WO2018177298A1 - Procédé et dispositif d'équilibrage de charge - Google Patents
Procédé et dispositif d'équilibrage de charge Download PDFInfo
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- WO2018177298A1 WO2018177298A1 PCT/CN2018/080731 CN2018080731W WO2018177298A1 WO 2018177298 A1 WO2018177298 A1 WO 2018177298A1 CN 2018080731 W CN2018080731 W CN 2018080731W WO 2018177298 A1 WO2018177298 A1 WO 2018177298A1
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- 238000000034 method Methods 0.000 title claims abstract description 132
- 238000005259 measurement Methods 0.000 claims abstract description 275
- 238000001514 detection method Methods 0.000 claims description 101
- 230000005540 biological transmission Effects 0.000 claims description 66
- 230000004044 response Effects 0.000 claims description 60
- 238000004891 communication Methods 0.000 abstract description 41
- 230000008569 process Effects 0.000 abstract description 19
- 230000007246 mechanism Effects 0.000 description 13
- 238000010586 diagram Methods 0.000 description 10
- 239000002131 composite material Substances 0.000 description 7
- 238000005516 engineering process Methods 0.000 description 5
- 230000008878 coupling Effects 0.000 description 3
- 238000010168 coupling process Methods 0.000 description 3
- 238000005859 coupling reaction Methods 0.000 description 3
- 230000000977 initiatory effect Effects 0.000 description 3
- 230000000694 effects Effects 0.000 description 2
- 239000000284 extract Substances 0.000 description 2
- 230000006870 function Effects 0.000 description 1
- 230000007774 longterm Effects 0.000 description 1
- 238000000691 measurement method Methods 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W28/00—Network traffic management; Network resource management
- H04W28/02—Traffic management, e.g. flow control or congestion control
- H04W28/08—Load balancing or load distribution
- H04W28/082—Load balancing or load distribution among bearers or channels
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W36/00—Hand-off or reselection arrangements
- H04W36/16—Performing reselection for specific purposes
- H04W36/22—Performing reselection for specific purposes for handling the traffic
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/50—Allocation or scheduling criteria for wireless resources
- H04W72/54—Allocation or scheduling criteria for wireless resources based on quality criteria
- H04W72/542—Allocation or scheduling criteria for wireless resources based on quality criteria using measured or perceived quality
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W36/00—Hand-off or reselection arrangements
- H04W36/0005—Control or signalling for completing the hand-off
- H04W36/0083—Determination of parameters used for hand-off, e.g. generation or modification of neighbour cell lists
- H04W36/00835—Determination of neighbour cell lists
Definitions
- the present application relates to the field of communications technologies, and in particular, to a method and an apparatus for load balancing.
- Multefire is an extension of LTE (Long Term Evolution) to unlicensed wireless access technologies.
- Multefire introduces the LBT (Listen before talk) mechanism of the carrier monitoring technology in the physical layer, and uses the mechanism of listening and speaking to realize the fair occupation of unlicensed band channels by other devices in the unlicensed band to avoid interference with other devices. , complete the implementation of Multefire technology.
- LBT Listen before talk
- Load balancing in a communication network system includes load reporting, load balancing based switching, and adjustment of mobility configuration parameters.
- a channel of a licensed band occupied by a device and therefore, a radio resource that can be used by a cell is only related to the maximum available radio resource and the currently used radio resource.
- the Multefire system uses the channel of the unlicensed band.
- the channel of the unlicensed band is the shared channel.
- the occupancy of the channel changes with time. Therefore, the wireless available in the Multefire system is actually available. Resources are changing dynamically.
- the inventor uses the prior art to load balance the Multefire system, and since the real available wireless resources of the Multefire cell cannot be obtained, to the Multefire The system performs poor load balancing.
- the embodiment of the present application provides a method and an apparatus for load balancing, which can solve the problem that the load balancing effect of the base station for the unlicensed frequency band is poor in the prior art.
- the embodiment of the present application provides a method for load balancing, which is applicable to a first base station, where the method includes:
- the measurement result of the channel resource status of the designated cell is included in the resource status update message and sent to the second base station, so that the second base station updates the stored channel resource status of the designated cell.
- the foregoing method and any possible implementation manner further provide an implementation manner, where the designated cell is a cell indicated in the measurement configuration information.
- the method further includes:
- the resource status response message includes indication information indicating whether the channel resource status of the specified cell can be measured.
- the method as described above, and any possible implementation manner, further provide an implementation manner, the sending, by the second base station, a resource status response message, where the resource status response message includes indicating whether the designated cell channel can be
- the indication information of the resource status measurement includes:
- the channel resource status measurement cannot be performed on the designated cell, sending a resource status response message to the second base station, where the resource status response message includes a channel resource status measurement failure identifier of the cell and a channel resource status measurement failure reason .
- the method as described above, and any possible implementation manner, further provide an implementation manner, after the transmitting, by using the measurement result of the channel resource status of the specified cell, in the resource status update message, to the second base station, the method includes:
- the measurement configuration information includes a channel resource status identifier and a channel resource status update period, where the channel resource status identifier is used to indicate the The first base station measures a channel resource status, where the channel resource status update period is used to indicate a period used by the first base station to send a resource status update message including a measurement result of a channel resource status.
- the foregoing method and any possible implementation manner further provide an implementation manner, where the acquiring the resource status request message sent by the second base station includes:
- the foregoing method and any possible implementation manner further provide an implementation manner, where the channel resource status includes all available resources of the channel obtained by channel occupancy detection, and/or channel resources obtained by channel occupancy detection. The remaining available resources of the unoccupied channel.
- the method as described above and any possible implementation manner further provide an implementation manner, where the remaining available resources of the channel include the number of remaining resources of the channel relative to the channel maximum resource, and/or occupied with respect to the through channel The number of available resources remaining on the channel of all available resources of the obtained channel is detected.
- the method as described above, and any possible implementation manner, further provide an implementation manner, where the measuring result of the channel resource status of the specified cell is included in the resource status update message, and the sending to the second base station includes:
- a measurement result of remaining available resources of the unoccupied channel in the channel resource is included in an existing information unit of the resource status update message and sent to the second base station.
- the method as described above, and any possible implementation manner, further provide an implementation manner, where the measuring result of the channel resource status of the specified cell is included in the resource status update message, and the sending to the second base station includes:
- the measurement result of the remaining available resources of the unoccupied channel in the channel resource is included in the existing information unit of the resource status update message and sent to the second base station.
- the measuring result of the channel resource status of the specified cell to obtain the channel resource status includes:
- the measurement result of the channel resource state is obtained.
- the time length of detecting that the total channel power is lower than the channel occupancy detection threshold includes:
- the length of time that the total channel power is lower than the channel occupancy detection threshold is detected.
- the obtaining, according to the detected time length, the measurement result of the channel resource state includes:
- the measurement result of the channel resource state is obtained according to the data transmission time and the length of time that the total channel power in the designated cell is lower than the channel occupancy detection threshold in the preset channel resource state calculation period.
- the obtaining the measurement result of the channel resource state according to the detected time length further includes:
- the time length of the total cell power in the idle time in the preset channel resource state calculation period is lower than the channel occupation detection threshold in a predetermined proportion to the uplink channel and the downlink channel;
- the measurement result of the channel resource state measurement for the specified cell to obtain the channel resource state includes:
- the foregoing method and any possible implementation manner further provide an implementation manner, where the channel resource status includes a channel occupied resource obtained by channel occupancy detection.
- the measuring result of the channel resource status of the specified cell to obtain the channel resource status includes:
- the measurement result of the channel resource state is obtained.
- the embodiment of the present application provides a method for load balancing, which is applicable to a second base station, where the method includes:
- Resource status request message includes measurement configuration information indicating that the first base station measures channel resource status, so that the first base station measures the channel of the designated cell according to the measurement configuration information.
- a resource status update message Acquiring, by the first base station, a resource status update message, where the resource status update message includes a measurement result of a channel resource status of the designated cell;
- the foregoing method and any possible implementation manner further provide an implementation manner, where the designated cell is a cell indicated in the measurement configuration information.
- the method as described above and any possible implementation manner further provide an implementation manner, after sending the resource status request message to the target base station, the following:
- the method includes:
- the handover target cell of the terminal is selected according to the updated channel resource status of the designated cell.
- an embodiment of the present application provides a device for load balancing, which is applicable to a first base station, where the device includes:
- a first acquiring unit configured to acquire a resource status request message sent by the second base station, where the resource status request message includes measurement configuration information indicating that the first base station measures channel resource status;
- a measuring unit configured to measure a channel resource status of the specified cell according to the measurement configuration information, to obtain a measurement result of the channel resource status
- a first sending unit configured to include, in a resource status update message, a measurement result of a channel resource status of the specified cell, to send to the second base station, so that the second base station updates the stored channel resource status of the specified cell .
- the foregoing method and any possible implementation manner further provide an implementation manner, where the designated cell is a cell indicated in the measurement configuration information.
- the device further includes:
- a determining unit configured to determine whether channel resource state measurement can be performed on the designated cell
- a second sending unit configured to send a resource status response message to the second base station, where the resource status response message includes indication information indicating whether the channel resource status of the specified cell can be measured.
- the second sending unit includes:
- a sending module configured to send a resource status response message to the second base station if the channel resource status measurement cannot be performed on the specified cell, where the resource status response message includes a channel resource status measurement failure identifier and a channel resource of the cell The reason why the status measurement failed.
- a second acquiring unit configured to receive, by the second base station, a handover request message or a mobility configuration parameter adjustment request message for load balancing.
- the configuration information includes a channel resource status identifier and a channel resource status update period
- the channel resource status identifier is used to indicate the A base station measures a channel resource status
- the channel resource status update period is used to indicate a period used by the first base station to send a resource status update message including a measurement result of a channel resource status.
- the first obtaining unit includes:
- a first acquiring module configured to acquire a channel resource status identifier from the first new sub-information unit or the first existing sub-information unit in the resource status request message;
- a second acquiring module configured to acquire a channel resource status update period from the second newly added sub information unit or the second existing sub information unit in the resource status request message.
- the foregoing method and any possible implementation manner further provide an implementation manner, where the channel resource status includes all available resources of the channel obtained by channel occupancy detection, and/or channel resources obtained by channel occupancy detection. The remaining available resources of the unoccupied channel.
- the method as described above and any possible implementation manner further provide an implementation manner, where the remaining available resources of the channel include the number of remaining resources of the channel relative to the channel maximum resource, and/or occupied with respect to the through channel The number of available resources remaining on the channel of all available resources of the obtained channel is detected.
- the first sending unit includes:
- a first sending module configured to send, to the second base station, a measurement result that all available resources of the channel are included in a new information unit of the resource status update message
- a second sending module configured to include, in the existing information unit of the resource status update message, a measurement result of the remaining available resources of the channel resource in the channel resource, to be sent to the second base station.
- the first sending unit includes:
- a third sending unit configured to include, in a newly added information unit of the resource status update message, a measurement result of an unoccupied channel remaining available resource in the channel resource, to the second base station; and/or ,
- a fourth sending unit configured to include, in the existing information unit of the resource status update message, a measurement result of the remaining available resources of the channel resource in the channel resource, to be sent to the second base station.
- the measurement unit includes:
- a detecting module configured to detect, in a preset channel resource state calculation period, a length of time that the total channel power in the designated cell is lower than a channel occupancy detection threshold
- the first acquiring module is configured to obtain a measurement result of a channel resource state according to the detected length of time.
- the detection module includes:
- the detecting submodule is configured to detect, in an idle time of a preset channel resource state calculation period, a length of time that the total channel power in the designated cell is lower than a channel occupancy detection threshold.
- the first obtaining module includes:
- a determining submodule configured to determine a data transmission time of the specified cell in the preset channel resource state calculation period
- the obtaining submodule is configured to obtain a measurement result of the channel resource state according to the data transmission time and a length of time in which the total channel power in the specified cell is lower than the channel occupancy detection threshold in the preset channel resource state calculation period.
- the first obtaining module further includes:
- the determining submodule is further configured to separately acquire an uplink data transmission time and a downlink data transmission time of the specified cell in the preset channel resource state calculation period;
- an allocation submodule configured to allocate the time length of the total channel power to the channel occupancy detection threshold in the idle time of the preset channel resource state calculation period to be allocated to the uplink channel and the downlink channel according to a preset ratio.
- the acquiring submodule is further configured to obtain, according to the allocation result, the uplink data transmission time, and the downlink data transmission time, a measurement result of an uplink channel resource state and a downlink channel resource state.
- measuring unit further includes:
- a second acquiring module configured to perform, when the channel access detection is performed after the first listening and the channel access detection in the specified cell in the preset channel available resource calculation period, The sum of the length of opportunity;
- a third obtaining module configured to obtain, according to the sum of the acquired transmission opportunity time lengths, a measurement result of a channel resource state.
- the foregoing method and any possible implementation manner further provide an implementation manner, where the channel resource status includes a channel occupied resource obtained by channel occupancy detection.
- detection module is further configured to:
- the first acquiring module is configured to obtain a measurement result of a channel resource state according to the detected length of time.
- the embodiment of the present application provides a device for load balancing, which is applicable to a second base station, where the device includes:
- a first sending unit configured to send a resource status request message to the first base station, where the resource status request message includes measurement configuration information indicating that the first base station measures channel resource status, so that the first base station is configured according to the measurement Information, measuring channel resource status of a specified cell;
- a first acquiring unit configured to acquire a resource status update message sent by the first base station, where the resource status update message includes a measurement result of a channel resource status of the specified cell;
- an updating unit configured to update, according to the measurement result of the channel resource state, a stored channel resource state of the designated cell.
- the foregoing method and any possible implementation manner further provide an implementation manner, where the designated cell is a cell indicated in the measurement configuration information.
- the device further includes:
- a second acquiring unit configured to acquire a resource status response message sent by the first base station, where the resource status response message includes indication information indicating whether the channel resource status of the specified cell can be measured.
- the device further includes:
- a second sending unit configured to send a handover request or a mobility configuration parameter adjustment request for load balancing to the first base station according to the updated channel resource status of the designated cell; or, according to the updated channel resource of the designated cell
- the state selects the handover target cell of the terminal.
- an embodiment of the present application provides a device for load balancing, which is applicable to a first base station, where the device includes a processor, a memory, and an input/output interface; the processor, the memory, and the input/output interface communicate through a bus.
- the memory is configured with computer code, the processor being capable of calling the code to control an input and output interface;
- the processor is configured to acquire a resource status request message sent by the second base station, where the resource status request message includes measurement configuration information indicating that the first base station measures channel resource status;
- the processor is configured to measure, according to the measurement configuration information, a channel resource status of a specified cell to obtain a measurement result of a channel resource status;
- the processor configured to include, in a resource status update message, a measurement result of a channel resource status of the specified cell, to send to the second base station, to enable the second base station to update the stored channel resource status of the specified cell.
- the embodiment of the present application provides a device for load balancing, which is applicable to a second base station, where the device includes a processor, a memory, and an input/output interface; the processor, the memory, and the input/output interface are performed through a bus. Communication; the memory is configured with computer code, the processor being capable of calling the code to control an input and output interface;
- the processor is configured to send a resource status request message to the first base station, where the resource status request message includes measurement configuration information indicating that the first base station measures channel resource status, so that the first base station is configured according to the measurement Information, measuring channel resource status of a specified cell;
- the processor is configured to acquire a resource status update message sent by the first base station, where the resource status update message includes a measurement result of a channel resource status of the specified cell;
- the processor is configured to update a stored channel resource state of the designated cell according to the measurement result of the channel resource status.
- the method and apparatus for load balancing provided by the embodiment of the present application, when performing load balancing on a first base station that uses unlicensed band communication, acquires a resource status request message carrying configuration information indicating a measurement channel resource status, and then the first base station Performing detection on the channel resource status of the designated cell, and transmitting the detected result to the second base station, so that the second base station performs load balancing switching and/or mobility configuration parameter adjustment for the base station using the unlicensed band communication, And the second base station may be configured to select a target cell that is switched by the terminal according to a channel resource state of the base station of the unlicensed band.
- the measurement process of the channel resource state is increased, thereby considering the channel of the cell in the communication system of the unlicensed band when implementing load balancing.
- the resource status is affected by the cell channel occupancy and the listening mechanism, and the second base station can perform load balancing on the first base station according to the channel resource status, thereby effectively performing load balancing.
- the second base station may select a cell with a higher channel access rate as the handover target cell of the terminal according to the channel resource state, thereby reducing the handover time and improving the handover efficiency.
- FIG. 1 is a flowchart of a method for load balancing according to an embodiment of the present application
- FIG. 2 is a schematic diagram of a resource provided by an embodiment of the present application.
- FIG. 3 is a flowchart of another method for load balancing provided by an embodiment of the present application.
- FIG. 4 is a flowchart of another method for load balancing provided by an embodiment of the present application.
- FIG. 5 is a flowchart of another method for load balancing according to an embodiment of the present disclosure.
- FIG. 6 is a structural diagram of a device for load balancing according to an embodiment of the present application.
- FIG. 7 is a structural diagram of another apparatus for load balancing according to an embodiment of the present disclosure.
- FIG. 8 is a structural diagram of another apparatus for load balancing according to an embodiment of the present disclosure.
- FIG. 9 is a structural diagram of a device for load balancing according to an embodiment of the present application.
- FIG. 10 is a structural diagram of another apparatus for load balancing according to an embodiment of the present disclosure.
- FIG. 11 is a structural diagram of another apparatus for load balancing according to an embodiment of the present disclosure.
- FIG. 12 is a structural diagram of a device for load balancing according to an embodiment of the present disclosure.
- FIG. 13 is a structural diagram of a device for load balancing according to an embodiment of the present application.
- first and second may be used to describe a base station in the embodiments of the present application, these base stations should not be limited to these terms. These terms are only used to distinguish base stations from each other.
- the first base station may also be referred to as a second base station without departing from the scope of the embodiments of the present application.
- the second base station may also be referred to as a first base station.
- the word “if” as used herein may be interpreted as “when” or “when” or “in response to determining” or “in response to detecting.”
- the phrase “if determined” or “if detected (conditions or events stated)” can be interpreted as “when determined” or “in response to determination” or “when detected (stated condition or event) "Time” or “in response to a test (condition or event stated)”.
- the radio access technology using a licensed frequency band is used.
- the currently available radio resources of the device are only related to the maximum radio resource and the radio resources used by the cell currently served by the device, but for the application.
- the radio resource of the unlicensed band is a shared radio resource.
- the load-balanced initiating device When the load-balanced initiating device performs load switching to the target device that applies the unlicensed band, if the channel occupancy rate of the target device is high, the target device It is necessary to continuously monitor the channel and wait until the LBT (Listen Before Talk) is successful before sending a response to the initiating device for load balancing, and using the existing load balancing method based on the licensed band communication system to perform the unlicensed band communication device.
- LBT Listen Before Talk
- the embodiment of the present application provides a method for load balancing, which is applicable to the first base station that uses unlicensed frequency band communication, and the flowchart of the method is as shown in FIG. 1 .
- the method includes:
- the first base station that uses the unlicensed band communication is used as the target base station for load balancing.
- the first base station acquires a resource status request message sent by the second base station, where the resource status request message includes measurement configuration information indicating that the first base station measures channel resource status.
- the second base station is used as an initiating base station for performing load balancing, and the base station may be a base station that performs communication by using an unlicensed frequency band (for example, Wfire), or may be a base station that uses the licensed frequency band to communicate.
- an unlicensed frequency band for example, Wfire
- the measurement configuration information includes a channel resource status identifier and a channel resource status update period.
- the channel resource status identifier is used to indicate that the first base station measures a channel resource status
- the channel resource status update period is used to instruct the first base station to send a resource status update message that includes a measurement result of a channel resource status. The period of use.
- the measurement configuration information is further used to indicate an identifier of a resource state type such as a measurement radio resource usage state, a hardware load state, a transmission network layer load state, a cell hybrid available capacity state, and a detection period of the states.
- a resource state type such as a measurement radio resource usage state, a hardware load state, a transmission network layer load state, a cell hybrid available capacity state, and a detection period of the states.
- the first base station measures, according to the measurement configuration information, a channel resource status of the designated cell, to obtain a measurement result of the channel resource status.
- the measurement configuration information may indicate a cell identifier of the first base station to measure a channel resource status, where the designated cell may be a cell indicated in the measurement configuration information.
- the first base station extracts, from the measurement configuration information, an identifier indicating a measurement channel resource status and a measured cell identifier, where the first base station responds to the resource status request information, and indicates, according to the indication of the measurement channel resource status indication identifier, the measurement configuration information.
- One or more cells perform measurement of channel resource status.
- the channel resource status includes all available resources of the channel obtained by channel occupancy detection, and/or remaining available resources of the unoccupied channel in the channel resource obtained by channel occupancy detection.
- the remaining available resources of the remaining available resource channels of the unoccupied channel include the number of remaining resources of the channel relative to the channel maximum resource, and/or the remaining available resources of the channel with respect to all the available resources of the channel obtained by the channel occupancy detection. number.
- the channel state resource may also be other channel state measurement results based on channel occupancy detection, for example, may be a resource occupied by a channel occupied by channel occupancy detection, where the channel is occupied by resources and channels.
- the available resources make up all the resources of the channel.
- the first base station measures the channel resource status of the designated cell according to the identifier of the channel resource status identifier by identifying the channel resource status identifier in the measurement configuration information.
- the specified channel resource status identifier is 1, it indicates that the measured channel resource status is indicated.
- the first base station extracts the channel resource status identifier from the measurement configuration information sent by the second base station, when the first base station identifies that the identifier is 1, the channel resource status of the designated cell is measured; when the first base station identifies the identifier If it is not 1, the channel resource status of the specified cell is not measured.
- channel resource status identifier is only an implementable manner provided by the present application, and is not specifically limited to the present application.
- the first base station sends the measurement result of the channel resource status to the second base station in a resource status update message.
- the second base station updates the stored channel resource status of the designated cell according to the measurement result of the channel resource status.
- the second base station deletes the original information from the specified location that stores the channel resource status of the designated cell, and then stores the obtained channel resource status to the specified location, and updates the stored channel resource status of the designated cell, thereby enabling the second base station to enable the second base station to Obtaining the channel resource status of the designated cell, and using the updated channel resource status of the designated cell, performing load balancing switching and mobility configuration parameter adjustment for the designated cell.
- the channel resource status of the updated designated cell may also serve as a basis for selecting a target cell for handover.
- the load balancing method when performing load balancing on the first base station that uses the unlicensed band communication, acquires a resource status request message carrying configuration information indicating a measurement channel resource status, and then the first base station pairs are designated.
- the cell performs channel resource status detection, and sends the detected result to the second base station, so that the second base station performs load balancing switching and/or mobility configuration parameter adjustment for the base station using the unlicensed band communication.
- load balancing when load balancing is performed for the first base station that uses the unlicensed band communication, the measurement process of the channel resource state is increased, thereby considering the channel of the cell in the communication system of the unlicensed band when implementing load balancing.
- the resource status is affected by the cell channel occupancy and the listening mechanism, and the second base station can perform load balancing on the first base station according to the channel resource status, thereby effectively performing load balancing.
- the second base station may select a cell with a higher channel access rate as the handover target cell of the terminal according to the channel resource state, thereby reducing the handover time and improving the handover efficiency.
- the embodiment of the present application provides another implementation manner. As shown in FIG. 3, after the first base station acquires the resource status request message sent by the second base station, the method further includes:
- the first base station determines whether channel resource state measurement can be performed on the designated cell.
- the first base station sends a resource status response message to the second base station, where the resource status response message includes indication information indicating whether the channel resource status of the specified cell can be measured.
- the resource status response message is a response message that the first base station responds to the second base station sending the resource status request information.
- the resource status response message may be a response message that the first base station successfully responds to the resource status request message sent by the second base station, or may be a response message that the first base station does not successfully respond to the resource status request message sent by the second base station.
- the response message that the first base station fails to respond to the resource status request message sent by the second base station includes: a response message sent by the first base station when the one or more measurement objects indicated in the resource status request message cannot be successfully measured, and It is a response message sent when all measurement objects indicated in the resource status request message cannot be successfully measured.
- the resource status response message includes a channel resource measurement success identifier for the designated cell.
- the first base station determines that the information resource state measurement cannot be performed, and sends a resource status response message to the second base station, where the channel resource of the cell is included. The reason for the failure of the status measurement failure identification and channel resource status measurement.
- the second base station performs a corresponding operation by indicating indication information indicating whether the channel resource status of the specified cell can be measured. For example, when the indication information indicates that the first base station is capable of measuring the channel resource status of the designated cell, the second base station waits to receive the measurement result of the measurement of the specified cell channel resource state by the first base station; if the indication information indicates that the first base station cannot The cell channel resource status is specified for measurement, and the second base station performs other operations. For example, the second base station selects not to perform load balancing on the first base station.
- the format of the resource status response message may be a format as described in Table 1, and the eighth bit of the resource status measurement failure indication information Measurement Failed Report Characteristics IE is used as a channel resource status measurement failure identifier, when the bit is 1
- the indication indicates that the first base station fails to perform channel resource state measurement on the cell indicated in the Cell ID, and the Cause IE indicates the reason why the channel resource state measurement fails.
- the format of the resource status response message may also be the format as described in Table 2, and the eighth bit of the resource status measurement failure indication information Measurement Failed Report Characteristics IE is used as the channel resource status measurement failure identifier, when the bit is 1
- the time indicates that the first base station fails to perform channel resource state measurement on the cell indicated in the Cell ID, and the Cause IE indicates the reason why the channel resource state measurement fails.
- the embodiment of the present application provides another implementation manner.
- the second base station updates the stored channel resource status of the designated cell according to the measurement result of the channel resource status.
- the second base station sends a handover request or a mobility configuration parameter adjustment request for load balancing to the first base station according to the updated channel resource status of the designated cell, or selects according to the updated channel resource state of the designated cell.
- the handover target cell of the terminal sends a handover request or a mobility configuration parameter adjustment request for load balancing to the first base station according to the updated channel resource status of the designated cell, or selects according to the updated channel resource state of the designated cell.
- the first base station obtains the execution of the resource status request message sent by the second base station in step 101, and the embodiment of the present application provides another The implementation manner is as shown in FIG. 5, and the step 101 specifically includes:
- the first base station acquires a channel resource status identifier from the first newly added sub-information unit or the first existing sub-information unit in the resource status request message.
- the second base station adds a new identifier for indicating the measurement of the channel resource status by the first base station or the existing resource status request information according to the communication protocol according to the communication protocol with the first base station.
- the designated identifier is used to instruct the first base station to perform channel resource state measurement.
- the first base station and the second base station protocol use the idle bit in the Report Characteristics information element in the resource status request information, for example, the bit value carried by the 8th bit (or the 32nd bit) as a channel resource.
- the status measurement identifier when 1 , indicates that the first base station performs channel resource status measurement on the designated cell.
- the identifier of the second base station and the first base station protocol channel resource state identifier and the identifier indicating the remaining capacity capacity value of the measurement cell share an identifier, that is, originally used to indicate the measurement capacity remaining capacity Capacity value identifier, and is used to indicate The remaining capacity of the cell and the state of the channel resource are measured.
- the second base station acquires the cell remaining capacity identifier, it starts to measure the channel resource status.
- the first base station acquires a channel resource status update period from the second newly added sub information unit or the second existing sub information unit in the resource status request message.
- the channel resource status update period may measure that the update period of other resources indicated in the configuration information is the same, or may be different from the update period of other resources.
- the first base station and the second base station protocol use the update period of the other resources in the resource status request information to carry the channel resource status update period, for example, using the Reporting Periodicity bearer channel in the resource request information.
- the resource status update period that is, sharing an update period with other resources.
- the first base station and the second base station protocol add an information unit in the resource status request information to carry the channel resource status update period.
- the method for transmitting the measurement result of the channel resource state to the second base station in the resource status update message is performed in the following steps.
- the measurement result of all available resources of the channel is included in a new information unit of the resource status update message and sent to the second base station.
- the first base station adds a new information unit in the resource status update message to carry the measurement result considering all available resources of the LBT channel.
- All the available resources of the channel in the designated cell that are considered to be heard first include the channel resources used by the designated cell, which can reflect the channel access capability of the designated cell, and the second base station specifies all available resources of the channel that are considered to be heard first.
- the channel access capability of the designated cell can be obtained, and the larger the available resources, the higher the channel access capability.
- the channel resource status may be further divided into an uplink channel resource state and a downlink channel state. Therefore, the measurement result carried in the newly added information unit of the resource status update message may simultaneously indicate the available resource status of the uplink channel and the downlink channel. It is also possible to indicate the available resources of the uplink channel and the available resources of the downlink channel, respectively.
- the new information element of the resource status update message adds an information element to carry the measurement result, for example, as shown in Table 2, the composite in the resource status update message A new Channel Available Value information element is added to the Available Capacity Group information unit to indicate the channel available resources of the cell; when the available resources of the uplink channel and the downlink channel are respectively indicated, the new information of the resource status update message is added.
- the unit adds two information units to respectively carry the measurement result of the available resources of the uplink channel and the measurement result of the available resources of the downlink channel, for example, the downlink composite available in the Composite Available Capacity Group information element in the resource status update message Channel Available Value is added to the Composite Available Capacity Downlink and the Uplink Composite Available Capacity Uplink information element, respectively indicating the available resources of the downlink channel and the available resources of the uplink channel, Compo The format of the site available Capacity Downlink and Composite Available Capacity Uplink information elements is shown in Table 4.
- Tables 4 and 5 are only the format of the information unit provided for the specific example above, and are not intended to limit the application.
- the measurement result of the remaining available resources of the unoccupied channel in the channel resource is included in an existing information unit of the resource status update message and sent to the second base station.
- the available resources in the designated cell that are considered to be unlisted in the channel resources are not included in the channel resources used by the designated cell, and may reflect the load status of the designated cell, and the second base station specifies the cell to be considered after listening.
- the remaining resources of the unoccupied channel in the channel resources can obtain the load condition of the designated cell, and the larger the remaining available resources, the lower the load.
- the remaining available resources of the channel include the number of remaining resources of the channel relative to the channel maximum resource, and/or the number of remaining channels of the channel relative to all available resources of the channel obtained by the channel occupancy detection.
- the embodiment proposes multiplexing the information unit to implement measurement results of remaining available resources of an unoccupied channel in a channel resource that is considered to be heard first.
- Hosting For example, as shown in Table 6, the Capacity Available Capacity Downlink and the Capacity Available Capacity Uplink information element in the Composite Available Capacity Group information element in the Reuse Resource Status Update message indicate the available resources of the downlink channel and the available resources of the uplink channel, respectively. .
- the measurement result of the remaining available resources of the unoccupied channel in the channel resource is included in a new information unit of the resource status update message and sent to the second base station.
- the remaining available resources of the channel include the number of remaining resources of the channel relative to the channel maximum resource, and/or the number of remaining channels of the channel relative to all available resources of the channel obtained by the channel occupancy detection.
- the foregoing three methods may also be combined in any combination, that is, the combination of the first mode and the second mode sends the measurement result of the available resources to the second base station, and the combination of the mode 1 and the mode 3 sends the measurement result of the available resources to the second base station. Or, in combination of the second mode and the third mode, the measurement result of the available resources is sent to the second base station.
- the measurement result of the available resources is sent to the second base station by using the combination of the mode 2 and the mode 3
- the mode 2 and the mode 3 send different remaining resources of the channel, for example, the mode 2 sends the maximum to the second base station relative to the channel.
- the second base station can simultaneously obtain the channel access capability and the load status of the designated cell.
- the channel resource state measurement is performed on the designated cell to obtain the measurement result of the channel resource state, and the embodiment of the present application provides three implementation manners.
- the channel occupancy detection threshold is also the first detection threshold.
- the device determines that the channel is not occupied, and can send a signal.
- the threshold is higher than the threshold, the device determines that the channel is occupied and cannot send a signal.
- the channel resource state calculation period is used to calculate a resource state of the channel, and the information resource state calculation period may be a preset value in the first base station, and may also use a resource state update period in the measurement configuration information.
- the Received Signal Strength Indication indicates the total channel power value during a specific channel transmission.
- the idle time refers to the time when there is neither uplink transmission nor downlink transmission in the channel.
- the first base station first determines a ratio of a time length of the detected channel total power lower than the LBT detection threshold to a channel resource calculation period, and then calculates a product of the ratio and the number of resources of the maximum unlicensed frequency band of the first base station, and calculates Channel available resources.
- the preset channel resource calculation period is 1000 ms
- the time length of measuring the total channel power lower than the LBT detection threshold in the idle time of the preset channel resource calculation period is 800 ms
- the ratio of the two is calculated as 0.8, if the cell
- the maximum number of resources is 100, and the number of available resources on the channel is calculated to be 80 (100*0.8).
- step 1022A in the first mode includes:
- 10222A Obtain a measurement result of a channel resource state according to the data transmission time and a length of time that the total channel power in the designated cell is lower than a channel occupancy detection threshold in a preset channel resource state calculation period.
- the measurement result of the channel resource state obtained by the above steps 10221A and 10222A can be divided into two types.
- the first type is to determine the uplink data transmission time and the downlink data transmission time of the designated cell in the preset channel resource state calculation period. And, the measurement result of the channel resource state is obtained according to the total data transmission time.
- the channel resource calculation period is 1000 ms
- the total data transmission time in 1000 ms is 100 ms
- the idle time is 900 ms.
- the time length of the first base station measuring the total channel power lower than the LBT detection threshold in the idle time is 800 ms, and the total data is calculated.
- the sum of the transmission time and the total length of the channel is less than the detection threshold is 900 ms, and the ratio of the sum of the two channels to the channel resource calculation period is 0.9. If the total number of resources of the cell is 100, the calculated number of available channels of the channel is 90. (100*0.9).
- the second type calculates the uplink channel resource status and the downlink Cinda resource status separately.
- step 1 the uplink data transmission time and the downlink data transmission time of the specified cell in the preset channel resource state calculation period are respectively obtained.
- Step 2 The time length of the total cell power in the idle time of the preset channel resource state calculation period is lower than the channel occupation detection threshold in the preset channel resource state calculation period, and is allocated to the uplink channel and the downlink channel according to a preset ratio.
- Step 3 Obtain a measurement result of an uplink channel resource state and a downlink channel resource state according to the allocation result, the uplink data transmission time, and the downlink data transmission time.
- the channel available resource calculation period is 1000 ms, wherein the service time of obtaining the downlink channel is 75 ms, and the service time of acquiring the uplink channel is 25 ms; then, it is assumed that the first base station measures the total channel power in the idle time is lower than the LBT detection threshold.
- the length of time is 800ms.
- the channel available resource calculation period is 1000 ms
- the first base station successfully performs 10 times of LBT channel access detection within 1000 ms
- each time the available TXOP (transmission opportunity) time is 10 ms
- the sum of the TXOP times is The ratio of the channel available resource calculation period is 0.1. If the total theoretical resource of the cell is 100, the number of available channels of the channel is calculated to be 10 (100*0.1).
- the three methods for measuring the channel resource status are only calculated based on the LBT mechanism on the base station side, and the calculation of the uplink channel resource status may be jointly calculated based on the LBT mechanism on the base station side and the LBT mechanism on the terminal side. Obtaining, but the channel access detection situation of the LBT based on the terminal side cannot be directly obtained by the base station, and the channel access detection condition of the terminal side is obtained by estimating the received uplink data or by reporting the terminal measurement.
- the measurement method jointly calculated based on the LBT mechanism on the base station side and the LBT mechanism on the terminal side will not be specifically described.
- the embodiment of the present application provides a device for load balancing, which is applicable to a first base station.
- the structure of the device is as shown in FIG. 6.
- the device includes:
- a first acquiring unit 21 configured to acquire a resource status request message sent by the second base station, where the resource status request message includes measurement configuration information indicating that the first base station measures channel resource status;
- the measuring unit 22 is configured to measure a channel resource status of the specified cell according to the measurement configuration information to obtain a measurement result of the channel resource status.
- a first sending unit 23 configured to include, in a resource status update message, a measurement result of a channel resource status of the specified cell, to send to the second base station, so that the second base station updates the stored channel resource of the designated cell status.
- the designated cell is a cell indicated in the measurement configuration information.
- the device further includes:
- the determining unit 24 is configured to determine whether channel resource state measurement can be performed on the designated cell.
- the second sending unit 25 is configured to send a resource status response message to the second base station, where the resource status response message includes indication information indicating whether the channel resource status of the specified cell can be measured.
- the second sending unit 25 includes:
- the sending module 251 is configured to: if the channel resource status measurement is not performed on the cell indicated in the measurement configuration information, send a resource status response message to the second base station, where the resource status response message includes a channel resource status of the cell Reasons for measurement failure identification and channel resource status measurement failure
- the apparatus includes:
- the second obtaining unit 26 is configured to receive, by the second base station, a handover request message or a mobility configuration parameter adjustment request message for load balancing.
- the configuration information includes a channel resource status identifier and a channel resource status update period, where the channel resource status identifier is used to indicate that the first base station sends a measurement including a channel resource status. The period of time that the resulting resource status update message is used.
- the first obtaining unit 21 includes:
- the first obtaining module 211 is configured to obtain a channel resource status identifier from the first new sub-information unit or the first existing sub-information unit in the resource status request message.
- the second obtaining module 212 is configured to obtain a channel resource status update period from the second newly added sub information unit or the second existing sub information unit in the resource status request message.
- the channel resource status includes all available resources of the channel obtained by channel occupancy detection, and/or remaining available resources of the unoccupied channel in the channel resource obtained by channel occupancy detection.
- the remaining resources of the channel include the number of remaining resources of the channel relative to the maximum resource of the channel, and/or the number of remaining resources of the channel of all available resources of the channel obtained by the channel occupancy detection.
- the first sending unit 23 includes:
- the first sending module 231 is configured to send the measurement result of all available resources of the channel to the second base station in a new information unit of the resource status update message; and/or,
- the second sending module 232 is configured to send, in the existing information unit of the resource status update message, the measurement result of the remaining available resources of the channel resource to the second base station.
- the first sending unit 23 includes:
- the third sending unit 234 is configured to send, to the second base station, a measurement result of remaining resources available for the unoccupied channel in the channel resource, in a new information unit of the resource status update message; and or,
- the fourth sending unit 235 is configured to send, in the existing information unit of the resource status update message, the measurement result of the remaining available resources of the channel resource to the second base station.
- the measuring unit 22 includes:
- the detecting module 221 is configured to detect, in a preset channel resource state calculation period, a length of time that the total channel power in the designated cell is lower than the channel occupancy detection threshold.
- the first obtaining module 222 is configured to obtain a measurement result of a channel resource status according to the checked time length.
- the detecting module 221 includes:
- the detecting sub-module 2211 is configured to detect, in an idle time of a preset channel resource state calculation period, a length of time that the total channel power in the specified cell is lower than the channel occupancy detection threshold.
- the first obtaining module 222 includes:
- the determining submodule 2221 is configured to determine a data transmission time of the designated cell in the preset channel resource state calculation period.
- the obtaining sub-module 2222 is configured to obtain a measurement result of the channel resource state according to the data transmission time and a length of time in which the total channel power in the specified cell is lower than the channel occupancy detection threshold in the preset channel resource state calculation period.
- the first obtaining module 222 further includes:
- the determining sub-module 2223 is further configured to separately acquire an uplink data transmission time and a downlink data transmission time of the specified cell in the preset channel resource state calculation period.
- the allocation sub-module 2224 is configured to allocate the time length of the total channel power to the uplink channel and the downlink according to a preset ratio in the idle time of the preset channel resource state calculation period. channel.
- the obtaining sub-module 2222 is further configured to obtain, according to the allocation result, the uplink data transmission time, and the downlink data transmission time, a measurement result of an uplink channel resource state and a downlink channel resource state.
- the measuring unit 22 further includes:
- the second obtaining module 223 is configured to: when the channel access detection is performed after the first listening and the channel access detection in the specified cell in the preset channel available resource calculation period, The sum of the lengths of transmission opportunities.
- the third obtaining module 224 is configured to obtain a measurement result of the channel resource status according to the sum of the acquired transmission opportunity time lengths.
- the channel resource status includes a resource occupied by a channel obtained by channel occupancy detection.
- the detecting module 221 is further configured to:
- the first obtaining module 222 is configured to obtain a measurement result of a channel resource state according to the detected length of time.
- the apparatus for load balancing when performing load balancing on the first base station that uses the unlicensed band communication, acquires a resource status request message carrying configuration information indicating a measurement channel resource status, and then the first base station pairs are designated.
- the cell performs channel resource status detection, and sends the detected result to the second base station, so that the second base station performs load balancing switching and/or mobility configuration parameter adjustment for the base station using the unlicensed band communication, and And causing the second base station to select a target cell that is switched by the terminal according to a channel resource state of the base station of the unlicensed band.
- the measurement process of the channel resource state is increased, thereby considering the channel of the cell in the communication system of the unlicensed band when implementing load balancing.
- the resource status is affected by the cell channel occupancy and the listening mechanism, and the second base station can perform load balancing on the first base station according to the channel resource status, thereby effectively performing load balancing.
- the second base station may select a cell with a higher channel access rate as the handover target cell of the terminal according to the channel resource state, thereby reducing the handover time and improving the handover efficiency.
- the embodiment of the present application provides a device for load balancing, which is applicable to a second base station, and the device as shown in FIG. 9 includes:
- the first sending unit 31 is configured to send a resource status request message to the first base station, where the resource status request message includes measurement configuration information indicating that the first base station measures channel resource status, so that the first base station performs the measurement according to the first base station. Configuration information, measuring the channel resource status of the specified cell.
- the first obtaining unit 32 is configured to acquire a resource status update message sent by the first base station, where the resource status update message includes a measurement result of a channel resource status of the specified cell.
- the updating unit 33 is configured to update the stored channel resource status of the designated cell according to the measurement result of the channel resource status.
- the device further includes:
- the second obtaining unit 34 is configured to acquire a resource status response message sent by the first base station, where the resource status response message includes indication information indicating whether the channel resource status of the specified cell can be measured.
- the apparatus further includes:
- the second sending unit 35 is configured to send, according to the updated channel resource status of the first base station, a handover request or a mobility configuration parameter adjustment request for load balancing to the first base station; or, according to the updated designated cell
- the channel resource status selects the handover target cell of the terminal.
- the apparatus for load balancing when performing load balancing on the first base station that uses the unlicensed band communication, acquires a resource status request message carrying measurement configuration information indicating a measurement channel resource status, and then the first base station pair The designated cell performs channel resource status detection, and transmits the detected result to the second base station, so that the second base station performs load balancing switching and/or mobility configuration parameter adjustment for the base station that uses the unlicensed band communication.
- the technical method provided by the present application increases the measurement process of the channel resource state when performing load balancing on the first base station that uses the unlicensed band communication, thereby considering the unlicensed frequency band when implementing load balancing.
- the channel resource status of the cell in the communication system is affected by the cell channel occupancy condition and the first listening mechanism, and the second base station can load balance the first base station according to the channel resource status, thereby effectively reducing the switching time and improving the handover. effectiveness.
- the embodiment of the present application provides a device for load balancing, which is applicable to a first base station.
- the device includes a processor 41, a memory 42 and an input/output interface 43.
- the processor 41 and the memory 42 and The input/output interface 43 communicates via a bus;
- the memory is configured with computer code, and the processor 41 can call the code to control the input and output interface;
- the processor 41 is configured to acquire a resource status request message sent by the second base station, where the resource status request message includes measurement configuration information indicating that the first base station measures channel resource status;
- the processor 41 is configured to measure, according to the measurement configuration information, a channel resource status of a specified cell to obtain a measurement result of a channel resource status;
- the processor 41 is configured to send the measurement result of the channel resource status of the specified cell to the second base station in a resource status update message, so that the second base station updates the stored channel resource of the designated cell. status.
- the designated cell is a cell indicated in the measurement configuration information.
- the processor 41 is further configured to: determine whether a channel resource status measurement can be performed on the designated cell; and send a resource status response message to the second base station, where the resource status response message includes an indication Whether or not the indication information of the specified cell channel resource status can be measured.
- the processor 41 is further configured to: if the channel resource status measurement is not performed on the cell indicated in the measurement configuration information, send a resource status response message to the second base station, where the resource status response message includes The channel resource state measurement failure identifier of the cell and the reason for the failure of the channel resource state measurement.
- the processor 41 is further configured to receive a load balancing request handover request message or a mobility configuration parameter adjustment request message sent by the second base station.
- the measurement configuration information includes a channel resource status identifier and a channel resource status update period, where the channel resource status identifier is used to indicate that the first base station measures channel resource status, and the channel resource status update period And a period used by the first base station to send a resource status update message that includes a measurement result of a channel resource status.
- the processor 41 is further configured to: obtain a channel resource status identifier from the first new sub-information unit or the first existing sub-information unit in the resource status request message; and, from the resource status The second new sub-information unit or the second existing sub-information unit in the request message acquires a channel resource status update period.
- the channel resource status includes all available resources of the channel obtained by channel occupancy detection, and/or remaining available resources of the unoccupied channel in the channel resource obtained by channel occupancy detection, and/or through the channel The resources occupied by the detected channel are occupied.
- the remaining available resources of the channel include the number of remaining resources of the channel relative to the maximum resource of the channel, and/or the number of available resources of the channel relative to all available resources of the channel obtained by the channel occupancy detection.
- the processor 41 is further configured to send, to the second base station, a measurement result that all available resources of the channel are included in a new information unit of the resource status update message; and/or, And transmitting, to the second base station, a measurement result of the remaining available resources of the unoccupied channel in the channel resource, in an existing information unit of the resource status update message.
- the processor 41 is further configured to send, to the new information unit of the resource status update message, a measurement result of an unoccupied channel remaining available resource in the channel resource, to send the And the second base station; and/or, the measurement result of the remaining available resources of the unoccupied channel in the channel resource is included in an existing information unit of the resource status update message and sent to the second base station.
- the processor 41 is further configured to detect, in a preset channel resource state calculation period, a length of time that the total channel power in the specified cell is lower than a channel occupancy detection threshold; and, according to the detected The length of time to obtain the measurement result of the channel resource status.
- the processor 41 is further configured to detect, in an idle time of a preset channel resource state calculation period, a length of time that the total channel power is lower than the channel occupancy detection threshold.
- the processor 41 is further configured to determine a data transmission time of the specified cell in the preset channel resource state calculation period; and, according to the data transmission time and in a preset The time length of the total channel power in the specified cell in the channel resource state calculation period is lower than the channel occupancy detection threshold, and the measurement result of the channel resource state is obtained.
- the processor 41 is further configured to separately acquire an uplink data transmission time and a downlink data transmission time of the specified cell in the preset channel resource state calculation period.
- the processor 41 is further configured to allocate, according to a predetermined proportion, a time interval that the total cell power is lower than a channel occupancy detection threshold in the idle time in the preset channel resource state calculation period, to the uplink channel, and Downstream channel.
- the processor 41 is further configured to obtain, according to the allocation result, the uplink data transmission time, and the downlink data transmission time, a measurement result of an uplink channel resource state and a downlink channel resource state.
- the processor 41 is further configured to perform channel access detection after each listening first, when performing channel access detection in a predetermined cell in a preset channel available resource calculation period. And a sum of time lengths of transmission opportunities when successful; and, for obtaining a measurement result of a channel resource state according to a sum of lengths of the acquired transmission opportunities.
- the method and apparatus for load balancing provided by the embodiment of the present application, when performing load balancing on a first base station that uses unlicensed band communication, acquires a resource status request message carrying configuration information indicating a measurement channel resource status, and then the first base station Performing detection on the channel resource status of the designated cell, and transmitting the detected result to the second base station, so that the second base station performs load balancing switching and/or mobility configuration parameter adjustment for the base station using the unlicensed band communication, And the second base station may be configured to select a target cell that is switched by the terminal according to a channel resource state of the base station of the unlicensed band.
- the measurement process of the channel resource state is increased, thereby considering the channel of the cell in the communication system of the unlicensed band when implementing load balancing.
- the resource status is affected by the cell channel occupancy and the listening mechanism, and the second base station can perform load balancing on the first base station according to the channel resource status, thereby effectively performing load balancing.
- the second base station may select a cell with a higher channel access rate as the handover target cell of the terminal according to the channel resource state, thereby reducing the handover time and improving the handover efficiency.
- the embodiment of the present application provides a device for load balancing, which is applicable to a second base station.
- the device includes a processor 51, a memory 52, and an input/output interface 53.
- the processor 51 and the memory 52 are provided.
- the input/output interface 53 communicates via a bus;
- the memory 52 is configured with computer code, and the processor 51 can call the code to control the input and output interface;
- the processor 51 is configured to send a resource status request message to the first base station, where the resource status request message includes measurement configuration information indicating that the first base station measures channel resource status, so that the first base station performs the measurement according to the first base station. Configuration information, measuring channel resource status of the specified cell;
- the processor 51 is configured to acquire a resource status update message sent by the first base station, where the resource status update message includes a measurement result of a channel resource status of the specified cell.
- the processor 51 is configured to update the stored channel resource status of the designated cell according to the measurement result of the channel resource status.
- the designated cell is a cell indicated in the measurement configuration information.
- the processor 51 is further configured to: after sending the resource status request message to the target base station, the following:
- the processor 51 is further configured to send, according to the updated channel resource status of the designated cell, a handover request or a mobility configuration parameter adjustment request for the purpose of load balancing to the first base station; or The channel resource state of the updated designated cell selects the handover target cell of the terminal.
- the method and apparatus for load balancing provided by the embodiment of the present application, when performing load balancing on a first base station that uses unlicensed band communication, acquires a resource status request message carrying configuration information indicating a measurement channel resource status, and then the first base station Performing detection on the channel resource status of the designated cell, and transmitting the detected result to the second base station, so that the second base station performs load balancing switching and/or mobility configuration parameter adjustment for the base station using the unlicensed band communication, And the second base station may be configured to select a target cell that is switched by the terminal according to a channel resource state of the base station of the unlicensed band.
- the measurement process of the channel resource state is increased, thereby considering the channel of the cell in the communication system of the unlicensed band when implementing load balancing.
- the resource status is affected by the cell channel occupancy and the listening mechanism, and the second base station can perform load balancing on the first base station according to the channel resource status, thereby effectively performing load balancing.
- the second base station may select a cell with a higher channel access rate as the handover target cell of the terminal according to the channel resource state, thereby reducing the handover time and improving the handover efficiency.
- the disclosed system, apparatus, and method may be implemented in other manners.
- the device embodiments described above are merely illustrative.
- the division of the unit is only a logical function division.
- multiple units or components may be combined.
- the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be in an electrical, mechanical or other form.
- the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
- each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
- the above integrated unit can be implemented in the form of hardware or in the form of hardware plus software functional units.
- the above-described integrated unit implemented in the form of a software functional unit can be stored in a computer readable storage medium.
- the software functional unit is stored in a storage medium and includes instructions for causing a computer device (which may be a personal computer, a server, or a network device, etc.) or a processor to perform the methods of the various embodiments of the present application. Part of the steps.
- the foregoing storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and the like, which can store program codes. .
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Abstract
La présente invention se rapporte au domaine technique des communications. Un mode de réalisation de la présente invention concerne un procédé et un dispositif d'équilibrage de charge. Le procédé comprend les étapes suivantes : une première station de base acquiert un message de demande d'état de ressource transmis par une seconde station de base, le message de demande d'état de ressource comprenant des informations de configuration de mesure utilisées pour ordonner à la première station de base de mesurer un état de ressource de canal ; la première station de base effectue, selon les informations de configuration de mesure, une mesure sur un état de ressource de canal d'une cellule spécifiée pour obtenir un résultat de mesure de l'état de ressource de canal ; la première station de base comprend le résultat de mesure de l'état de ressource de canal de la cellule spécifiée dans un message de mise à jour d'état de ressource, et le transmet à la seconde station de base ; et la seconde station de base met à jour un état de ressource de canal stocké de la cellule spécifiée avec le résultat de mesure de l'état de ressource de canal. Le mode de réalisation de la présente invention est applicable à un processus d'équilibrage de charge réalisé sur une station de base, la station de base utilisant une bande sans licence pour effectuer une communication.
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CN201710189151.XA CN107071835A (zh) | 2017-03-27 | 2017-03-27 | 一种负载均衡的方法及装置 |
CN201710189151.X | 2017-03-27 |
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CN114079973A (zh) * | 2020-08-17 | 2022-02-22 | 大唐移动通信设备有限公司 | 一种负荷均衡方法、装置、电子设备及存储介质 |
WO2022141301A1 (fr) * | 2020-12-30 | 2022-07-07 | 华为技术有限公司 | Procédés et appareil de communication et système |
WO2025162157A1 (fr) * | 2024-01-31 | 2025-08-07 | 华为技术有限公司 | Procédé de communication et appareil associé, support de stockage et produit-programme |
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CN107071835A (zh) * | 2017-03-27 | 2017-08-18 | 北京佰才邦技术有限公司 | 一种负载均衡的方法及装置 |
CN120712819A (zh) * | 2023-02-17 | 2025-09-26 | 中兴通讯股份有限公司 | Ai/ml相关信息的报告机制 |
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CN103648130A (zh) * | 2013-12-27 | 2014-03-19 | 大唐移动通信设备有限公司 | 一种负荷均衡方法及基站 |
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CN102143510A (zh) * | 2011-03-25 | 2011-08-03 | 西安电子科技大学 | 异构网络间剩余资源的交互方法 |
US20150103657A1 (en) * | 2013-10-16 | 2015-04-16 | At&T Mobility Ii Llc | Adaptive rate of congestion indicator to enhance intelligent traffic steering |
CN103648130A (zh) * | 2013-12-27 | 2014-03-19 | 大唐移动通信设备有限公司 | 一种负荷均衡方法及基站 |
CN107071835A (zh) * | 2017-03-27 | 2017-08-18 | 北京佰才邦技术有限公司 | 一种负载均衡的方法及装置 |
Cited By (4)
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CN114079973A (zh) * | 2020-08-17 | 2022-02-22 | 大唐移动通信设备有限公司 | 一种负荷均衡方法、装置、电子设备及存储介质 |
CN114079973B (zh) * | 2020-08-17 | 2024-03-08 | 大唐移动通信设备有限公司 | 一种负荷均衡方法、装置、电子设备及存储介质 |
WO2022141301A1 (fr) * | 2020-12-30 | 2022-07-07 | 华为技术有限公司 | Procédés et appareil de communication et système |
WO2025162157A1 (fr) * | 2024-01-31 | 2025-08-07 | 华为技术有限公司 | Procédé de communication et appareil associé, support de stockage et produit-programme |
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