WO2015169228A1 - 一种配置调度的方法及设备 - Google Patents

一种配置调度的方法及设备 Download PDF

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Publication number
WO2015169228A1
WO2015169228A1 PCT/CN2015/078400 CN2015078400W WO2015169228A1 WO 2015169228 A1 WO2015169228 A1 WO 2015169228A1 CN 2015078400 W CN2015078400 W CN 2015078400W WO 2015169228 A1 WO2015169228 A1 WO 2015169228A1
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Prior art keywords
side device
network side
user equipment
configuration information
configuration
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PCT/CN2015/078400
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English (en)
French (fr)
Inventor
吴昱民
张大钧
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电信科学技术研究院
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Publication of WO2015169228A1 publication Critical patent/WO2015169228A1/zh

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    • 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 communication technologies, and in particular, to a method and device for configuring scheduling.
  • the traditional macro base station-based network architecture will gradually evolve into a network architecture where more types of base stations coexist, and provide more layers. Network coverage.
  • a network architecture for implementing multi-base station cooperation/aggregation through non-ideal links is proposed.
  • RBs radio bearers
  • MCG master cell group
  • SRB Control Plane Radio Bearer
  • DRB User Radio Data Bearer
  • SCG secondary cell group
  • SeNB secondary eNB
  • FIG. 1A illustrates a possible multi-layer network coverage environment.
  • multiple RBs of the UE may be respectively carried by the primary cell group controlled by the MeNB and the secondary cell group controlled by the SeNB.
  • the RB in which the SeNB is separated may include a DRB and/or an SRB.
  • the UE has independent bearers in the MeNB and the SeNB, and the UE has an independent Packet Data Convergence Protocol (PDCP) entity on each eNB.
  • PDCP Packet Data Convergence Protocol
  • the connection of the UE on the MeNB may have independent bearers.
  • the connection of the UE to the SeNB is to transmit a part of data carried by the same Evolved Packet System (EPS) on the MeNB to the SeNB, and the Packet Data Convergence Protocol (PDCP) entity is still in the MeNB, and there is an independent Radio Link Control (RLC) entity on the SeNB.
  • EPS Evolved Packet System
  • PDCP Packet Data Convergence Protocol
  • RLC Radio Link Control
  • SCG SCG
  • MCG controlled by MeNB
  • PCell primary cell
  • SCell SCell
  • special cells special cells and multiple SCells under the SCG.
  • the special cell is activated after being configured.
  • the SCell can be activated/deactivated and configured/deconfigured.
  • the SCell under the MCG can only be activated/deactivated by the Media Access Control Control Element (MAC CE) of the MeNB.
  • the SCell under the SCG can only be activated/deactivated by the MAC CE of the SeNB.
  • the cells in the MCG and the SCG can only be configured and deconfigured through the Radio Resource Control (RRC) message of the MeNB.
  • RRC Radio Resource Control
  • the UE When a base station activates/deactivates and configures/deconfigures the UE, the UE needs to perform transceiver frequency adjustment, which will cause data transmission and reception interruption of the service frequency. If other base stations have data transmission with the UE, due to interruption. Packet loss occurs at the frequency points managed by other base stations.
  • An embodiment of the present invention provides a method and a device for configuring scheduling, which are used to solve the problem in the prior art that when a base station activates/deactivates a UE and configures/deconfigures a frequency point in a dual connectivity situation, The problem of packet loss occurs at the frequency points managed by other base stations due to the interruption.
  • the first network side device sends the first configuration information to the second network side device that is connected to the user equipment, so that the second network side device determines the frequency of configuring the user equipment according to the first configuration information.
  • the duration of the point, and the user equipment is not scheduled for a determined length of time.
  • the first configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the method further includes:
  • the first network side device determines the configuration frequency according to the receiving capability of the UE, a service frequency interruption occurs, and the second network side device needs to stop scheduling within a service frequency interruption time range.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the second network side device connected to the dual-connected user equipment receives first configuration information from the first network-side device connected to the user equipment, where the first configuration information is that the first network-side device is Determining that it needs to be sent after the configuration frequency command is sent to the dual-connected user equipment;
  • the second network side device determines, according to the first configuration information, a duration of configuring a frequency point of the user equipment, and does not schedule the user equipment within a determined duration.
  • the first configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the method further includes:
  • the second network side device needs to send a configuration frequency point command to the user equipment, and the first configuration information includes an air interface delivery time of the configuration frequency point command, the second network side device is configured according to the configuration frequency. Send the configuration frequency command when the air interface of the command is sent; or
  • the second network side device needs to send a configuration frequency point command to the user equipment, and the first configuration information includes an air interface delivery time interval of the configuration frequency point command, the second network side device according to the configuration The air interface of the frequency command sends the time interval and sends a configuration frequency command.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the user equipment in the dual connection receives the configuration frequency command of the connected first network side device
  • the user equipment sends the second configuration information to the connected second network side device, so that the second network side device determines, according to the second configuration information, a duration of configuring the frequency point of the user equipment, and determines The user equipment is not scheduled within the duration.
  • the second configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the second network side device connected to the dual-connected user equipment receives second configuration information from the user equipment, wherein the second configuration information is that the user equipment receives the first connection with the user equipment
  • the network side device is configured after the frequency command is sent;
  • the second network side device determines, according to the second configuration information, a duration of configuring a frequency point of the user equipment, and does not schedule the user equipment within a determined duration.
  • the second configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • a first network side device configured to be scheduled by the embodiment of the present invention, where the first network side device includes:
  • a determining module configured to determine that a configuration frequency point command needs to be sent to the dual-connected user equipment UE
  • a sending module configured to send the first configuration information to the second network side device that is connected to the user equipment, so that the second network side device determines, according to the first configuration information, that the frequency of the user equipment is configured. The duration, and the user equipment is not scheduled for a determined length of time.
  • the first configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the sending module is further configured to:
  • a service frequency interruption occurs when the configuration frequency is determined according to the receiving capability of the UE, and the second network side device is required to connect to the user equipment after stopping the scheduling within the service frequency interruption time range.
  • the network side device sends the first configuration information.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the second network side device configured to be scheduled by the embodiment of the present invention is connected to the dual-connected user equipment, where the second network-side device includes:
  • a first receiving module configured to receive first configuration information from a first network side device connected to the user equipment, where the first configuration information is that the first network side device determines that a dual connectivity is required After the user equipment sends a configuration frequency command, it is sent;
  • the first processing module is configured to determine, according to the first configuration information, a duration of configuring a frequency point of the user equipment, and not scheduling the user equipment within a determined duration.
  • the first configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the first processing module is further configured to:
  • the second network side device After the second network side device receives the first configuration information from the first network side device connected to the user equipment, if the second network side device needs to send a configuration frequency command to the user equipment,
  • the first configuration information includes an air interface delivery time of the configuration frequency command, and the configuration frequency command is sent according to the air interface delivery time of the configuration frequency command;
  • the second network side device After the second network side device receives the first configuration information from the first network side device connected to the user equipment, if the second network side device needs to send a configuration frequency command to the user equipment,
  • the first configuration information includes an air interface delivery time interval in which the frequency command is configured, and the configuration frequency command is sent according to the air interface delivery time interval of the configuration frequency command.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the user equipment of the configuration is provided in the embodiment of the present invention, where the user equipment is in a dual connection, and the user equipment includes:
  • a second receiving module configured to receive a configuration frequency command of the connected first network side device
  • a sending module configured to send the second configuration information to the connected second network side device, so that the second network side device determines, according to the second configuration information, a duration of configuring a frequency point of the user equipment, and determines The user equipment is not scheduled for the duration of time.
  • the second configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the second network side device configured to be scheduled by the embodiment of the present invention is connected to the dual-connected user equipment, where the second network-side device includes:
  • a third receiving module configured to receive second configuration information from the user equipment, where the second configuration information is that the user equipment receives a configuration frequency of the first network side device connected to the user equipment Sent after the command is sent;
  • a second processing module configured to determine, according to the second configuration information, a duration of configuring a frequency point of the user equipment, and not scheduling the user equipment within a determined duration.
  • the second configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the first network side device of the first embodiment of the present invention determines that the first configuration information needs to be sent to the second network side device connected to the user equipment after the configuration frequency command is sent to the dual-connected user equipment, And causing, by the second network side device, to determine, according to the first configuration information, a duration of configuring a frequency point of the user equipment, and not scheduling the user equipment within a determined duration.
  • the user equipment of the second embodiment of the present invention After receiving the configuration frequency command of the connected first network side device, the user equipment of the second embodiment of the present invention sends the second configuration information to the connected second network side device, so that the second The network side device determines, according to the second configuration information, a duration of configuring a frequency point of the user equipment, and does not schedule the user equipment within a determined duration.
  • the user equipment Since the user equipment is not scheduled within the duration of configuring the frequency of the user equipment, in the case of dual connectivity, when a base station activates/deactivates the UE and configures/deconfigures a frequency point, avoiding The interrupt is generated at the frequency points managed by other base stations; the transmission efficiency and system performance are further improved.
  • 1A is a schematic diagram of a multi-layer network coverage environment in the background art
  • 1B is a schematic diagram of a first type of bearer separation architecture in the background art
  • 1C is a schematic diagram of a second bearer separation architecture in the background art
  • FIG. 2A is a schematic structural diagram of a system for configuring scheduling according to an embodiment of the present invention.
  • 2B is a first schematic diagram of configuring scheduling according to an embodiment of the present invention.
  • 2C is a second schematic diagram of configuring scheduling according to an embodiment of the present invention.
  • FIG. 3 is a schematic structural diagram of a first network side device in a system configured with scheduling according to Embodiment 2 of the present invention
  • FIG. 4 is a schematic structural diagram of a second network side device in a system configured with scheduling according to Embodiment 3 of the present invention
  • FIG. 5 is a schematic structural diagram of a first network side device in a system configured with scheduling according to Embodiment 4 of the present invention
  • FIG. 6 is a schematic structural diagram of a second network side device in a system configured with scheduling according to Embodiment 5 of the present invention.
  • FIG. 7 is a schematic flowchart of a method for configuring scheduling according to Embodiment 6 of the present invention.
  • FIG. 8 is a schematic flowchart of a method for configuring scheduling according to Embodiment 7 of the present invention.
  • FIG. 9A is a schematic structural diagram of a system for configuring scheduling according to Embodiment 8 of the present invention.
  • 9B is a third schematic diagram of configuring scheduling according to an embodiment of the present invention.
  • FIG. 10 is a schematic structural diagram of user equipment in a system configured with scheduling according to Embodiment 9 of the present invention.
  • FIG. 11 is a schematic structural diagram of a second network side device in a system configured with scheduling according to Embodiment 10 of the present invention.
  • FIG. 12 is a schematic structural diagram of user equipment in a system configured with scheduling according to Embodiment 11 of the present invention.
  • FIG. 13 is a schematic structural diagram of a second network side device in a system configured with scheduling according to Embodiment 12 of the present invention.
  • FIG. 15 is a schematic flowchart of a method for configuring scheduling according to Embodiment 14 of the present invention.
  • the first network side device of the first embodiment of the present invention determines that the first configuration information needs to be sent to the second network side device connected to the user equipment after the configuration frequency command is sent to the dual-connected user equipment, And causing, by the second network side device, to determine, according to the first configuration information, a duration of configuring a frequency point of the user equipment, and not scheduling the user equipment within a determined duration.
  • the user equipment of the second embodiment of the present invention After receiving the configuration frequency command of the connected first network side device, the user equipment of the second embodiment of the present invention sends the second configuration information to the connected second network side device, so that the second The network side device determines, according to the second configuration information, a duration of configuring a frequency point of the user equipment, and does not schedule the user equipment within a determined duration.
  • the user equipment Since the user equipment is not scheduled within the duration of configuring the frequency of the user equipment, in the case of dual connectivity, when a base station activates/deactivates the UE and configures/deconfigures a frequency point, avoiding The interrupt is generated at the frequency points managed by other base stations; the transmission efficiency and system performance are further improved.
  • FIG. 2 to FIG. 8 are the first scheme, that is, the notification between the network side devices; and FIG. 9 to FIG. 15 are the second schemes, that is, the user equipment notifies the network side device.
  • FIG. 9 to FIG. 15 are the second schemes, that is, the user equipment notifies the network side device.
  • the system for configuring scheduling according to the first embodiment of the present invention includes: a first network side device 20, a second network side device 21, and a user equipment 22.
  • the first network side device 20 is configured to determine that a configuration frequency point command needs to be sent to the dual-connected user equipment 22, and send the first configuration information to the second network side device that is connected to the user equipment;
  • a second network side device 21 connected to the dual-connected user equipment, configured to receive first configuration information from a first network side device connected to the user equipment, and determine to configure the user according to the first configuration information
  • the duration of the frequency of the device, and the user equipment is not scheduled for a determined length of time.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the first configuration information includes but is not limited to some or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the status of the configuration frequency command includes some or all of the following:
  • the time interval in which the downlink scheduling is not allowed may be a starting time and a period of time, or may be a time interval in which downlink scheduling is not allowed, or other information capable of indicating a time interval.
  • the second network side device does not perform data scheduling on the UE within the time specified by the protocol from the state when the configuration frequency command is received according to different interrupt times generated by different states of the configuration frequency command specified by the protocol.
  • the time interval for the air interface delivery time of the configuration frequency command indicates that the configuration frequency point command is sent in the interval.
  • the second network side device If the second network side device receives the air interface delivery time of the configuration frequency command, the second network side device does not perform data scheduling on the UE within the first time period specified by the protocol, starting from the air interface sending time of the command.
  • the second network side device receives the air interface delivery time interval of the configuration frequency command, the second network device starts from the start time of the air interface delivery time interval of the configuration frequency command, and does not use the UE for the second time period specified by the protocol. Perform data scheduling.
  • the second time period specified by the agreement is not less than the time interval for air interface delivery.
  • the second network side device If the second network side device receives the status of the configuration frequency command, the second network side device does not perform data scheduling on the UE within the third time period specified by the protocol from the time when the configuration frequency command is received.
  • the second network side device receives the time interval in which the downlink frequency scheduling is not allowed, and the time interval in which the downlink scheduling is not allowed includes the time when the actual UE performs the radio frequency (RF) adjustment, the second network The side device does not perform data scheduling on the UE within a time interval in which downlink scheduling is not allowed.
  • RF radio frequency
  • the second network side device receives the time interval in which the downlink scheduling is not allowed, and the time interval in which the downlink scheduling is not allowed is only the time required for the UE to process the command itself, and does not include the time for the actual UE to perform the RF adjustment, The second network side device does not perform data scheduling on the UE in the time interval in which the downlink scheduling is not allowed, and after the time interval in which the downlink scheduling is not allowed, the UE does not perform data scheduling in the third duration specified by the protocol.
  • the first network side device determines the configuration frequency point according to the receiving capability of the UE, the service frequency interruption occurs, and when the second network side device stops the scheduling within the service frequency interruption time range, the first network side device goes to the first The second network side device sends the first configuration information.
  • the UE's receiving capabilities include, but are not limited to, some or all of the following capabilities:
  • the UE Whether it is necessary to generate an interruption of the service frequency when adjusting the frequency according to the configuration frequency command, for example, the UE knows at which frequency points it generates an interruption according to its own RF capability;
  • the UE knows at which frequency points the UE generates an interrupt according to its own RF capability, and determines whether the network needs to stop scheduling according to the length of the interruption time.
  • the second network side device receives the air interface delivery time of the configuration frequency command, and the second network side device needs to send the configuration frequency command to the user equipment, the second network side device is configured according to the configuration. Sending a configuration frequency command when the air interface of the frequency command is sent;
  • the second network side device receives the air interface delivery time interval of the configuration frequency command, and the second network side device needs to send the configuration frequency command to the user equipment, the second network side device is configured according to the Configure the air interface delivery time interval for the frequency command and send the configuration frequency command.
  • Example 1 The network side MeNB notifies the activation/deactivation command.
  • Step 1 Before the MeNB sends an activation/deactivation command to the UE, the status of the activation/deactivation command is sent to the SeNB through the inter-base station interface (such as whether an SCell is activated or deactivated) and the air interface delivery time (or time interval). .
  • Step 2 After the SeNB receives the information sent by the MeNB in step 1, if the SeNB receives the status of the activation/deactivation command and the air interface delivery time (or time interval), the SeNB is under the air interface of the command.
  • the start of the transmission time (or the start time of the air interface delivery time interval of the command) does not perform data scheduling for the UE within the time specified by the protocol.
  • the time interval for stopping the scheduling is the time interval between "ti" and "tj" shown in Fig. 2B.
  • Step 3 The MeNB sends an activation/deactivation command to the UE (the cell status adjustment command shown in FIG. 2B), and does not perform data scheduling on the UE within the time specified by the protocol from the time when the command is sent.
  • the time interval for stopping the scheduling is the time interval between "ti" and "tj" shown in Fig. 2B.
  • Step 4 After receiving the activation/deactivation command of step 3, the UE performs an activation/deactivation operation on the corresponding cell, and adjusts the transceiver at the same time.
  • the time interval in which the UE processes the command is the time interval between "ti" and "tj" shown in FIG. 2B.
  • the UE Before step 1, the UE can also report its transceiver capability
  • the MeNB may determine whether to send the first configuration information to the SeNB according to the capability of the UE.
  • the SeNB sends an activation/deactivation command to the UE
  • the first configuration information transmitted between the base stations may be sent from the SeNB to the MeNB, and the MeNB does not schedule the user equipment within the determined duration according to the first configuration information of the SeNB.
  • Example 2 The network side MeNB notifies the configuration/deconfiguration command.
  • Step 1 Before the MeNB sends the configuration/de-configuration command to the UE, the status of the configuration/de-configuration command (such as whether an SCell is activated or deactivated) and the air interface delivery time (or time interval) are sent to the SeNB through the inter-base station interface.
  • the status of the configuration/de-configuration command such as whether an SCell is activated or deactivated
  • the air interface delivery time or time interval
  • Step 2 After the SeNB receives the information sent by the MeNB in step 1, if the SeNB receives the status of the configuration/de-configuration command and the air interface delivery time (or time interval), the SeNB is under the air interface of the command.
  • the start of the transmission time (or the start time of the air interface delivery time interval of the command) does not perform data scheduling for the UE within the time specified by the protocol.
  • the time interval for stopping the scheduling is the time interval between "ti" and "tj" shown in Fig. 2B.
  • Step 3 The MeNB sends a configuration/de-configuration command to the UE (the cell status adjustment command shown in FIG. 2B), and does not perform data scheduling on the UE within the time specified by the protocol from the time when the command is sent.
  • the time interval for stopping the scheduling is the time interval between "ti" and "tj" shown in Fig. 2B.
  • Step 4 After receiving the configuration/de-configuration command of step 3, the UE performs configuration/de-configuration operation on the corresponding cell, and adjusts the transceiver at the same time.
  • the time interval in which the UE processes the command is the time interval between "ti" and "tj" shown in FIG. 2B.
  • the UE Before step 1, the UE can also report its transceiver capability
  • the MeNB may determine whether to send the first configuration information to the SeNB according to the capability of the UE.
  • the SeNB sends a configuration/de-configuration command to the UE
  • the first configuration information transmitted between the base stations may be sent from the SeNB to the MeNB, and the MeNB does not schedule the user equipment within the determined duration according to the first configuration information of the SeNB.
  • Example 3 The network side SeNB notifies the configuration/deconfiguration command.
  • Step 1 When the SeNB needs to configure/deconfigure a cell, the SeNB sends a configuration/de-configuration command to the MeNB (such as whether an SCell is configured or configured) and an air interface delivery time (or time interval). Or a time interval in which the UE actually performs the configuration/deconfiguration command that does not allow downlink scheduling.
  • the first configuration information is "cell state adjustment information" as shown in FIG. 2C.
  • the SeNB sends the status of the configuration/de-configuration command and the air interface delivery time (or time interval)
  • the SeNB starts from the time when the command is sent (or the start time of the commanded delivery time interval).
  • the data is not scheduled for the UE within the time specified by the protocol.
  • the SeNB sends the status of the actual configuration/de-configuration of the UE and the start and completion time, and does not include the time for the actual UE to perform RF adjustment, the SeNB does not allow the configuration/de-configuration command according to the actual execution of the UE.
  • the data scheduling is not performed on the UE in the time interval of the downlink scheduling, and after the time interval in which the downlink scheduling is not allowed, the data scheduling is not performed on the UE within the duration specified by the protocol.
  • the time interval for stopping the scheduling is the time interval between "ti" and "tj" shown in Fig. 2C.
  • Step 2 After the MeNB receives the information sent by the SeNB in step 1, if the MeNB receives the status of the configuration/de-configuration command and the air interface delivery time (or time interval), the MeNB sends the command from the command.
  • the time (or any time in the delivery time interval of the command) is sent to the UE by the configuration/deconfiguration command from the SeNB, and the data scheduling is not performed on the UE within the time specified by the protocol from the time of transmitting the command.
  • the MeNB receives the status of the actual configuration/de-configuration of the UE and the start and completion time, and does not include the time for the actual UE to perform RF adjustment, the MeNB does not actually perform the configuration/de-configuration command according to the UE.
  • the UE is not scheduled for data scheduling in the time interval of the downlink scheduling, and after the time interval in which the downlink scheduling is not allowed, the UE is not scheduled for data within the duration specified by the protocol.
  • the time interval for stopping the scheduling is the time interval between "ti" and "tj" shown in Fig. 2C.
  • Step 3 After receiving the configuration/de-configuration command of step 2, the UE performs configuration/de-configuration operation on the corresponding cell. Adjust the transceiver at the same time.
  • the time interval in which the UE processes the command is the time interval between "ti" and "tj" in Fig. 2C.
  • the UE Before step 1, the UE can also report its transceiver capability
  • the SeNB may determine, according to the capability of the UE, whether to send the first configuration information to the MeNB.
  • the first network side device in the system for configuring scheduling according to the second embodiment of the present invention includes: a determining module 300 and a sending module 310.
  • a determining module 300 configured to determine that a configuration frequency point command needs to be sent to a dual-connected user equipment
  • the sending module 310 is configured to send the first configuration information to the second network side device that is connected to the user equipment, so that the second network side device determines the frequency of configuring the user equipment according to the first configuration information.
  • the duration of time, and the user equipment is not scheduled for a determined length of time.
  • the first configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the sending module 310 is further configured to:
  • a service frequency interruption occurs when the configuration frequency is determined according to the receiving capability of the UE, and the second network side device is required to stop scheduling after the service frequency interruption time range, and then to the second network side connected to the user equipment.
  • the device sends the first configuration information.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the second network side device is configured to be connected to the dual-connected user equipment, and the second network-side device includes: the first receiving module. 400 and first processing module 410.
  • the first receiving module 400 is configured to receive first configuration information from a first network side device connected to the user equipment, where the first configuration information is that the first network side device determines that the After the connected user equipment sends a configuration frequency command, it is sent;
  • the first processing module 410 is configured to determine, according to the first configuration information, a duration of configuring a frequency point of the user equipment, and not scheduling the user equipment within a determined duration.
  • the first configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the first processing module 410 is further configured to:
  • the second network side device After the second network side device receives the first configuration information from the first network side device connected to the user equipment, if the second network side device needs to send a configuration frequency command to the user equipment,
  • the first configuration information includes an air interface delivery time of the configuration frequency command, and the configuration frequency command is sent according to the air interface delivery time of the configuration frequency command;
  • the second network side device After the second network side device receives the first configuration information from the first network side device connected to the user equipment, if the second network side device needs to send a configuration frequency command to the user equipment,
  • the first configuration information includes an air interface delivery time interval in which the frequency command is configured, and the configuration frequency command is sent according to the air interface delivery time interval of the configuration frequency command.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the first network side device in the system configured by the fourth embodiment of the present invention includes a processor 500 and a transceiver 510, and optionally, a memory 520, as follows:
  • the processor 500 is configured to determine that a configuration frequency command is required to be sent to the dual-connected user equipment, and send, by the transceiver 510, the first configuration information to the second network side device that is connected to the user equipment, so that the first The network side device determines, according to the first configuration information, a duration of configuring a frequency point of the user equipment, and does not schedule the user equipment within a determined duration;
  • the transceiver 510 is configured to receive and transmit data under the control of the processor 500.
  • the first configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the processor 500 is further configured to:
  • a service frequency interruption occurs when the configuration frequency is determined according to the receiving capability of the UE, and the second network side device is required to stop scheduling after the service frequency interruption time range, and then to the second network side connected to the user equipment.
  • the device sends the first configuration information.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the bus architecture can include any number of interconnected buses and bridges, specifically linked by one or more processors represented by processor 500 and various circuits of memory represented by memory 520.
  • the bus architecture also links various other circuits such as peripherals, voltage regulators, and power management circuits. It is well known in the art and, therefore, will not be further described herein.
  • the bus interface provides an interface.
  • Transceiver 510 can be a plurality of components, including a transmitter and a transceiver, providing means for communicating with various other devices on a transmission medium.
  • the processor 500 is responsible for managing the bus architecture and general processing, and the memory 520 can store data used by the processor 500 when performing operations.
  • the processor 500 is responsible for managing the bus architecture and general processing, and the memory 520 can store data used by the processor 500 when performing operations.
  • the second network side device in the system configured by the fifth embodiment of the present invention is connected to the dual-connected user equipment, and the second network-side device includes the processor 600 and the transceiver.
  • the machine 610 optionally further includes a memory 620, as follows:
  • the processor 600 is configured to receive, by the transceiver 610, first configuration information from a first network side device connected to the user equipment, where the first configuration information is that the first network side device determines After the sending configuration frequency command of the dual-connected user equipment is sent, determining the duration of the frequency of configuring the user equipment according to the first configuration information, and not scheduling the user equipment within the determined duration;
  • the transceiver 610 is configured to receive and transmit data under the control of the processor 600.
  • the first configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the processor 600 is further configured to:
  • the second network side device After the second network side device receives the first configuration information from the first network side device connected to the user equipment, if the second network side device needs to send a configuration frequency command to the user equipment,
  • the first configuration information includes an air interface delivery time of the configuration frequency command, and the configuration frequency command is sent according to the air interface delivery time of the configuration frequency command;
  • the second network side device After the second network side device receives the first configuration information from the first network side device connected to the user equipment, if the second network side device needs to send a configuration frequency command to the user equipment,
  • the first configuration information includes an air interface delivery time interval in which the frequency command is configured, and the configuration frequency command is sent according to the air interface delivery time interval of the configuration frequency command.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the bus architecture can include any number of interconnected buses and bridges, specifically linked by one or more processors represented by processor 600 and various circuits of memory represented by memory 620.
  • the bus architecture also links various other circuits such as peripherals, voltage regulators, and power management circuits. It is well known in the art and, therefore, will not be further described herein.
  • the bus interface provides an interface.
  • Transceiver 610 can be a plurality of components, including a transmitter and a transceiver, providing means for communicating with various other devices on a transmission medium.
  • the processor 600 is responsible for managing the bus architecture and general processing, and the memory 620 can store data used by the processor 600 in performing operations.
  • the processor 600 is responsible for managing the bus architecture and general processing, and the memory 620 can store data used by the processor 600 in performing operations.
  • the method for configuring the scheduling is also provided in the embodiment of the present invention.
  • the device corresponding to the method in the embodiment of the present invention is the device in the configuration scheduling system of the embodiment of the present invention in FIG. 2A, and the method and system for solving the problem. Similar, so the implementation of the method can refer to the implementation of the system, and the repetition will not be repeated.
  • the method for configuring scheduling according to Embodiment 6 of the present invention includes:
  • Step 700 The first network side device determines that a configuration frequency command needs to be sent to the dual-connected user equipment.
  • Step 701 The first network side device sends the first configuration information to the second network side device that is connected to the user equipment, so that the second network side device determines to configure the user according to the first configuration information.
  • the duration of the frequency of the device, and the user equipment is not scheduled for a determined length of time.
  • the first configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the method further includes:
  • the first network side device determines the configured frequency point according to the receiving capability of the UE, a service frequency interruption occurs, and the second network side device needs to stop scheduling within a service frequency interruption time range.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the method for configuring scheduling according to Embodiment 7 of the present invention includes:
  • Step 800 The second network side device connected to the dual-connected user equipment receives first configuration information from a first network side device connected to the user equipment, where the first configuration information is the first network
  • the side device sends after determining that it needs to send a configuration frequency command to the dual-connected user equipment;
  • Step 801 The second network side device determines, according to the first configuration information, a duration of configuring a frequency point of the user equipment, and does not schedule the user equipment within a determined duration.
  • the first configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the method further includes:
  • the second network side device needs to send a configuration frequency point command to the user equipment, and the first configuration information includes an air interface delivery time of the configuration frequency point command; the second network side device according to the configuration frequency Send the configuration frequency command when the air interface of the command is sent; or
  • the second network side device needs to send a configuration frequency point command to the user equipment, and the first configuration information includes an air interface delivery time interval of the configuration frequency point command, the second network side device according to the configuration The air interface of the frequency command sends the time interval and sends a configuration frequency command.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the system for configuring scheduling according to Embodiment 8 of the present invention includes: a user equipment 90, a first network side device 91, and a second network side device 92.
  • the dual-connected user equipment 90 is configured to receive the configuration frequency command of the connected first network side device 91; and send the second configuration information to the connected second network side device 92;
  • a second network side device 92 connected to the dual-connected user equipment, configured to receive second configuration information from the user equipment 90, and determine, according to the second configuration information, a duration of configuring a frequency point of the user equipment, The user equipment 90 is not scheduled for a determined length of time.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the second configuration information includes but is not limited to some or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the status of the configuration frequency command includes some or all of the following:
  • the second network side device does not perform data scheduling on the UE within the time specified by the protocol from the state when the configuration frequency command is received according to different interrupt times generated by different states of the configuration frequency command specified by the protocol.
  • the second network side device If the second network side device receives the time interval in which the downlink scheduling is not allowed, and the time interval in which the downlink scheduling is not allowed includes the time for the actual UE to perform the RF adjustment, the second network side device does not allow the downlink scheduling. The UE is not scheduled for data within the time interval.
  • the second network side device receives the time interval in which the downlink scheduling is not allowed, and the time interval in which the downlink scheduling is not allowed is only the time required for the UE to process the command itself, and does not include the time for the actual UE to perform the RF adjustment, The second network side device does not perform data scheduling on the UE in the time interval in which the downlink scheduling is not allowed, and after the time interval in which the downlink scheduling is not allowed, the UE does not perform data scheduling in the third duration specified by the protocol.
  • Example 1 The UE notifies the activation/deactivation command.
  • Step 1 The MeNB sends an activation/deactivation command to the UE through the air interface (the “cell state adjustment command” shown in FIG. 9B), and the MeNB does not perform data scheduling on the UE within the time specified by the protocol from the time when the command is sent. .
  • the time for the MeNB to stop scheduling transmission may be from the time when the UE actually performs the transceiver adjustment to the time when the transceiver adjustment is completed, and the UE actually performs the adjustment of the transceiver.
  • Step 2 According to step 1, after receiving the activation/deactivation command of the MeNB, the UE notifies the SeNB of the state of the activation/deactivation command by air interface signaling; or the actual execution of the activation/deactivation command by the UE is not allowed.
  • the auxiliary information transmitted by the UE is "cell state adjustment information" shown in FIG. 9B.
  • the time interval in which the UE processes the command is the time interval between "ti" and "tj" shown in FIG. 9B.
  • Step 3 According to step 2, after the SeNB receives the auxiliary information from the UE, if the SeNB receives the "state of the activation/deactivation command", the SeNB starts the protocol specified at the time of issuance of the command. The data is not scheduled for the UE within the time.
  • the SeNB receives the time interval in which the UE does not perform the downlink scheduling for the activation/deactivation command, and does not include the time for the actual UE to perform the RF adjustment, the SeNB actually performs the configuration/de-configuration according to the UE.
  • the UE does not perform data scheduling on the UE in the time interval in which the downlink scheduling is not allowed, and does not perform data scheduling on the UE within the time period specified by the protocol after the time interval in which the downlink scheduling is not allowed.
  • the time interval for stopping the scheduling is the time interval between "ti" and "tj" shown in Fig. 9B.
  • the second configuration information may be sent from the UE to the MeNB, and the MeNB does not schedule the user equipment for a determined duration according to the second configuration information.
  • Example 2 The UE notifies the configuration/deconfiguration command.
  • Step 1 The MeNB sends a configuration/de-configuration command to the UE through the air interface (the “cell state adjustment command” shown in FIG. 9B), and the MeNB does not perform data scheduling on the UE within the time specified by the protocol from the time when the command is sent. .
  • the time for the MeNB to stop scheduling transmission may be from the time when the UE actually performs the transceiver adjustment to the time when the transceiver adjustment is completed, and the UE actually performs the adjustment of the transceiver.
  • the time may be the one specified by the protocol at the time of receiving the command (t shown in FIG. 9B).
  • Step 2 According to step 1, after receiving the configuration/de-configuration command of the MeNB, the UE notifies the SeNB through air interface signaling, the state of the configuration/de-configuration command, or the actual execution of the configuration/de-configuration command by the UE.
  • the auxiliary information transmitted by the UE is "cell state adjustment information" shown in FIG. 9B.
  • the time interval in which the UE processes the command is the time interval between "ti" and "tj" shown in FIG. 9B.
  • Step 3 According to step 2, the SeNB after receiving the auxiliary information from the UE. If the SeNB receives the "state of the configuration/de-configuration command", the SeNB does not perform data scheduling for the UE within the time specified by the protocol from the time of issuance of the command.
  • the SeNB receives the time interval in which the UE does not perform the downlink scheduling of the configuration/de-configuration command, and does not include the time for the actual UE to perform the RF adjustment, the SeNB actually performs the configuration/de-configuration according to the UE.
  • the UE does not perform data scheduling on the UE in the time interval in which the downlink scheduling is not allowed, and does not perform data scheduling on the UE within the time period specified by the protocol after the time interval in which the downlink scheduling is not allowed.
  • the time interval for stopping the scheduling is the time interval between "ti" and "tj" shown in Fig. 9B.
  • the second configuration information may be sent from the UE to the MeNB, and the MeNB does not schedule the user equipment for a determined duration according to the second configuration information.
  • the user equipment in the system is configured, and the user equipment is in a dual connection, and includes: a second receiving module 1000 and a sending module 1010.
  • the second receiving module 1000 is configured to receive a configuration frequency command of the connected first network side device
  • the sending module 1010 is configured to send the second configuration information to the connected second network side device, so that the second network side device determines, according to the second configuration information, a duration of configuring a frequency point of the user equipment, and The user equipment is not scheduled within a determined length of time.
  • the second configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the second network side device in the system configured by the tenth embodiment of the present invention is connected to the dual-connected user equipment, and the second network-side device includes:
  • a third receiving module 1100 configured to receive second configuration information from the user equipment, where the second configuration information is configured by the user equipment to receive a first network side device connected to the user equipment Sent after the frequency command;
  • the second processing module 1110 is configured to determine, according to the second configuration information, a duration of configuring a frequency point of the user equipment, and not scheduling the user equipment within a determined duration.
  • the second configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the user equipment in the system is configured, and the user equipment is in a dual connection, and includes a processor 1200 and a transceiver 1210, optionally including a memory 1220, as follows:
  • the processor 1200 is configured to receive, by the transceiver 1210, a configuration frequency command of the connected first network side device, and send the second configuration information to the connected second network side device, so that the second network side device according to the The second configuration information determines a duration of configuring a frequency point of the user equipment, and does not schedule the user equipment within a determined duration;
  • the transceiver 1210 is configured to receive and transmit data under the control of the processor 1200.
  • the second configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the bus architecture can include any number of interconnected buses and bridges, specifically linked by one or more processors represented by processor 1200 and various circuits of memory represented by memory 1220.
  • the bus architecture can also link various other circuits such as peripherals, voltage regulators, and power management circuits, which are well known in the art and, therefore, will not be further described herein.
  • the bus interface provides an interface.
  • the transceiver 1210 can be a plurality of components, including a transmitter and a transceiver, providing means for communicating with various other devices on a transmission medium.
  • the user interface 1230 may also be an interface capable of externally connecting the required devices, including but not limited to a keypad, a display, a speaker, a microphone, a joystick, and the like.
  • the processor 1200 is responsible for managing the bus architecture and general processing, and the memory 1220 can store data used by the processor 1200 in performing operations.
  • the second network side device in the system configured to be scheduled by the embodiment of the present invention is connected to the dual-connected user equipment, where the second network-side device includes the processor 1300 and The transceiver 1310, optionally further including a memory 1320, is as follows:
  • the processor 1300 is configured to receive, by the transceiver 1310, second configuration information from the user equipment, where the second configuration information is that the user equipment receives the first network side device that is connected to the user equipment. After the frequency command is configured, the frequency of configuring the frequency of the user equipment is determined according to the second configuration information, and is determined The user equipment is not scheduled within a predetermined period of time;
  • the transceiver 1310 is configured to receive and transmit data under the control of the processor 1300.
  • the second configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the bus architecture may include any number of interconnected buses and bridges, specifically linked by one or more processors represented by processor 1300 and various circuits of memory represented by memory 1320.
  • the bus architecture can also link various other circuits such as peripherals, voltage regulators, and power management circuits, which are well known in the art and, therefore, will not be further described herein.
  • the bus interface provides an interface.
  • Transceiver 1310 can be a plurality of components, including a transmitter and a transceiver, providing means for communicating with various other devices on a transmission medium.
  • the processor 1300 is responsible for managing the bus architecture and general processing, and the memory 1320 can store data used by the processor 1300 in performing operations.
  • the processor 1300 is responsible for managing the bus architecture and general processing, and the memory 1320 can store data used by the processor 1300 in performing operations.
  • the solution 1 or the solution 2 may be selected according to the requirements for different scenarios, and the SeNB and the MeNB may be the first network side device or the second network side device for different scenarios, so FIG. 3 and FIG. 4
  • the modules of FIG. 11 can be combined in one device, and the modules of FIG. 5, FIG. 6, and FIG. 13 can be combined in one device, and the corresponding modules are selected and used as needed.
  • the method for configuring the scheduling is also provided in the embodiment of the present invention.
  • the device corresponding to the method in the embodiment of the present invention is the device in the configuration scheduling system of the embodiment of the present invention in FIG. 9A, and the method and system for solving the problem. Similar, so the implementation of the method can refer to the implementation of the system, and the repetition will not be repeated.
  • the method for configuring scheduling according to Embodiment 13 of the present invention includes:
  • Step 1400 The user equipment in the dual connection receives the configuration frequency command of the connected first network side device.
  • Step 1410 The user equipment sends the second configuration information to the connected second network side device, so that the second network side device determines, according to the second configuration information, a duration of configuring a frequency point of the user equipment, and The user equipment is not scheduled for a determined length of time.
  • the second configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the method for configuring scheduling in the fourteenth embodiment of the present invention includes:
  • Step 1500 The second network side device connected to the dual-connected user equipment receives second configuration information from the user equipment, where the second configuration information is that the user equipment receives the connection with the user equipment. After the configuration of the first network side device is configured, the frequency command is sent;
  • Step 1510 The second network side device determines, according to the second configuration information, a duration of configuring a frequency point of the user equipment, and does not schedule the user equipment within a determined duration.
  • the second configuration information comprises part or all of the following:
  • the time interval for downstream scheduling is not allowed.
  • the second network side device is an SeNB
  • the second network side device is an MeNB.
  • the first network side device of the first embodiment of the present invention determines that the second network side device that is connected to the user equipment needs to be sent to the dual-connected user equipment after the configuration frequency command is sent.
  • the first configuration information is sent, so that the second network side device determines, according to the first configuration information, a duration of configuring a frequency point of the user equipment, and does not schedule the user equipment within a determined duration.
  • the user equipment of the second embodiment of the present invention After receiving the configuration frequency command of the connected first network side device, the user equipment of the second embodiment of the present invention sends the second configuration information to the connected second network side device, so that the second The network side device determines, according to the second configuration information, a duration of configuring a frequency point of the user equipment, and does not schedule the user equipment within a determined duration.
  • the user equipment Since the user equipment is not scheduled within the duration of configuring the frequency of the user equipment, in the case of dual connectivity, when a base station activates/deactivates the UE and configures/deconfigures a frequency point, avoiding The interrupt is generated at the frequency points managed by other base stations; the transmission efficiency and system performance are further improved.
  • embodiments of the present invention can be provided as a method, or a computer program product. Accordingly, the present invention may take the form of an entirely hardware embodiment, an entirely software embodiment, or a combination of software and hardware. Moreover, the invention can take the form of a computer program product embodied on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) including computer usable program code.
  • a computer program product embodied on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) including computer usable program code.
  • the computer program instructions can also be stored in a computer readable memory that can direct a computer or other programmable data processing device to operate in a particular manner, such that the instructions stored in the computer readable memory produce an article of manufacture comprising the instruction device.
  • the apparatus implements the functions specified in one or more blocks of a flow or a flow and/or block diagram of the flowchart.
  • These computer program instructions can also be loaded onto a computer or other programmable data processing device such that a series of operational steps are performed on a computer or other programmable device to produce computer-implemented processing for execution on a computer or other programmable device.
  • the instructions provide steps for implementing the functions specified in one or more of the flow or in a block or blocks of a flow diagram.

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Abstract

本申请实施例涉及无线通信技术领域,特别涉及一种配置调度的方法及设备,用以解决现有技术中存在的在双连接情况下,当一个基站对UE进行激活/去激活以及配置/去配置一个频点的时候,由于产生中断在其他基站管理的频点上会出现丢包情况的问题。本申请实施例在配置所述用户设备的频点的时长内不调度所述用户设备,从而在双连接情况下,当一个基站对UE进行激活/去激活以及配置/去配置一个频点的时候,避免由于产生中断在其他基站管理的频点上出现丢包情况;进一步提高了传输效率和系统性能。

Description

一种配置调度的方法及设备
本申请要求在2014年05月07日提交中国专利局、申请号为201410191262.0、发明名称为“一种配置调度的方法及设备”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及无线通信技术领域,特别涉及一种配置调度的方法及设备。
背景技术
随着越来越多的家庭基站、微小区、中继等众多本地节点的部署,传统的以宏基站为主的网络架构将逐步演变为更多类型基站共存的网络架构,并提供更多层次的网络覆盖。为了改善多类型基站共存网络架构下的相关性能,一种通过非理想链路实现多基站间协作/聚合的网络架构被提出。
在该架构下,用户设备(User Equipment,UE)的一部分无线承载(Radio Bearer,RB)在主基站(Master eNB,MeNB)管理的主小区组(Master Cell Group,MCG)上,这部分RB包括控制面信令无线承载(Signaling Radio Bearer,SRB)和用户面数据无线承载(Data Radio Bearer,DRB)。而同一UE的另外一部分承载(包括SRB和DRB)在二级基站(Secondary eNB,SeNB)管理的二级小区组(Secondary Cell Group,SCG)上。
图1A所示为一种可能的多层网络覆盖环境,在该场景下,UE的多个RB可以分别通过MeNB控制的主小区组和SeNB控制的二级小区组分别承载。其中分离到SeNB的RB可以包括DRB和/或SRB。
目前的承载分离架构有两种:
架构1(如图1B所示):
UE在MeNB和SeNB有独立的承载,UE在每个eNB上都有独立的分组数据汇聚协议(Packet Data Convergence Protocol,PDCP)实体。
架构2(如图1C所示):
UE在MeNB上的连接可以有独立的承载。UE在SeNB的连接是将MeNB上的同一个演进分组系统(Evolved Packet System,EPS)承载的一部分数据分流到SeNB上传输,该EPS承载分组数据聚合协议(Packet Data Convergence Protocol,PDCP)实体仍然在MeNB,而SeNB上是有独立的无线链路控制(Radio Link Control,RLC)实体。
双连接下会有SCG(受控于SeNB)和MCG(受控于MeNB)两个小区组。MCG下有主小区(Primary Cell,PCell)和多个SCell,PCell在配置后一直处于激活状态,SCell可以被激活/去激活以及配置/去配置。SCG下有特殊小区(special cell)和多个SCell,special cell在配置后一直处于激活状态,SCell可以被激活/去激活以及配置/去配置。
MCG下的SCell只能被MeNB的媒体接入控制控制元(Medium Access Control Control Element,MAC CE)激活/去激活,SCG下的SCell只能被SeNB的MAC CE激活/去激活。MCG和SCG下的小区只能通过MeNB的无线资源控制(Radio Resource Control,RRC)消息进行配置和去配置。
当一个基站对UE进行激活/去激活以及配置/去配置的时候,UE需要进行收发机频点调整,这样会产生服务频点的数据收发中断,如果其他基站与UE有数据传输,由于产生中断在其他基站管理的频点上会出现丢包。
综上所述,目前在双连接情况下,当一个基站对UE进行激活/去激活以及配置/去配置一个频点的时候,由于产生中断在其他基站管理的频点上会出现丢包情况。
发明内容
本发明实施例提供一种配置调度的方法及设备,用以解决现有技术中存在的在双连接情况下,当一个基站对UE进行激活/去激活以及配置/去配置一个频点的时候,由于产生中断在其他基站管理的频点上会出现丢包情况的问题。
本发明实施例提供的一种配置调度的方法,该方法包括:
第一网络侧设备确定需要向处于双连接的用户设备UE的发送配置频点命令;
所述第一网络侧设备向与所述用户设备连接的第二网络侧设备发送第一配置信息,以使所述第二网络侧设备根据所述第一配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
较佳地,所述第一配置信息包括下列中的部分或全部:
配置频点命令的状态;
配置频点命令的空口下发时刻;
配置频点命令的空口下发时间区间;
不允许下行调度的时间区间。
较佳地,所述第一网络侧设备向与所述用户设备连接的第二网络侧设备发送第一配置信息之前,还包括:
所述第一网络侧设备根据所述UE的接收能力确定配置频点时会产生服务频点中断,且需要所述第二网络侧设备在服务频点中断时间范围内停止调度。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
本发明实施例提供的一种配置调度的方法,包括:
与双连接的用户设备连接的第二网络侧设备接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息,其中所述第一配置信息是所述第一网络侧设备在确定需要向处于双连接的用户设备的发送配置频点命令后发送的;
所述第二网络侧设备根据所述第一配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
较佳地,所述第一配置信息包括下列中的部分或全部:
配置频点命令的状态;
配置频点命令的空口下发时刻;
配置频点命令的空口下发时间区间;
不允许下行调度的时间区间。
较佳地,所述第二网络侧设备接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息之后,还包括:
若所述第二网络侧设备需要向所述用户设备发送配置频点命令,且所述第一配置信息包括配置频点命令的空口下发时刻,所述第二网络侧设备根据所述配置频点命令的空口下发时刻,发送配置频点命令;或者
若所述第二网络侧设备需要向所述用户设备发送配置频点命令,且所述第一配置信息包括配置频点命令的空口下发时间区间,所述第二网络侧设备根据所述配置频点命令的空口下发时间区间,发送配置频点命令。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
本发明实施例提供的一种配置调度的方法,包括:
处于双连接的用户设备接收到连接的第一网络侧设备的配置频点命令;
所述用户设备向连接的第二网络侧设备发送第二配置信息,以使所述第二网络侧设备根据所述第二配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
较佳地,所述第二配置信息包括下列中的部分或全部:
配置频点命令的状态;
不允许下行调度的时间区间。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
本发明实施例提供的一种配置调度的方法,包括:
与双连接的用户设备连接的第二网络侧设备接收到来自所述用户设备的第二配置信息,其中所述第二配置信息是所述用户设备在收到与所述用户设备连接的第一网络侧设备的配置频点命令后发送的;
所述第二网络侧设备根据所述第二配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
较佳地,所述第二配置信息包括下列中的部分或全部:
配置频点命令的状态;
不允许下行调度的时间区间。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
本发明实施例提供的一种配置调度的第一网络侧设备,该第一网络侧设备包括:
确定模块,用于确定需要向处于双连接的用户设备UE的发送配置频点命令;
发送模块,用于向与所述用户设备连接的第二网络侧设备发送第一配置信息,以使所述第二网络侧设备根据所述第一配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
较佳地,所述第一配置信息包括下列中的部分或全部:
配置频点命令的状态;
配置频点命令的空口下发时刻;
配置频点命令的空口下发时间区间;
不允许下行调度的时间区间。
较佳地,所述发送模块还用于:
根据所述UE的接收能力确定配置频点时会产生服务频点中断,且需要所述第二网络侧设备在服务频点中断时间范围内停止调度后,向与所述用户设备连接的第二网络侧设备发送第一配置信息。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
本发明实施例提供的一种配置调度的第二网络侧设备,所述第二网络侧设备与双连接的用户设备连接,该第二网络侧设备包括:
第一接收模块,用于接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息,其中所述第一配置信息是所述第一网络侧设备在确定需要向处于双连接的用户设备的发送配置频点命令后发送的;
第一处理模块,用于根据所述第一配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
较佳地,所述第一配置信息包括下列中的部分或全部:
配置频点命令的状态;
配置频点命令的空口下发时刻;
配置频点命令的空口下发时间区间;
不允许下行调度的时间区间。
较佳地,所述第一处理模块还用于:
所述第二网络侧设备接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息之后,若所述第二网络侧设备需要向所述用户设备发送配置频点命令,且所述第一配置信息包括配置频点命令的空口下发时刻,根据所述配置频点命令的空口下发时刻,发送配置频点命令;或者
所述第二网络侧设备接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息之后,若所述第二网络侧设备需要向所述用户设备发送配置频点命令,且所述第一配置信息包括配置频点命令的空口下发时间区间,根据所述配置频点命令的空口下发时间区间,发送配置频点命令。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
本发明实施例提供的一种配置调度的用户设备,所述用户设备处于双连接,该用户设备包括:
第二接收模块,用于接收到连接的第一网络侧设备的配置频点命令;
发送模块,用于向连接的第二网络侧设备发送第二配置信息,以使所述第二网络侧设备根据所述第二配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
较佳地,所述第二配置信息包括下列中的部分或全部:
配置频点命令的状态;
不允许下行调度的时间区间。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
本发明实施例提供的一种配置调度的第二网络侧设备,所述第二网络侧设备与双连接的用户设备连接,该第二网络侧设备包括:
第三接收模块,用于接收到来自所述用户设备的第二配置信息,其中所述第二配置信息是所述用户设备在收到与所述用户设备连接的第一网络侧设备的配置频点命令后发送的;
第二处理模块,用于根据所述第二配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
较佳地,所述第二配置信息包括下列中的部分或全部:
配置频点命令的状态;
不允许下行调度的时间区间。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
本发明实施例第一种方案第一网络侧设备确定需要向处于双连接的用户设备的发送配置频点命令后,向与所述用户设备连接的第二网络侧设备发送第一配置信息,以使所述第二网络侧设备根据所述第一配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
本发明实施例第二种方案处于双连接的用户设备接收到连接的第一网络侧设备的配置频点命令后,向连接的第二网络侧设备发送第二配置信息,以使所述第二网络侧设备根据所述第二配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
由于在配置所述用户设备的频点的时长内不调度所述用户设备,从而在双连接情况下,当一个基站对UE进行激活/去激活以及配置/去配置一个频点的时候,避免由于产生中断在其他基站管理的频点上出现丢包情况;进一步提高了传输效率和系统性能。
附图说明
图1A为背景技术中多层网络覆盖环境示意图;
图1B为背景技术中第一种承载分离架构示意图;
图1C为背景技术中第二种承载分离架构示意图;
图2A为本发明实施例一配置调度的系统结构示意图;
图2B为本发明实施例配置调度的示意图一;
图2C为本发明实施例配置调度的示意图二;
图3为本发明实施例二配置调度的系统中第一网络侧设备的结构示意图;
图4为本发明实施例三配置调度的系统中第二网络侧设备的结构示意图;
图5为本发明实施例四配置调度的系统中第一网络侧设备的结构示意图;
图6为本发明实施例五配置调度的系统中第二网络侧设备的结构示意图;
图7为本发明实施例六配置调度的方法流程示意图;
图8为本发明实施例七配置调度的方法流程示意图;
图9A为本发明实施例八配置调度的系统结构示意图;
图9B为本发明实施例配置调度的示意图三;
图10为本发明实施例九配置调度的系统中用户设备的结构示意图;
图11为本发明实施例十配置调度的系统中第二网络侧设备的结构示意图;
图12为本发明实施例十一配置调度的系统中用户设备的结构示意图;
图13为本发明实施例十二配置调度的系统中第二网络侧设备的结构示意图;
图14为本发明实施例十三配置调度的方法流程示意图;
图15为本发明实施例十四配置调度的方法流程示意图。
具体实施方式
本发明实施例第一种方案第一网络侧设备确定需要向处于双连接的用户设备的发送配置频点命令后,向与所述用户设备连接的第二网络侧设备发送第一配置信息,以使所述第二网络侧设备根据所述第一配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
本发明实施例第二种方案处于双连接的用户设备接收到连接的第一网络侧设备的配置频点命令后,向连接的第二网络侧设备发送第二配置信息,以使所述第二网络侧设备根据所述第二配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
由于在配置所述用户设备的频点的时长内不调度所述用户设备,从而在双连接情况下,当一个基站对UE进行激活/去激活以及配置/去配置一个频点的时候,避免由于产生中断在其他基站管理的频点上出现丢包情况;进一步提高了传输效率和系统性能。
其中,本发明实施例的配置频点命令包括但不限于下列命令中的一种:
激活命令、去激活命令、配置命令和去配置命令。
本发明实施例提供了两种方案,其中图2~图8为第一种方案,即网络侧设备之间通知;图9~图15为第二种方案,即用户设备通知网络侧设备。这两种方案在实施中可以共存,根据需要选择执行哪种方案。
下面分别进行介绍。
方案一:
如图2A所示,本发明实施例一配置调度的系统包括:第一网络侧设备20、第二网络侧设备21和用户设备22。
第一网络侧设备20,用于确定需要向处于双连接的用户设备22的发送配置频点命令,向与所述用户设备连接的第二网络侧设备发送第一配置信息;
与双连接的用户设备连接的第二网络侧设备21,用于接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息,根据所述第一配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
其中,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
在实施中,所述第一配置信息包括但不限于下列中的部分或全部:
配置频点命令的状态;
配置频点命令的空口下发时刻;
配置频点命令的空口下发时间区间;
不允许下行调度的时间区间。
其中,配置频点命令的状态包括下列中的部分或全部:
激活频点、去激活频点、配置频点和去配置频点。
不允许下行调度的时间区间可以是开始时刻以及一段时长,还可以是不允许下行调度的时间区间,或者其他能够表示时间区间的信息。
第二网络侧设备根据协议规定的配置频点命令的不同状态所产生的不同中断时间,从收到配置频点命令的状态时刻起在协议规定的时间内不对UE进行数据调度。
配置频点命令的空口下发时间区间表示该区间内会发送配置频点命令。
若第二网络侧设备收到配置频点命令的空口下发时刻,第二网络侧设备从该命令的空口下发时刻开始,在协议规定的第一时长内不对UE进行数据调度。
若第二网络侧设备收到配置频点命令的空口下发时间区间,第二网络侧设备从配置频点命令的空口下发时间区间的开始时刻开始,在协议规定的第二时长内不对UE进行数据调度。
其中,协议规定的第二时长不小于空口下发时间区间。
若第二网络侧设备收到配置频点命令的状态,第二网络侧设备从收到配置频点命令的状态时刻起在协议规定的第三时长内不对UE进行数据调度。
若第二网络侧设备收到配置频点命令的不允许下行调度的时间区间,且不允许下行调度的时间区间包括实际UE进行无线频点(Radio Frequency,RF)调整的时间,则第二网络侧设备在不允许下行调度的时间区间内不对UE进行数据调度。
若第二网络侧设备收到配置频点命令的不允许下行调度的时间区间,且不允许下行调度的时间区间只是UE处理该命令本身需要的时间,而不包括实际UE进行RF调整的时间,则第二网络侧设备在不允许下行调度的时间区间内不对UE进行数据调度,且在不允许下行调度的时间区间之后,协议规定的第三时长内不对UE进行数据调度。
由于并不是每次配置频点都会产生服务频点中断,也不是每次配置频点都需要进行调度,所以一种较佳的方式是:
第一网络侧设备根据UE的接收能力确定配置频点时会产生服务频点中断,且需要所述第二网络侧设备在服务频点中断时间范围内停止调度时,第一网络侧设备向第二网络侧设备发送第一配置信息。
在实施中,UE的接收能力包括但不限于下列能力中的部分或全部:
是否支持多收发机,比如多收发机不会产生频点调整的中断,不需要中断数据调度;
是否需要在根据配置频点命令,调整频点的时候产生服务频点的中断,比如UE根据自己的RF能力知道自己在哪些频点是否会产生中断;
是否在接收到配置频点命令需要网络侧停止调度,比如UE根据自己的RF能力知道自己在哪些频点是否会产生中断,并根据中断时间的长短判断是否需要网络停止调度。
若第二网络侧设备收到配置频点命令的空口下发时刻,且所述第二网络侧设备需要向所述用户设备发送配置频点命令,则所述第二网络侧设备根据所述配置频点命令的空口下发时刻,发送配置频点命令;
若第二网络侧设备收到配置频点命令的空口下发时间区间,且所述第二网络侧设备需要向所述用户设备发送配置频点命令,则所述第二网络侧设备根据所述配置频点命令的空口下发时间区间,发送配置频点命令。
针对方案一,下面列举几个实例。
实例1:网络侧MeNB通知激活/去激活命令。
步骤1:MeNB给UE下发激活/去激活命令前,通过基站间接口向SeNB发送该激活/去激活命令的状态(如某SCell是激活还是去激活)和空口下发时刻(或时间区间)。
步骤2:SeNB接收到步骤1中MeNB发送的信息后,如果SeNB收到的是“激活/去激活命令的状态和空口下发时刻(或时间区间)”,则SeNB在从该命令的空口下发时刻开始(或该命令的空口下发时间区间的开始时刻开始)在协议规定的时间内不对UE进行数据调度。
停止调度的时间区间为图2B所示“ti”和“tj”间的时间区间。
步骤3:MeNB给UE下发激活/去激活命令(图2B所示“小区状态调整命令”),从该命令的下发时刻开始在协议规定的时间内不对UE进行数据调度。停止调度的时间区间为图2B所示“ti”和“tj”间的时间区间。
步骤4:UE接收到步骤3的激活/去激活命令后,对相应的小区进行激活/去激活操作,同时调整收发机。UE处理该命令的时间区间为图2B所示“ti”和“tj”间的时间区间。
另一种方式是:
在步骤1之前,UE也可以上报其收发机能力;
MeNB可以根据UE的能力判断是否向SeNB发送第一配置信息。
若SeNB给UE下发激活/去激活命令,基站间传递的第一配置信息可以是从SeNB发给MeNB,则MeNB根据SeNB的第一配置信息在确定的时长内不调度所述用户设备。
实例2:网络侧MeNB通知配置/去配置命令。
步骤1:MeNB给UE下发配置/去配置命令前,通过基站间接口向SeNB发送配置/去配置命令的状态(如某SCell是激活还是去激活)和空口下发时刻(或时间区间)。
步骤2:SeNB接收到步骤1中MeNB发送的信息后,如果SeNB收到的是“配置/去配置命令的状态和空口下发时刻(或时间区间)”,则SeNB在从该命令的空口下发时刻开始(或该命令的空口下发时间区间的开始时刻开始)在协议规定的时间内不对UE进行数据调度。
停止调度的时间区间为图2B所示“ti”和“tj”间的时间区间。
步骤3:MeNB给UE下发配置/去配置命令(图2B所示“小区状态调整命令”),从该命令的下发时刻开始在协议规定的时间内不对UE进行数据调度。停止调度的时间区间为图2B所示“ti”和“tj”间的时间区间。
步骤4:UE接收到步骤3的配置/去配置命令后,对相应的小区进行配置/去配置操作,同时调整收发机。UE处理该命令的时间区间为图2B所示“ti”和“tj”间的时间区间。
另一种方式是:
在步骤1之前,UE也可以上报其收发机能力;
MeNB可以根据UE的能力判断是否向SeNB发送第一配置信息。
若SeNB给UE下发配置/去配置命令,基站间传递的第一配置信息可以是从SeNB发给MeNB,则MeNB根据SeNB的第一配置信息在确定的时长内不调度所述用户设备。
实例3:网络侧SeNB通知配置/去配置命令。
步骤1:SeNB在需要配置/去配置一个小区的时候,通过基站间接口向MeNB发送配置/去配置命令的状态(如某SCell是配置还是去配置)和空口下发时刻(或时间区间);或该UE实际执行该配置/去配置命令的不允许下行调度的时间区间。该第一配置信息如图2C所示“小区状态调整信息”。
如果SeNB发送的是“该配置/去配置命令的状态和空口下发时刻(或时间区间)”,则SeNB在从该命令的下发时刻开始(或该命令的下发时间区间的开始时刻开始)在协议规定的时间内不对UE进行数据调度。
如果SeNB发送的是“该UE的实际配置/去配置的状态以及开始和完成时刻”,且不包括实际UE进行RF调整的时间,则SeNB根据该UE实际执行该配置/去配置命令的不允许下行调度的时间区间内不对UE进行数据调度,且在不允许下行调度的时间区间之后,在协议规定的时长内不对UE进行数据调度。停止调度的时间区间为图2C所示“ti”和“tj”间的时间区间。
步骤2:MeNB接收到步骤1中SeNB发送的信息后,如果MeNB收到的是“配置/去配置命令的状态以及空口下发时刻(或时间区间)”,则MeNB在从该命令的下发时刻(或该命令的下发时间区间的任意时刻)给UE发送来自SeNB的配置/去配置命令,并从发送命令的时刻开始在协议规定的时间内不对UE进行数据调度。
如果MeNB收到的是“该UE的实际配置/去配置的状态以及开始和完成时刻”,且不包括实际UE进行RF调整的时间,则MeNB根据该UE实际执行该配置/去配置命令的不允许下行调度的时间区间内不对UE进行数据调度,且在不允许下行调度的时间区间之后,在协议规定的时长内不对UE进行数据调度。停止调度的时间区间为图2C所示“ti”和“tj”间的时间区间。
步骤3:UE接收到步骤2的配置/去配置命令后,对相应的小区进行配置/去配置操作, 同时调整收发机。UE处理该命令的时间区间为图2C“ti”和“tj”间的时间区间。
另一种方式是:
在步骤1之前,UE也可以上报其收发机能力;
SeNB可以根据UE的能力判断是否向MeNB发送第一配置信息。
如图3所示,本发明实施例二配置调度的系统中的第一网络侧设备包括:确定模块300和发送模块310。
确定模块300,用于确定需要向处于双连接的用户设备的发送配置频点命令;
发送模块310,用于向与所述用户设备连接的第二网络侧设备发送第一配置信息,以使所述第二网络侧设备根据所述第一配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
较佳地,所述第一配置信息包括下列中的部分或全部:
配置频点命令的状态;
配置频点命令的空口下发时刻;
配置频点命令的空口下发时间区间;
不允许下行调度的时间区间。
较佳地,所述发送模块310还用于:
根据UE的接收能力确定配置频点时会产生服务频点中断,且需要所述第二网络侧设备在服务频点中断时间范围内停止调度后,向与所述用户设备连接的第二网络侧设备发送第一配置信息。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
如图4所示,本发明实施例三配置调度的系统中的第二网络侧设备,所述第二网络侧设备与双连接的用户设备连接,该第二网络侧设备包括:第一接收模块400和第一处理模块410。
第一接收模块400,用于接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息,其中所述第一配置信息是所述第一网络侧设备在确定需要向处于双连接的用户设备的发送配置频点命令后发送的;
第一处理模块410,用于根据所述第一配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
较佳地,所述第一配置信息包括下列中的部分或全部:
配置频点命令的状态;
配置频点命令的空口下发时刻;
配置频点命令的空口下发时间区间;
不允许下行调度的时间区间。
较佳地,所述第一处理模块410还用于:
所述第二网络侧设备接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息之后,若所述第二网络侧设备需要向所述用户设备发送配置频点命令,且所述第一配置信息包括配置频点命令的空口下发时刻,根据所述配置频点命令的空口下发时刻,发送配置频点命令;或者
所述第二网络侧设备接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息之后,若所述第二网络侧设备需要向所述用户设备发送配置频点命令,且所述第一配置信息包括配置频点命令的空口下发时间区间,根据所述配置频点命令的空口下发时间区间,发送配置频点命令。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
如图5所示,本发明实施例四配置调度的系统中的第一网络侧设备包括处理器500和收发机510,可选地,还包括存储器520,具体如下:
处理器500,用于确定需要向处于双连接的用户设备的发送配置频点命令,通过收发机510向与所述用户设备连接的第二网络侧设备发送第一配置信息,以使所述第二网络侧设备根据所述第一配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备;
收发机510,用于在处理器500的控制下接收和发送数据。
较佳地,所述第一配置信息包括下列中的部分或全部:
配置频点命令的状态;
配置频点命令的空口下发时刻;
配置频点命令的空口下发时间区间;
不允许下行调度的时间区间。
较佳地,所述处理器500还用于:
根据UE的接收能力确定配置频点时会产生服务频点中断,且需要所述第二网络侧设备在服务频点中断时间范围内停止调度后,向与所述用户设备连接的第二网络侧设备发送第一配置信息。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
其中,在图5中,总线架构可以包括任意数量的互联的总线和桥,具体由处理器500代表的一个或多个处理器和存储器520代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都 是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口提供接口。收发机510可以是多个元件,即包括发送机和收发机,提供用于在传输介质上与各种其他装置通信的单元。处理器500负责管理总线架构和通常的处理,存储器520可以存储处理器500在执行操作时所使用的数据。
处理器500负责管理总线架构和通常的处理,存储器520可以存储处理器500在执行操作时所使用的数据。
如图6所示,本发明实施例五配置调度的系统中的第二网络侧设备,所述第二网络侧设备与双连接的用户设备连接,该第二网络侧设备包括处理器600和收发机610,可选地还包括存储器620,具体如下:
处理器600,用于通过收发机610接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息,其中所述第一配置信息是所述第一网络侧设备在确定需要向处于双连接的用户设备的发送配置频点命令后发送的;根据所述第一配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备;
收发机610,用于在处理器600的控制下接收和发送数据。
较佳地,所述第一配置信息包括下列中的部分或全部:
配置频点命令的状态;
配置频点命令的空口下发时刻;
配置频点命令的空口下发时间区间;
不允许下行调度的时间区间。
较佳地,所述处理器600还用于:
所述第二网络侧设备接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息之后,若所述第二网络侧设备需要向所述用户设备发送配置频点命令,且所述第一配置信息包括配置频点命令的空口下发时刻,根据所述配置频点命令的空口下发时刻,发送配置频点命令;或者
所述第二网络侧设备接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息之后,若所述第二网络侧设备需要向所述用户设备发送配置频点命令,且所述第一配置信息包括配置频点命令的空口下发时间区间,根据所述配置频点命令的空口下发时间区间,发送配置频点命令。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
其中,在图6中,总线架构可以包括任意数量的互联的总线和桥,具体由处理器600代表的一个或多个处理器和存储器620代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都 是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口提供接口。收发机610可以是多个元件,即包括发送机和收发机,提供用于在传输介质上与各种其他装置通信的单元。处理器600负责管理总线架构和通常的处理,存储器620可以存储处理器600在执行操作时所使用的数据。
处理器600负责管理总线架构和通常的处理,存储器620可以存储处理器600在执行操作时所使用的数据。
基于同一发明构思,本发明实施例中还提供了配置调度的方法,由于本发明实施例的方法对应的设备是图2A本发明实施例配置调度系统中的设备,并且方法解决问题的原理与系统相似,因此方法的实施可以参见系统的实施,重复之处不再赘述。
如图7所示,本发明实施例六配置调度的方法包括:
步骤700、第一网络侧设备确定需要向处于双连接的用户设备的发送配置频点命令;
步骤701、所述第一网络侧设备向与所述用户设备连接的第二网络侧设备发送第一配置信息,以使所述第二网络侧设备根据所述第一配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
较佳地,所述第一配置信息包括下列中的部分或全部:
配置频点命令的状态;
配置频点命令的空口下发时刻;
配置频点命令的空口下发时间区间;
不允许下行调度的时间区间。
较佳地,所述第一网络侧设备向与所述用户设备连接的第二网络侧设备发送第一配置信息之前,还包括:
所述第一网络侧设备根据UE的接收能力确定配置频点时会产生服务频点中断,且需要所述第二网络侧设备在服务频点中断时间范围内停止调度。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
如图8所示,本发明实施例七配置调度的方法包括:
步骤800、与双连接的用户设备连接的第二网络侧设备接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息,其中所述第一配置信息是所述第一网络侧设备在确定需要向处于双连接的用户设备的发送配置频点命令后发送的;
步骤801、所述第二网络侧设备根据所述第一配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
较佳地,所述第一配置信息包括下列中的部分或全部:
配置频点命令的状态;
配置频点命令的空口下发时刻;
配置频点命令的空口下发时间区间;
不允许下行调度的时间区间。
较佳地,所述第二网络侧设备接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息之后,还包括:
若所述第二网络侧设备需要向所述用户设备发送配置频点命令,且所述第一配置信息包括配置频点命令的空口下发时刻;所述第二网络侧设备根据所述配置频点命令的空口下发时刻,发送配置频点命令;或者
若所述第二网络侧设备需要向所述用户设备发送配置频点命令,且所述第一配置信息包括配置频点命令的空口下发时间区间,所述第二网络侧设备根据所述配置频点命令的空口下发时间区间,发送配置频点命令。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
方案二:
如图9A所示,本发明实施例八配置调度的系统包括:用户设备90、第一网络侧设备91和第二网络侧设备92。
处于双连接的用户设备90,用于接收到连接的第一网络侧设备91的配置频点命令;向连接的第二网络侧设备92发送第二配置信息;
与双连接的用户设备连接的第二网络侧设备92,用于接收到来自所述用户设备90的第二配置信息,根据所述第二配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备90。
其中,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
在实施中,所述第二配置信息包括但不限于下列中的部分或全部:
配置频点命令的状态;
不允许下行调度的时间区间。
其中,配置频点命令的状态包括下列中的部分或全部:
激活频点、去激活频点、配置频点和去配置频点。
第二网络侧设备根据协议规定的配置频点命令的不同状态所产生的不同中断时间,从收到配置频点命令的状态时刻起在协议规定的时间内不对UE进行数据调度。
若第二网络侧设备收到配置频点命令的不允许下行调度的时间区间,且不允许下行调度的时间区间包括实际UE进行RF调整的时间,则第二网络侧设备在不允许下行调度的时间区间内不对UE进行数据调度。
若第二网络侧设备收到配置频点命令的不允许下行调度的时间区间,且不允许下行调度的时间区间只是UE处理该命令本身需要的时间,而不包括实际UE进行RF调整的时间,则第二网络侧设备在不允许下行调度的时间区间内不对UE进行数据调度,且在不允许下行调度的时间区间之后,协议规定的第三时长内不对UE进行数据调度。
针对方案二,下面列举几个实例。
实例1:UE通知激活/去激活命令。
步骤1:MeNB通过空口给UE下发激活/去激活命令(图9B所示的“小区状态调整命令”),并从该命令的下发时刻开始在协议规定的时间内MeNB不对UE进行数据调度。
由于UE需要在通知SeNB后才进行收发机调整,因此MeNB停止调度传输的时间可以从UE实际进行收发机调整的时刻开始到完成收发机调整的时刻为止,而该UE实际进行收发机调整的开始时刻可以是协议规定的在接收到命令的时刻(图9B所示的t)后的某个时刻(图9B所示的ti=t+i,i可以是5毫秒等),而完成收发机调整的时刻可以是协议规定的时刻(图9B所示的ti=t+i+j,j可以是10毫秒等)。
步骤2:根据步骤1,UE在接收到MeNB的激活/去激活命令后,通过空口信令通知SeNB,该激活/去激活命令的状态;或该UE实际执行该激活/去激活命令的不允许下行调度的时间区间。UE发送的辅助信息为图9B所示的“小区状态调整信息”。UE处理该命令的时间区间为图9B所示的“ti”和“tj”间的时间区间。
步骤3:根据步骤2,SeNB在接收到来自UE的辅助信息后,如果SeNB收到的是“该激活/去激活命令的状态”,则SeNB在从该命令的下发时刻开始在协议规定的时间内不对UE进行数据调度。
如果SeNB收到的是“该UE实际执行该激活/去激活命令的不允许下行调度的时间区间”,且不包括实际UE进行RF调整的时间,则SeNB根据该UE实际执行该配置/去配置命令的不允许下行调度的时间区间内不对UE进行数据调度,且在不允许下行调度的时间区间之后,在协议规定的时长内不对UE进行数据调度。停止调度的时间区间为图9B所示的“ti”和“tj”间的时间区间。
若SeNB给UE下发配置/去配置命令,第二配置信息可以是从UE发送给MeNB,则MeNB根据第二配置信息在确定的时长内不调度所述用户设备。
实例2:UE通知配置/去配置命令。
步骤1:MeNB通过空口给UE下发配置/去配置命令(图9B所示的“小区状态调整命令”),并从该命令的下发时刻开始在协议规定的时间内MeNB不对UE进行数据调度。
由于UE需要在通知SeNB后才进行收发机调整,因此MeNB停止调度传输的时间可以从UE实际进行收发机调整的时刻开始到完成收发机调整的时刻为止,而该UE实际进行收发机调整的开始时刻可以是协议规定的在接收到命令的时刻(图9B所示的t)后的某 个时刻(图9B所示的ti=t+i,i可以是5毫秒等),而完成收发机调整的时刻可以是协议规定的时刻(图9B所示的ti=t+i+j,j可以是10毫秒等)。
步骤2:根据步骤1,UE在接收到MeNB的配置/去配置命令后,通过空口信令通知SeNB,该配置/去配置命令的状态;或该UE实际执行该配置/去配置命令的不允许下行调度的时间区间。UE发送的辅助信息为图9B所示的“小区状态调整信息”。UE处理该命令的时间区间为图9B所示的“ti”和“tj”间的时间区间。
步骤3:根据步骤2,SeNB在接收到来自UE的辅助信息后。如果SeNB收到的是“该配置/去配置命令的状态”,则SeNB在从该命令的下发时刻开始在协议规定的时间内不对UE进行数据调度。
如果SeNB收到的是“该UE实际执行该配置/去配置命令的不允许下行调度的时间区间”,且不包括实际UE进行RF调整的时间,则SeNB根据该UE实际执行该配置/去配置命令的不允许下行调度的时间区间内不对UE进行数据调度,且在不允许下行调度的时间区间之后,在协议规定的时长内不对UE进行数据调度。停止调度的时间区间为图9B所示的“ti”和“tj”间的时间区间。
若SeNB给UE下发配置/去配置命令,第二配置信息可以是从UE发送给MeNB,则MeNB根据第二配置信息在确定的时长内不调度所述用户设备。
如图10所示,本发明实施例九配置调度的系统中的用户设备,所述用户设备处于双连接,包括:第二接收模块1000和发送模块1010。
第二接收模块1000,用于接收到连接的第一网络侧设备的配置频点命令;
发送模块1010,用于向连接的第二网络侧设备发送第二配置信息,以使所述第二网络侧设备根据所述第二配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
较佳地,所述第二配置信息包括下列中的部分或全部:
配置频点命令的状态;
不允许下行调度的时间区间。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
如图11所示,本发明实施例十配置调度的系统中的第二网络侧设备,所述第二网络侧设备与双连接的用户设备连接,该第二网络侧设备包括:
第三接收模块1100和第二处理模块1110。
第三接收模块1100,用于接收到来自所述用户设备的第二配置信息,其中所述第二配置信息是所述用户设备在收到与所述用户设备连接的第一网络侧设备的配置频点命令后发送的;
第二处理模块1110,用于根据所述第二配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
较佳地,所述第二配置信息包括下列中的部分或全部:
配置频点命令的状态;
不允许下行调度的时间区间。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
如图12所示,本发明实施例十一配置调度的系统中的用户设备,所述用户设备处于双连接,包括处理器1200和收发机1210,可选地还包括存储器1220,具体如下:
处理器1200,用于通过收发机1210接收到连接的第一网络侧设备的配置频点命令;向连接的第二网络侧设备发送第二配置信息,以使所述第二网络侧设备根据所述第二配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备;
收发机1210,用于在处理器1200的控制下接收和发送数据。
较佳地,所述第二配置信息包括下列中的部分或全部:
配置频点命令的状态;
不允许下行调度的时间区间。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
其中,在图12中,总线架构可以包括任意数量的互联的总线和桥,具体由处理器1200代表的一个或多个处理器和存储器1220代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口提供接口。收发机1210可以是多个元件,即包括发送机和收发机,提供用于在传输介质上与各种其他装置通信的单元。针对不同的用户设备,用户接口1230还可以是能够外接内接需要设备的接口,连接的设备包括但不限于小键盘、显示器、扬声器、麦克风、操纵杆等。
处理器1200负责管理总线架构和通常的处理,存储器1220可以存储处理器1200在执行操作时所使用的数据。
如图13所示,本发明实施例十二配置调度的系统中的第二网络侧设备,所述第二网络侧设备与双连接的用户设备连接,该第二网络侧设备包括处理器1300和收发机1310,可选地还包括存储器1320,具体如下:
处理器1300,用于通过收发机1310接收到来自所述用户设备的第二配置信息,其中所述第二配置信息是所述用户设备在收到与所述用户设备连接的第一网络侧设备的配置频点命令后发送的;根据所述第二配置信息确定配置所述用户设备的频点的时长,并在确 定的时长内不调度所述用户设备;
收发机1310,用于在处理器1300的控制下接收和发送数据。
较佳地,所述第二配置信息包括下列中的部分或全部:
配置频点命令的状态;
不允许下行调度的时间区间。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
其中,在图13中,总线架构可以包括任意数量的互联的总线和桥,具体由处理器1300代表的一个或多个处理器和存储器1320代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口提供接口。收发机1310可以是多个元件,即包括发送机和收发机,提供用于在传输介质上与各种其他装置通信的单元。处理器1300负责管理总线架构和通常的处理,存储器1320可以存储处理器1300在执行操作时所使用的数据。
处理器1300负责管理总线架构和通常的处理,存储器1320可以存储处理器1300在执行操作时所使用的数据。
在实施中,针对不同的场景可以根据需要选择方案一还是方案二,并且针对不同的场景SeNB和MeNB可以是第一种网络侧设备,也可以是第二网络侧设备,所以图3、图4和图11的模块可以合在一个设备中,图5、图6和图13的模块可以合在一个设备中,根据需要选择使用对应的模块。
基于同一发明构思,本发明实施例中还提供了配置调度的方法,由于本发明实施例的方法对应的设备是图9A本发明实施例配置调度系统中的设备,并且方法解决问题的原理与系统相似,因此方法的实施可以参见系统的实施,重复之处不再赘述。
如图14所示,本发明实施例十三配置调度的方法包括:
步骤1400、处于双连接的用户设备接收到连接的第一网络侧设备的配置频点命令;
步骤1410、所述用户设备向连接的第二网络侧设备发送第二配置信息,以使所述第二网络侧设备根据所述第二配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
较佳地,所述第二配置信息包括下列中的部分或全部:
配置频点命令的状态;
不允许下行调度的时间区间。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
如图15所示,本发明实施例十四配置调度的方法包括:
步骤1500、与双连接的用户设备连接的第二网络侧设备接收到来自所述用户设备的第二配置信息,其中所述第二配置信息是所述用户设备在收到与所述用户设备连接的第一网络侧设备的配置频点命令后发送的;
步骤1510、所述第二网络侧设备根据所述第二配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
较佳地,所述第二配置信息包括下列中的部分或全部:
配置频点命令的状态;
不允许下行调度的时间区间。
较佳地,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
从上述内容可以看出:本发明实施例第一种方案第一网络侧设备确定需要向处于双连接的用户设备的发送配置频点命令后,向与所述用户设备连接的第二网络侧设备发送第一配置信息,以使所述第二网络侧设备根据所述第一配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
本发明实施例第二种方案处于双连接的用户设备接收到连接的第一网络侧设备的配置频点命令后,向连接的第二网络侧设备发送第二配置信息,以使所述第二网络侧设备根据所述第二配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
由于在配置所述用户设备的频点的时长内不调度所述用户设备,从而在双连接情况下,当一个基站对UE进行激活/去激活以及配置/去配置一个频点的时候,避免由于产生中断在其他基站管理的频点上出现丢包情况;进一步提高了传输效率和系统性能。
本领域内的技术人员应明白,本发明的实施例可提供为方法、或计算机程序产品。因此,本发明可采用完全硬件实施例、完全软件实施例、或结合软件和硬件方面的实施例的形式。而且,本发明可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器、CD-ROM、光学存储器等)上实施的计算机程序产品的形式。
本发明是参照根据本发明实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的 装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理设备以特定方式工作的计算机可读存储器中,使得存储在该计算机可读存储器中的指令产生包括指令装置的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。
这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
尽管已描述了本发明的优选实施例,但本领域内的技术人员一旦得知了基本创造性概念,则可对这些实施例作出另外的变更和修改。所以,所附权利要求意欲解释为包括优选实施例以及落入本发明范围的所有变更和修改。
显然,本领域的技术人员可以对本发明进行各种改动和变型而不脱离本发明的精神和范围。这样,倘若本发明的这些修改和变型属于本发明权利要求及其等同技术的范围之内,则本发明也意图包含这些改动和变型在内。

Claims (28)

  1. 一种配置调度的方法,其特征在于,该方法包括:
    第一网络侧设备确定需要向处于双连接的用户设备UE的发送配置频点命令;
    所述第一网络侧设备向与所述用户设备连接的第二网络侧设备发送第一配置信息,以使所述第二网络侧设备根据所述第一配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
  2. 如权利要求1所述的方法,其特征在于,所述第一配置信息包括下列中的部分或全部:
    配置频点命令的状态;
    配置频点命令的空口下发时刻;
    配置频点命令的空口下发时间区间;
    不允许下行调度的时间区间。
  3. 如权利要求1所述的方法,其特征在于,所述第一网络侧设备向与所述用户设备连接的第二网络侧设备发送第一配置信息之前,还包括:
    所述第一网络侧设备根据所述UE的接收能力确定配置频点时会产生服务频点中断,且需要所述第二网络侧设备在服务频点中断时间范围内停止调度。
  4. 如权利要求1~3任一所述的方法,其特征在于,若所述第一网络侧设备为主基站MeNB,则所述第二网络侧设备为从属基站SeNB;
    若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
  5. 一种配置调度的方法,其特征在于,该方法包括:
    与双连接的用户设备连接的第二网络侧设备接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息,其中所述第一配置信息是所述第一网络侧设备在确定需要向处于双连接的用户设备的发送配置频点命令后发送的;
    所述第二网络侧设备根据所述第一配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
  6. 如权利要求5所述的方法,其特征在于,所述第一配置信息包括下列中的部分或全部:
    配置频点命令的状态;
    配置频点命令的空口下发时刻;
    配置频点命令的空口下发时间区间;
    不允许下行调度的时间区间。
  7. 如权利要求6所述的方法,其特征在于,所述第二网络侧设备接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息之后,还包括:
    若所述第二网络侧设备需要向所述用户设备发送配置频点命令,且所述第一配置信息包括配置频点命令的空口下发时刻,所述第二网络侧设备根据所述配置频点命令的空口下发时刻,发送配置频点命令;或者
    若所述第二网络侧设备需要向所述用户设备发送配置频点命令,且所述第一配置信息包括配置频点命令的空口下发时间区间,所述第二网络侧设备根据所述配置频点命令的空口下发时间区间,发送配置频点命令。
  8. 如权利要求5~7任一所述的方法,其特征在于,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
    若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
  9. 一种配置调度的方法,其特征在于,该方法包括:
    处于双连接的用户设备接收到连接的第一网络侧设备的配置频点命令;
    所述用户设备向连接的第二网络侧设备发送第二配置信息,以使所述第二网络侧设备根据所述第二配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
  10. 如权利要求9所述的方法,其特征在于,所述第二配置信息包括下列中的部分或全部:
    配置频点命令的状态;
    不允许下行调度的时间区间。
  11. 如权利要求9或10所述的方法,其特征在于,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
    若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
  12. 一种配置调度的方法,其特征在于,该方法包括:
    与双连接的用户设备连接的第二网络侧设备接收到来自所述用户设备的第二配置信息,其中所述第二配置信息是所述用户设备在收到与所述用户设备连接的第一网络侧设备的配置频点命令后发送的;
    所述第二网络侧设备根据所述第二配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
  13. 如权利要求12所述的方法,其特征在于,所述第二配置信息包括下列中的部分或全部:
    配置频点命令的状态;
    不允许下行调度的时间区间。
  14. 如权利要求12或13所述的方法,其特征在于,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
    若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
  15. 一种配置调度的第一网络侧设备,其特征在于,该第一网络侧设备包括:
    确定模块,用于确定需要向处于双连接的用户设备UE的发送配置频点命令;
    发送模块,用于向与所述用户设备连接的第二网络侧设备发送第一配置信息,以使所述第二网络侧设备根据所述第一配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
  16. 如权利要求15所述的第一网络侧设备,其特征在于,所述第一配置信息包括下列中的部分或全部:
    配置频点命令的状态;
    配置频点命令的空口下发时刻;
    配置频点命令的空口下发时间区间;
    不允许下行调度的时间区间。
  17. 如权利要求15所述的第一网络侧设备,其特征在于,所述发送模块还用于:
    根据所述UE的接收能力确定配置频点时会产生服务频点中断,且需要所述第二网络侧设备在服务频点中断时间范围内停止调度后,向与所述用户设备连接的第二网络侧设备发送第一配置信息。
  18. 如权利要求15~17任一所述的第一网络侧设备,其特征在于,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
    若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
  19. 一种配置调度的第二网络侧设备,其特征在于,所述第二网络侧设备与双连接的用户设备连接,该第二网络侧设备包括:
    第一接收模块,用于接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息,其中所述第一配置信息是所述第一网络侧设备在确定需要向处于双连接的用户设备的发送配置频点命令后发送的;
    第一处理模块,用于根据所述第一配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
  20. 如权利要求19所述的第二网络侧设备,其特征在于,所述第一配置信息包括下列中的部分或全部:
    配置频点命令的状态;
    配置频点命令的空口下发时刻;
    配置频点命令的空口下发时间区间;
    不允许下行调度的时间区间。
  21. 如权利要求20所述的第二网络侧设备,其特征在于,所述第一处理模块还用于:
    所述第二网络侧设备接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息之后,若所述第二网络侧设备需要向所述用户设备发送配置频点命令,且所述第一配置信息包括配置频点命令的空口下发时刻,根据所述配置频点命令的空口下发时刻,发送配置频点命令;或者
    所述第二网络侧设备接收到来自与所述用户设备连接的第一网络侧设备的第一配置信息之后,若所述第二网络侧设备需要向所述用户设备发送配置频点命令,且所述第一配置信息包括配置频点命令的空口下发时间区间,根据所述配置频点命令的空口下发时间区间,发送配置频点命令。
  22. 如权利要求19~21任一所述的第二网络侧设备,其特征在于,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
    若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
  23. 一种配置调度的用户设备,其特征在于,所述用户设备处于双连接,该用户设备包括:
    第二接收模块,用于接收到连接的第一网络侧设备的配置频点命令;
    发送模块,用于向连接的第二网络侧设备发送第二配置信息,以使所述第二网络侧设备根据所述第二配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
  24. 如权利要求23所述的用户设备,其特征在于,所述第二配置信息包括下列中的部分或全部:
    配置频点命令的状态;
    不允许下行调度的时间区间。
  25. 如权利要求23或24所述的用户设备,其特征在于,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
    若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
  26. 一种配置调度的第二网络侧设备,其特征在于,所述第二网络侧设备与双连接的用户设备连接,该第二网络侧设备包括:
    第三接收模块,用于接收到来自所述用户设备的第二配置信息,其中所述第二配置信息是所述用户设备在收到与所述用户设备连接的第一网络侧设备的配置频点命令后发送的;
    第二处理模块,用于根据所述第二配置信息确定配置所述用户设备的频点的时长,并在确定的时长内不调度所述用户设备。
  27. 如权利要求26所述的第二网络侧设备,其特征在于,所述第二配置信息包括下列中的部分或全部:
    配置频点命令的状态;
    不允许下行调度的时间区间。
  28. 如权利要求26或27所述的第二网络侧设备,其特征在于,若所述第一网络侧设备为MeNB,则所述第二网络侧设备为SeNB;
    若所述第一网络侧设备为SeNB,则所述第二网络侧设备为MeNB。
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