 调度暂停处理模块 1002具体用于: 当检测到所述待传输数据的 属性信息与所述调度暂停对象的属性信息相同、或所述待传输数据的优先级信 息低于所述调度暂停对象的数据优先级信息、或所述终端优先级信息低于所述 调度暂停对象的终端优先级信息、或所述待传输数据的时延需求信息高于所述 调度暂停对象的数据时延信息时, 暂停所述待传输数据的资源请求发送。
可选的,当该终端优先级信息等于或低于调度暂停对象的终端优先级信息 时, 可以为终端暂停该终端所有的待传输数据的资源请求发送,也可以为暂停 该终端中至少一个待传输数据的资源请求发送。
调度开始处理模块 1003, 用于当接收模块 1001接收到所述调度开始消息 时,根据所述调度开始消息向所述基站发送待传输数据, 所述调度开始消息包 括: 调度开始对象的属性信息。
其中,调度开始消息包括: 所述基站发送的所述待传输数据的资源分配指 示信息或所述基站发送的所述待传输数据的资源分配消息。
可选的, 调度开始处理模块 1003具体用于: 当检测到待传输数据的属性 信息与所述调度开始对象的属性信息相同、或所述待传输数据的优先级信息高 于所述调度暂停对象的数据优先级信息、或所述终端优先级信息高于所述调度 暂停对象的终端优先级信息、或所述待传输数据的时延需求信息低于所述调度 暂停对象的数据时延信息时, 向基站发送所述待传输数据
可选的,当该终端优先级信息等于或高于调度开始对象的终端优先级信息 时, 可以为开始该终端的所有待传输数据的发送,也可以为开始该终端中至少 一个待传输数据发送。
进一步可选的,本发明实施例的无线通信网络数据传输的控制装置还可以 包括: 第二获取模块 1004和发送模块 1005。
第二获取模块 1004, 用于获取待传输数据的属性信息。
其中, 终端获取至少一个待传输数据的属性信息,待传输数据的属性信息 包括: 终端标识信息、 终端优先级信息、 所述待传输数据的数据量信息、 所述 待传输数据的优先级信息、 所述待传输数据的时延需求信息中的一个或多个。
发送模块 1005, 用于向基站发送传输请求消息, 所述传输请求消息包括 所述第二获取模块获取到的待传输数据的属性信息。
其中, 传输请求消息可以为 RRC连接请求, 传输请求消息包括待传输数 据的属性信息。终端向基站发送 RRC连接请求后,基站发送 RRC连接建立消 息给终端, 则终端与基站建立了 RRC连接,基站发送 RRC连接重配消息给终 端, 终端根据 RRC连接重配消息配置无线承载,发送 RRC连接重配完成消息 给基站, 则终端与基站建立 RRC无线承载。
可选的, 可以一个或多个终端向基站发送传输请求消息, 或一个终端向基 站发送不同的待传输数据对应的传输请求消息。
进一步可选的,本发明实施例的无线通信网络数据传输的控制装置还可以 包括: 上报请求接收模块 1006和上报模块 1007。
上报请求接收模块 1006, 用于接收基站发送的数据上报请求消息。
上报模块 1007, 用于根据所述上报请求接收模块接收的数据上报请求消 息将所述待传输数据的属性信息上报给所述基站。
上述技术方案中,提供一种无线通信网络数据传输的控制装置,接收模块 接收基站发送的调度暂停消息和 /或调度开始消息, 若为调度暂停消息, 可根 据调度暂停消息暂停向基站发送资源请求, 若为调度开始消息, 则可开始向基 站发送待传输数据。通过本发明实施例, 可根据传输属性信息进行无线通信网 络数据资源的调度, 避免了基站拥塞的情况, 减少了调度时间, 提高了无线通 信网络数据传输的效率。 请参见图 11 , 为本发明实施例提供的又一种无线通信网络数据传输的控 制装置的结构示意图; 该装置可包括:
第三获取模块 1101 , 用于获取传输属性信息, 所述传输属性信息包括待 传输数据的属性信息和基站调度属性信息。
其中, 多级调度设备接收到基站发送的控制请求消息后,从控制请求消息 中获取传输属性信息, 并进行存储。 控制请求消息包括传输属性信息, 传输属 性信息包括待传输数据的属性信息和基站调度属性信息。待传输数据的属性信 息包括: 终端标识信息、 终端优先级信息、 所述待传输数据的数据量信息、 待 传输数据的优先级信息、待传输数据的时延需求信息中的一个或多个。基站调 度属性信息包括: 网络资源占用率、 调度时间信息、 调度资源量中的一个或多 个。
可选的, 第三获取模块 1101可以包括: 控制请求接收单元 11011和获取 单元 11012, 其中:
控制请求接收单元 11011 , 用于接收基站发送的控制请求消息, 所述控制 请求消息包括: 传输属性信息。 所述获取单元 11012, 用于根据所述控制请求接收单元 11011接收到的控 制请求消息获取所述传输属性信息。
可选的, 第三获取模块 1101还可以包括:
传输控制请求接收单元 11013, 用于接收基站发送的传输控制请求消息, 传输控制请求消息包括: 传输属性信息。
第二处理模块 1102, 用于向基站发送包含第三获取模块 1101获取到的所 述传输属性信息的控制消息,以使所述基站根据所述控制消息向终端发送调度 暂停消息和 /或调度开始消息。
可选的, 第二处理模块 1102可以包括: 第一控制消息处理单元, 其中: 第一控制消息处理单元 11021 , 用于根据获取单元 11012获取到的传输属性信 息向所述基站发送第一控制消息,以使所述基站根据所述第一控制消息向终端 发送调度暂停消息。
可选的, 调度暂停对象的属性信息包括: 调度暂停对象的终端标识信息、 调度暂停对象的数据类型、调度暂停对象的优先级信息、调度暂停对象的终端 优先级信息、 调度暂停对象的时延信息中的一个或多个。
可选的, 第一控制消息处理单元 11021可以包括: 第一确定子单元、 第一 获取子单元和第一发送子单元, 其中:
第一确定子单元,用于当所述传输属性信息中所述终端优先级信息为最低 优先级、或所述待传输数据的数据量信息为最大数据量、或所述待传输数据的 优先级信息为最低优先级、或所述待传输数据的时延需求信息为最高时延容忍 度、 或所述调度时间信息为最长时间信息、 或调度资源量为最少资源量时, 确 定对应的终端标识信息;
第一获取子单元,用于根据所述第一确定子单元确定的终端标识信息获取 对应的调度暂停对象的属性信息;
第一发送子单元,用于向基站发送第一控制消息,所述第一控制消息包括: 所述第一获取子单元获取到的调度暂停对象的属性信息。
进一步可选的, 第二处理模块 1102还可以包括: 第二控制消息处理单元 11022, 其中: 第二控制消息处理单元 11022, 用于根据所述传输控制请求接收单元接收 的所述传输控制请求消息向所述基站发送第二控制消息,以使所述基站根据所 述第二控制消息向终端发送调度开始消息。
可选的, 调度开始对象的属性信息包括: 调度开始对象的终端标识信息、 调度开始对象的数据类型、调度开始对象的优先级信息、调度开始对象的终端 优先级信息、 调度开始对象的时延信息中的一个或多个。
可选的, 第二控制消息处理单元 11022可以包括: 第二确定子单元、 第二 获取子单元和第二发送子单元, 其中:
第二确定子单元,用于当所述传输属性信息中所述终端优先级信息为最高 优先级、或所述待传输数据的数据量信息为最小数据量、或所述待传输数据的 优先级信息为最高优先级、或所述待传输数据的时延需求信息为最低时延容忍 度、 或所述调度时间信息为最短时间信息、 或调度资源量为最多资源量时, 确 定对应的终端标识信息;
第二获取子单元,用于根据所述第二确定子单元确定的终端标识信息获取 对应的调度开始对象的属性信息;
第二发送子单元,用于向基站发送第二控制消息,所述第二控制消息包括: 所述第二获取子单元获取到的调度开始对象的属性信息。
上述技术方案中,提供一种无线通信网络数据传输的控制装置, 多级调度 设备可根据传输属性信息向基站发送控制消息,以使基站根据控制消息向终端 发送调度暂停消息和 /或调度开始消息, 从而根据传输属性信息进行调度, 避 免了基站拥塞的情况,减少了调度时间,提高了无线通信网络数据传输的效率。 请参见图 12, 为本发明实施例提供的一种无线通信网络数据传输的控制 系统, 包括基站 1和终端 2, 其中, 基站 1如图 9所示的装置, 终端 2如图 10 所示的装置,基站 1和终端 2可通过无线网络连接, 该装置的结构和功能可参 见图 9、 图 10所示实施例的相关描述, 在此不赘述。 需要说明的是, 本实施 例的系统可应用于上述方法中。 请参见图 13, 为本发明实施例提供的另一种无线通信网络数据传输的控 制系统, 包括基站 1、 终端 2和多级调度设备 3, 其中, 基站 1如图 9所示的 装置, 终端 2如图 10所示的装置, 多级调度设备 3如图 11所示的装置, 基站 1和终端 2可通过无线网络连接, 该装置的结构和功能可参见图 9、 图 10、 图 11 所示实施例的相关描述, 在此不赘述。 需要说明的是, 本实施例的系统可 应用于上述方法中。 请参见图 14, 为本发明实施例提供的一种基站的结构示意图, 其中, 本 实施例提供的基站与图 1~4任一所示的方法相对应,为基于图 1~4所示的无线 通信网络数据传输的控制方法的执行主体。 具体的实现形式如图 14所示, 本 发明实施例的基站包括: 输入装置 11、 输出装置 12、 存储器 13和处理器 14, 其中, 存储器 13中存储一组程序代码, 且处理器 14用于调用存储器 13中存 储的程序代码, 用于执行以下操作:
获取传输属性信息,所述传输属性信息包括待传输数据的属性信息和基站 调度属性信息;
判断所述获取到的基站调度属性信息是否满足预设的调度条件;
若是, 基站根据所述传输属性信息向终端发送调度暂停消息和 /或调度开 始消息。
可选的, 处理器 14获取传输属性信息具体用于:
接收所述终端发送的包含待所述传输数据的属性信息的传输请求消息;或 接收多级调度设备发送的包含所述待传输数据的属性信息的控制消息;或 从本地读取所述待传输数据的属性信息。
可选的, 处理器 14获取传输属性信息之前, 还用于:
向所述终端发送数据上报请求消息,以使所述终端根据所述数据上报请求 消息将所述待传输数据的属性信息上报给基站; 或
向多级调度设备发送控制请求消息,以使所述多级调度设备根据所述控制 请求消息将所述待传输数据的属性信息发送给基站。
可选的,处理器 14根据所述传输属性信息向终端发送调度开始消息之前, 还用于:
向所述终端发送数据上报请求消息,以使所述终端据所述数据上报请求消 息将所述待传输数据的属性信息上报给基站; 或
向多级调度设备发送传输控制请求消息,以使所述多级调度设备根据所述 传输控制请求消息将所述待传输数据的属性信息发送给基站。
处理器 14可以是中央处理器( central processing unit, CPU )、 专用集成电 路 ( application-specific integrated circuit, ASIC )等。 其中, 本实施例中的基站 还可以包括总线 15。 输入装置 11、 输出装置 12、 存储器 13以及处理器 14之 间可通过总线 15连接并通信。
上述技术方案中,提供一种基站, 可根据获取到的传输属性信息向终端发 送调度暂停消息 /调度开始消息, 若向终端发送调度暂停消息, 可根据调度暂 停消息暂停向基站发送资源请求, 若向终端发送调度开始消息, 则可开始为待 传输数据分配传输资源。通过本发明实施例, 可根据传输属性信息进行无线通 信网络数据资源的调度, 避免了基站拥塞的情况, 减少了调度时间, 提高了无 线通信网络数据传输的效率。 请参见图 15 , 为本发明实施例提供的一种终端的结构示意图, 如图 15所 示, 本发明实施例的终端包括: 输入装置 21、 输出装置 22、 存储器 23和处理 器 24, 其中, 存储器 23中存储一组程序代码, 且处理器 24用于调用存储器 23中存储的程序代码, 用于执行以下操作:
接收基站发送的调度暂停消息和 /或调度开始消息;
当接收到所述调度暂停消息时,根据所述调度暂停消息暂停向基站发送资 源请求, 所述调度暂停消息包括: 调度暂停对象的属性信息;
当接收到所述调度开始消息时,根据所述调度开始消息向基站发送待传输 数据, 所述调度开始消息包括: 调度开始对象的属性信息。
可选的,处理器 24接收基站发送的调度暂停消息和 /或调度开始消息之前, 还用于:
获取所述待传输数据的属性信息; 向所述基站发送传输请求消息 ,所述传输请求消息包括所述待传输数据的 属性信息。
可选的,处理器 24接收基站发送的调度暂停消息和 /或调度开始消息之前, 还用于:
接收所述基站发送的数据上报请求消息;
根据所述数据上报请求消息将所述待传输数据的属性信息上报给基站。 终端可以为如手机、平板电脑等移动设备。处理器 24可以是中央处理器、 专用集成电路等。 其中, 本实施例中的终端还可以包括总线 25。 输入装置 21、 输出装置 22、 存储器 23以及处理器 24之间可通过总线 25连接并通信。
上述技术方案中, 提供一种终端, 接收基站发送的调度暂停消息和 /或调 度开始消息, 若为调度暂停消息, 可根据调度暂停消息暂停向基站发送资源请 求,若为调度开始消息,则可开始向基站发送待传输数据。通过本发明实施例, 可根据传输属性信息进行无线通信网络数据资源的调度,避免了基站拥塞的情 况, 减少了调度时间, 提高了无线通信网络数据传输的效率。 请参见图 16, 为本发明实施例提供的一种多级调度设备的结构示意图, 如图 16所示,本发明实施例的多级调度设备包括:输入装置 31、输出装置 32、 存储器 33和处理器 34, 其中, 存储器 33中存储一组程序代码, 且处理器 34 用于调用存储器 33中存储的程序代码, 用于执行以下操作:
获取传输属性信息,所述传输属性信息包括待传输数据的属性信息和基站 调度属性信息;
向基站发送包含有所述传输属性信息的控制消息,以使所述基站根据所述 控制消息向终端发送调度暂停消息和 /或调度开始消息。
可选的, 处理器 34获取传输属性信息具体用于:
接收所述基站发送的控制请求消息,所述控制请求消息包括: 传输属性信 息;
根据所述控制请求消息获取所述传输属性信息。
可选的,处理器 34向基站发送包含有传输属性信息的控制消息具体用于: 根据所述获取到的所述传输属性信息向基站发送第一控制消息,以使所述 基站根据所述第一控制消息向终端发送调度暂停消息。
可选的, 处理器 34向基站发送包含有传输属性信息的控制消息还具体用 于:
接收所述基站发送的传输控制请求消息, 所述传输控制请求消息包括: 传 输属性信息;
根据所述传输控制请求消息向所述基站发送第二控制消息,以使所述基站 根据所述第二控制消息向终端发送调度开始消息。
处理器 33可以是中央处理器、 专用集成电路等。 其中, 本实施例中的终 端还可以包括总线 35。 输入装置 31、 输出装置 32、 存储器 33以及处理器 34 之间可通过总线 35连接并通信。
上述技术方案中,提供一种多级调度设备, 可根据传输属性信息向基站发 送控制消息, 以使基站根据控制消息向终端发送调度暂停消息和 /或调度开始 消息, 从而根据传输属性信息进行调度, 避免了基站拥塞的情况, 减少了调度 时间, 提高了无线通信网络数据传输的效率。
通过以上的实施方式的描述,所属领域的技术人员可以清楚地了解到本发 明可以用硬件实现, 或固件实现, 或它们的组合方式来实现。 当使用软件实现 时,可以将上述功能存储在计算机可读介质中或作为计算机可读介质上的一个 或多个指令或代码进行传输。 计算机可读介质包括计算机存储介质和通信介 质,其中通信介质包括便于从一个地方向另一个地方传送计算机程序的任何介 质。 存储介质可以是计算机能够存取的任何可用介质。 以此为例但不限于: 计 算机可读介质可以包括 RAM、 ROM, EEPROM、 CD-ROM或其他光盘存储、 磁盘存储介质或者其他磁存储设备、或者能够用于携带或存储具有指令或数据 结构形式的期望的程序代码并能够由计算机存取的任何其他介质。此外。任何 连接可以适当的成为计算机可读介质。 例如, 如果软件是使用同轴电缆、 光纤 光缆、 双绞线、 数字用户线(DSL )或者诸如红外线、 无线电和微波之类的无 线技术从网站、 服务器或者其他远程源传输的, 那么同轴电缆、 光纤光缆、 双 绞线、 DSL或者诸如红外线、 无线和微波之类的无线技术包括在所属介质的 定影中。 如本发明所使用的, 盘(Disk )和碟(disc ) 包括压缩光碟(CD )、 激光碟、 光碟、 数字通用光碟(DVD )、 软盘和蓝光光碟, 其中盘通常磁性的 复制数据, 而碟则用激光来光学的复制数据。上面的组合也应当包括在计算机 可读介质的保护范围之内。
以上所揭露的仅为本发明较佳实施例而已,当然不能以此来限定本发明之 权利范围,因此依本发明权利要求所作的等同变化,仍属本发明所涵盖的范围。

Claims

权 利 要 求
1、 一种无线通信网络数据传输的控制方法, 其特征在于, 所述方法包括: 基站获取传输属性信息,所述传输属性信息包括待传输数据的属性信息和 基站调度属性信息;
判断所述获取到的基站调度属性信息是否满足预设的调度条件;
若是, 所述基站根据所述传输属性信息向终端发送调度暂停消息和 /或调 度开始消息。
2、 如权利要求 1所述的方法, 其特征在于, 所述预设的调度条件包括: 预设的第一调度条件;
所述基站根据所述传输属性信息向终端发送调度暂停消息和 /或调度开始 消息包括:
如果所述获取到的基站调度属性信息满足所述预设的第一调度条件,所述 基站根据所述传输属性信息向所述终端发送调度暂停消息,以使所述终端根据 所述调度暂停消息暂停向基站发送资源请求。
3、 如权利要求 1所述的方法, 其特征在于, 所述预设的调度条件包括: 预设的第二调度条件;
所述基站根据所述传输属性信息向终端发送调度暂停消息和 /或调度开始 消息包括:
如果所述获取到的基站调度属性信息满足所述预设的第二调度条件,所述 基站根据所述传输属性信息向所述终端发送调度开始消息,并开始为待传输数 据分配传输资源。
4、 如权利要求 1所述的方法, 其特征在于, 所述预设的调度条件包括: 预设的第一调度条件和预设的第二调度条件;
所述基站获取传输属性信息之后包括:
判断所述获取到的基站调度属性信息是否满足所述预设的第一调度条件; 若是,基站根据所述传输属性信息向所述终端发送调度暂停消息, 以使所 述终端根据所述调度暂停消息暂停向所述基站发送资源请求;
所述基站根据所述传输属性信息向终端发送调度暂停消息之后, 包括: 判断所述获取到的基站调度属性信息是否满足所述预设的第二调度条件; 若是, 所述基站根据所述传输属性信息向所述终端发送调度开始消息, 并 开始为待传输数据分配传输资源。
5、 如权利要求 1所述的方法, 其特征在于, 所述待传输数据的属性信息 包括: 终端标识信息、 终端优先级信息、 所述待传输数据的数据量信息、 所述 待传输数据的优先级信息、 所述待传输数据的时延需求信息中的一个或多个。
6、 如权利要求 1所述的方法, 其特征在于, 所述基站获取传输属性信息 包括:
所述基站接收所述终端发送的包含待所述传输数据的属性信息的传输请 求消息; 或
所述基站接收多级调度设备发送的包含所述待传输数据的属性信息的控 制消息; 或
所述基站从本地读取所述待传输数据的属性信息。
7、 如权利要求 1所述的方法, 其特征在于, 所述基站获取传输属性信息 之前, 包括:
所述基站向所述终端发送数据上报请求消息,以使所述终端根据所述数据 上报请求消息将所述待传输数据的属性信息上报给基站; 或
所述基站向多级调度设备发送控制请求消息,以使所述多级调度设备根据 所述控制请求消息将所述待传输数据的属性信息发送给基站。
8、 如权利要求 1~3任一所述的方法, 其特征在于, 所述基站调度属性信 息包括: 网络资源占用率、 调度时间信息、 调度资源量中的一个或多个。
9、 如权利要求 8所述的方法, 其特征在于, 所述预设的第一调度条件包 括: 所述网络资源占用率大于预设的第一门限值; 或
所述预设的第二调度条件包括:所述网络资源占用率小于预设的第二门限 值。
10、 如权利要求 2或 4或 5或 8所述的方法, 其特征在于, 所述基站根据 所述传输属性信息向终端发送调度暂停消息, 包括:
若所述传输属性信息中所述终端优先级信息为最低优先级、或所述待传输 数据的数据量信息为最大数据量、或所述待传输数据的优先级信息为最低优先 级、或所述待传输数据的时延需求信息为最高时延容忍度、或所述调度时间信 息为最长时间信息、或所述调度资源量为最少资源量,确定对应的终端标识信 息, 并向所述终端标识信息对应的终端发送调度暂停消息。
11、 如权利要求 10所述的方法, 其特征在于, 所述调度暂停消息包括: 连接释放消息或调度请求暂停消息。
12、 如权利要求 10所述的方法, 其特征在于, 所述调度暂停消息包括: 调度暂停对象的属性信息;
所述调度暂停对象的属性信息包括: 调度暂停对象的终端标识信息、调度 暂停对象的数据类型、调度暂停对象的优先级信息、调度暂停对象的终端优先 级信息、 调度暂停对象的时延信息中的一个或多个。
13、 如权利要求 2或 3所述的方法, 其特征在于, 所述基站根据所述传输 属性信息向终端发送调度开始消息之前, 包括:
所述基站向所述终端发送数据上报请求消息,以使所述终端据所述数据上 报请求消息将所述待传输数据的属性信息上报给基站; 或
所述基站向多级调度设备发送传输控制请求消息,以使所述多级调度设备 根据所述传输控制请求消息将所述待传输数据的属性信息发送给基站。
14、 如权利要求 3或 4或 5或 8所述的方法, 其特征在于, 所述基站根据 所述传输属性信息向终端发送调度开始消息, 包括:
若所述传输属性信息中所述终端优先级信息为最高优先级、或所述待传输 数据的数据量信息为最小数据量、或所述待传输数据的优先级信息为最高优先 级、或所述待传输数据的时延需求信息为最低时延容忍度、或所述调度时间信 息为最短时间信息、 或调度资源量为最多资源量, 确定对应的终端标识信息, 并向所述终端标识信息对应的终端发送调度开始消息。
15、 如权利要求 14所述的方法, 其特征在于, 所述调度开始消息包括:
16、 如权利要求 14所述的方法, 其特征在于, 所述调度开始消息包括: 所述调度开始对象的属性信息;
所述调度开始对象的属性信息包括: 调度开始对象的终端标识信息、调度 开始对象的数据类型、调度开始对象的优先级信息、调度开始对象的终端优先 级信息、 调度开始对象的时延信息中的一个或多个。
17、一种无线通信网络数据传输的控制方法,其特征在于,所述方法包括: 终端接收基站发送的调度暂停消息和 /或调度开始消息;
所述终端若接收到所述调度暂停消息,根据所述调度暂停消息暂停向所述 基站发送资源请求, 所述调度暂停消息包括: 调度暂停对象的属性信息;
所述终端若接收到所述调度开始消息,根据所述调度开始消息向所述基站 发送待传输数据, 所述调度开始消息包括: 调度开始对象的属性信息。
18、 如权利要求 17所述的方法, 其特征在于, 所述接收基站发送的调度 暂停消息和 /或调度开始消息之前, 包括:
终端获取所述待传输数据的属性信息。
19、 如权利要求 18所述的方法, 其特征在于, 所述终端获取所述传输数 据的属性信息之后, 包括:
所述终端向所述基站发送传输请求消息,所述传输请求消息包括所述待传 输数据的属性信息。
20、 如权利要求 18~19任一所述的方法, 其特征在于, 所述待传输数据的 属性信息包括: 终端标识信息、 终端优先级信息、 所述待传输数据的数据量信 息、所述待传输数据的优先级信息、所述待传输数据的时延需求信息中的一个 或多个。
21、 如权利要求 17所述的方法, 其特征在于, 所述终端接收基站发送的 调度暂停消息和 /或调度开始消息之前, 包括:
所述终端接收所述基站发送的数据上报请求消息;
所述终端根据所述数据上报请求消息将所述待传输数据的属性信息上报 给基站。
22、 如权利要求 17所述的方法, 其特征在于, 所述调度开始消息包括: 向所述终端发送的所述待传输数据的资源分配消息。
23、 如权利要求 17所述的方法, 其特征在于, 所述调度暂停对象的属性 信息包括: 终端标识信息、 调度暂停对象的数据类型、 调度暂停对象的优先级 信息、调度暂停对象的终端优先级信息、调度暂停对象的时延信息中的一个或 多个。
24、 如权利要求 20或 23所述的方法, 其特征在于, 所述根据所述调度暂 停消息暂停向基站发送资源请求包括:
当检测到所述待传输数据的属性信息与所述调度暂停对象的属性信息相 同、 或所述待传输数据的优先级信息低于所述调度暂停对象的数据优先级信 息、或所述终端优先级信息低于所述调度暂停对象的终端优先级信息、或所述 待传输数据的时延需求信息高于所述调度暂停对象的数据时延信息时,暂停所 述待传输数据的资源请求发送。
25、 如权利要求 17所述的方法, 其特征在于, 所述调度开始对象的属性 信息包括: 调度开始对象的终端标识信息、 调度开始对象的数据类型、调度开 始对象的优先级信息、调度开始对象的终端优先级信息、调度开始对象的时延 信息中的一个或多个。
26、 如权利要求 20或 25所述的方法, 其特征在于, 所述根据所述调度开 始消息向基站发送待传输数据包括:
当检测到所述待传输数据的属性信息与所述调度开始对象的属性信息相 同、 或所述待传输数据的优先级信息高于所述调度暂停对象的数据优先级信 息、或所述终端优先级信息高于所述调度暂停对象的终端优先级信息、或所述 待传输数据的时延需求信息低于所述调度暂停对象的数据时延信息时,向基站 发送所述待传输数据。
27、一种无线通信网络数据传输的控制方法,其特征在于,所述方法包括: 多级调度设备获取传输属性信息,所述传输属性信息包括待传输数据的属 性信息和基站调度属性信息;
所述多级调度设备向基站发送包含有所述传输属性信息的控制消息,以使 所述基站根据所述控制消息向终端发送调度暂停消息和 /或调度开始消息。
28、 如权利要求 27所述的方法, 其特征在于, 所述待传输数据的属性信 息包括: 终端标识信息、 终端优先级信息、 所述待传输数据的数据量信息、 所 述待传输数据的优先级信息、 所述待传输数据的时延需求信息中的一个或多 个。
29、 如权利要求 27所述的方法, 其特征在于, 所述多级调度设备获取传 输属性信息, 包括:
所述多级调度设备接收所述基站发送的控制请求消息,所述控制请求消息 包括: 传输属性信息;
所述多级调度设备根据所述控制请求消息获取所述传输属性信息。
30、 如权利要求 29所述的方法, 其特征在于, 所述多级调度设备向基站 发送包含有传输属性信息的控制消息包括:
多级调度设备根据所述获取到的所述传输属性信息向基站发送第一控制 消息, 以使所述基站根据所述第一控制消息向终端发送调度暂停消息。
31、 如权利要求 27所述的方法, 其特征在于, 所述基站调度属性信息包 括: 网络资源占用率、 调度时间信息、 调度资源量中的一个或多个。
32、 如权利要求 28~31任一所述的方法, 其特征在于, 所述多级调度设备 根据所述控制请求消息向所述基站发送第一控制消息包括:
若所述传输属性信息中所述终端优先级信息为最低优先级、或所述待传输 数据的数据量信息为最大数据量、或所述待传输数据的优先级信息为最低优先 级、或所述待传输数据的时延需求信息为最高时延容忍度、或所述调度时间信 息为最长时间信息、 或调度资源量为最少资源量, 确定对应的终端标识信息; 所述多级调度设备根据所述确定的终端标识信息获取对应的调度暂停对 象的属性信息;
所述多级调度设备向所述基站发送第一控制消息, 所述第一控制消息包 括: 所述调度暂停对象的属性信息。
33、 如权利要求 32所述的方法, 其特征在于, 所述调度暂停对象的属性 信息包括: 调度暂停对象的终端标识信息、 调度暂停对象的数据类型、调度暂 停对象的优先级信息、调度暂停对象的终端优先级信息、调度暂停对象的时延 信息中的一个或多个。
34、 如权利要求 27所述的方法, 其特征在于, 所述多级调度设备获取传 输属性信息, 包括:
所述多级调度设备接收所述基站发送的传输控制请求消息,所述传输控制 请求消息包括: 传输属性信息;
所述多级调度设备向基站发送包含有传输属性信息的控制消息还包括: 所述多级调度设备根据所述传输控制请求消息向所述基站发送第二控制 消息, 以使所述基站根据所述第二控制消息向终端发送调度开始消息。
35、 如权利要求 34所述的方法, 其特征在于, 所述多级调度设备根据所 述传输控制请求消息向所述基站发送第二控制消息包括:
若所述传输属性信息中所述终端优先级信息为最高优先级、或所述待传输 数据的数据量信息为最小数据量、或所述待传输数据的优先级信息为最高优先 级、或所述待传输数据的时延需求信息为最低时延容忍度、或所述调度时间信 息为最短时间信息、 或调度资源量为最多资源量, 确定对应的终端标识信息; 根据所述确定的终端标识信息获取对应的调度开始对象的属性信息; 所述多级调度设备向所述基站发送第二控制消息, 所述第二控制消息包 括: 所述调度开始对象的属性信息。
36、 如权利要求 35所述的方法, 其特征在于, 所述调度开始对象的属性 信息包括: 调度开始对象的终端标识信息、 调度开始对象的数据类型、调度开 始对象的优先级信息、调度开始对象的终端优先级信息、调度开始对象的时延 信息中的一个或多个。
37、一种无线通信网络数据传输的控制装置,其特征在于,所述装置包括: 第一获取模块, 用于获取传输属性信息, 所述传输属性信息包括待传输数 据的属性信息和基站调度属性信息; 判断模块,用于判断所述第一获取模块获取到的基站调度属性信息是否满 足预设的调度条件;
第一处理模块, 用于当所述判断模块的判断结果为是时,根据所述传输属 性信息向终端发送调度暂停消息和 /或调度开始消息。
38、 如权利要求 37所述的装置, 其特征在于, 所述判断模块包括: 第一 判断单元和 /或第二判断单元, 其中:
所述第一判断单元,用于判断所述第一获取模块获取到的基站调度属性信 息是否满足预设的第一调度条件;
所述第二判断单元,用于判断所述第一获取模块获取到的基站调度属性信 息是否满足预设的第二调度条件。
39、 如权利要求 38所述的装置, 其特征在于, 所述第一处理模块包括: 第一处理单元和 /或第二处理单元, 其中:
所述第一处理单元, 用于当所述第一判断单元判断结果为是时,根据所述 传输属性信息向终端发送调度暂停消息,以使所述终端根据所述调度暂停消息 暂停向基站发送资源请求;
所述第二处理单元, 用于当所述第二判断单元判断结果为是时,根据所述 传输属性信息向终端发送调度开始消息, 并开始为待传输数据分配传输资源。
40、 如权利要求 37所述的装置, 其特征在于, 所述待传输数据的属性信 息包括: 终端标识信息、 终端优先级信息、 所述待传输数据的数据量信息、 所 述待传输数据的优先级信息、 所述待传输数据的时延需求信息中的一个或多 个。
41、 如权利要求 37所述的装置, 其特征在于, 所述第一获取模块包括: 第一接收单元、 第二接收单元或本地获取单元, 其中:
所述第一接收单元,用于接收所述终端发送的包含所述待传输数据的属性 信息的传输请求消息;
所述第二接收单元,用于接收多级调度设备发送的包含所述待传输数据的 属性信息的控制消息;
本地获取单元, 用于从本地读取所述待传输数据的属性信息。
42、 如权利要求 37所述的装置, 其特征在于, 所述装置还包括: 上报请 求发送模块或控制请求发送模块, 其中:
所述上报请求发送模块, 用于向所述终端发送数据上报请求消息, 以使所 述终端根据所述数据上报请求消息将所述待传输数据的属性信息上报给基站; 所述控制请求发送模块, 用于向多级调度设备发送控制请求消息, 以使所 述多级调度设备根据所述控制请求消息将所述待传输数据的属性信息发送给 基站。
43、 如权利要求 38所述的装置, 其特征在于, 所述基站调度属性信息包 括: 网络资源占用率、 调度时间信息、 调度资源量中的一个或多个。
44、 如权利要求 43所述的装置, 其特征在于, 所述预设的第一调度条件 包括: 所述网络资源占用率大于预设的第一门限值; 或
所述预设的第二调度条件包括:所述网络资源占用率小于预设的第二门限 值。
45、 如权利要求 39或 40或 43所述的装置, 其特征在于, 所述第一处理 单元具体用于:
当所述传输属性信息中所述终端优先级信息为最低优先级、或所述待传输 数据的数据量信息为最大数据量、或所述待传输数据的优先级信息为最低优先 级、或所述待传输数据的时延需求信息为最高时延容忍度、或所述调度时间信 息为最长时间信息、或所述调度资源量为最少资源量时,确定对应的终端标识 信息, 并向所述终端标识信息对应的终端发送调度暂停消息。
46、 如权利要求 45所述的装置, 其特征在于, 所述调度暂停消息包括: 连接释放消息或调度请求暂停消息。
47、 如权利要求 45所述的装置, 其特征在于, 所述调度暂停消息包括: 调度暂停对象的属性信息;
所述调度暂停对象的属性信息包括: 调度暂停对象的终端标识信息、调度 暂停对象的数据类型、调度暂停对象的优先级信息、调度暂停对象的终端优先 级信息、 调度暂停对象的时延信息中的一个或多个。
48、 如权利要求 37所述的装置, 其特征在于, 所述装置还包括: 传输控制请求发送模块, 用于向多级调度设备发送传输控制请求消息, 以 使所述多级调度设备根据所述传输控制请求消息将所述待传输数据的属性信 息发送给基站。
49、 如权利要求 39或 40或 43所述的装置, 其特征在于, 所述第二处理 单元具体用于:
当所述传输属性信息中所述终端优先级信息为最高优先级、或所述待传输 数据的数据量信息为最小数据量、或所述待传输数据的优先级信息为最高优先 级、或所述待传输数据的时延需求信息为最低时延容忍度、或所述调度时间信 息为最短时间信息、或调度资源量为最多资源量时,确定对应的终端标识信息, 并向所述终端标识信息对应的终端发送调度开始消息。
50、 如权利要求 49所述的装置, 其特征在于, 所述调度开始消息包括:
51、 如权利要求 49所述的装置, 其特征在于, 所述调度开始消息包括: 所述调度开始对象的属性信息; 所述调度开始对象的属性信息包括: 调度开始对象的终端标识信息、调度 开始对象的数据类型、调度开始对象的优先级信息、调度开始对象的终端优先 级信息、 调度开始对象的时延信息中的一个或多个。
52、 一种基站, 其特征在于, 包括: 输入装置、 输出装置、 存储器和处理 器, 其中, 存储器中存储一组程序代码, 且处理器用于调用存储器中存储的程 序代码, 用于执行以下操作:
获取传输属性信息,所述传输属性信息包括待传输数据的属性信息和基站 调度属性信息;
判断所述获取到的基站调度属性信息是否满足预设的调度条件;
若是, 基站根据所述传输属性信息向终端发送调度暂停消息和 /或调度开 始消息。
53、一种无线通信网络数据传输的控制装置,其特征在于,所述装置包括: 接收模块, 用于接收基站发送的调度暂停消息和 /或调度开始消息; 调度暂停处理模块, 用于当所述接收模块接收到所述调度暂停消息时,根 据所述调度暂停消息暂停向所述基站发送资源请求, 所述调度暂停消息包括: 调度暂停对象的属性信息;
调度开始处理模块, 用于当所述接收模块接收到所述调度开始消息时,根 据所述调度开始消息向所述基站发送待传输数据, 所述调度开始消息包括: 调 度开始对象的属性信息。
54、 如权利要求 53所述的装置, 其特征在于, 所装置还包括:
第二获取模块, 用于获取待传输数据的属性信息。
55、 如权利要求 54所述的装置, 其特征在于, 所述装置还包括: 发送模块, 用于向基站发送传输请求消息, 所述传输请求消息包括所述第 二获取模块获取到的所述待传输数据的属性信息。
56、 如权利要求 53~55任一所述的装置, 其特征在于, 所述待传输数据的 属性信息包括: 终端标识信息、 终端优先级信息、 所述待传输数据的数据量信 息、所述待传输数据的优先级信息、所述待传输数据的时延需求信息中的一个 或多个。
57、 如权利要求 53所述的装置, 其特征在于, 所述装置还包括: 上报请求接收模块, 用于接收基站发送的数据上报请求消息;
上报模块,用于根据所述上报请求接收模块接收的数据上报请求消息将所 述待传输数据的属性信息上报给所述基站。
58、 如权利要求 53所述的装置, 其特征在于, 所述调度暂停对象的属性 信息包括: 终端标识信息、 调度暂停对象的数据类型、 调度暂停对象的优先级 信息、调度暂停对象的终端优先级信息、调度暂停对象的时延信息中的一个或 多个。
59、 如权利要求 56或 58所述的装置, 其特征在于, 所述调度暂停处理模 块具体用于:
当检测到所述待传输数据的属性信息与所述调度暂停对象的属性信息相 同、 或所述待传输数据的优先级信息低于所述调度暂停对象的数据优先级信 息、或所述终端优先级信息低于所述调度暂停对象的终端优先级信息、或所述 待传输数据的时延需求信息高于所述调度暂停对象的数据时延信息时,暂停所 述待传输数据的资源请求发送。
60、 如权利要求 53所述的装置, 其特征在于, 所述调度开始消息包括: 所述基站发送的所述待传输数据的资源分配指示信息或所述基站发送的所述 待传输数据的资源分配消息。
61、 如权利要求 53所述的装置, 其特征在于, 所述调度开始对象的属性 信息包括: 调度开始对象的终端标识信息、 调度开始对象的数据类型、 调度开 始对象的优先级信息、调度开始对象的终端优先级信息、调度开始对象的时延 信息中的一个或多个。
62、 如权利要求 56或 61所述的装置, 其特征在于, 所述调度开始处理模 块具体用于:
当检测到待传输数据的属性信息与所述调度开始对象的属性信息相同、或 所述待传输数据的优先级信息高于所述调度暂停对象的数据优先级信息、或所 述终端优先级信息高于所述调度暂停对象的终端优先级信息、或所述待传输数 据的时延需求信息低于所述调度暂停对象的数据时延信息时,向基站发送所述 待传输数据。
63、 一种终端, 其特征在于, 包括: 输入装置、 输出装置、 存储器和处理 器, 其中, 存储器中存储一组程序代码, 且处理器用于调用存储器中存储的程 序代码, 用于执行以下操作:
接收基站发送的调度暂停消息和 /或调度开始消息;
当接收到所述调度暂停消息时,根据所述调度暂停消息暂停向基站发送资 源请求, 所述调度暂停消息包括: 调度暂停对象的属性信息;
当接收到所述调度开始消息时,根据所述调度开始消息向基站发送待传输 数据, 所述调度开始消息包括: 调度开始对象的属性信息。
64、一种无线通信网络数据传输的控制装置,其特征在于,所述装置包括: 第三获取模块, 用于获取传输属性信息, 所述传输属性信息包括待传输数 据的属性信息和基站调度属性信息;
第二处理模块,用于向基站发送包含所述第三获取模块获取到的所述传输 属性信息的控制消息,以使所述基站根据所述控制消息向终端发送调度暂停消 息和 /或调度开始消息。
65、 如权利要求 64所述的装置, 其特征在于, 所述待传输数据的属性信 息包括: 终端标识信息、 终端优先级信息、 所述待传输数据的数据量信息、 所 述待传输数据的优先级信息、 所述待传输数据的时延需求信息中的一个或多 个。
66、 如权利要求 64所述的装置, 其特征在于, 所述第三获取模块包括: 控制请求接收单元和获取单元, 其中:
所述控制请求接收单元, 用于接收基站发送的控制请求消息, 所述控制请 求消息包括: 传输属性信息;
所述获取单元,用于根据所述控制请求接收单元接收到的控制请求消息获 取所述传输属性信息。
67、 如权利要求 66所述的装置, 其特征在于, 所述第二处理模块包括: 第一控制消息处理单元, 其中:
第一控制消息处理单元,用于根据所述获取单元获取到的传输属性信息向 所述基站发送第一控制消息,以使所述基站根据所述第一控制消息向终端发送 调度暂停消息。
68、 如权利要求 64所述的装置, 其特征在于, 所述基站调度属性信息包 括: 网络资源占用率、 调度时间信息、 调度资源量中的一个或多个。
69、 如权利要求 65~68任一所述的装置, 其特征在于, 所述第一控制消息 处理单元包括: 第一确定子单元、 第一获取子单元和第一发送子单元, 其中: 所述第一确定子单元,用于当所述传输属性信息中所述终端优先级信息为 最低优先级、或所述待传输数据的数据量信息为最大数据量、或所述待传输数 据的优先级信息为最低优先级、或所述待传输数据的时延需求信息为最高时延 容忍度、或所述调度时间信息为最长时间信息、或调度资源量为最少资源量时, 确定对应的终端标识信息; 所述第一获取子单元,用于根据所述第一确定子单元确定的终端标识信息 获取对应的调度暂停对象的属性信息;
所述第一发送子单元, 用于向基站发送第一控制消息,所述第一控制消息 包括: 所述第一获取子单元获取到的调度暂停对象的属性信息。
70、 如权利要求 64所述的装置, 其特征在于, 所述调度暂停对象的属性 信息包括: 调度暂停对象的终端标识信息、 调度暂停对象的数据类型、调度暂 停对象的优先级信息、调度暂停对象的终端优先级信息、调度暂停对象的时延 信息中的一个或多个。
71、 如权利要求 64所述的装置, 其特征在于, 所述第三获取模块还包括: 传输控制请求接收单元, 用于接收基站发送的传输控制请求消息; 所述第二处理模块还包括:
第二控制消息处理单元,用于根据所述传输控制请求接收单元接收的所述 传输控制请求消息向所述基站发送第二控制消息,以使所述基站根据所述第二 控制消息向终端发送调度开始消息。
72、 如权利要求 65或 68或 71所述的装置, 其特征在于, 所述第二控制 消息处理单元包括: 第二确定子单元、 第二获取子单元和第二发送子单元, 其 中:
所述第二确定子单元,用于当所述传输属性信息中所述终端优先级信息为 最高优先级、或所述待传输数据的数据量信息为最小数据量、或所述待传输数 据的优先级信息为最高优先级、或所述待传输数据的时延需求信息为最低时延 容忍度、或所述调度时间信息为最短时间信息、或调度资源量为最多资源量时, 确定对应的终端标识信息;
所述第二获取子单元,用于根据所述第二确定子单元确定的终端标识信息 获取对应的调度开始对象的属性信息;
所述第二发送子单元, 用于向基站发送第二控制消息,所述第二控制消息 包括: 所述第二获取子单元获取到的调度开始对象的属性信息。
73、 如权利要求 72所述的装置, 其特征在于, 所述调度开始对象的属性 信息包括: 调度开始对象的终端标识信息、 调度开始对象的数据类型、调度开 始对象的优先级信息、调度开始对象的终端优先级信息、调度开始对象的时延 信息中的一个或多个。
74、 一种多级调度设备, 其特征在于, 包括: 输入装置、 输出装置、 存储 器和处理器, 其中, 存储器中存储一组程序代码, 且处理器用于调用存储器中 存储的程序代码, 用于执行以下操作:
获取传输属性信息,所述传输属性信息包括待传输数据的属性信息和基站 调度属性信息;
向基站发送包含有所述传输属性信息的控制消息,以使所述基站根据所述 控制消息向终端发送调度暂停消息和 /或调度开始消息。
75、一种无线通信网络数据传输的控制系统,其特征在于,所述系统包括: 基站和终端, 其中:
所述基站, 如权利要求 37~51任一所述的装置;
所述终端, 如权利要求 53~62任一所述的装置。
76、 如权利要求 72所述的系统, 其特征在于, 所述系统还包括多级调度 设备, 所述多级调度设备, 如权利要求 64~73任一所述的装置。
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