WO2018196850A1 - 测量上报的处理方法、网络侧设备和用户设备 - Google Patents

测量上报的处理方法、网络侧设备和用户设备 Download PDF

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Publication number
WO2018196850A1
WO2018196850A1 PCT/CN2018/084815 CN2018084815W WO2018196850A1 WO 2018196850 A1 WO2018196850 A1 WO 2018196850A1 CN 2018084815 W CN2018084815 W CN 2018084815W WO 2018196850 A1 WO2018196850 A1 WO 2018196850A1
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Prior art keywords
cell
different system
signal
serving cell
quality
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PCT/CN2018/084815
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English (en)
French (fr)
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吴昱民
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维沃移动通信有限公司
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/08Testing, supervising or monitoring using real traffic
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/10Scheduling measurement reports ; Arrangements for measurement reports
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/02Terminal devices
    • H04W88/06Terminal devices adapted for operation in multiple networks or having at least two operational modes, e.g. multi-mode terminals

Definitions

  • the present disclosure relates to a wireless communication technology, and in particular, to a processing method for measuring a report, a network side device, and a user equipment.
  • the terminal In the Long Term Evolution (LTE) system, the terminal needs to report the measurement result according to the event configured by the base station.
  • the event in the LTE system that triggers the terminal to report the measurement result is a case of comparison between the quality of the serving cell and/or the neighboring cell in the LTE system or a comparison with a preset threshold.
  • LTE and 5G systems need to be tightly coupled in a dual connectivity (Dual Connectivity, DC for short) manner.
  • MN master node
  • SN secondary node
  • the two cell groups may be included, that is, a primary cell group (MCG) and a secondary cell group (SCG).
  • the primary cell group may include a Primary Cell (PCell) and one or more Secondary Cell (SCell).
  • the secondary cell group may include a primary secondary cell (PSCell) and one or Multiple SCells.
  • the MN when the MN performs operations such as adding, deleting, or modifying a cell in the SN, the trigger event reported by the current LTE system is not used, and the requirement for the measurement report by the master node cannot be met.
  • the present disclosure provides a method for processing a measurement report, a network side device, and a user equipment, which are used to solve the trigger event of the measurement report in the LTE system, and cannot satisfy the problem that the master node needs the measurement report.
  • a first aspect of the present disclosure provides a method for processing a measurement report, which is applied to a network side device, including: configuring measurement reporting configuration information of a UE, where the measurement reporting configuration information includes a different system cell used to trigger the UE to report a measurement result. An event; sending the measurement reporting configuration information to the UE.
  • a second aspect of the present disclosure provides a method for processing a measurement report, which is applied to a UE, including: acquiring a measurement result; determining that the measurement result satisfies at least one pre-acquired heterogeneous system cell for triggering measurement of the UE to report the measurement result. When the event occurs, the measurement result is reported to the network side device.
  • the third aspect of the disclosure provides a network side device, including: a processing module, configured to configure measurement reporting configuration information of the UE, where the measurement reporting configuration information includes an event for triggering the UE to report the measurement result of the different system cell; And a sending module, configured to send the measurement reporting configuration information to the UE.
  • a fourth aspect of the present disclosure provides a user equipment, including: an obtaining module, configured to acquire a measurement result, where the first processing module is configured to determine whether the measurement result meets at least one pre-acquired for triggering the user equipment to report the measurement. a result of the event of the different system cell; the sending module, configured to: when the first processing module determines whether the measurement result meets at least one event that is used to trigger the heterogeneous cell that reports the measurement result by the user equipment, The measurement result is reported to the network side device.
  • a fifth aspect of the present disclosure provides a network side device, including: a memory, a processor, a transmitter, and a computer program, wherein the computer program is stored in the memory, the processor running the computer program to perform the first aspect
  • the processing method of measurement reporting provided by any of the implementations.
  • a sixth aspect of the present disclosure provides a user equipment, including: a memory, a processor, and a computer program, the computer program being stored in the memory, the processor running the computer program to perform any one of the second aspects The method of processing the measurement report provided by the method.
  • the memory may also be integrated inside the processor.
  • a seventh aspect of the present disclosure provides a storage medium comprising: a readable storage medium and a computer program for implementing a processing method of measurement reporting provided by the first aspect.
  • An eighth aspect of the present disclosure provides a storage medium comprising: a readable storage medium and a computer program for implementing a processing method of measurement reporting provided by the second aspect.
  • a ninth aspect of the present disclosure provides a program product comprising a computer program (ie, an execution instruction) stored in a readable storage medium.
  • a computer program ie, an execution instruction
  • At least one processor of the network side device can read the computer program from a readable storage medium, and the at least one processor executes the computer program such that the network side device device implements the processing method of measurement reporting provided by various embodiments of the first aspect.
  • a tenth aspect of the present disclosure provides a program product comprising a computer program (ie, an execution instruction), the computer program being stored in a readable storage medium.
  • At least one processor of the user device can read the computer program from a readable storage medium, and the at least one processor executes the computer program such that the user device implements the processing method of the measurement report provided by the various embodiments of the second aspect above.
  • the network side device configuration includes the measurement report configuration information of the event of the inter-system cell that is used to trigger the measurement result of the UE, and sends the measurement report configuration information to the UE.
  • the UE obtains the measurement result, and determines whether the measurement result meets the event in the measurement report configuration information, and if yes, reports the measurement result to the network device, so that the network device can acquire the UE
  • the measurement result of the different system cell realizes the processing of configuring, deleting or adding to the different system cell.
  • FIG. 1 is a schematic diagram of a system architecture of a method for processing measurement reports provided by the present disclosure
  • FIG. 2 is a flowchart of a processing method for measurement reporting according to an embodiment of the present disclosure
  • FIG. 3 is a flowchart of a processing method for measurement reporting according to another embodiment of the present disclosure.
  • FIG. 4 is a flowchart of a processing method for measurement reporting according to another embodiment of the present disclosure.
  • FIG. 5 is a flowchart of a processing method for measurement reporting according to still another embodiment of the present disclosure.
  • FIG. 6 is a flowchart of a processing method for measurement reporting according to another embodiment of the present disclosure.
  • FIG. 7 is a flowchart of a processing method for measurement reporting according to still another embodiment of the present disclosure.
  • FIG. 8 is a flowchart of a processing method for measurement reporting according to another embodiment of the present disclosure.
  • FIG. 9 is a schematic structural diagram of a network side device according to an embodiment of the present disclosure.
  • FIG. 10 is a schematic structural diagram of a user equipment according to an embodiment of the present disclosure.
  • FIG. 11 is a schematic structural diagram of a user equipment according to another embodiment of the present disclosure.
  • FIG. 12 is a schematic structural diagram of a user equipment according to another embodiment of the present disclosure.
  • FIG. 13 is a schematic structural diagram of a network side device according to another embodiment of the present disclosure.
  • FIG. 14 is a schematic structural diagram of a user equipment according to still another embodiment of the present disclosure.
  • the processing method of measurement reporting provided by the present disclosure is applied to a scenario in which a Long Term Evolution (LTE) and a 5G system (also referred to as a new wireless network (New Radio, NR) system) are tightly coupled in a DC manner.
  • the network side device of the system of the LTE system or the 5G system may be used as a master node (Master Node, MN for short), and the network side device of another system may serve as a secondary node (Secondary Node, SN for short).
  • Master Node, MN master node
  • SN secondary node
  • the network side device of the LTE system functions as the MN
  • the network side device of the 5G system can function as the SN.
  • FIG. 1 is a schematic structural diagram of a system for processing a measurement report provided by the present disclosure.
  • the network side device may be a base station 1 in an LTE system or a base station 2 in a 5G system.
  • the base station 1 and the base station 1 cover a plurality of cells, respectively.
  • the base station 2 of the 5G system can directly interact with the core network device, and can also interact with the core network device through the base station 1 of the LTE system. This solution is not limited.
  • the network side device involved in the present disclosure is the base station 1 of the LTE system
  • the MCG is composed of multiple cells covered by the base station 1 of the LTE system.
  • the cell group includes one primary cell and multiple secondary cells
  • the SCG is a cell group composed of multiple cells covered by the base station 2 of the 5G system, including one primary secondary cell and multiple secondary cells.
  • a serving cell is a cell to which the UE is connected.
  • the current system serving cell may be the primary cell in the MCG, or may be any secondary cell in the MCG.
  • the different system serving cell is the primary cell in the SCG or any secondary device. Community.
  • the network side device may also be a base station (Base Transceiver Station, BTS for short) in the Global System of Mobile communication (GSM) or Code Division Multiple Access (CDMA), or may be A base station (NodeB, NB for short) in Wideband Code Division Multiple Access (WCDMA), or an Evolutionary Node B (eNB or eNodeB) in LTE, or a relay station or access
  • BTS Base Transceiver Station
  • GSM Global System of Mobile communication
  • CDMA Code Division Multiple Access
  • NodeB, NB for short in Wideband Code Division Multiple Access
  • eNB or eNodeB Evolutionary Node B
  • LTE Long Term Evolutionary Node B
  • the UE may be a wireless terminal or a wired terminal, and the wireless terminal may be a device that provides voice and/or other service data connectivity to the user, a handheld device with wireless connectivity, or other processing device connected to the wireless modem.
  • the wireless terminal can communicate with one or more core networks via a Radio Access Network (RAN), which can be a mobile terminal, such as a mobile phone (or "cellular" phone) and a mobile terminal.
  • RAN Radio Access Network
  • the computer for example, can be a portable, pocket, handheld, computer built-in or in-vehicle mobile device that exchanges language and/or data with the wireless access network.
  • the wireless terminal may also be referred to as a system, a subscriber unit, a subscriber station, a mobile station, a mobile station, a remote station, a remote terminal, and a remote terminal.
  • the access terminal, the user terminal (User Terminal), the user agent (User Agent), and the user device (User Device or User Equipment) are not limited herein.
  • FIG. 2 is a flowchart of a processing method for measurement reporting according to an embodiment of the present disclosure. As shown in FIG. 2, the method is applied to a network side device, and the method includes the following steps: S101: Configure measurement reporting configuration information of the UE, and the measurement report configuration information includes an event for triggering the UE to report the measurement result of the different system cell.
  • the network side device may configure, in addition to the event of the current system that triggers the UE to report the measurement result, the event of the cell in the different system that triggers the UE to report the measurement result, so that the UE can measure the different system.
  • the measurement result may be reported, so that the network side device can perform operations such as adding, deleting, or modifying the cell according to the reported measurement result.
  • Different system cells include different system serving cells and different system neighbor cells.
  • the event that triggers the UE to report the measurement result of the different system cell defines a threshold of the signal parameter of the different system cell and/or the signal parameter of the current system serving cell.
  • the signal parameter herein may include the signal quality, or the signal. Quality and at least one offset.
  • the event for triggering the UE to report the measurement result of the different system cell includes at least one of the following events:
  • Event 1 The quality of the signal of the heterogeneous system serving cell is higher than the preset first threshold.
  • Event 3 The quality of the signal of the heterogeneous system serving cell is lower than the preset second threshold.
  • Event 5 The quality of the signal of the heterogeneous system neighboring cell is higher than the quality of the signal of the heterogeneous system serving cell.
  • Event 7 The quality of the signal of the heterogeneous system serving cell is lower than the preset third threshold, and the quality of the signal of the neighboring cell of the different system is higher than the preset fourth threshold.
  • Event 9 The quality of the signal of the heterogeneous system neighboring cell is higher than the quality of the signal of the current system serving cell.
  • Event 11 The quality of the signal of the current system serving cell is lower than the preset fifth threshold, and the quality of the signal of the neighboring cell of the different system is higher than the preset sixth threshold.
  • the signal parameters may also include at least one offset.
  • the signal parameter of the heterogeneous system serving cell further includes at least one offset corresponding to the heterogeneous serving cell.
  • the signal parameter of the different system neighboring cell further includes at least one offset corresponding to the different system neighboring cell.
  • the signal parameter of the current system serving cell further includes at least one offset corresponding to the current system serving cell.
  • the event for triggering the UE to report the measurement result of the different system cell includes at least one of the following events:
  • Event 2 The sum of the quality of the signal of the different system serving cell and the at least one offset corresponding to the different system serving cell is higher than a preset first threshold.
  • Event 4 The sum of the quality of the signal of the different system serving cell and the at least one offset corresponding to the different system serving cell is lower than a preset second threshold.
  • Event 6 The sum of the quality of the signal of the different system neighboring cell and the at least one offset corresponding to the different system neighboring cell is higher than the sum of the quality of the signal of the different system serving cell and the at least one offset corresponding to the different system serving cell.
  • Event 8 The sum of the quality of the signal of the different system serving cell and the at least one offset corresponding to the different system serving cell is lower than the preset third threshold, and the quality of the signal of the neighboring cell of the different system and the neighboring cell of the different system The sum of the corresponding at least one offset is higher than a preset fourth threshold.
  • Event 10 The sum of the quality of the signal of the different system neighboring cell and the at least one offset corresponding to the different system neighboring cell is higher than the sum of the quality of the signal of the current system serving cell and at least one offset corresponding to the current system serving cell.
  • Event 12 the sum of the quality of the signal of the current system serving cell and the at least one offset corresponding to the current system serving cell is lower than a preset fifth threshold, and the quality of the signal of the neighboring cell of the different system and the neighboring cell of the different system The sum of the corresponding at least one offset is higher than a preset sixth threshold.
  • the offset involved may be positive or negative.
  • the heterogeneous serving cell may be one of a primary cell (PCell), a secondary cell (SCell), and a primary secondary cell (PSCell).
  • the current system serving cell may be one of a primary cell (PCell), a secondary cell (SCell), and a primary secondary cell (PSCell), and at least one offset in event 12 may be a negative number.
  • the current system serving cell may be one of a primary cell (PCell), a secondary cell (SCell), and a primary secondary cell (PSCell). And in event 10, at least one offset can be a negative number.
  • the network side device may send the obtained measurement report configuration information to the UE.
  • the measurement report information sent by the network side device for different UEs may be different.
  • the UE After receiving the measurement report configuration information, the UE saves an event in the measurement report configuration information for triggering the UE to report the measurement result, such as the events 1, 3, 5, 7, and 9 described above.
  • an event in the measurement report configuration information for triggering the UE to report the measurement result, such as the events 1, 3, 5, 7, and 9 described above.
  • At least one event determines whether a measurement result is reported. If the UE detects that the quality of the signal meets the foregoing at least one event, the measurement result is reported to the network side device.
  • the measurement result includes at least the quality of the signal related to the satisfied event, and may be one or more of the following: the quality of the signal of the different system serving cell, the quality of the signal of the different system neighboring cell, and the current system serving cell. The quality of the signal.
  • the measurement reporting information includes an event for triggering the UE to report the measurement result of the different system cell, so that the UE can report the measurement according to the measurement.
  • the event in the configuration information is used to trigger the event of the UE to report the measurement result of the different system, and the measurement result of the different system cell is analyzed, and the network side device is reported to the network side device when the event is satisfied, so that the network side device can combine the different system cell.
  • the measurement result adds, deletes, and modifies the different system cells.
  • FIG. 3 is a flowchart of a processing method for measurement reporting according to another embodiment of the present disclosure. As shown in FIG. 3, the method is applied to a user equipment, and the method steps include:
  • the UE may detect the quality of the signals of the different system serving cell, the different system neighboring cell, and/or the current system serving cell to obtain the detection result.
  • the measurement result may include the quality of the signal of the heterogeneous system serving cell; or the quality of the signal of the different system serving cell and the quality of the signal of the different system neighboring cell; or the quality and current of the signal of the different system neighboring cell The quality of the signal of the system serving cell; or the quality of the signal of the different system serving cell, the quality of the signal of the neighboring cell of the different system, and the quality of the signal of the current system serving cell.
  • the UE needs to acquire, in advance, a plurality of events for triggering the heterogeneous cell reporting the measurement result, and determine, at each of the detection results, whether at least one of the events of the different system cells is met, if If it is satisfied, the measurement result is reported to the network side device.
  • the UE may obtain, by using the configuration of the network side device, the event of the at least one different system cell that is used to trigger the UE to report the measurement result. Specifically, before receiving the measurement result, the UE sends the network side device to send.
  • the measurement report configuration information where the measurement report configuration information includes: at least one event for triggering the UE to report the measurement result of the different system cell.
  • the UE may be determined whether the measurement result satisfies at least one of the events of the different system cells that trigger the UE to report the measurement result. If it is determined that at least one of the measurement results is satisfied, the measurement result is reported.
  • the signal quality of the serving system, the inter-system serving cell, and the inter-system neighboring cell of the current system that the UE detects may satisfy multiple events in the foregoing event, multiple measurement results may be reported.
  • multiple measurement results can be sent to the network side device by using one message, or can be sent to the network side device through different messages. This solution is not limited.
  • the UE determines whether the measurement result satisfies at least one of the events according to the event of the plurality of different system cells that can be triggered by the measurement, and if the at least one event is met, the measurement result is reported to the network side device. Compared with the current solution, only the event of the current system cell is considered. In this solution, the UE reports the event-triggered measurement result of the different system cell, so that the network device can implement the configuration of the different system cell according to the measurement result of the UE's different system cell. , delete or add processing.
  • the following embodiments use the network side device configuration, including the measurement reporting configuration information of the time of the different system cell that triggers the measurement result, as an example, and the technical solution for the processing method of the measurement report provided by the disclosure is provided. Detailed instructions are given.
  • FIG. 4 is a flowchart of a processing method for measurement reporting according to another embodiment of the present disclosure. As shown in FIG. 4, the method includes:
  • the network side device sends measurement report configuration information to the UE.
  • the UE receives the measurement report configuration information sent by the network side device.
  • the event in the configuration reporting information includes: the quality of the signal of the heterogeneous serving cell of the UE is higher than a preset first threshold, that is, event 1 above.
  • the UE acquires a measurement result.
  • the UE reports the measurement result to the network side device when determining that the signal quality of the different system serving cell in the measurement result is higher than the preset first threshold.
  • the UE detects the signal quality of the inter-system serving cell in real time, and if the signal quality of the inter-system serving cell is detected to be higher than the preset first threshold, the measurement result is triggered.
  • the UE may perform mobility or network handover, or cell handover during the measurement process, that is, the state change of the UE may affect the accuracy of the signal measurement, so in order to ensure the accuracy of the measurement result
  • the network side device may further configure, for the UE, one or more offsets corresponding to signal qualities of the inter-system serving cell, where the offsets may correspond to different UE states, so that the measurement result is compared with the threshold value. In the process, the influence of the UE state can be considered.
  • the UE when determining that the sum of the quality of the signal of the different system serving cell and the other at least one offset corresponding to the different system serving cell is lower than the first threshold, the UE deletes the measurement result.
  • the offset used when determining that it is less than the threshold is different from the offset used when it is judged to be greater than the threshold.
  • the measurement reporting configuration information received by the UE in the embodiment may further include at least one offset corresponding to the different system serving cell, and the event in the foregoing S301 is replaced by: the quality of the signal of the different system serving cell and the different system service.
  • the sum of the at least one offset corresponding to the cell is higher than a preset first threshold, that is, event 2 above.
  • Delete the measurement result when it is determined that a sum of a quality of a signal of the different system serving cell and another at least one offset corresponding to the different system serving cell is higher than the second threshold, Delete the measurement result.
  • configuring the event that triggers the measurement report includes: the heterogeneous system serving cell signal parameter is higher than the first threshold (Thresh), and one or more offsets may be configured. Offset, the offset can be negative.
  • the UE performs measurement according to the configuration of the network side device, and the signal quality (Ms) of the serving system of the different system, the trigger condition for reporting the measurement result is: the signal quality of the different system serving cell plus the offset is greater than the first threshold (ie, Ms+ Offset1>Thresh), that is, the measurement result is reported when the condition is met.
  • the condition for leaving the measurement result is: the signal quality plus offset of the different system serving cell is less than the first threshold (Ms-Offset2 ⁇ Thresh).
  • the network side device configures the measurement for the UE, and the event that triggers the measurement report is: the signal quality of the different system serving cell is lower than the second threshold (Thresh), and one or more offsets (Offset) can be configured. ).
  • the UE obtains the signal quality (Ms) of the different system serving cell according to the measurement configuration of the network side, and the condition for reporting the measurement result is: the signal quality of the different system serving cell plus the offset is less than the second threshold (ie, Ms+offset1) ⁇ Thresh).
  • the condition for leaving the measurement result is that the signal quality plus offset of the different system serving cell is greater than the second threshold (ie, Ms-offset2>Thresh).
  • FIG. 5 is a flowchart of a processing method for measurement reporting according to still another embodiment of the present disclosure. As shown in FIG. 5, the method includes:
  • the network side device sends measurement report configuration information to the UE.
  • the UE receives the measurement report configuration information sent by the network side device.
  • the event in the configuration reporting information is specifically: the quality of the signal of the neighboring cell of the different system is higher than the quality of the signal of the serving cell of the different system, that is, the event 5 mentioned above.
  • the UE acquires a measurement result.
  • the UE reports the measurement result to the network side when determining that the signal quality of the different system neighboring cell in the measurement result is higher than the quality of the signal of the different system serving cell in the measurement result.
  • the UE may perform mobility or network handover, or cell handover during the measurement process, that is, the state change of the UE may affect the accuracy of signal measurement, so
  • the network side device may also configure one or more offsets corresponding to the signal quality of the different system serving cell and the different system neighboring cell for the UE, and may also replace the event in S403 with the different system.
  • the sum of the quality of the signal of the neighboring cell and the at least one offset corresponding to the neighboring cell of the different system is higher than the sum of the quality of the signal of the serving cell of the different system and the at least one offset corresponding to the serving cell of the different system, that is, event 6.
  • S403 is specifically: summing the signal quality Mn of the different system neighboring cell in the measurement result and the two offsets (offset2 and offset3) corresponding to the different system neighboring cell in the event 6; The signal quality of the heterogeneous system serving cell in the result is summed with an offset (offset4) corresponding to the different system serving cell in the event 6; determining the relationship between the two, if it is determined that the former is higher than the latter, The measurement result is reported to the network side device. Otherwise, the measurement result is not reported to the network side device.
  • a difference Shift can also be configured, that is, the sum of the signal quality and the offset of the adjacent system neighboring cell is greater than the fixed value of the different system serving cell and the offset, that is, (Mn+Offset2-offset3)>(Ms+Offset4+ Shift) enters the measurement result report, (Mn+Offset2-offset3) ⁇ (Ms+Offset4+Shift) leaves the measurement result and reports.
  • FIG. 6 is a flowchart of a processing method for measurement reporting according to still another embodiment of the present disclosure. As shown in FIG. 6, the method includes:
  • the network side device sends measurement report configuration information to the UE.
  • the UE receives the measurement report configuration information sent by the network side device.
  • the event in the configuration report information is specifically: the quality of the signal of the different system serving cell is lower than the preset third threshold, and the quality of the signal of the neighboring cell of the different system is higher than the preset fourth threshold.
  • the UE acquires a measurement result.
  • the UE determines that the quality of the signal of the inter-system serving cell in the measurement result is lower than a third threshold, and the quality of the signal of the neighboring cell of the different system is higher than a preset fourth threshold.
  • the network side reports the measurement result.
  • the UE may perform mobility or network handover, or cell handover during the measurement process, that is, the state change of the UE may affect the accuracy of signal measurement, so
  • the network side device may also configure one or more offsets corresponding to the signal quality of the different system serving cell and the different system neighboring cell for the UE, and may replace the event in S503 with the different system service.
  • the sum of the quality of the signal of the cell and the at least one offset corresponding to the different system serving cell is lower than a preset third threshold, and the quality of the signal of the neighboring cell of the different system is at least one offset corresponding to the neighboring cell of the different system.
  • the UE determines that a sum of a quality of a signal of the different system serving cell and another at least one offset corresponding to the different system serving cell is higher than the third threshold, or a different system neighboring cell.
  • the measurement result is deleted. That is, if none of the conditions are met, the reporting process will not be triggered and the measurement result will be deleted.
  • S503 is specifically: the UE performs measurement according to the measurement configuration of the network side, the signal quality (Ms) of the different system serving cell, the signal quality (Mn) of the neighboring cell of the different system, and the corresponding offset is configured, and the UE is configured.
  • the condition for entering the measurement result report is: (the signal quality plus offset of the different system serving cell) is less than the third threshold Thresh1, and (the signal quality plus offset of the different system neighboring cell) is greater than the second threshold Thresh2, that is, (Ms+Offset1) ⁇ Thresh1 and (Mn+Offset2-Offset3)>Thresh2.
  • the condition that the UE leaves the measurement result report is: (the signal quality of the inter-system serving cell plus the offset) is greater than the threshold 1, or (the signal quality of the adjacent system neighboring cell plus the offset) is less than the threshold 2, that is, (Ms-Offset4)>Thresh1 Or (Ms+Offset5+Offset6) ⁇ Thresh2, that is, the offset in the leaving condition is different from the offset in the entering condition.
  • FIG. 7 is a flowchart of a processing method for measurement reporting according to still another embodiment of the present disclosure. As shown in FIG. 7, the method includes:
  • the network side device sends measurement report configuration information to the UE.
  • the UE receives the measurement report configuration information sent by the network side device.
  • the event in the measurement report configuration information is specifically: the quality of the signal of the neighboring cell of the different system is higher than the quality of the signal of the current system serving cell, that is, the event 9 mentioned above.
  • the UE acquires a measurement result.
  • the UE reports the measurement result to the network side when determining that the quality of the signal of the different system neighboring cell in the measurement result is higher than the quality of the signal of the current system serving cell.
  • the UE may perform mobility or network handover, or cell handover during the measurement process, that is, the state change of the UE may affect the accuracy of signal measurement, so
  • the network side device may further configure one or more offsets corresponding to the signal quality of the current unified serving cell and the different system neighboring cell for the UE, and may replace the event in S603 with the different system neighbor.
  • the sum of the quality of the signal of the cell and the at least one offset corresponding to the neighboring cell of the different system is higher than the sum of the quality of the signal of the current system serving cell and at least one offset corresponding to the current system serving cell, that is, the event 10.
  • the UE determines that the sum of the quality of the signal of the different system neighboring cell and the other at least one offset corresponding to the different system neighboring cell is lower than the quality of the signal of the current system serving cell and the other at least one corresponding to the current system serving cell. When the sum of the offsets is exceeded, the measurement result is deleted.
  • S603 is specifically: the UE performs measurement according to the measurement configuration of the network side, the signal quality (Mn) of the neighboring cell of the different system, the signal quality (Ms) of the current system serving cell, and the corresponding offset is configured, and the UE is configured.
  • the conditions for reporting the incoming measurement result are: (the signal quality plus offset of the different system neighboring cell) is greater than (the current system serving cell signal quality plus offset), ie (Mn+Offset1-offset2)>(Ms+Offset3+Shift) .
  • the conditions for the UE to leave the measurement result are: (the signal quality of the adjacent system neighboring cell plus the offset) is less than (the current system serving cell signal quality plus the offset), that is, (Mn+Offset4+offset5) ⁇ (Ms+Offset6+Shift) ), the offsets in the entry and exit conditions are different.
  • FIG. 8 is a flowchart of a processing method for measurement reporting according to still another embodiment of the present disclosure. As shown in Figure 8, the method includes:
  • the network side device sends measurement report configuration information to the UE.
  • the UE receives the measurement report configuration information sent by the network side device.
  • the event reported in the configuration information is: the quality of the signal of the current system serving cell is lower than a preset fifth threshold, and the quality of the signal of the neighboring cell of the different system is higher than the preset sixth threshold.
  • the value is the event 11 above.
  • the UE acquires a measurement result.
  • the UE determines, when the quality of the signal of the current system serving cell in the measurement result is lower than the fifth threshold, and the quality of the signal of the neighboring cell of the different system is higher than the preset sixth threshold. Report the measurement results.
  • the UE may perform mobility or network handover, or cell handover during the measurement process, that is, the state change of the UE may affect the accuracy of signal measurement, so
  • the network side device may also configure one or more offsets corresponding to the signal quality of the current unified serving cell and the different system neighboring cell for the UE, and may replace the event in S703 with the current system service.
  • the sum of the quality of the signal of the cell and the at least one offset corresponding to the current system serving cell is lower than a preset fifth threshold, and the quality of the signal of the neighboring cell of the different system is at least one offset corresponding to the neighboring cell of the different system.
  • the sum of the quantities is higher than the preset sixth threshold value, that is, the above event 12.
  • the UE determines that the sum of the quality of the signal of the current system serving cell and the other at least one offset corresponding to the current system serving cell is greater than the fifth threshold, or the quality of the signal of the neighboring cell of the different system corresponds to the neighboring cell of the different system.
  • the sum of the other at least one offset is lower than the sixth threshold, the measurement result is deleted. Failure to satisfy any of these conditions will not trigger the escalation process and delete the measurement results.
  • S703 is specifically: the UE performs measurement according to the measurement configuration of the network side, the current system serving cell signal quality (Ms), the different system neighbor cell signal quality (Mn), and configures a corresponding offset.
  • the condition that the UE enters the measurement result is: (the current system serving cell signal quality plus offset) is less than the fifth threshold Thresh 1, and (the different system neighbor cell signal quality plus offset) is greater than the sixth threshold.
  • Thresh2 ie (Ms+Offset1) ⁇ Thresh1 and (Mn+Offset2–Offset3)>Thresh2.
  • the conditions for the UE to leave the measurement result are: (the current system serving cell signal quality plus offset) is greater than the threshold 1, or (the different system neighbor cell signal quality plus offset) is less than the threshold 2, ie (Ms-Offset4)>Thresh1 Or (Ms+Offset5+Offset6) ⁇ Thresh2, where the offset used in the entry condition and the departure condition is different.
  • the UE may also perform timing transmission by using a timer, and determine that the measurement result satisfies at least one event in the measurement report configuration information. Then, the timer is turned on. When the measurement result obtained by the UE still meets the corresponding event during the timer from the start to the end, the measurement result is reported to the network side device after the timer ends. If the measurement result no longer satisfies any event during the timer, the timer can be stopped, and the measurement result can be reported or not, and can be performed according to the instructions of the network side device.
  • FIG. 9 is a schematic structural diagram of a network side device according to an embodiment of the present disclosure.
  • the network side device includes: a processing module 001 and a sending module 002, where
  • the processing module 001 is configured to configure measurement reporting configuration information of the UE, where the measurement reporting configuration information includes an event for triggering the UE to report the measurement result of the different system cell;
  • the sending module 002 is configured to send the measurement reporting configuration information to the UE.
  • the processing module configures the measurement reporting configuration information for the UE, and the sending module sends the configuration information to the UE.
  • the measurement reporting information includes an event for triggering the UE to report the measurement result of the different system cell, so that the UE is enabled.
  • the device may report the measurement result of the different system cell in the configuration information, and report the measurement result of the different system cell to the network side device, so that the network side device is reported.
  • the operations of adding, deleting, and modifying the different system cells may be combined with the measurement results of the different system cells.
  • the different system cell includes a different system serving cell and a different system neighboring cell; and the event for triggering the UE to report the measurement result of the different system cell includes at least one of the following events:
  • the signal parameter of the serving system cell is higher than a preset first threshold; the signal parameter of the different system serving cell is lower than a preset second threshold; and the signal parameter of the neighboring cell of the different system is higher than The signal parameter of the different system serving cell; the signal parameter of the different system serving cell is lower than a preset third threshold, and the signal parameter of the adjacent system neighboring cell is higher than a preset fourth threshold
  • the signal parameter of the neighboring cell of the different system is higher than the signal parameter of the current system serving cell; the signal parameter of the current system serving cell is lower than a preset fifth threshold, and the signal parameter of the neighboring cell of the different system Higher than the preset sixth threshold.
  • the signal parameter of the heterogeneous system serving cell includes a quality of a signal of the heterogeneous system serving cell; and the signal parameter of the heterogeneous system neighboring cell includes a signal quality of the heterogeneous system neighboring cell.
  • the signal parameter of the current system serving cell includes the quality of the signal of the current system serving cell.
  • the signal parameter of the different system serving cell further includes at least one offset corresponding to the different system serving cell; and the signal parameter of the different system neighboring cell further includes the different system neighbor At least one offset corresponding to the cell; the signal parameter of the current system serving cell further includes at least one offset corresponding to the current system serving cell.
  • the current system serving cell includes one of: a primary cell, a secondary cell, and a primary secondary cell.
  • the different system serving cell includes one of: a primary cell, a secondary cell, and a primary secondary cell.
  • the network side device in this embodiment is used to perform the foregoing method embodiments, and the implementation principles and technical effects are similar, and details are not described herein again.
  • FIG. 10 is a schematic structural diagram of a user equipment according to an embodiment of the present disclosure.
  • the user equipment includes: an obtaining module 111, a first processing module 112, and a sending module 113, where the acquiring module 111 is configured to acquire a measurement. result;
  • the first processing module 112 is configured to determine whether the measurement result meets at least one event that is used to trigger the heterogeneous cell that reports the measurement result by the user equipment.
  • the sending module 113 is configured to report to the network side device when the first processing module 112 determines whether the measurement result meets at least one event of the pre-acquisition of the different system cell for triggering the measurement result by the user equipment. The measurement results are described.
  • the first processing module determines, according to the event of the plurality of different system cells that can trigger the measurement report, whether the measurement result acquired by the acquiring module satisfies at least one of the events, and if at least one of the events is met,
  • the sending module reports the measurement result to the network side device.
  • the UE reports the event-triggered measurement result of the different system cell, so that the network device can according to the different system cell of the UE.
  • the measurement result realizes the processing of configuring, deleting or adding to the different system cells.
  • the different system cell includes a different system serving cell and a different system neighboring cell; and the measurement result includes: a quality of a signal of the different system serving cell; or the different system service The quality of the signal of the cell and the quality of the signal of the neighboring cell of the different system; or the quality of the signal of the neighboring cell of the different system and the quality of the signal of the current system serving cell; or the signal of the heterogeneous system serving cell Quality, quality of signals of the different system neighbor cells, and quality of signals of the current system serving cell.
  • the user equipment in this embodiment is used to perform the foregoing method embodiments, and the implementation principles and technical effects are similar, and details are not described herein again.
  • FIG. 11 is a schematic structural diagram of a user equipment according to another embodiment of the present disclosure.
  • the user equipment further includes: a receiving module 114, configured to receive, by the network side device,
  • the measurement reporting configuration information includes: at least one event for triggering the measurement reporting device to report the measurement result of the different system cell.
  • the event of the cell signal quality of the different system includes the following at least one event, including: the signal parameter of the heterogeneous system serving cell is higher than a preset first threshold; The signal parameter of the different system serving cell is lower than the preset second threshold; the signal parameter of the different system neighboring cell is higher than the signal parameter of the different system serving cell; and the signal parameter of the different system serving cell is lower than a preset third threshold value, and the signal parameter of the neighboring cell of the different system is higher than a preset fourth threshold; the signal parameter of the neighboring cell of the different system is higher than the signal parameter of the current system serving cell; The signal parameter of the current system serving cell is lower than a preset fifth threshold, and the signal parameter of the neighboring cell of the different system is higher than a preset sixth threshold.
  • the signal parameter of the heterogeneous system serving cell includes a quality of a signal of the heterogeneous system serving cell; and the signal parameter of the heterogeneous system neighboring cell includes a signal quality of the heterogeneous system neighboring cell.
  • the signal parameter of the current system serving cell includes a detection quality of a signal of the current system serving cell.
  • the signal parameter of the different system serving cell further includes at least one offset corresponding to the different system serving cell; and the signal parameter of the different system neighboring cell further includes the different system neighbor At least one offset corresponding to the cell; the signal parameter of the current system serving cell further includes at least one offset corresponding to the current system serving cell.
  • the current system serving cell includes any one of the following: a primary cell, a secondary cell, and a primary secondary cell.
  • the different system serving cell includes any one of the following: a primary cell, a secondary cell, and a primary secondary cell.
  • the user equipment in this embodiment is used to perform the foregoing method embodiments, and the implementation principles and technical effects are similar, and details are not described herein again.
  • FIG. 12 is a schematic structural diagram of a user equipment according to another embodiment of the present disclosure.
  • the user equipment further includes: a second processing module 115;
  • the sending module 113 is specifically configured to determine, at the first processing module 112, the heterogeneous system serving cell, when the signal quality event includes the signal parameter of the different system serving cell being higher than a preset first threshold.
  • the measurement result is reported to the network side device; and the second processing module 115 is configured to: The measurement result is deleted when it is determined that the sum of the quality of the signal of the different system serving cell and the other at least one offset corresponding to the different system serving cell is lower than the first threshold.
  • the sending module 113 is specifically used to And reporting the measurement result to the network side device when determining that the sum of the quality of the signal of the different system serving cell and the at least one offset corresponding to the different system serving cell is lower than the second threshold a second processing module 115, configured to: when determining that a sum of a quality of a signal of the different system serving cell and another at least one offset corresponding to the different system serving cell is higher than the second threshold, Delete the measurement result.
  • the sending module 113 is specifically used. And determining, in the determining that the quality of the signal of the different system neighboring cell, the sum of the at least one offset corresponding to the different system neighboring cell is higher than the quality of the signal of the heterogeneous system serving cell, corresponding to the different system serving cell
  • the measurement result is reported to the network side device when the sum of the at least one offset is used;
  • the second processing module 115 is configured to determine, according to the quality of the signal of the neighboring cell of the different system, the quality of the neighboring cell of the different system
  • the measurement result is deleted when the sum of the other at least one offset is lower than the sum of the quality of the signal of the different system serving cell and the other offset.
  • the event of the cell signal quality of the different system includes a signal parameter of the heterogeneous system serving cell being lower than a preset third threshold, and the signal of the different system neighboring cell
  • the sending module 113 is specifically configured to determine, at the first processing module 112, the quality of the signal of the different system serving cell and the at least corresponding to the different system serving cell.
  • a sum of the offsets is lower than the third threshold, and a sum of a quality of a signal of the different system neighboring cell and at least one offset corresponding to the different neighboring cell is higher than the fourth gate
  • the second processing module 115 is configured to determine, in determining the quality of the signal of the heterogeneous system serving cell, another at least one offset corresponding to the heterogeneous serving cell.
  • the sum of the sum is higher than the third threshold, or the sum of the quality of the signal of the neighboring cell of the different system and the other at least one offset corresponding to the neighboring cell of the different system is lower than the fourth threshold Delete the measurement knot .
  • the sending module 113 is specifically configured to be used in The first processing module 112 determines that the sum of the quality of the signal of the different system neighboring cell and the at least one offset corresponding to the different system neighboring cell is higher than the quality of the current system serving cell and the current When the sum of the at least one offset corresponding to the system serving cell, the measurement result is reported to the network side device; the second processing module 115 is configured to determine the quality of the signal of the neighboring cell of the different system and the different Deleting the measurement result when the sum of the other at least one offset corresponding to the system neighboring cell is lower than the sum of the quality of the signal of the current system serving cell and the other at least one offset corresponding to the current system serving cell .
  • the event of the cell signal quality of the different system includes that the signal parameter of the current system serving cell is lower than a preset fifth threshold, and the signal of the different system neighboring cell
  • the sending module 113 is specifically configured to determine, at the first processing module 112, that the quality of the signal of the current system serving cell is at least corresponding to the current system serving cell. a sum of the offsets is smaller than the fifth threshold, and a sum of a quality of a signal of the different system neighboring cell and at least one offset corresponding to the different neighboring cell is higher than the sixth threshold
  • the second processing module 115 is configured to determine, at the network device, the at least one offset corresponding to the current system serving cell. When the sum is greater than the fifth threshold, or the sum of the quality of the signal of the different system neighboring cell and the other at least one offset corresponding to the different system neighboring cell is lower than the sixth threshold. Then delete Said measurement results.
  • the current system serving cell includes any one of the following: a primary cell, a secondary cell, and a primary secondary cell.
  • the different system serving cell includes any one of the following: a primary cell, a secondary cell, and a primary secondary cell.
  • the user equipment in this embodiment is used to perform the foregoing method embodiments, and the implementation principles and technical effects are similar, and details are not described herein again.
  • the network side device provided in the foregoing embodiment configures, in advance, an event of the inter-system cell that can trigger the user equipment to report the measurement result, so that the user equipment meets at least one of the foregoing different systems during the process of detecting the signal quality of the cell.
  • the measurement result can be reported, so that the network side device can perform operations such as adding, deleting, and configuring the different system.
  • the wireless communication system is tightly coupled, the user cannot report the measurement through the existing measurement configuration. As a result, the problem of effective radio resources that different wireless systems will have cannot be achieved.
  • each module of the network side device and the user equipment is only a division of logical functions, and may be integrated into one physical entity or physically separated in whole or in part.
  • these modules can all be implemented by software in the form of processing component calls; or all of them can be implemented in hardware form; some modules can be realized by processing component calling software, and some modules are realized by hardware.
  • the determining module may be a separately set processing element, or may be integrated in one of the above-mentioned devices, or may be stored in the memory of the above device in the form of program code, by a processing element of the above device. Call and execute the functions of the above determination module.
  • the implementation of other modules is similar.
  • all or part of these modules can be integrated or implemented independently.
  • the processing elements described herein can be an integrated circuit with signal processing capabilities. In the implementation process, each step of the above method or each of the above modules may be completed by an integrated logic circuit of hardware in the processor element or an instruction in a form of software.
  • the above modules may be one or more integrated circuits configured to implement the above method, such as one or more Application Specific Integrated Circuits (ASICs), or one or more microprocessors ( Digital singnal processor (DSP), or one or more Field Programmable Gate Array (FPGA).
  • ASICs Application Specific Integrated Circuits
  • DSP Digital singnal processor
  • FPGA Field Programmable Gate Array
  • the processing component may be a general purpose processor, such as a central processing unit (CPU) or other processor that can call the program code.
  • CPU central processing unit
  • these modules can be integrated and implemented in the form of a system-on-a-chip (SOC).
  • SOC system-on-a-chip
  • FIG. 13 is a schematic structural diagram of a network side device according to another embodiment of the present disclosure.
  • the network side device includes an antenna 11, a radio frequency device 12, and a baseband device 13.
  • the antenna 11 is connected to the radio frequency device 12.
  • the radio frequency device 12 receives information through the antenna 11, and transmits the received information to the baseband device 13 for processing.
  • the baseband device 13 processes the information to be transmitted and transmits it to the radio frequency device 12.
  • the radio frequency device 12 processes the received information and transmits it via the antenna 11.
  • the above-described band processing device may be located in the baseband device 13, and the method performed by the network side device in the above embodiment may be implemented in the baseband device 13, which includes the processor 121 and the memory 122.
  • the baseband device 13 may include, for example, at least one baseband board on which a plurality of chips are disposed, as shown in FIG. 12, one of which is, for example, a processor 121, connected to the memory 122 to call a program in the memory 122 to execute The network side device operation shown in the above method embodiment.
  • the baseband device 13 may further include a network interface 123 for interacting with the radio frequency device 12, such as a common public radio interface (CPRI).
  • a network interface 123 for interacting with the radio frequency device 12, such as a common public radio interface (CPRI).
  • CPRI common public radio interface
  • the processor here may be a processor or a collective name of multiple processing elements.
  • the processor may be a CPU, an ASIC, or one configured to implement the method performed by the network side device.
  • a plurality of integrated circuits such as one or more microprocessor DSPs, or one or more field programmable gate array FPGAs, and the like.
  • the storage element can be a memory or a collective name for a plurality of storage elements.
  • Memory 122 can be either volatile memory or nonvolatile memory, or can include both volatile and nonvolatile memory.
  • the non-volatile memory may be a read-only memory (ROM), a programmable read only memory (Programmable ROM), an erasable programmable read only memory (ErasablePROM, EPROM for short), or an electric Erase programmable read only memory (EEPROM) or flash memory.
  • the volatile memory may be a Random Access Memory (RAM), which is used as an external cache.
  • RAM Random Access Memory
  • many forms of RAM may be used, such as static random access memory (SRAM), dynamic random access memory (DRAM), synchronous dynamic random access memory (Synchronous DRAM).
  • SDRAM double data rate synchronous dynamic random access memory
  • DDRSDRAM double data rate synchronous dynamic random access memory
  • ESDRAM enhanced synchronous dynamic random access memory
  • Synchlink DRAM SLDRAM for short
  • DirectRambusRAM Direct Memory bus random access memory
  • the processor 121 calls the program in the memory 122 to perform the processing method of the measurement reporting, and the method includes: configuring the measurement reporting configuration information of the UE, where the measurement reporting configuration information includes an event for triggering the UE to report the measurement result of the different system cell. Sending measurement report configuration information to the UE.
  • the inter-system cell includes an inter-system serving cell and an inter-system neighboring cell;
  • the event for triggering the UE to report the measurement result of the inter-system cell includes at least one of the following events: signal parameters of the different system serving cell Higher than the preset first threshold; the signal parameter of the different system serving cell is lower than the preset second threshold; the signal parameter of the adjacent system neighboring cell is higher than the signal parameter of the different system serving cell; the different system serving cell
  • the signal parameter is lower than the preset third threshold, and the signal parameter of the adjacent system neighboring cell is higher than the preset fourth threshold; the signal parameter of the adjacent system neighboring cell is higher than the signal parameter of the current system serving cell;
  • the signal parameter of the current system serving cell is lower than the preset fifth threshold, and the signal parameter of the neighboring cell of the different system is higher than the preset sixth threshold.
  • the signal parameters of the heterogeneous system serving cell include the quality of the signal of the heterogeneous system serving cell; the signal parameters of the heterogeneous system neighboring cell include the quality of the signal of the heterogeneous system neighboring cell; and the signal parameter of the current system serving cell The quality of the signal including the current system serving cell.
  • the signal parameter of the heterogeneous system serving cell further includes at least one offset corresponding to the inter-system serving cell; and the signal parameter of the different system neighboring cell further includes at least one offset corresponding to the different system neighboring cell.
  • the signal parameter of the current system serving cell further includes at least one offset corresponding to the current system serving cell.
  • the current system serving cell includes any one of the following: a primary cell, a secondary cell, and a primary secondary cell.
  • the different system serving cell includes any one of the following: a primary cell, a secondary cell, and a primary secondary cell.
  • the network side device In addition to the event of the current system that triggers the user equipment to report the measurement result, the network side device also configures a plurality of events in the different system that trigger the user equipment to report the measurement result, so that the UE can measure the signal of the different system cell. During the events, the measurement result can be reported, so that the network side device can perform operations such as adding, deleting, or modifying the cell according to the reported measurement result.
  • FIG. 14 is a schematic structural diagram of a user equipment according to still another embodiment of the present disclosure.
  • the user equipment includes a processor 131, a memory 132, a network interface 133, and a user interface 134.
  • bus system 135. The various components described above in the user equipment are coupled by a bus system 135. It will be appreciated that the bus system 135 is used to implement connection communication between these components.
  • the bus system 135 may include a power bus, a control bus, and a status signal bus in addition to the data lines. However, for clarity of description, various buses are labeled as bus system 135 in FIG.
  • some or all of the above components may be implemented by being embedded in a chip of the terminal in the form of a Field Programmable Gate Array (FPGA). And they can be implemented separately or integrated.
  • FPGA Field Programmable Gate Array
  • the user interface 1304 is used to connect a peripheral device or an interface circuit connected to the peripheral device, respectively. It may include an interface of a device such as a display, a keyboard, or a pointing device, such as a mouse, trackball, touchpad, or touchscreen device.
  • the processor 131 herein may be a general-purpose processor, such as a CPU, or may be one or more integrated circuits configured to implement the above method, for example, one or more application specific integrated circuits (ASICs). Or, one or more microprocessors (digital singnal processors, DSP for short), or one or more Field Programmable Gate Arrays (FPGAs).
  • the storage element can be a storage device or a collective name for a plurality of storage elements.
  • Memory 132 can be either volatile memory or nonvolatile memory, or can include both volatile and nonvolatile memory.
  • the non-volatile memory may be a read-only memory (ROM), a programmable read only memory (Programmable ROM), an erasable programmable read only memory (ErasablePROM, EPROM for short), or an electric Erase programmable read only memory (EEPROM) or flash memory.
  • the volatile memory may be a Random Access Memory (RAM), which is used as an external cache.
  • RAM Random Access Memory
  • many forms of RAM may be used, such as static random access memory (SRAM), dynamic random access memory (DRAM), synchronous dynamic random access memory (Synchronous DRAM).
  • SDRAM double data rate synchronous dynamic random access memory
  • DDRSDRAM double data rate synchronous dynamic random access memory
  • ESDRAM enhanced synchronous dynamic random access memory
  • Synchlink DRAM SLDRAM for short
  • DirectRambusRAM Direct Memory bus random access memory
  • memory 132 stores elements, executable modules or data structures, or a subset thereof, or their extended set: operating system 1321 and application 1322.
  • the operating system 1321 includes various system programs, such as a framework layer, a core library layer, a driver layer, and the like, for implementing various basic services and processing hardware-based tasks.
  • system programs such as a framework layer, a core library layer, a driver layer, and the like, for implementing various basic services and processing hardware-based tasks.
  • the application 1322 includes various applications, such as a media player (Media Player), a browser (Browser), etc., for implementing various application services.
  • a program implementing the method of the embodiments of the present disclosure may also be included in the application 1322.
  • the processor 131 invokes a program in the memory 132 to perform the foregoing processing method of the measurement report, where the method includes: acquiring a measurement result; determining that the measurement result satisfies at least one different system cell for triggering the UE to report the measurement result that is acquired in advance When the event occurs, the measurement result is reported to the network side device.
  • the heterogeneous system cell includes an inter-system serving cell and an inter-system neighboring cell; and the measurement result includes: a quality of a signal of the inter-system serving cell; or a signal quality and a different system of the inter-system serving cell The quality of the signal of the neighboring cell; or the quality of the signal of the neighboring cell of the different system and the quality of the signal of the current system serving cell; or the quality of the signal of the different system serving cell, the quality of the signal of the neighboring cell of the different system, and the current system service The quality of the signal of the cell.
  • the method before the obtaining the measurement result, further includes: receiving the measurement report configuration information sent by the network side device; and the measuring the report configuration information includes: at least one event for triggering the UE to report the measurement result of the different system cell .
  • the event of the cell signal quality of the different system includes the following at least one event, including: the signal parameter of the heterogeneous system serving cell is higher than a preset first threshold; the signal of the inter-system serving cell The parameter is lower than the preset second threshold; the signal parameter of the adjacent system neighboring cell is higher than the signal parameter of the different system serving cell; the signal parameter of the different system serving cell is lower than the preset third threshold, and the different system The signal parameter of the neighboring cell is higher than the preset fourth threshold; the signal parameter of the neighboring cell of the different system is higher than the signal parameter of the current system serving cell; the signal parameter of the current system serving cell is lower than the preset fifth threshold. And the signal parameter of the neighboring cell of the different system is higher than the preset sixth threshold.
  • the signal parameters of the heterogeneous system serving cell include the quality of the signal of the heterogeneous system serving cell; the signal parameters of the heterogeneous system neighboring cell include the quality of the signal of the heterogeneous system neighboring cell; and the signal parameter of the current system serving cell The quality of the detection of the signal including the current system serving cell.
  • the signal parameter of the heterogeneous system serving cell further includes at least one offset corresponding to the inter-system serving cell; and the signal parameter of the different system neighboring cell further includes at least one offset corresponding to the different system neighboring cell.
  • the signal parameter of the current system serving cell further includes at least one offset corresponding to the current system serving cell.
  • the measurement result is reported to the network side device, where: determining that the quality of the signal of the different system serving cell and the at least one offset corresponding to the different system serving cell are higher than the first
  • the measurement result is reported to the network side device; the method further includes: determining that a sum of a signal quality of the different system serving cell and another at least one offset corresponding to the different system serving cell is lower than the first threshold When the value is, the measurement result is deleted.
  • the event of the cell signal quality of the different system includes the signal parameter of the heterogeneous serving cell being lower than the preset second threshold, determining that the measurement result satisfies at least one pre-acquired for When the event of the inter-system cell that the UE reports the measurement result is triggered, the measurement result is reported to the network side device, where: determining that the quality of the signal of the different system serving cell and the at least one offset corresponding to the different system serving cell are lower than the The second threshold value is used to report the measurement result to the network side device.
  • the method further includes: determining that a sum of a signal quality of the different system serving cell and another at least one offset corresponding to the different system serving cell is higher than a second threshold When the value is, the measurement result is deleted.
  • the measurement result is reported to the network side device, including: determining that the sum of the signal quality of the different system neighboring cell and the at least one offset corresponding to the different system neighboring cell is higher than the different system
  • the measurement result is reported to the network side device; and the method further includes: determining the quality of the signal of the neighboring cell of the different system and the neighboring cell of the different system.
  • the event of the cell signal quality in the different system includes that the signal parameter of the heterogeneous serving cell is lower than a preset third threshold, and the signal parameter of the neighboring cell of the different system is higher than a preset.
  • the determining, by the network side device, the measurement result including: determining the signal of the different system serving cell, when determining that the measurement result meets the event that the pre-acquisition is used to trigger the UE to report the measurement result of the different system cell.
  • the sum of the quality and the at least one offset corresponding to the different system serving cell is lower than the third threshold, and the sum of the quality of the signal of the different system neighboring cell and the at least one offset corresponding to the different system neighboring cell is higher than the first
  • the fourth threshold value is used to report the measurement result to the network side device.
  • the method further includes: determining that a sum of a signal quality of the different system serving cell and another at least one offset corresponding to the different system serving cell is higher than a third threshold If the sum of the value, or the quality of the signal of the neighboring cell of the different system and the other at least one offset corresponding to the neighboring cell of the different system is lower than the fourth threshold, the measurement result is deleted.
  • the measurement result is reported to the network side device, including: determining that the sum of the signal quality of the different system neighboring cell and the at least one offset corresponding to the different system neighboring cell is higher than the current system.
  • the measurement result is reported to the network side device; the method further includes: determining the quality of the signal of the neighboring cell of the different system and the neighboring cell of the different system When the sum of the corresponding other at least one offset is lower than the sum of the quality of the signal of the current system serving cell and the other at least one offset corresponding to the current system serving cell, the measurement result is deleted.
  • the event of the cell signal quality in the different system includes that the signal parameter of the current system serving cell is lower than a preset fifth threshold, and the signal parameter of the neighboring cell of the different system is higher than a preset.
  • the sixth threshold value is used to report the measurement result to the network side device when determining that the measurement result meets the event that the pre-acquisition is used to trigger the UE to report the measurement result of the inter-system cell, including: determining the signal of the current system serving cell The sum of the quality of the at least one offset corresponding to the current system serving cell is less than the fifth threshold, and the sum of the quality of the signal of the different system neighboring cell and the at least one offset corresponding to the different system neighboring cell is higher than the sixth
  • the threshold value is used to report the measurement result to the network side device.
  • the method further includes: determining that the sum of the quality of the signal of the current system serving cell and the other at least one offset corresponding to the current system serving cell is greater than a fifth threshold, If the sum of the quality of the signal of the neighboring cell of the different system and the other at least one offset corresponding to the neighboring cell of the different system is lower than the sixth threshold, the test is deleted. Results.
  • the current system serving cell includes any one of the following: a primary cell, a secondary cell, and a primary secondary cell.
  • the different system serving cell includes any one of the following: a primary cell, a secondary cell, and a primary secondary cell.
  • the user equipment determines whether the measurement result satisfies at least one of the events according to the event of the plurality of different system cells that can be triggered by the measurement, and if the at least one event is met, the measurement result is reported to the network side device. Compared with the current solution, only the event of the current system cell is considered. In this solution, the user equipment reports the event-triggered measurement result of the different system cell, so that the network device can implement the different system according to the measurement result of the different system cell of the user equipment. Processing such as configuration, deletion, or addition of a cell.
  • the present disclosure also provides a network side device, including: a memory, a processor, a transmitter, and a computer program, wherein the computer program is stored in the memory, and the processor runs the computer program to perform measurement report processing method.
  • the present disclosure also provides a user equipment comprising: a memory, a processor, and a computer program, the computer program being stored in the memory, the processor running the computer program to perform a measurement reporting method.
  • the memory may also be integrated inside the processor.
  • the present disclosure also provides a storage medium comprising: a readable storage medium and a computer program for implementing a processing method of measurement reporting.
  • the present disclosure also provides a storage medium comprising: a readable storage medium and a computer program for implementing a processing method of measurement reporting.
  • the present disclosure also provides a program product comprising a computer program (ie, executing instructions) stored in a readable storage medium.
  • a computer program ie, executing instructions
  • At least one processor of the network side device may read the computer program from a readable storage medium, and the at least one processor executes the computer program to cause the network side device device to perform a processing method of the measurement report.
  • the present disclosure also provides a program product comprising a computer program (ie, executing instructions) stored in a readable storage medium.
  • a computer program ie, executing instructions
  • At least one processor of the user device can read the computer program from a readable storage medium, and the at least one processor executes the computer program to cause the user device to perform the processing method of the measurement report described above.

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Abstract

本公开提供一种测量上报的处理方法、网络侧设备和用户设备,网络侧设备配置包括用于触发UE上报测量结果的异系统小区的事件的测量上报配置信息,并将测量上报配置信息发送给UE。

Description

测量上报的处理方法、网络侧设备和用户设备
相关申请的交叉引用
本申请主张在2017年4月28日在中国提交的中国专利申请号No.201710295921.9的优先权,其全部内容通过引用包含于此。
技术领域
本公开涉及无线通信技术,尤其涉及一种测量上报的处理方法、网络侧设备和用户设备。
背景技术
在长期演进(Long Term Evolution,简称LTE)系统中,终端需要根据基站配置的事件进行测量结果上报。目前LTE系统中触发终端上报测量结果的事件是针对LTE系统内服务小区和/或邻小区的质量之间的比较或者与预设的门限值之间的比较的情况。
另外,随着第五代移动通信技术(5th-Generation,简称5G)系统的发展,LTE和5G系统需要以双连接(Dual Connectivity,简称DC)方式进行紧耦合。其中,可以以一个系统作为主控节点(Master Node,简称MN),例如:LTE系统的基站作为MN;以另外一个系统作为辅助节点(Secondary Node,简称SN),例如:5G系统的基站作为SN。且在双连接系统中,可以包括两个小区组,即:主小区组(Master Cell Group,简称MCG)和辅小区组(Secondary Cell Group,简称SCG)。主小区组可以包括一个主小区(Primary Cell,简称PCell)和一个或多个辅小区(Secondary Cell,简称SCell),辅小区组可以包括一个主辅小区(Primary Secondary Cell,简称PSCell)和一个或多个SCell。
然而,在上述双连接的场景下,当MN对SN下的小区进行增加、删除或者修改等操作时,采用目前LTE系统内测量上报的触发事件,并不能满足主控节点对测量上报的需求。
发明内容
本公开提供一种测量上报的处理方法、网络侧设备和用户设备,用于解决LTE系统内测量上报的触发事件,并不能满足主控节点对测量上报的需求的问题。
本公开第一方面提供一种测量上报的处理方法,应用于网络侧设备,包括:配置UE的测量上报配置信息,所述测量上报配置信息包括用于触发所述UE上报测量结果的异系统小区的事件;向所述UE发送所述测量上报配置信息。
本公开第二方面提供一种测量上报的处理方法,应用于UE,包括:获取测量结果;在确定所述测量结果满足预先获取的至少一个用于触发所述UE上报测量结果的异系统小区的事件时,向网络侧设备上报所述测量结果。
本公开第三方面提供一种网络侧设备,包括:处理模块,用于配置UE的测量上报配置信息,所述测量上报配置信息包括用于触发所述UE上报测量结果的异系统小区的事件;发送模块,用于向所述UE发送所述测量上报配置信息。
本公开第四方面提供一种用户设备,包括:获取模块,用于获取测量结果;第一处理模块,用于确定所述测量结果是否满足预先获取的至少一个用于触发所述用户设备上报测量结果的异系统小区的事件;发送模块,用于在所述第一处理模块确定所述测量结果是否满足预先获取的至少一个用于触发所述用户设备上报测量结果的异系统小区的事件时,向网络侧设备上报所述测量结果。
本公开第五方面提供一种网络侧设备,包括:存储器、处理器、发送器以及计算机程序,所述计算机程序存储在所述存储器中,所述处理器运行所述计算机程序执行第一方面的任一种实现方式提供的测量上报的处理方法。
本公开第六方面提供一种用户设备,包括:存储器、处理器以及计算机程序,所述计算机程序存储在所述存储器中,所述处理器运行所述计算机程序执行第二方面的任一种实现方式提供的测量上报的处理方法。
在上述网络侧设备和用户设备的实施例中,应理解存储器还可以集成在处理器内部。
本公开第七方面提供一种存储介质,包括:可读存储介质和计算机程序, 所述计算机程序用于实现第一方面提供的测量上报的处理方法。
本公开第八方面提供一种存储介质,包括:可读存储介质和计算机程序,所述计算机程序用于实现第二方面提供的测量上报的处理方法。
本公开第九方面提供一种程序产品,该程序产品包括计算机程序(即执行指令),该计算机程序存储在可读存储介质中。网络侧设备的至少一个处理器可以从可读存储介质读取该计算机程序,至少一个处理器执行该计算机程序使得网络侧设备设备实施第一方面的各种实施方式提供的测量上报的处理方法。
本公开第十方面提供一种程序产品,该程序产品包括计算机程序(即执行指令),该计算机程序存储在可读存储介质中。用户设备的至少一个处理器可以从可读存储介质读取该计算机程序,至少一个处理器执行该计算机程序使得用户设备实施上述第二方面的各种实施方式提供的测量上报的处理方法。
本公开提供的测量上报的处理方法、网络侧设备和用户设备,网络侧设备配置包括用于触发UE上报测量结果的异系统小区的事件的测量上报配置信息,并将测量上报配置信息发送给UE,UE在获取到该测量上报配置信息之后,获取测量结果,确定该测量结果是否满足该测量上报配置信息中的事件,如果满足则向网络设备上报测量结果,使得网络设备能够获取到与UE的异系统小区的测量结果,实现对异系统小区的配置、删除或者增加等处理。
附图说明
为了更清楚地说明本公开实施例或相关技术中的技术方案,下面将对实施例或相关技术描述中所需要使用的附图作一简单地介绍,显而易见地,下面描述中的附图是本公开的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1为本公开提供的测量上报的处理方法的一种系统架构示意图;
图2为本公开一实施例提供的测量上报的处理方法的流程图;
图3为本公开另一实施例提供的测量上报的处理方法的流程图;
图4为本公开又一实施例提供的测量上报的处理方法的流程图;
图5为本公开还一实施例提供的测量上报的处理方法的流程图;
图6为本公开又一实施例提供的测量上报的处理方法的流程图;
图7为本公开又一实施例提供的测量上报的处理方法的流程图;
图8为本公开又一实施例提供的测量上报的处理方法的流程图;
图9为本公开一实施例提供的网络侧设备结构示意图;
图10为本公开一实施例提供的用户设备结构示意图;
图11为本公开另一实施例提供的用户设备结构示意图;
图12为本公开又一实施例提供的用户设备结构示意图;
图13为本公开另一实施例提供的网络侧设备结构示意图;
图14为本公开再一实施例提供的用户设备结构示意图。
具体实施方式
这里将详细地对示例性实施例进行说明,其示例表示在附图中。下面的描述涉及附图时,除非另有表示,不同附图中的相同数字表示相同或相似的要素。以下示例性实施例中所描述的实施方式并不代表与本公开相一致的所有实施方式。相反,它们仅是与如所附权利要求书中所详述的、本公开的一些方面相一致的装置和方法的例子。
本公开的说明书和权利要求书中的术语“包括”和“具有”以及他们的任何变形,意图在于覆盖不排他的包含,例如,包含了一系列步骤或单元的过程、方法、系统、产品或设备不必限于清楚地列出的那些步骤或单元,而是可包括没有清楚地列出的或对于这些过程、方法、产品或设备固有的其它步骤或单元。
本公开提供的测量上报的处理方法应用在长期演进(Long Term Evolution,简称LTE)和5G系统(也称为新的无线网络(New Radio,简称:NR)系统)以DC方式进行紧耦合的场景下,其中可以以LTE系统或者5G系统中的任一个系统的网络侧设备作为主控节点(Master Node,简称MN),则另一个系统的网络侧设备作为辅助节点辅助节点(Secondary Node,简称SN)。例如:LTE系统的网络侧设备作为MN,则5G系统的网络侧设备可作为SN。该双连接系统中,MN下包括的主小区组(Master Cell Group,简称MCG)中包括一个Pcell和若干个Scell,SN下的辅小区组(Secondary Cell Group, 简称SCG)包括一个PSCell和若干个Scell。该基于测量上报的处理方法的应用系统可包括:网络侧设备和用户设备(User Equipment,简称:UE)。图1为本公开提供的测量上报的处理方法的一种系统架构示意图,如图1所示,其中,网络侧设备可以是LTE系统中的基站1或者5G系统的基站2。基站1和基站1分别覆盖多个小区。5G系统的基站2可以直接与核心网设备进行交互,也可以通过LTE系统的基站1与核心网设备进行交互,对此本方案不做限制。
以图1所示的架构为例,当LTE系统作为MN,LTE系统作为SN时,本公开中涉及的网络侧设备为LTE系统的基站1,MCG为LTE系统的基站1覆盖的多个小区组成的小区组,其中包括一个主小区和多个辅小区;SCG为5G系统的基站2覆盖的多个小区组成的小区组,其中包括一个主辅小区和多个辅小区。服务小区是指UE连接的小区,例如:当前系统服务小区可以是MCG中的主小区,也可以是MCG中的任一个辅小区,此时异系统服务小区为SCG中的主小区或者任一个辅小区。
其中,网络侧设备还可以是全球移动通讯(Global System of Mobile communication,简称GSM)或码分多址(Code Division Multiple Access,简称CDMA)中的基站(Base Transceiver Station,简称BTS),也可以是宽带码分多址(Wideband Code Division Multiple Access,简称WCDMA)中的基站(NodeB,简称NB),还可以是LTE中的演进型基站(Evolutional Node B,简称eNB或eNodeB),或者中继站或接入点,或者未来5G网络中的基站等,在此并不限定。
UE可以是无线终端也可以是有线终端,无线终端可以是指向用户提供语音和/或其他业务数据连通性的设备,具有无线连接功能的手持式设备、或连接到无线调制解调器的其他处理设备。无线终端可以经无线接入网(Radio Access Network,简称RAN)与一个或多个核心网进行通信,无线终端可以是移动终端,如移动电话(或称为“蜂窝”电话)和具有移动终端的计算机,例如,可以是便携式、袖珍式、手持式、计算机内置的或者车载的移动装置,它们与无线接入网交换语言和/或数据。例如,个人通信业务(Personal Communication Service,简称PCS)电话、无绳电话、会话发起协议(Session  Initiation Protocol,简称SIP)话机、无线本地环路(Wireless Local Loop,简称WLL)站、个人数字助理(Personal Digital Assistant,简称PDA)等设备。无线终端也可以称为系统、订户单元(Subscriber Unit)、订户站(Subscriber Station),移动站(Mobile Station)、移动台(Mobile)、远程站(Remote Station)、远程终端(Remote Terminal)、接入终端(Access Terminal)、用户终端(User Terminal)、用户代理(User Agent)、用户设备(User Device or User Equipment),在此不作限定。
图2为本公开一实施例提供的测量上报的处理方法的流程图。如图2所示,该方法应用于网络侧设备,该方法步骤包括:S101、配置UE的测量上报配置信息,测量上报配置信息包括用于触发UE上报测量结果的异系统小区的事件。
在本实施例中,网络侧设备除了可以配置触发UE上报测量结果的当前系统的事件,还配置若干个触发UE上报测量结果的异系统中的小区的事件,以使UE能够在测量到异系统小区的信号满足该些事件时,可以上报测量结果,以便网络侧设备能够根据上报的测量结果进行小区的增加、删除或者修改等操作。异系统小区包括异系统服务小区和异系统邻小区。
该触发该UE上报测量结果的异系统小区的事件中限定了异系统小区的信号参数和/或当前系统服务小区的信号参数的门限,具体的,这里的信号参数可以包括信号质量,或者,信号质量和至少一个偏移量。
一种具体的实现方式中,用于触发该UE上报测量结果的异系统小区的事件包括以下至少一种事件:
事件1:异系统服务小区的信号的质量高于预设的第一门限值。
事件3:异系统服务小区的信号的质量低于预设的第二门限值。
事件5:异系统邻小区的信号的质量高于异系统服务小区的信号的质量。
事件7:异系统服务小区的信号的质量低于预设的第三门限值、且异系统邻小区的信号的质量高于预设的第四门限值。
事件9:异系统邻小区的信号的质量高于当前系统服务小区的信号的质量。
事件11:当前系统服务小区的信号的质量低于预设的第五门限值、且异 系统邻小区的信号的质量高于预设的第六门限值。
在一些可选的实施例中,信号参数还可以包括至少一个偏移量。具体的,异系统服务小区的信号参数还包括异系统服务小区对应的至少一个偏移量。异系统邻小区的信号参数还包括异系统邻小区对应的至少一个偏移量。当前系统服务小区的信号参数还包括当前系统服务小区对应的至少一个偏移量。据此,在另一种具体的实现方式中,该用于触发该UE上报测量结果的异系统小区的事件包括以下至少一种事件:
事件2:异系统服务小区的信号的质量与异系统服务小区对应的至少一个偏移量(offest)之和高于预设的第一门限值。
事件4:异系统服务小区的信号的质量与异系统服务小区对应的至少一个偏移量之和低于预设的第二门限值。
事件6:异系统邻小区的信号的质量与异系统邻小区对应的至少一个偏移量之和高于异系统服务小区的信号的质量与异系统服务小区对应的至少一个偏移量之和。
事件8:异系统服务小区的信号的质量与异系统服务小区对应的至少一个偏移量之和低于预设的第三门限值、且异系统邻小区的信号的质量与异系统邻小区对应的至少一个偏移量之和高于预设的第四门限值。
事件10:异系统邻小区的信号的质量与异系统邻小区对应的至少一个偏移量之和高于当前系统服务小区的信号的质量与当前系统服务小区对应的至少一个偏移量之和。
事件12:当前系统服务小区的信号的质量与当前系统服务小区对应的至少一个偏移量之和低于预设的第五门限值、且异系统邻小区的信号的质量与异系统邻小区对应的至少一个偏移量之和高于预设的第六门限值。
在上述任一事件中,涉及到的偏移量可以为正数也可以为负数。
在一些可选的实施例中,在事件5和事件6中,该异系统服务小区可以为主小区(PCell),辅小区(SCell)和主辅小区(PSCell)的一种。在事件11和事件12中,当前系统服务小区可以为主小区(PCell)、辅小区(SCell)和主辅小区(PSCell)中的一种,且事件12中的至少一个偏移量可以为负数。在事件9和事件10中,该当前系统服务小区可以为主小区(PCell),辅小区 (SCell)和主辅小区(PSCell)的一种。且在事件10中,至少一个偏移量可以为负数。
S102、向UE发送该测量上报配置信息。
在本实施例中,网络侧设备可将获取到的测量上报配置信息发送给UE,在该方案中,应理解,网络侧设备为不同的UE发送的测量上报信息可以不同。
UE在接收到测量上报配置信息之后,即保存了该测量上报配置信息中的用于触发该UE上报测量结果的异系统小区的事件,例如上述所描述的事件1、3、5、7、9和11中的一个或多个,或者事件2、4、6、8、10和12中的一个或多个,从而使得UE在检测到当前系统和异系统的各个小区的信号之后,根据根据上述的至少一个事件确定是否进行测量结果上报。若UE检测到信号的质量满足上述至少一个事件,则向网络侧设备上报测量结果。
另外,该测量结果至少包括与满足的事件相关的信号的质量,可以是如下的一种或者几种:异系统服务小区的信号的质量、异系统邻小区的信号的质量,和当前系统服务小区的信号的质量。
本实施例中,在网络侧,通过给UE配置测量上报配置信息,由于该测量上报配置信息中包括用于触发该UE上报测量结果的异系统小区的事件,因此,使得UE可以根据该测量上报配置信息中的用于触发该UE上报测量结果的异系统小区的事件,对异系统小区的测量结果进行分析,在满足任一事件时向网络侧设备上报,使得网络侧设备可以结合异系统小区的测量结果对异系统小区进行增加、删除、修改等操作。
图3为本公开另一实施例提供的测量上报的处理方法的流程图。如图3所示,该方法应用于用户设备,该方法步骤包括:
S201、获取测量结果。
在本实施了中,UE可以对异系统服务小区、异系统邻小区和/或当前系统服务小区的信号的质量进行检测,以获取检测结果。例如,该测量结果可以包括异系统服务小区的信号的质量;或者,该异系统服务小区的信号的质量和异系统邻小区的信号的质量;或者,该异系统邻小区的信号的质量和当前系统服务小区的信号的质量;或者,该异系统服务小区的信号的质量、该 异系统邻小区的信号的质量和该当前系统服务小区的信号的质量。
S202、在确定测量结果满足预先获取的至少一个用于触发UE上报测量结果的异系统小区的事件时,向网络侧设备上报所述测量结果。
在本实施例中,UE需要预先获取若干个用于触发上报测量结果的异系统小区的事件,并在每个检测到测量结果时确定是否满足该些异系统小区的事件中的至少一个,如果满足则向网络侧设备进行测量结果上报。
在一种具体的实现方式中,UE可以通过网络侧设备的配置获取上述至少一个用于触发UE上报测量结果的异系统小区的事件,具体的,UE在获取测量结果之前,接收网络侧设备发送的测量上报配置信息;其中,该测量上报配置信息包括:至少一个用于触发UE上报测量结果的异系统小区的事件。具体的事件可参考图2所示实施例的描述,此处不再赘述。
另外,当UE获取到测量结果之后,可以判断该测量结果是否满足若干个触发UE上报测量结果的异系统小区的事件中的至少一个,若确定满足其中至少一个,则将上报测量结果。在该方案的具体实现中,若UE检测到的当前系统的服务小区、异系统服务小区以及异系统邻小区的信号质量可满足上述事件中的多个事件,则可以将多个测量结果均上报给网络侧设备,可以将多个测量结果通过用一个消息发送给网络侧设备,也可以通过不同的消息发送给网络侧设备,本方案不做限制。
本实施例中,UE根据预先得到的能够触发测量上报的若干个异系统小区的事件,确定测量结果是否满足其中至少一个事件,如果满足其中至少一个事件,则向网络侧设备上报测量结果,相较于目前的方案中只考虑当前系统小区的事件,本方案中UE上报异系统小区的事件触发的测量结果,使得网络设备能够根据UE的异系统小区的测量结果,实现对异系统小区的配置、删除或者增加等处理。
在前述两个实施例的基础上,下述实施例以网络侧设备配置包括触发上报测量结果的异系统小区的时间的测量上报配置信息为例,对本公开提供的测量上报的处理方法的技术方案进行详细说明。
图4为本公开又一实施例提供的测量上报的处理方法的流程图。如图4所示,该方法包括:
S301、网络侧设备向UE发送测量上报配置信息。
即UE接收网络侧设备发送的测量上报配置信息。其中,该测量上报配置信息中的事件包括:UE的异系统服务小区的信号的质量高于预设的第一门限值,即上述的事件1。
S302、UE获取测量结果。
S303、UE在确定该测量结果中的异系统服务小区的信号质量高于预设第一门限值时,向网络侧设备上报该测量结果。
在上述步骤中,UE实时检测异系统服务小区的信号质量,若检测到异系统服务小区的信号质量高于预设的第一门限值,则触发测量结果上报。
在一些可选的实施例中,UE在测量过程中有可能发生移动或者网络切换、或者小区切换等行为,即UE的状态变化会影响信号测量的精度,因此为了保证该测量结果的准确性,网络侧设备还可以为该UE配置与异系统服务小区的信号质量对应的一个或者多个偏移量,该些偏移量可以与不同的UE状态对应,以便在测量结果与门限值对比的过程中,能够考虑UE状态的影响。
除此之外,UE在确定异系统服务小区的信号的质量与异系统服务小区对应的其他至少一个偏移量之和低于所述第一门限值时,则删除测量结果。在判断小于门限值时采用的偏移量与判断大于门限值时采用的偏移量不同。
即本实施例中UE接收的测量上报配置信息中还可以包括至少一个与异系统服务小区对应的偏移量,上述S301中的事件替换为:异系统服务小区的信号的质量与该异系统服务小区对应的至少一个偏移量之和高于预设的第一门限值,即上述事件2。在一些可选的实施例中,在确定所述异系统服务小区的信号的质量与所述异系统服务小区对应的其他至少一个偏移量之和高于所述第二门限值时,则删除所述测量结果。
则举例来说,网络侧设备在给UE配置测量的时候,配置触发测量上报的事件包括:异系统服务小区信号参数高于第一门限值(Thresh),并可配置一个或多个偏移量(Offset),该偏移量数可以为负数。UE根据网络侧设备的配置进行测量,异系统服务小区信号质量(Ms),则进入测量结果上报的触发条件为:异系统服务小区信号质量加偏移量大于第一门限值(即Ms+Offset1>Thresh),即满足条件即上报测量结果。离开测量结果上报的条件为:异系统 服务小区信号质量加偏移量小于第一门限值(Ms-Offset2<Thresh)。
基于上述图4所示实施例的描述,当测量上报配置信息中的事件为事件3时,其处理方式与上述事件1处理原理相同;当测量上报配置信息中的事件为事件4时,其处理与上述事件2处理原理相同,此处就不再赘述。
举例来说,网络侧设备在给UE配置测量,配置触发测量上报的事件包括:异系统服务小区信号质量低于第二门限值(Thresh),并可配置一个或多个偏移量(Offset)。UE根据网络侧的测量配置进行测量得到异系统服务小区信号质量(Ms),则进入测量结果上报的条件为:异系统服务小区信号质量加偏移量小于第二门限值(即Ms+offset1<Thresh)。离开测量结果上报的条件为:异系统服务小区信号质量加偏移量大于第二门限值(即Ms-offset2>Thresh)。
图5为本公开还一实施例提供的测量上报的处理方法的流程图。如图5所示,该方法包括:
S401、网络侧设备向UE发送测量上报配置信息。
即UE接收网络侧设备发送的测量上报配置信息。其中,该测量上报配置信息中的事件具体为:异系统邻小区的信号的质量高于异系统服务小区的信号的质量,即上述的事件5。
S402、UE获取测量结果。
S403、UE在确定该测量结果中的异系统邻小区的信号质量高于测量结果中的异系统服务小区的信号的质量时,向网络侧上报该测量结果。
在一些可选的实施例中,与前述实施例类似的,UE在测量过程中有可能发生移动或者网络切换、或者小区切换等行为,即UE的状态变化会影响信号测量的精度,因此为了保证该测量结果的准确性,网络侧设备还可以为该UE配置与异系统服务小区和异系统邻小区的信号质量对应的一个或者多个偏移量,还可以将S403中的事件替换为异系统邻小区的信号的质量与异系统邻小区对应的至少一个偏移量之和高于异系统服务小区的信号的质量与异系统服务小区对应的至少一个偏移量之和,即上述事件6。
除此之外,UE在确定异系统邻小区的信号的质量与异系统邻小区对应的其他至少一个偏移量之和低于异系统服务小区的信号的质量与其他偏移量之 和时,则删除测量结果。
则举例来说,S403具体为:对测量结果中的异系统邻小区的信号质量Mn与该事件6中的与异系统邻小区对应的两个偏移量(offset2和offset3)求和;对测量结果中的异系统服务小区的信号质量与该事件6中的与异系统服务小区对应的一个偏移量(offset4)求和;判断两者之间的关系,若确定前者高于后者,则向网络侧设备上报该测量结果,否则不向网络侧设备上报测量结果。即(Mn+Offset2-offset3)>(Ms+Offset4)则进入测量结果上报,(Mn+Offset2-offset3)<(Ms+Offset4)离开测量结果上报。其中,offset2和offset4为正数,offset3为负数。此外,还可以配置一个差值Shift,即异系统邻小区的信号质量与偏移量之和大于异系统服务小区与偏移量一定值,即(Mn+Offset2-offset3)>(Ms+Offset4+Shift)则进入测量结果上报,(Mn+Offset2-offset3)<(Ms+Offset4+Shift)离开测量结果上报。
图6为本公开又一实施例提供的测量上报的处理方法的流程图。如图6所示,该方法包括:
S501、网络侧设备向UE发送测量上报配置信息。
即UE接收网络侧设备发送的测量上报配置信息。其中,该测量上报配置信息中的事件具体为:异系统服务小区的信号的质量低于预设的第三门限值、且异系统邻小区的信号的质量高于预设的第四门限值,即上述的事件7。
S502、UE获取测量结果。
S503、UE在确定该测量结果中的异系统服务小区的信号的质量低于低于第三门限值、且异系统邻小区的信号的质量高于预设的第四门限值时,向网络侧上报该测量结果。
在一些可选的实施例中,与前述实施例类似的,UE在测量过程中有可能发生移动或者网络切换、或者小区切换等行为,即UE的状态变化会影响信号测量的精度,因此为了保证该测量结果的准确性,网络侧设备还可以为该UE配置与异系统服务小区和异系统邻小区的信号质量对应的一个或者多个偏移量,可以将S503中的事件替换为异系统服务小区的信号的质量与异系统服务小区对应的至少一个偏移量之和低于预设的第三门限值、且异系统邻小区的信号的质量与异系统邻小区对应的至少一个偏移量之和高于预设的第四 门限值,即上述事件8。在一些可选的实施例中,UE在确定异系统服务小区的信号的质量与异系统服务小区对应的其他至少一个偏移量之和高于所述第三门限值、或异系统邻小区的信号的质量与异系统邻小区对应的其他至少一个偏移量之和低于第四门限值时,则删除测量结果。即不满足其中任一个条件均不会触发上报过程,删除测量结果。
则举例来说,S503具体为:UE根据网络侧的测量配置进行测量,异系统服务小区信号质量(Ms),异系统邻小区信号质量(Mn),同时配置了对应的偏移量,则UE进入测量结果报告的条件为:(异系统服务小区信号质量加偏移量)小于第三门限值Thresh1,且(异系统邻小区信号质量加偏移量)大于第二门限值Thresh2,即(Ms+Offset1)<Thresh1且(Mn+Offset2-Offset3)>Thresh2。UE离开测量结果报告的条件为:(异系统服务小区信号质量加偏移量)大于门限1,或(异系统邻小区信号质量加偏移量)小于门限2,即(Ms-Offset4)>Thresh1或(Ms+Offset5+Offset6)<Thresh2,即离开条件中的偏移量与进入条件中的偏移量不同。
图7为本公开又一实施例提供的测量上报的处理方法的流程图。如图7所示,该方法包括:
S601、网络侧设备向UE发送测量上报配置信息。
即UE接收网络侧设备发送的测量上报配置信息。其中,该测量上报配置信息中的事件具体为:异系统邻小区的信号的质量高于当前系统服务小区的信号的质量,即上述的事件9。
S602、UE获取测量结果。
S603、UE在确定该测量结果中的异系统邻小区的信号的质量高于当前系统服务小区的信号的质量时,向网络侧上报该测量结果。
在一些可选的实施例中,与前述实施例类似的,UE在测量过程中有可能发生移动或者网络切换、或者小区切换等行为,即UE的状态变化会影响信号测量的精度,因此为了保证该测量结果的准确性,网络侧设备还可以为该UE配置与当前统服务小区和异系统邻小区的信号质量对应的一个或者多个偏移量,可以将S603中的事件替换为异系统邻小区的信号的质量与异系统邻小区对应的至少一个偏移量之和高于当前系统服务小区的信号的质量与当前 系统服务小区对应的至少一个偏移量之和,即上述事件10。此外,UE在确定异系统邻小区的信号的质量与异系统邻小区对应的其他至少一个偏移量之和低于所述当前系统服务小区的信号的质量与当前系统服务小区对应的其他至少一个偏移量之和时,则删除测量结果。
则举例来说,S603具体为:UE根据网络侧的测量配置进行测量,异系统邻小区信号质量(Mn),当前系统服务小区信号质量(Ms),同时配置了相应的偏移量,则UE进入测量结果上报的条件为:(异系统邻小区信号质量加偏移量)大于(当前系统服务小区信号质量加偏移量),即(Mn+Offset1-offset2)>(Ms+Offset3+Shift)。UE离开测量结果上报的条件为:(异系统邻小区信号质量加偏移量)小于(当前系统服务小区信号质量加偏移量),即(Mn+Offset4+offset5)<(Ms+Offset6+Shift),进入条件和离开条件中的偏移量不同。
图8为本公开又一实施例提供的测量上报的处理方法的流程图。如图8所示,该方法包括:
S701、网络侧设备向UE发送测量上报配置信息。
即UE接收网络侧设备发送的测量上报配置信息。其中,该测量上报配置信息中的事件具体为:当前系统服务小区的信号的质量低于预设的第五门限值、且异系统邻小区的信号的质量高于预设的第六门限值,即上述的事件11。
S702、UE获取测量结果。
S703、UE在确定该测量结果中的当前系统服务小区的信号的质量低于第五门限值、且异系统邻小区的信号的质量高于预设的第六门限值时,向网络侧上报该测量结果。
在一些可选的实施例中,与前述实施例类似的,UE在测量过程中有可能发生移动或者网络切换、或者小区切换等行为,即UE的状态变化会影响信号测量的精度,因此为了保证该测量结果的准确性,网络侧设备还可以为该UE配置与当前统服务小区和异系统邻小区的信号质量对应的一个或者多个偏移量,可以将S703中的事件替换为当前系统服务小区的信号的质量与当前系统服务小区对应的至少一个偏移量之和低于预设的第五门限值、且异系统 邻小区的信号的质量与异系统邻小区对应的至少一个偏移量之和高于预设的第六门限值,即上述事件12。此外,UE在确定当前系统服务小区的信号的质量与当前系统服务小区对应的其他至少一个偏移量之和大于第五门限值、或异系统邻小区的信号的质量与异系统邻小区对应的其他至少一个偏移量之和低于第六门限值时,则删除测量结果。不满足其中任一个条件均不会触发上报过程,删除测量结果。
则举例来说,S703具体为:UE根据网络侧的测量配置进行测量,当前系统服务小区信号质量(Ms),异系统邻小区信号质量(Mn),并配置相应的偏移量。则UE进入测量结果上报的条件为:(当前系统服务小区信号质量加偏移量)小于第五门限值Thresh 1,且(异系统邻小区信号质量加偏移量)大于第六门限值Thresh2,即(Ms+Offset1)<Thresh1且(Mn+Offset2–Offset3)>Thresh2。UE离开测量结果上报的条件为:(当前系统服务小区信号质量加偏移量)大于门限1,或(异系统邻小区信号质量加偏移量)小于门限2,即(Ms-Offset4)>Thresh1或(Ms+Offset5+Offset6)<Thresh2,其中,进入条件和离开条件中采用的偏移量不同。
在上述任一实施例的基础上,为了进一步保证上报的测量报告准确,UE在进行测量结果上报时,还可以通过定时器进行定时发送,在确定测量结果满足测量上报配置信息中的至少一个事件之后,开启定时器,当定时器从启动到结束定时期间,UE所测量获取的测量结果依然满足对应的事件,则在定时器结束定时以后,向网络侧设备上报测量结果。若在定时器定时期间,测量结果不再满足任何一个事件,则可以停止定时器,可以上报也可以不上报测量结果,可以根据网络侧设备的指示执行。
图9为本公开一实施例提供的网络侧设备结构示意图。如图9所示,该网络侧设备包括:处理模块001和发送模块002,其中,
处理模块001,用于配置UE的测量上报配置信息,所述测量上报配置信息包括用于触发所述UE上报测量结果的异系统小区的事件;
发送模块002,用于向所述UE发送所述测量上报配置信息。
本实施例中,处理模块给UE配置测量上报配置信息,并由发送模块发送给UE,由于该测量上报配置信息中包括用于触发该UE上报测量结果的异 系统小区的事件,因此,使得UE可以根据该测量上报配置信息中的用于触发该UE上报测量结果的异系统小区的事件,对异系统小区的测量结果进行分析,在满足任一事件时向网络侧设备上报,使得网络侧设备可以结合异系统小区的测量结果对异系统小区进行增加、删除、修改等操作。
在一些可选的实施例中,所述异系统小区包括异系统服务小区和异系统邻小区;所述用于触发所述UE上报测量结果的异系统小区的事件包括以下至少一种事件:所述异系统服务小区的信号参数高于预设的第一门限值;所述异系统服务小区的信号参数低于预设的第二门限值;所述异系统邻小区的信号参数高于所述异系统服务小区的信号参数;所述异系统服务小区的信号参数低于预设的第三门限值、且所述异系统邻小区的信号参数高于预设的第四门限值;所述异系统邻小区的信号参数高于当前系统服务小区的信号参数;所述当前系统服务小区的信号参数低于预设的第五门限值、且所述异系统邻小区的信号参数高于预设的第六门限值。
在一些可选的实施例中,所述异系统服务小区的信号参数包括所述异系统服务小区的信号的质量;所述异系统邻小区的信号参数包括所述异系统邻小区的信号的质量;所述当前系统服务小区的信号参数包括所述当前系统服务小区的信号的质量。
在一些可选的实施例中,所述异系统服务小区的信号参数还包括所述异系统服务小区对应的至少一个偏移量;所述异系统邻小区的信号参数还包括所述异系统邻小区对应的至少一个偏移量;所述当前系统服务小区的信号参数还包括所述当前系统服务小区对应的至少一个偏移量。
在一些可选的实施例中,所述当前系统服务小区包括如下一种:主小区,辅小区和主辅小区。
在一些可选的实施例中,所述异系统服务小区包括如下一种:主小区,辅小区和主辅小区。
本实施例中的网络侧设备用于执行前述方法实施例,其实现原理和技术效果类似,在此不再赘述。
图10为本公开一实施例提供的用户设备结构示意图,如图10所示,该用户设备包括:获取模块111、第一处理模块112和发送模块113,其中,获 取模块111,用于获取测量结果;
第一处理模块112,用于确定所述测量结果是否满足预先获取的至少一个用于触发所述用户设备上报测量结果的异系统小区的事件;
发送模块113,用于在所述第一处理模块112确定所述测量结果是否满足预先获取的至少一个用于触发所述用户设备上报测量结果的异系统小区的事件时,向网络侧设备上报所述测量结果。
本实施例中,第一处理模块根据预先得到的能够触发测量上报的若干个异系统小区的事件,确定获取模块获取到的测量结果是否满足其中至少一个事件,如果满足其中至少一个事件,则通过发送模块向网络侧设备上报测量结果,相较于目前的方案中只考虑当前系统小区的事件,本方案中UE上报异系统小区的事件触发的测量结果,使得网络设备能够根据UE的异系统小区的测量结果,实现对异系统小区的配置、删除或者增加等处理。
在一些可选的实施例中,所述异系统小区包括异系统服务小区和异系统邻小区;则所述测量结果包括:所述异系统服务小区的信号的质量;或者,所述异系统服务小区的信号的质量和所述异系统邻小区的信号的质量;或者,所述异系统邻小区的信号的质量和当前系统服务小区的信号的质量;或者,所述异系统服务小区的信号的质量、所述异系统邻小区的信号的质量和所述当前系统服务小区的信号的质量。
本实施例中的用户设备用于执行前述方法实施例,其实现原理和技术效果类似,在此不再赘述。
图11为本公开另一实施例提供的用户设备结构示意图,如图11所示,在上述实施例的基础上,所述用户设备还包括:接收模块114,用于接收所述网络侧设备发送的所述测量上报配置信息;所述测量上报配置信息包括:至少一个用于触发所述测量上报的处理用户设备上报测量结果的异系统小区的事件。
在一些可选的实施例中,所述异系统的小区信号质量的事件包括以下至少一种事件,包括:所述异系统服务小区的信号参数高于预设的第一门限值;所述异系统服务小区的信号参数低于预设的第二门限值;所述异系统邻小区的信号参数高于所述异系统服务小区的信号参数;所述异系统服务小区的信 号参数低于预设的第三门限值、且所述异系统邻小区的信号参数高于预设的第四门限值;所述异系统邻小区的信号参数高于当前系统服务小区的信号参数;所述当前系统服务小区的信号参数低于预设的第五门限值、且所述异系统邻小区的信号参数高于预设的第六门限值。
在一些可选的实施例中,所述异系统服务小区的信号参数包括所述异系统服务小区的信号的质量;所述异系统邻小区的信号参数包括所述异系统邻小区的信号的质量;所述当前系统服务小区的信号参数包括所述当前系统服务小区的信号的检测质量。
在一些可选的实施例中,所述异系统服务小区的信号参数还包括所述异系统服务小区对应的至少一个偏移量;所述异系统邻小区的信号参数还包括所述异系统邻小区对应的至少一个偏移量;所述当前系统服务小区的信号参数还包括所述当前系统服务小区对应的至少一个偏移量。
在一些可选的实施例中,所述当前系统服务小区包括如下任一种:主小区,辅小区和主辅小区。
在一些可选的实施例中,所述异系统服务小区包括如下任一种:主小区,辅小区和主辅小区。
本实施例中的用户设备用于执行前述方法实施例,其实现原理和技术效果类似,在此不再赘述。
图12为本公开又一实施例提供的用户设备结构示意图,如图12所示,在上述实施例的基础上,所述用户设备还包括:第二处理模块115;在所述异系统的小区信号质量的事件包括所述异系统服务小区的信号参数高于预设的第一门限值时,所述发送模块113具体用于在所述第一处理模块112确定所述异系统服务小区的信号的质量与所述异系统服务小区对应的至少一个偏移量之和高于所述第一门限值时,向所述网络侧设备上报所述测量结果;第二处理模块115,用于在确定所述异系统服务小区的信号的质量与所述异系统服务小区对应的其他至少一个偏移量之和低于所述第一门限值时,则删除所述测量结果。
在一些可选的实施例中,在所述异系统的小区信号质量的事件包括所述异系统服务小区的信号参数低于预设的第二门限值时,所述发送模块113具 体用于在确定所述异系统服务小区的信号的质量与所述异系统服务小区对应的至少一个偏移量之和低于所述第二门限值时,向所述网络侧设备上报所述测量结果;第二处理模块115,用于在确定所述异系统服务小区的信号的质量与所述异系统服务小区对应的其他至少一个偏移量之和高于所述第二门限值时,则删除所述测量结果。
在一些可选的实施例中,在所述异系统的小区信号质量的事件包括所述异系统邻小区的信号参数高于所述异系统服务小区的信号参数时,所述发送模块113具体用于在确定所述异系统邻小区的信号的质量与所述异系统邻小区对应的至少一个偏移量之和高于所述异系统服务小区的信号的质量与所述异系统服务小区对应的至少一个偏移量之和时,向所述网络侧设备上报所述测量结果;第二处理模块115,用于在确定所述异系统邻小区的信号的质量与所述异系统邻小区对应的其他至少一个偏移量之和低于所述异系统服务小区的信号的质量与其他偏移量之和时,则删除所述测量结果。
在一些可选的实施例中,在所述异系统的小区信号质量的事件包括所述异系统服务小区的信号参数低于预设的第三门限值、且所述异系统邻小区的信号参数高于预设的第四门限值时,所述发送模块113具体用于在所述第一处理模块112确定所述异系统服务小区的信号的质量与所述异系统服务小区对应的至少一个偏移量之和低于所述第三门限值、且所述异系统邻小区的信号的质量与所述异系统邻小区对应的至少一个偏移量之和高于所述第四门限值时,向所述网络侧设备上报所述测量结果;第二处理模块115,用于在确定所述异系统服务小区的信号的质量与所述异系统服务小区对应的其他至少一个偏移量之和高于所述第三门限值、或所述异系统邻小区的信号的质量与所述异系统邻小区对应的其他至少一个偏移量之和低于所述第四门限值时,则删除所述测量结果。
在一些可选的实施例中,在所述异系统的小区信号质量的事件包括所述异系统邻小区的信号参数高于当前系统服务小区的信号参数时,所述发送模块113具体用于在所述第一处理模块112确定所述异系统邻小区的信号的质量与所述异系统邻小区对应的至少一个偏移量之和高于所述当前系统服务小区的信号的质量与所述当前系统服务小区对应的至少一个偏移量之和时,向 所述网络侧设备上报所述测量结果;第二处理模块115,用于在确定所述异系统邻小区的信号的质量与所述异系统邻小区对应的其他至少一个偏移量之和低于所述当前系统服务小区的信号的质量与所述当前系统服务小区对应的其他至少一个偏移量之和时,则删除所述测量结果。
在一些可选的实施例中,在所述异系统的小区信号质量的事件包括所述当前系统服务小区的信号参数低于预设的第五门限值、且所述异系统邻小区的信号参数高于预设的第六门限值时,所述发送模块113具体用于在所述第一处理模块112确定所述当前系统服务小区的信号的质量与所述当前系统服务小区对应的至少一个偏移量之和小于所述第五门限值、且所述异系统邻小区的信号的质量与所述异系统邻小区对应的至少一个偏移量之和高于所述第六门限值时,向所述网络侧设备上报所述测量结果;第二处理模块115,用于在确定所述当前系统服务小区的信号的质量与所述当前系统服务小区对应的其他至少一个偏移量之和大于所述第五门限值、或所述异系统邻小区的信号的质量与所述异系统邻小区对应的其他至少一个偏移量之和低于所述第六门限值时,则删除所述测量结果。
在一些可选的实施例中,所述当前系统服务小区包括如下任一种:主小区,辅小区和主辅小区。
在一些可选的实施例中,所述异系统服务小区包括如下任一种:主小区,辅小区和主辅小区。
本实施例中的用户设备用于执行前述方法实施例,其实现原理和技术效果类似,在此不再赘述。
上述实施例中提供的网络侧设备预先为用户设备配置能够触发用户设备上报测量结果的异系统小区的事件,以使用户设备在进行小区的信号质量的检测过程中,在满足至少一个上述异系统小区的事件时,能够将测量结果上报,使得网络侧设备可以对异系统小区进行增加删除以及配置等操作,解决不同无线通信系统进行紧耦合的时候,无法通过现有的测量配置触发用户上报测量结果,从而无法实现不同无线系统将的有效无线资源的问题。
需要说明的是,应理解以上网络侧设备和用户设备的各个模块的划分仅仅是一种逻辑功能的划分,实际实现时可以全部或部分集成到一个物理实体 上,也可以物理上分开。且这些模块可以全部以软件通过处理元件调用的形式实现;也可以全部以硬件的形式实现;还可以部分模块通过处理元件调用软件的形式实现,部分模块通过硬件的形式实现。例如,确定模块可以为单独设立的处理元件,也可以集成在上述装置的某一个芯片中实现,此外,也可以以程序代码的形式存储于上述装置的存储器中,由上述装置的某一个处理元件调用并执行以上确定模块的功能。其它模块的实现与之类似。此外这些模块全部或部分可以集成在一起,也可以独立实现。这里所述的处理元件可以是一种集成电路,具有信号的处理能力。在实现过程中,上述方法的各步骤或以上各个模块可以通过处理器元件中的硬件的集成逻辑电路或者软件形式的指令完成。
例如,以上这些模块可以是被配置成实施以上方法的一个或多个集成电路,例如:一个或多个特定集成电路(Application Specific Integrated Circuit,简称ASIC),或,一个或多个微处理器(digital singnal processor,简称DSP),或,一个或者多个现场可编程门阵列(Field Programmable Gate Array,简称FPGA)等。再如,当以上某个模块通过处理元件调度程序代码的形式实现时,该处理元件可以是通用处理器,例如中央处理器(Central Processing Unit,简称CPU)或其它可以调用程序代码的处理器。再如,这些模块可以集成在一起,以片上系统(system-on-a-chip,简称SOC)的形式实现。
图13为本公开另一实施例提供的网络侧设备结构示意图。如图13所示,该网络侧设备包括:天线11、射频装置12、基带装置13。天线11与射频装置12连接。在上行方向上,射频装置12通过天线11接收信息,将接收的信息发送给基带装置13进行处理。在下行方向上,基带装置13对要发送的信息进行处理,并发送给射频装置12,射频装置12对收到的信息进行处理后经过天线11发送出去。
上述频带处理装置可以位于基带装置13中,以上实施例中网络侧设备执行的方法可以在基带装置13中实现,该基带装置13包括处理器121和存储器122。
基带装置13例如可以包括至少一个基带板,该基带板上设置有多个芯片,如图12所示,其中一个芯片例如为处理器121,与存储器122连接,以调用 存储器122中的程序,执行以上方法实施例中所示的网络侧设备操作。
该基带装置13还可以包括网络接口123,用于与射频装置12交互信息,该接口例如为通用公共无线接口(common public radio interface,简称CPRI)。
这里的处理器可以是一个处理器,也可以是多个处理元件的统称,例如,该处理器可以是CPU,也可以是ASIC,或者是被配置成实施以上网络侧设备所执行方法的一个或多个集成电路,例如:一个或多个微处理器DSP,或,一个或者多个现场可编程门阵列FPGA等。存储元件可以是一个存储器,也可以是多个存储元件的统称。
存储器122可以是易失性存储器或非易失性存储器,或可包括易失性和非易失性存储器两者。其中,非易失性存储器可以是只读存储器(Read-OnlyMemory,简称ROM)、可编程只读存储器(ProgrammableROM,简称PROM)、可擦除可编程只读存储器(ErasablePROM,简称EPROM)、电可擦除可编程只读存储器(ElectricallyEPROM,简称EEPROM)或闪存。易失性存储器可以是随机存取存储器(RandomAccessMemory,简称RAM),其用作外部高速缓存。通过示例性但不是限制性说明,许多形式的RAM可用,例如静态随机存取存储器(StaticRAM,简称SRAM)、动态随机存取存储器(DynamicRAM,简称DRAM)、同步动态随机存取存储器(SynchronousDRAM,简称SDRAM)、双倍数据速率同步动态随机存取存储器(DoubleDataRateSDRAM,简称DDRSDRAM)、增强型同步动态随机存取存储器(EnhancedSDRAM,简称ESDRAM)、同步连接动态随机存取存储器(SynchlinkDRAM,简称SLDRAM)和直接内存总线随机存取存储器(DirectRambusRAM,简称DRRAM)。本公开描述的存储器122旨在包括但不限于这些和任意其它适合类型的存储器。
具体地,处理器121调用存储器122中的程序执行上述测量上报的处理方法,该方法包括:配置UE的测量上报配置信息,测量上报配置信息包括用于触发UE上报测量结果的异系统小区的事件;向UE发送测量上报配置信息。
在一些可选的实施例中,异系统小区包括异系统服务小区和异系统邻小区;用于触发UE上报测量结果的异系统小区的事件包括以下至少一种事件: 异系统服务小区的信号参数高于预设的第一门限值;异系统服务小区的信号参数低于预设的第二门限值;异系统邻小区的信号参数高于异系统服务小区的信号参数;异系统服务小区的信号参数低于预设的第三门限值、且异系统邻小区的信号参数高于预设的第四门限值;异系统邻小区的信号参数高于当前系统服务小区的信号参数;当前系统服务小区的信号参数低于预设的第五门限值、且异系统邻小区的信号参数高于预设的第六门限值。
在一些可选的实施例中,异系统服务小区的信号参数包括异系统服务小区的信号的质量;异系统邻小区的信号参数包括异系统邻小区的信号的质量;当前系统服务小区的信号参数包括当前系统服务小区的信号的质量。
在一些可选的实施例中,异系统服务小区的信号参数还包括异系统服务小区对应的至少一个偏移量;异系统邻小区的信号参数还包括异系统邻小区对应的至少一个偏移量;当前系统服务小区的信号参数还包括当前系统服务小区对应的至少一个偏移量。
在一些可选的实施例中,当前系统服务小区包括如下任一种:主小区,辅小区和主辅小区。异系统服务小区包括如下任一种:主小区,辅小区和主辅小区。
网络侧设备除了可以配置触发用户设备上报测量结果的当前系统的事件,还配置若干个触发用户设备上报测量结果的异系统中的小区的事件,以使UE能够在测量到异系统小区的信号满足该些事件时,可以上报测量结果,以便网络侧设备能够根据上报的测量结果进行小区的增加、删除或者修改等操作。
图14为本公开再一实施例提供的用户设备结构示意图。如图14所示,该用户设备包括:处理器131、存储器132、网络接口133及用户接口134。
用户设备中的上述各个组件通过总线系统135耦合连接。可以理解的是,总线系统135用于实现这些组件之间的连接通信。总线系统135除包括数据线之外,还可以包括电源总线、控制总线及状态信号总线。但是为了清楚说明起见,在图13中将各种总线都标为总线系统135。
或者,以上各个组件的部分或全部也可以通过现场可编程门阵列(Field Programmable Gate Array,简称FPGA)的形式内嵌于该终端的某一个芯片上来实现。且它们可以单独实现,也可以集成在一起。
其中,用户接口1304分别用于连接外围设备或与外围设备连接的接口电路。可以包括显示器、键盘或者点击设备等设备的接口,例如鼠标,轨迹球(trackball)、触感板或者触摸屏等设备的接口。
这里的处理器131,可以是通用处理器,例如CPU,还可以是被配置成实施以上方法的一个或多个集成电路,例如:一个或多个特定集成电路(Application Specific Integrated Circuit,简称ASIC),或,一个或多个微处理器(digital singnal processor,简称DSP),或,一个或者多个现场可编程门阵列(Field Programmable Gate Array,简称FPGA)等。存储元件可以是一个存储装置,也可以是多个存储元件的统称。
存储器132可以是易失性存储器或非易失性存储器,或可包括易失性和非易失性存储器两者。其中,非易失性存储器可以是只读存储器(Read-OnlyMemory,简称ROM)、可编程只读存储器(ProgrammableROM,简称PROM)、可擦除可编程只读存储器(ErasablePROM,简称EPROM)、电可擦除可编程只读存储器(ElectricallyEPROM,简称EEPROM)或闪存。易失性存储器可以是随机存取存储器(RandomAccessMemory,简称RAM),其用作外部高速缓存。通过示例性但不是限制性说明,许多形式的RAM可用,例如静态随机存取存储器(StaticRAM,简称SRAM)、动态随机存取存储器(DynamicRAM,简称DRAM)、同步动态随机存取存储器(SynchronousDRAM,简称SDRAM)、双倍数据速率同步动态随机存取存储器(DoubleDataRateSDRAM,简称DDRSDRAM)、增强型同步动态随机存取存储器(EnhancedSDRAM,简称ESDRAM)、同步连接动态随机存取存储器(SynchlinkDRAM,简称SLDRAM)和直接内存总线随机存取存储器(DirectRambusRAM,简称DRRAM)。本公开描述的存储器132旨在包括但不限于这些和任意其它适合类型的存储器。
在一些可选的实施例中,存储器132存储了如下的元素,可执行模块或者数据结构,或者他们的子集,或者他们的扩展集:操作系统1321和应用程序1322。
其中,操作系统1321,包含各种系统程序,例如框架层、核心库层、驱动层等,用于实现各种基础业务以及处理基于硬件的任务。
应用程序1322,包含各种应用程序,例如媒体播放器(MediaPlayer)、浏览器(Browser)等,用于实现各种应用业务。实现本公开实施例方法的程序也可以包含在应用程序1322中。
具体地,处理器131调用存储器132中的程序执行前述的测量上报的处理方法,该方法包括:获取测量结果;在确定测量结果满足预先获取的至少一个用于触发UE上报测量结果的异系统小区的事件时,向网络侧设备上报测量结果。
在一些可选的实施例中,异系统小区包括异系统服务小区和异系统邻小区;则测量结果包括:异系统服务小区的信号的质量;或者,异系统服务小区的信号的质量和异系统邻小区的信号的质量;或者,异系统邻小区的信号的质量和当前系统服务小区的信号的质量;或者,异系统服务小区的信号的质量、异系统邻小区的信号的质量和当前系统服务小区的信号的质量。
在一些可选的实施例中,获取测量结果之前,方法还包括:接收网络侧设备发送的测量上报配置信息;测量上报配置信息包括:至少一个用于触发UE上报测量结果的异系统小区的事件。
在一些可选的实施例中,异系统的小区信号质量的事件包括以下至少一种事件,包括:异系统服务小区的信号参数高于预设的第一门限值;异系统服务小区的信号参数低于预设的第二门限值;异系统邻小区的信号参数高于异系统服务小区的信号参数;异系统服务小区的信号参数低于预设的第三门限值、且异系统邻小区的信号参数高于预设的第四门限值;异系统邻小区的信号参数高于当前系统服务小区的信号参数;当前系统服务小区的信号参数低于预设的第五门限值、且异系统邻小区的信号参数高于预设的第六门限值。
在一些可选的实施例中,异系统服务小区的信号参数包括异系统服务小区的信号的质量;异系统邻小区的信号参数包括异系统邻小区的信号的质量;当前系统服务小区的信号参数包括当前系统服务小区的信号的检测质量。
在一些可选的实施例中,异系统服务小区的信号参数还包括异系统服务小区对应的至少一个偏移量;异系统邻小区的信号参数还包括异系统邻小区对应的至少一个偏移量;当前系统服务小区的信号参数还包括当前系统服务小区对应的至少一个偏移量。
在一些可选的实施例中,在异系统的小区信号质量的事件包括异系统服务小区的信号参数高于预设的第一门限值时,在确定测量结果满足预先获取的至少一个用于触发UE上报测量结果的异系统小区的事件时,向网络侧设备上报测量结果,包括:在确定异系统服务小区的信号的质量与异系统服务小区对应的至少一个偏移量之和高于第一门限值时,向网络侧设备上报测量结果;则方法还包括:在确定异系统服务小区的信号的质量与异系统服务小区对应的其他至少一个偏移量之和低于第一门限值时,则删除测量结果。
在一些可选的实施例中,在异系统的小区信号质量的事件包括异系统服务小区的信号参数低于预设的第二门限值时,在确定测量结果满足预先获取的至少一个用于触发UE上报测量结果的异系统小区的事件时,向网络侧设备上报测量结果,包括:在确定异系统服务小区的信号的质量与异系统服务小区对应的至少一个偏移量之和低于第二门限值时,向网络侧设备上报测量结果;则方法还包括:在确定异系统服务小区的信号的质量与异系统服务小区对应的其他至少一个偏移量之和高于第二门限值时,则删除测量结果。
在一些可选的实施例中,在异系统的小区信号质量的事件包括异系统邻小区的信号参数高于异系统服务小区的信号参数时,在确定测量结果满足预先获取的至少一个用于触发UE上报测量结果的异系统小区的事件时,向网络侧设备上报测量结果,包括:在确定异系统邻小区的信号的质量与异系统邻小区对应的至少一个偏移量之和高于异系统服务小区的信号的质量与异系统服务小区对应的至少一个偏移量之和时,向网络侧设备上报测量结果;则方法还包括:在确定异系统邻小区的信号的质量与异系统邻小区对应的其他至少一个偏移量之和低于异系统服务小区的信号的质量与其他偏移量之和时,则删除测量结果。
在一些可选的实施例中,在异系统的小区信号质量的事件包括异系统服务小区的信号参数低于预设的第三门限值、且异系统邻小区的信号参数高于预设的第四门限值时,在确定测量结果满足预先获取的至少一个用于触发UE上报测量结果的异系统小区的事件时,向网络侧设备上报测量结果,包括:在确定异系统服务小区的信号的质量与异系统服务小区对应的至少一个偏移量之和低于第三门限值、且异系统邻小区的信号的质量与异系统邻小区对应 的至少一个偏移量之和高于第四门限值时,向网络侧设备上报测量结果;则方法还包括:在确定异系统服务小区的信号的质量与异系统服务小区对应的其他至少一个偏移量之和高于第三门限值、或异系统邻小区的信号的质量与异系统邻小区对应的其他至少一个偏移量之和低于第四门限值时,则删除测量结果。
在一些可选的实施例中,在异系统的小区信号质量的事件包括异系统邻小区的信号参数高于当前系统服务小区的信号参数时,在确定测量结果满足预先获取的至少一个用于触发UE上报测量结果的异系统小区的事件时,向网络侧设备上报测量结果,包括:在确定异系统邻小区的信号的质量与异系统邻小区对应的至少一个偏移量之和高于当前系统服务小区的信号的质量与当前系统服务小区对应的至少一个偏移量之和时,向网络侧设备上报测量结果;则方法还包括:在确定异系统邻小区的信号的质量与异系统邻小区对应的其他至少一个偏移量之和低于当前系统服务小区的信号的质量与当前系统服务小区对应的其他至少一个偏移量之和时,则删除测量结果。
在一些可选的实施例中,在异系统的小区信号质量的事件包括当前系统服务小区的信号参数低于预设的第五门限值、且异系统邻小区的信号参数高于预设的第六门限值时,在确定测量结果满足预先获取的至少一个用于触发UE上报测量结果的异系统小区的事件时,向网络侧设备上报测量结果,包括:在确定当前系统服务小区的信号的质量与当前系统服务小区对应的至少一个偏移量之和小于第五门限值、且异系统邻小区的信号的质量与异系统邻小区对应的至少一个偏移量之和高于第六门限值时,向网络侧设备上报测量结果;则方法还包括:在确定当前系统服务小区的信号的质量与当前系统服务小区对应的其他至少一个偏移量之和大于第五门限值、或异系统邻小区的信号的质量与异系统邻小区对应的其他至少一个偏移量之和低于第六门限值时,则删除测量结果。
在一些可选的实施例中,当前系统服务小区包括如下任一种:主小区,辅小区和主辅小区。异系统服务小区包括如下任一种:主小区,辅小区和主辅小区。
在上述方案中,用户设备根据预先得到的能够触发测量上报的若干个异 系统小区的事件,确定测量结果是否满足其中至少一个事件,如果满足其中至少一个事件,则向网络侧设备上报测量结果,相较于目前的方案中只考虑当前系统小区的事件,本方案中用户设备上报异系统小区的事件触发的测量结果,使得网络设备能够根据用户设备的异系统小区的测量结果,实现对异系统小区的配置、删除或者增加等处理。
此外,本公开还提供一种网络侧设备,包括:存储器、处理器、发送器以及计算机程序,所述计算机程序存储在所述存储器中,所述处理器运行所述计算机程序执行测量上报的处理方法。
本公开还提供一种用户设备,包括:存储器、处理器以及计算机程序,所述计算机程序存储在所述存储器中,所述处理器运行所述计算机程序执行测量上报的处理方法。
在上述网络侧设备和用户设备的实施例中,应理解存储器还可以集成在处理器内部。
本公开还提供一种存储介质,包括:可读存储介质和计算机程序,所述计算机程序用于实现测量上报的处理方法。
本公开还提供一种存储介质,包括:可读存储介质和计算机程序,所述计算机程序用于实现测量上报的处理方法。
本公开还提供一种程序产品,该程序产品包括计算机程序(即执行指令),该计算机程序存储在可读存储介质中。网络侧设备的至少一个处理器可以从可读存储介质读取该计算机程序,至少一个处理器执行该计算机程序使得网络侧设备设备实施测量上报的处理方法。
本公开还提供一种程序产品,该程序产品包括计算机程序(即执行指令),该计算机程序存储在可读存储介质中。用户设备的至少一个处理器可以从可读存储介质读取该计算机程序,至少一个处理器执行该计算机程序使得用户设备实施上述测量上报的处理方法。
最后应说明的是:以上各实施例仅用以说明本公开的技术方案,而非对其限制;尽管参照前述各实施例对本公开进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分或者全部技术特征进行等同替换;而这些修改或者替换,并 不使相应技术方案的本质脱离本公开各实施例技术方案的范围。

Claims (42)

  1. 一种测量上报的处理方法,应用于网络侧设备,包括:
    配置用户设备UE的测量上报配置信息,所述测量上报配置信息包括用于触发所述UE上报测量结果的异系统小区的事件;
    向所述UE发送所述测量上报配置信息。
  2. 根据权利要求1所述的方法,其中,所述异系统小区包括异系统服务小区和异系统邻小区;所述用于触发所述UE上报测量结果的异系统小区的事件包括以下至少一种事件:
    所述异系统服务小区的信号参数高于预设的第一门限值;
    所述异系统服务小区的信号参数低于预设的第二门限值;
    所述异系统邻小区的信号参数高于所述异系统服务小区的信号参数;
    所述异系统服务小区的信号参数低于预设的第三门限值、且所述异系统邻小区的信号参数高于预设的第四门限值;
    所述异系统邻小区的信号参数高于当前系统服务小区的信号参数;
    所述当前系统服务小区的信号参数低于预设的第五门限值、且所述异系统邻小区的信号参数高于预设的第六门限值。
  3. 根据权利要求2所述的方法,其中,
    所述异系统服务小区的信号参数包括所述异系统服务小区的信号的质量;
    所述异系统邻小区的信号参数包括所述异系统邻小区的信号的质量;
    所述当前系统服务小区的信号参数包括所述当前系统服务小区的信号的质量。
  4. 根据权利要求3所述的方法,其中,
    所述异系统服务小区的信号参数还包括所述异系统服务小区对应的至少一个偏移量;
    所述异系统邻小区的信号参数还包括所述异系统邻小区对应的至少一个偏移量;
    所述当前系统服务小区的信号参数还包括所述当前系统服务小区对应的至少一个偏移量。
  5. 根据权利要求2-4任一所述的方法,其中,所述当前系统服务小区包括如下任一种:主小区,辅小区和主辅小区。
  6. 根据权利要求2-4任一所述的方法,其中,所述异系统服务小区包括如下任一种:主小区,辅小区和主辅小区。
  7. 一种测量上报的处理方法,应用于用户设备UE,包括:
    获取测量结果;
    在确定所述测量结果满足预先获取的至少一个用于触发所述UE上报测量结果的异系统小区的事件时,向网络侧设备上报所述测量结果。
  8. 根据权利要求7所述的方法,其中,所述异系统小区包括异系统服务小区和异系统邻小区;则所述测量结果包括:
    所述异系统服务小区的信号的质量;或者,
    所述异系统服务小区的信号的质量和所述异系统邻小区的信号的质量;或者,
    所述异系统邻小区的信号的质量和当前系统服务小区的信号的质量;或者,
    所述异系统服务小区的信号的质量、所述异系统邻小区的信号的质量和所述当前系统服务小区的信号的质量。
  9. 根据权利要求7所述的方法,其中,所述获取测量结果之前,所述方法还包括:
    接收所述网络侧设备发送的所述测量上报配置信息;所述测量上报配置信息包括:至少一个用于触发所述UE上报测量结果的异系统小区的事件。
  10. 根据权利要求8所述的方法,其中,所述异系统的小区信号质量的事件包括以下至少一种事件,包括:
    所述异系统服务小区的信号参数高于预设的第一门限值;
    所述异系统服务小区的信号参数低于预设的第二门限值;
    所述异系统邻小区的信号参数高于所述异系统服务小区的信号参数;
    所述异系统服务小区的信号参数低于预设的第三门限值、且所述异系统邻小区的信号参数高于预设的第四门限值;
    所述异系统邻小区的信号参数高于当前系统服务小区的信号参数;
    所述当前系统服务小区的信号参数低于预设的第五门限值、且所述异系统邻小区的信号参数高于预设的第六门限值。
  11. 根据权利要求10所述的方法,其中:
    所述异系统服务小区的信号参数包括所述异系统服务小区的信号的质量;
    所述异系统邻小区的信号参数包括所述异系统邻小区的信号的质量;
    所述当前系统服务小区的信号参数包括所述当前系统服务小区的信号的检测质量。
  12. 根据权利要求11所述的方法,其中,
    所述异系统服务小区的信号参数还包括所述异系统服务小区对应的至少一个偏移量;
    所述异系统邻小区的信号参数还包括所述异系统邻小区对应的至少一个偏移量;
    所述当前系统服务小区的信号参数还包括所述当前系统服务小区对应的至少一个偏移量。
  13. 根据权利要求12所述的方法,其中,在所述异系统的小区信号质量的事件包括所述异系统服务小区的信号参数高于预设的第一门限值时,所述在确定所述测量结果满足预先获取的至少一个用于触发所述UE上报测量结果的异系统小区的事件时,向网络侧设备上报所述测量结果,包括:
    在确定所述异系统服务小区的信号的质量与所述异系统服务小区对应的至少一个偏移量之和高于所述第一门限值时,向所述网络侧设备上报所述测量结果;
    则所述方法还包括:
    在确定所述异系统服务小区的信号的质量与所述异系统服务小区对应的其他至少一个偏移量之和低于所述第一门限值时,则删除所述测量结果。
  14. 根据权利要求12所述的方法,其中,在所述异系统的小区信号质量的事件包括所述异系统服务小区的信号参数低于预设的第二门限值时,所述在确定所述测量结果满足预先获取的至少一个用于触发所述UE上报测量结果的异系统小区的事件时,向网络侧设备上报所述测量结果,包括:
    在确定所述异系统服务小区的信号的质量与所述异系统服务小区对应的 至少一个偏移量之和低于所述第二门限值时,向所述网络侧设备上报所述测量结果;
    则所述方法还包括:
    在确定所述异系统服务小区的信号的质量与所述异系统服务小区对应的其他至少一个偏移量之和高于所述第二门限值时,则删除所述测量结果。
  15. 根据权利要求12所述的方法,其中,在所述异系统的小区信号质量的事件包括所述异系统邻小区的信号参数高于所述异系统服务小区的信号参数时,所述在确定所述测量结果满足预先获取的至少一个用于触发所述UE上报测量结果的异系统小区的事件时,向网络侧设备上报所述测量结果,包括:
    在确定所述异系统邻小区的信号的质量与所述异系统邻小区对应的至少一个偏移量之和高于所述异系统服务小区的信号的质量与所述异系统服务小区对应的至少一个偏移量之和时,向所述网络侧设备上报所述测量结果;
    则所述方法还包括:
    在确定所述异系统邻小区的信号的质量与所述异系统邻小区对应的其他至少一个偏移量之和低于所述异系统服务小区的信号的质量与其他偏移量之和时,则删除所述测量结果。
  16. 根据权利要求12所述的方法,其中,在所述异系统的小区信号质量的事件包括所述异系统服务小区的信号参数低于预设的第三门限值、且所述异系统邻小区的信号参数高于预设的第四门限值时,所述在确定所述测量结果满足预先获取的至少一个用于触发所述UE上报测量结果的异系统小区的事件时,向网络侧设备上报所述测量结果,包括:
    在确定所述异系统服务小区的信号的质量与所述异系统服务小区对应的至少一个偏移量之和低于所述第三门限值、且所述异系统邻小区的信号的质量与所述异系统邻小区对应的至少一个偏移量之和高于所述第四门限值时,向所述网络侧设备上报所述测量结果;
    则所述方法还包括:
    在确定所述异系统服务小区的信号的质量与所述异系统服务小区对应的其他至少一个偏移量之和高于所述第三门限值、或所述异系统邻小区的信号 的质量与所述异系统邻小区对应的其他至少一个偏移量之和低于所述第四门限值时,则删除所述测量结果。
  17. 根据权利要求12所述的方法,其中,在所述异系统的小区信号质量的事件包括所述异系统邻小区的信号参数高于当前系统服务小区的信号参数时,所述在确定所述测量结果满足预先获取的至少一个用于触发所述UE上报测量结果的异系统小区的事件时,向网络侧设备上报所述测量结果,包括:
    在确定所述异系统邻小区的信号的质量与所述异系统邻小区对应的至少一个偏移量之和高于所述当前系统服务小区的信号的质量与所述当前系统服务小区对应的至少一个偏移量之和时,向所述网络侧设备上报所述测量结果;
    则所述方法还包括:
    在确定所述异系统邻小区的信号的质量与所述异系统邻小区对应的其他至少一个偏移量之和低于所述当前系统服务小区的信号的质量与所述当前系统服务小区对应的其他至少一个偏移量之和时,则删除所述测量结果。
  18. 根据权利要求12所述的方法,其中,在所述异系统的小区信号质量的事件包括所述当前系统服务小区的信号参数低于预设的第五门限值、且所述异系统邻小区的信号参数高于预设的第六门限值时,所述在确定所述测量结果满足预先获取的至少一个用于触发所述UE上报测量结果的异系统小区的事件时,向网络侧设备上报所述测量结果,包括:
    在确定所述当前系统服务小区的信号的质量与所述当前系统服务小区对应的至少一个偏移量之和小于所述第五门限值、且所述异系统邻小区的信号的质量与所述异系统邻小区对应的至少一个偏移量之和高于所述第六门限值时,向所述网络侧设备上报所述测量结果;
    则所述方法还包括:
    在确定所述当前系统服务小区的信号的质量与所述当前系统服务小区对应的其他至少一个偏移量之和大于所述第五门限值、或所述异系统邻小区的信号的质量与所述异系统邻小区对应的其他至少一个偏移量之和低于所述第六门限值时,则删除所述测量结果。
  19. 根据权利要求8-18任一所述的方法,其中,所述当前系统服务小区包括如下任一种:主小区,辅小区和主辅小区。
  20. 根据权利要求8-18任一所述的方法,其中,所述异系统服务小区包括如下任一种:主小区,辅小区和主辅小区。
  21. 一种网络侧设备,包括:
    处理模块,用于配置用户设备UE的测量上报配置信息,所述测量上报配置信息包括用于触发所述UE上报测量结果的异系统小区的事件;
    发送模块,用于向所述UE发送所述测量上报配置信息。
  22. 根据权利要求21所述的网络侧设备,其中,所述异系统小区包括异系统服务小区和异系统邻小区;所述用于触发所述UE上报测量结果的异系统小区的事件包括以下至少一种事件:
    所述异系统服务小区的信号参数高于预设的第一门限值;
    所述异系统服务小区的信号参数低于预设的第二门限值;
    所述异系统邻小区的信号参数高于所述异系统服务小区的信号参数;
    所述异系统服务小区的信号参数低于预设的第三门限值、且所述异系统邻小区的信号参数高于预设的第四门限值;
    所述异系统邻小区的信号参数高于当前系统服务小区的信号参数;
    所述当前系统服务小区的信号参数低于预设的第五门限值、且所述异系统邻小区的信号参数高于预设的第六门限值。
  23. 根据权利要求22所述的网络侧设备,其中,
    所述异系统服务小区的信号参数包括所述异系统服务小区的信号的质量;
    所述异系统邻小区的信号参数包括所述异系统邻小区的信号的质量;
    所述当前系统服务小区的信号参数包括所述当前系统服务小区的信号的质量。
  24. 根据权利要求23所述的网络侧设备,其中,
    所述异系统服务小区的信号参数还包括所述异系统服务小区对应的至少一个偏移量;
    所述异系统邻小区的信号参数还包括所述异系统邻小区对应的至少一个偏移量;
    所述当前系统服务小区的信号参数还包括所述当前系统服务小区对应的至少一个偏移量。
  25. 根据权利要求22-24任一所述的网络侧设备,其中,所述当前系统服务小区包括如下任一种:主小区,辅小区和主辅小区。
  26. 根据权利要求22-24任一所述的网络侧设备,其中,所述异系统服务小区包括如下任一种:主小区,辅小区和主辅小区。
  27. 一种用户设备,包括:
    获取模块,用于获取测量结果;
    第一处理模块,用于确定所述测量结果是否满足预先获取的至少一个用于触发所述用户设备上报测量结果的异系统小区的事件;
    发送模块,用于在所述第一处理模块确定所述测量结果是否满足预先获取的至少一个用于触发所述用户设备上报测量结果的异系统小区的事件时,向网络侧设备上报所述测量结果。
  28. 根据权利要求27所述的用户设备,其中,所述异系统小区包括异系统服务小区和异系统邻小区;则所述测量结果包括:
    所述异系统服务小区的信号的质量;或者,
    所述异系统服务小区的信号的质量和所述异系统邻小区的信号的质量;或者,
    所述异系统邻小区的信号的质量和当前系统服务小区的信号的质量;或者,
    所述异系统服务小区的信号的质量、所述异系统邻小区的信号的质量和所述当前系统服务小区的信号的质量。
  29. 根据权利要求27所述的用户设备,其中,所述用户设备还包括:
    接收模块,用于接收所述网络侧设备发送的所述测量上报配置信息;所述测量上报配置信息包括:至少一个用于触发所述测量上报的处理用户设备上报测量结果的异系统小区的事件。
  30. 根据权利要求28所述的用户设备,其中,所述异系统的小区信号质量的事件包括以下至少一种事件,包括:
    所述异系统服务小区的信号参数高于预设的第一门限值;
    所述异系统服务小区的信号参数低于预设的第二门限值;
    所述异系统邻小区的信号参数高于所述异系统服务小区的信号参数;
    所述异系统服务小区的信号参数低于预设的第三门限值、且所述异系统邻小区的信号参数高于预设的第四门限值;
    所述异系统邻小区的信号参数高于当前系统服务小区的信号参数;
    所述当前系统服务小区的信号参数低于预设的第五门限值、且所述异系统邻小区的信号参数高于预设的第六门限值。
  31. 根据权利要求30所述的用户设备,其中:
    所述异系统服务小区的信号参数包括所述异系统服务小区的信号的质量;
    所述异系统邻小区的信号参数包括所述异系统邻小区的信号的质量;
    所述当前系统服务小区的信号参数包括所述当前系统服务小区的信号的检测质量。
  32. 根据权利要求31所述的用户设备,其中,
    所述异系统服务小区的信号参数还包括所述异系统服务小区对应的至少一个偏移量;
    所述异系统邻小区的信号参数还包括所述异系统邻小区对应的至少一个偏移量;
    所述当前系统服务小区的信号参数还包括所述当前系统服务小区对应的至少一个偏移量。
  33. 根据权利要求32所述的用户设备,其中,在所述异系统的小区信号质量的事件包括所述异系统服务小区的信号参数高于预设的第一门限值时,所述发送模块具体用于在所述第一处理模块确定所述异系统服务小区的信号的质量与所述异系统服务小区对应的至少一个偏移量之和高于所述第一门限值时,向所述网络侧设备上报所述测量结果;
    则所述用户设备还包括:
    第二处理模块,用于在确定所述异系统服务小区的信号的质量与所述异系统服务小区对应的其他至少一个偏移量之和低于所述第一门限值时,则删除所述测量结果。
  34. 根据权利要求32所述的用户设备,其中,在所述异系统的小区信号质量的事件包括所述异系统服务小区的信号参数低于预设的第二门限值时,所述发送模块具体用于在所述第一处理模块确定所述异系统服务小区的信号 的质量与所述异系统服务小区对应的至少一个偏移量之和低于所述第二门限值时,向所述网络侧设备上报所述测量结果;
    则所述用户设备还包括:
    第二处理模块,用于在确定所述异系统服务小区的信号的质量与所述异系统服务小区对应的其他至少一个偏移量之和高于所述第二门限值时,则删除所述测量结果。
  35. 根据权利要求32所述的用户设备,其中,在所述异系统的小区信号质量的事件包括所述异系统邻小区的信号参数高于所述异系统服务小区的信号参数时,所述发送模块具体用于在所述第一处理模块确定所述异系统邻小区的信号的质量与所述异系统邻小区对应的至少一个偏移量之和高于所述异系统服务小区的信号的质量与所述异系统服务小区对应的至少一个偏移量之和时,向所述网络侧设备上报所述测量结果;
    则所述用户设备还包括:
    第二处理模块,用于在确定所述异系统邻小区的信号的质量与所述异系统邻小区对应的其他至少一个偏移量之和低于所述异系统服务小区的信号的质量与其他偏移量之和时,则删除所述测量结果。
  36. 根据权利要求32所述的用户设备,其中,在所述异系统的小区信号质量的事件包括所述异系统服务小区的信号参数低于预设的第三门限值、且所述异系统邻小区的信号参数高于预设的第四门限值时,所述发送模块具体用于在所述第一处理模块确定所述异系统服务小区的信号的质量与所述异系统服务小区对应的至少一个偏移量之和低于所述第三门限值、且所述异系统邻小区的信号的质量与所述异系统邻小区对应的至少一个偏移量之和高于所述第四门限值时,向所述网络侧设备上报所述测量结果;
    则所述用户设备还包括:
    第二处理模块,用于在确定所述异系统服务小区的信号的质量与所述异系统服务小区对应的其他至少一个偏移量之和高于所述第三门限值、或所述异系统邻小区的信号的质量与所述异系统邻小区对应的其他至少一个偏移量之和低于所述第四门限值时,则删除所述测量结果。
  37. 根据权利要求32所述的用户设备,其中,在所述异系统的小区信号 质量的事件包括所述异系统邻小区的信号参数高于当前系统服务小区的信号参数时,所述发送模块具体用于在所述第一处理模块确定所述异系统邻小区的信号的质量与所述异系统邻小区对应的至少一个偏移量之和高于所述当前系统服务小区的信号的质量与所述当前系统服务小区对应的至少一个偏移量之和时,向所述网络侧设备上报所述测量结果;
    所述用户设备还包括:
    第二处理模块,用于在确定所述异系统邻小区的信号的质量与所述异系统邻小区对应的其他至少一个偏移量之和低于所述当前系统服务小区的信号的质量与所述当前系统服务小区对应的其他至少一个偏移量之和时,则删除所述测量结果。
  38. 根据权利要求32所述的用户设备,其中,在所述异系统的小区信号质量的事件包括所述当前系统服务小区的信号参数低于预设的第五门限值、且所述异系统邻小区的信号参数高于预设的第六门限值时,所述发送模块具体用于在所述第一处理模块确定所述当前系统服务小区的信号的质量与所述当前系统服务小区对应的至少一个偏移量之和小于所述第五门限值、且所述异系统邻小区的信号的质量与所述异系统邻小区对应的至少一个偏移量之和高于所述第六门限值时,向所述网络侧设备上报所述测量结果;
    所述用户设备还包括:
    第二处理模块,用于在确定所述当前系统服务小区的信号的质量与所述当前系统服务小区对应的其他至少一个偏移量之和大于所述第五门限值、或所述异系统邻小区的信号的质量与所述异系统邻小区对应的其他至少一个偏移量之和低于所述第六门限值时,则删除所述测量结果。
  39. 根据权利要求28-38任一所述的用户设备,其中,所述当前系统服务小区包括如下任一种:主小区,辅小区和主辅小区。
  40. 根据权利要求28-38任一所述的用户设备,其中,所述异系统服务小区包括如下任一种:主小区,辅小区和主辅小区。
  41. 一种网络侧设备,包括:存储器、处理器、发送器以及计算机程序,所述计算机程序存储在所述存储器中,所述处理器运行所述计算机程序执行权利要求1-6所述的测量上报的处理方法。
  42. 一种用户设备,包括:存储器、处理器、发送器以及计算机程序,所述计算机程序存储在所述存储器中,所述处理器运行所述计算机程序执行权利要求7-20所述的测量上报的处理方法。
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