WO2017088589A1 - 一种实现测量报告上报的方法及装置 - Google Patents

一种实现测量报告上报的方法及装置 Download PDF

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WO2017088589A1
WO2017088589A1 PCT/CN2016/101065 CN2016101065W WO2017088589A1 WO 2017088589 A1 WO2017088589 A1 WO 2017088589A1 CN 2016101065 W CN2016101065 W CN 2016101065W WO 2017088589 A1 WO2017088589 A1 WO 2017088589A1
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measurement
event
object parameter
measurement object
determining
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PCT/CN2016/101065
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French (fr)
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刘召煜
刘韦
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中兴通讯股份有限公司
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Publication of WO2017088589A1 publication Critical patent/WO2017088589A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/10Scheduling measurement reports ; Arrangements for measurement reports

Definitions

  • the present invention relates to mobile communication technologies, and in particular, to a method and apparatus for implementing measurement report reporting in Long Term Evolution (LTE).
  • LTE Long Term Evolution
  • the radio access part of the LTE system is mainly composed of a base station (eNB) and a user equipment (UE).
  • eNB base station
  • UE user equipment
  • Measurement control technology is one of the core technologies of the eNB, and the measurement control technology of the Radio Resource Control (RRC) layer is the main aspect of the measurement control technology.
  • the measurement control technology of the RRC layer is mainly used to control the UE in cell handover, reselection, and interference control; the eNB indicates the measurement of the UE RRC in the connected state; specifically, the eNB indicates the frequency, neighbor, and measurement timing measured by the UE. And the reporting conditions of the measurement results, etc.
  • Section 3 of the 3GPP Technical Specification (TS) 36.331 protocol defines a measurement model of the measurement control technology, and the eNB performs measurement of the measurement of the UE and reporting of the measurement result by the measurement object, the report configuration, the measurement identifier, and the like.
  • the measurement object, the report configuration, the measurement identifier, and the like are filled in by the eNB according to the functional purpose and configured to the UE through the RRC layer measurement control signaling, and the UE parses the measurement control signaling, and performs measurement and report the measurement result according to the content obtained by the analysis;
  • the object parameters include the measurement of the carrier frequency, the frequency offset, the measurement of the neighboring cell list, and the individual cell offset of each neighboring cell.
  • the report configuration includes the reporting event and the reporting event corresponding to the measurement event, including: reporting the threshold, reporting the delay, The measurement trigger amount, the measurement reporting interval, and the number of measurement reports are used.
  • the measurement identifier is mainly used to combine multiple measurement objects and multiple report configurations, and each combination corresponds to one measurement reporting unit.
  • the eNB may control the UE to perform event-triggered measurement reporting or periodic measurement reporting according to the purpose of the function.
  • the event-triggered measurement reporting mainly includes events such as A1, A2, A3, A4, A5, B1, and B2, and is configured in the report configuration.
  • the UE reports the measurement result according to the measurement event; for example, the parameter of the report measurement object of the A3 event in the report configuration is: Mn+Ofn+Ocn-Hys>Mp+Ofp+Ocp+Off, where Mn is adjacent
  • Ofn is the frequency offset in the measurement object associated with the report configuration
  • Ocn is the cell individual offset in the neighbor list in the measurement object associated with the report configuration
  • Hys is the hysteresis of the report configuration
  • Mp is the current access.
  • the signal strength of the cell is the frequency offset of the current access cell in the measurement object
  • Ocp is the individual offset of the measurement target serving cell
  • Off is the measurement reporting threshold
  • Mn and Mp are the measured signal strength according to the radio condition of the UE.
  • the UE performs the reporting of the measurement result as long as the reporting parameter corresponding to the measurement event is satisfied.
  • the eNB sets a plurality of measurement events in the report configuration according to the function requirements, and after the multiple measurement events are associated with the same measurement object, the UE performs measurement according to the report measurement object parameters set by the report configuration. The results are reported.
  • the unified model sets the measured measurement object parameters; since the switching optimization function modifies the value of the measurement object parameter, for some test events, the value adjustment of the measurement object parameter , affecting the reporting of measurement results; for example, when measuring the event to perform inter-cell interference coordination control, the reporting object parameters include cell individual offset and frequency offset, and when the switching optimization function modifies the cell individual offset and frequency offset When the value is shifted, the reporting time of the measurement result is affected; and the control of the interference coordination between the cells is only adjusted according to the measurement result reporting, and is not related to the individual offset and the frequency offset of the cell; therefore, the reporting object parameter includes the cell individual When the offset and the frequency offset need to meet the trigger conditions of the individual offset and the frequency offset
  • the present invention provides a method and apparatus for implementing measurement report reporting, which can prevent unrelated measurement object parameters from affecting the reporting of measurement results.
  • the present invention provides an apparatus for implementing measurement report reporting, including: a determining unit and a sending unit;
  • Determining a unit configured to determine a measurement object parameter corresponding to each measurement event according to different measurement purposes
  • the sending unit is configured to send the measurement object parameter to the user equipment UE, and is used for reporting control of the measurement result.
  • the measurement object parameters can be measurement object parameters in the report configuration and/or measurement configuration.
  • Measuring events can include:
  • the measurement purposes are measurement events for inter-cell interference coordination, and/or cell handover, and/or power control, and/or neighbor discovery, and/or load balancing neighbor discovery.
  • the determination unit can be set to,
  • the measurement event is a measurement event for performing interference coordination between cells, determining that the measurement object parameter does not include a cell individual offset CIO, and/or a frequency offset OFN;
  • the measurement object parameter does not include a CIO, and/or an OFN when the measurement event is a measurement event for performing power control for measurement purposes;
  • the measurement object parameter does not include a CIO, and/or an OFN when the measurement event is a measurement event for performing a neighbor discovery process
  • the measurement event is a measurement event for performing load balancing neighbor discovery for measurement purposes, it is determined that the measurement object parameter does not include CIO, and/or OFN.
  • the sending unit may be configured to send the measurement object parameter to the UE by using a radio resource control RRC reconfiguration message, and use the reporting control of the measurement result.
  • the application also provides a method for implementing measurement report reporting, including:
  • the measurement object parameter is sent to the user equipment UE for performing reporting control of the measurement result.
  • the measurement object parameters can be measurement object parameters in the report configuration and/or measurement configuration.
  • the report configuration corresponding to each measurement event according to the measurement purpose may include:
  • the measurement event is a measurement event for performing interference coordination between cells, determining that the measurement object parameter does not include a cell individual offset CIO, and/or a frequency offset OFN;
  • the measurement object parameter does not include a CIO, and/or an OFN when the measurement event is a measurement event for performing power control for measurement purposes;
  • the measurement object parameter does not include a CIO, and/or an OFN when the measurement event is a measurement event for performing a neighbor discovery process
  • the measurement event is a measurement event for performing load balancing neighborhood discovery
  • Sending the measurement object parameter to the UE may include:
  • the technical solution of the present application includes: determining a measurement object parameter corresponding to each measurement event according to the measurement purpose; and transmitting the measurement object parameter to the user equipment (UE), for reporting control of the measurement result.
  • the method of the invention determines the corresponding measurement object parameters according to the measurement purpose for each measurement event, avoids the report of the measurement result affected by the unrelated measurement object parameter, and improves the work efficiency reported by the measurement report.
  • FIG. 1 is a structural diagram of an apparatus for implementing measurement report reporting according to the present invention
  • FIG. 2 is a flowchart of a method for implementing a measurement report reporting according to the present invention
  • FIG. 3 is a flow chart of a method according to a first embodiment of the present invention.
  • FIG. 4 is a flow chart of a method according to a second embodiment of the present invention.
  • Figure 5 is a flow chart of a method in accordance with a third embodiment of the present invention.
  • FIG. 1 is a structural diagram of an apparatus for implementing measurement report reporting according to the present invention. As shown in FIG. 1, the method includes: a determining unit and a sending unit;
  • a determining unit configured to determine a corresponding measurement object parameter of each measurement event according to the measurement purpose
  • the measurement object parameters of the present invention are measurement object parameters in a report configuration and/or a measurement configuration.
  • the measurement event comprises:
  • the measurement purposes are measurement events for inter-cell interference coordination, and/or cell handover, and/or power control, and/or neighbor discovery, and/or load balancing neighbor discovery.
  • the determining unit is specifically used,
  • the measurement event is a measurement event for the purpose of performing interference coordination between cells
  • CIO cell individual offset
  • OFFN frequency offset
  • the measurement event is a measurement event for the purpose of performing interference coordination between cells
  • the measurement object parameter of the method of the present invention does not include CIO and OFN
  • the following measurement object parameters may be specifically included: measurement frequency point, neighboring area black List, neighbor whitelist, antenna port, allowed measurement bandwidth.
  • the measurement event is a measurement event for which the measurement purpose is to perform power control
  • the measurement object parameter does not include CIO, and/or OFN.
  • the measurement event is a measurement event for the purpose of performing power control
  • the measurement object parameter of the method of the present invention does not include CIO and OFN
  • the following measurement object parameters may be specifically included: measurement frequency point, neighboring area black list, neighbor Zone white list, antenna port, allowed measurement bandwidth.
  • the measurement object parameter does not include a CIO, and/or an OFN when the measurement event is a measurement event for the measurement of the neighboring area;
  • the measurement event is a measurement event for the neighboring area discovery
  • the measurement object parameter of the method of the present invention does not include the CIO and the OFN
  • the following measurement object parameters may be specifically included: the measurement frequency point, the neighboring area black list, Neighbor white list, antenna port, allowed measurement bandwidth.
  • the measurement event is a measurement event for the purpose of performing load balancing neighborhood discovery, it is determined that the measurement object parameter does not include CIO, and/or OFN.
  • the measurement event is a measurement event for the purpose of performing load balancing neighboring cell discovery
  • the measurement object parameter of the method of the present invention does not include CIO and OFN
  • the following measurement object parameters may be specifically included: measurement frequency point, neighboring area black List, neighbor whitelist, antenna port, allowed measurement bandwidth.
  • the measurement object includes the CIO, and OFN in the report configuration and/or measurement configuration can be obtained in accordance with the analysis of the measurement purpose by those skilled in the art, in conjunction with the experience of the technician.
  • the handover optimization function modifies the cell individual offset and the frequency offset value will not affect the interference coordination, power control, and neighbor between cells.
  • the measurement results of the measurement events discovered by the area discovery and load balancing neighboring areas are reported.
  • a sending unit configured to send the measurement object parameter to the user equipment (UE), for reporting control of the measurement result.
  • the sending unit is specifically configured to send the measurement object parameter to the UE by using a radio resource control (RRC) reconfiguration message.
  • RRC radio resource control
  • the apparatus of the present invention may be embedded in or connected to a base station (eNB), and the specific setting does not require creative work by those skilled in the art.
  • eNB base station
  • the method of the invention determines the corresponding measurement object parameters according to the measurement purpose for each measurement event, avoids the report of the measurement result affected by the unrelated measurement object parameter, and improves the work efficiency reported by the measurement report.
  • FIG. 2 is a flowchart of a method for implementing measurement report reporting according to the present invention. As shown in FIG. 2, the method includes:
  • Step 200 Determine, according to different measurement purposes, corresponding measurement object parameters of each measurement event
  • the measurement object parameters are measurement object parameters in the report configuration and/or measurement configuration.
  • the measurement object parameters corresponding to each measurement event are determined according to different measurement purposes, including:
  • the measurement event is a measurement event for performing interference coordination between cells, it is determined that the measurement object parameter does not include CIO, and/or OFN;
  • the measurement object parameter does not include CIO, and/or OFN;
  • the measurement object parameter does not include a CIO, and/or an OFN when the measurement event is a measurement event for the measurement of the neighboring area;
  • the measurement event is a measurement event for the purpose of performing load balancing neighborhood discovery, it is determined that the measurement object parameter does not include CIO, and/or OFN.
  • Step 201 Send a measurement object parameter to the user equipment UE, and use it for reporting control of the measurement result.
  • the sending the measurement object parameter to the UE specifically includes:
  • the measurement object parameter is transmitted to the UE by the RRC reconfiguration message.
  • the eNB determines the measurement object parameter in the measurement configuration according to the measurement purpose of the measurement event; after the measurement configuration is sent to the user equipment, the user equipment performs measurement according to the measurement configuration; the eNB may send the measurement configuration to the UE by using the RRC reconfiguration message;
  • the measurement event is a measurement event for the purpose of performing interference coordination between cells
  • the measurement object parameter corresponding to each measurement event is determined according to the measurement purpose, and the measurement object parameter does not include the cell individual offset (CIO), and/or the frequency offset. Shift (OFN).
  • the external measurement command is used to determine whether the measurement object parameter corresponding to each measurement event is determined according to the measurement purpose.
  • the measurement object parameter in this embodiment is the measurement object parameter in the measurement configuration, and therefore can also be briefly described as determining the measurement configuration;
  • the method flowchart of the first embodiment of the present invention, as shown in FIG. 3, includes:
  • Step 300 Determine a corresponding measurement object parameter in a measurement configuration of each measurement event according to the measurement purpose
  • the measurement event includes: measurement events for performing interference coordination between cells, and/or cell handover, and/or power control, and/or neighbor discovery, and/or load balancing neighbor discovery.
  • the measurement event in this embodiment is a measurement event for performing interference coordination between cells
  • CIO cell individual offset
  • OFFN frequency offset
  • different measurement object parameters in the measurement configuration or the report configuration may be sent to the UE by using independent RRC reconfiguration messages by using each measurement object.
  • Step 301 The eNB sends the measurement configuration to the user equipment (UE) by using an RRC reconfiguration message; the measurement configuration can be implemented by filling in MeasConfig.
  • Step 302 The eNB determines a report configuration according to the measurement configuration, and sends the report configuration to the UE by using an RRC reconfiguration message.
  • Step 303 After receiving and parsing the RRC reconfiguration message, the UE performs measurement according to the measurement configuration, and reports the measurement result in combination with the report configuration.
  • the report configuration should be adjusted theoretically. For example, when the test object parameter in the measurement configuration does not include the frequency offset, the report configuration should not include the unmeasured measurement object parameters.
  • the measurement event is a measurement event for performing interference coordination between cells
  • the measurement and measurement result The reporting will not be affected by the individual cell offset, and/or the frequency offset, that is, the inter-cell interference coordinated control is not affected by the cell individual offset, and/or the frequency offset measurement, thereby avoiding Interference coordination control unrelated cell individual offset, and/or frequency offset affects the progress and efficiency of interference coordination control.
  • FIG. 4 is a flowchart of a method according to a second embodiment of the present invention. As shown in FIG. 4, the method includes:
  • Step 400 The eNB requests the UE to perform measurement according to the cell handover and the inter-cell interference coordination control.
  • the requesting UE to perform the measurement process belongs to an event-triggered measurement report.
  • Step 401 The eNB determines a measurement configuration and a report configuration according to the measurement purpose.
  • determining the measurement configuration and the report configuration specifically refers to determining the measurement object parameter in the measurement configuration and the report configuration; determining the measurement object parameter of the measurement configuration specifically includes: determining whether the measurement object parameter in the measurement configuration includes: cell individual offset , and frequency offset. Determining the report configuration according to the measurement purpose specifically includes determining whether the measurement object parameter of the report configuration includes a cell individual offset, and a frequency offset.
  • Determining whether the measurement configuration and the report configuration include a cell individual offset, and the frequency offset may be indicated by an extended message indication, or by a cell individual offset, and a frequency offset identification list or configuration list.
  • Step 402 The eNB sends the measurement configuration and the report configuration to the UE by using an RRC reconfiguration message.
  • the RRC reconfiguration message may be generated by filling in a measurement configuration (MeasConfig), and sent by the eNB by using a reconfiguration message (RRC, Connection Reconfiguration).
  • RRC Connection Reconfiguration
  • Step 403 After receiving the RRC reconfiguration message, the UE updates the measurement configuration of the measurement event.
  • the UE may also feed back the measurement configuration completion message to the eNB, which is generally implemented by using a RRC Connection Reconfiguration Complete message.
  • Step 404 The UE performs measurement according to the measurement configuration, and reports the measurement result according to the determined report configuration.
  • the measurement object parameter in the measurement configuration does not include the measurement of the cell individual offset and/or the frequency offset, the report is reported.
  • the measurement results reported in the configuration should also not be affected by individual cell offsets, and/or frequency offset measurements.
  • Step 405 The eNB uses the received measurement result reported by the UE for measurement purposes.
  • FIG. 5 is a flowchart of a method according to a third embodiment of the present invention. As shown in FIG. 5, the method includes:
  • Step 500 The eNB requests the UE to perform measurement according to the cell handover and the inter-cell interference coordination control.
  • the requesting the UE to perform the measurement process belongs to an event-triggered measurement report.
  • Step 501 The eNB determines a report configuration according to the measurement purpose.
  • determining the report configuration according to the measurement purpose specifically includes determining whether the measurement object parameter of the report configuration includes a cell individual offset and a frequency offset.
  • determining whether the measurement configuration and the report configuration include a cell individual offset, and the frequency offset may be indicated by an extended message indication, or by an identity list or a configuration list of cell individual offsets, and frequency offsets.
  • Step 502 The eNB sends the report configuration to the UE by using an RRC reconfiguration message.
  • the RRC reconfiguration message may be generated by filling in the measurement configuration (MeasConfig), and sent by the eNB to the UE by using a measurement reconfiguration message (RRC, Connection Reconfiguration).
  • Step 503 After receiving the RRC reconfiguration message, the UE updates the report configuration of the measurement event.
  • the UE may further report a message indicating that the configuration is complete to the eNB.
  • Step 504 The UE reports the measurement result according to the determined report configuration.
  • the measurement purpose is not related to the cell individual offset and/or the frequency offset measurement
  • the report measurement result in the report configuration should not be affected. The effect of individual cell offset, and/or frequency offset measurements.
  • Step 505 The eNB uses the received measurement result reported by the UE for measurement purposes.
  • the invention is applicable to the field of mobile communication technology, and is used to avoid unrelated measurement object parameters affecting the reporting of measurement results, thereby improving the working efficiency of the measurement report reporting.

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Abstract

提供一种实现测量报告上报的方法及装置。该方法包括:根据测量目的不同确定各测量事件相应的测量对象参数(200);发送测量对象参数到用户设备(UE),用于测量结果的上报控制(201)。利用本发明避免了无关联的测量对象参数影响测量结果的上报,提高了测量报告上报的工作效率。

Description

一种实现测量报告上报的方法及装置 技术领域
本发明涉及移动通信技术,尤其涉及长期演进技术(LTE)中一种实现测量报告上报的方法及装置。
背景技术
随着移动通信技术的应用和发展,LTE技术为用户带来了良好的使用体验。LTE***的无线接入部分主要由基站(eNB)和用户设备(UE)组成,较之前的通信***有网元数量减少和网络呈现扁平化的特点,eNB在***中承担的网络控制职能变得更为复杂。
测量控制技术是eNB的核心技术之一,无线资源控制(RRC)层的测量控制技术是测量控制技术的主要方面。RRC层的测量控制技术主要用于控制UE在小区切换、重选和干扰控制等;eNB指示UE RRC在连接状态下的测量;具体的,由eNB指示UE测量的频点、邻区、测量时机和测量结果的上报条件等。3GPP技术规范(TS)36.331协议5.5节定义了测量控制技术的测量模型,eNB通过测量对象、报告配置、测量标识等进行UE的测量和测量结果上报的控制。测量对象、报告配置、测量标识等由eNB按照功能目的填写并通过RRC层测量控制信令配置给UE,UE解析测量控制信令,按照解析获得的内容指示执行测量和上报测量结果;其中,测量对象参数主要包括测量载频、频率偏移、测量邻区列表及每个邻区对应的小区个体偏移等;报告配置包括测量事件和测量事件对应的上报参数,包括:上报门限、上报迟滞、测量上报触发量、测量上报间隔和测量上报次数等;测量标识主要是将多个测量对象和多个报告配置之间两两组合,每一份组合对应一个测量上报单位。
eNB根据功能目的需要可以控制UE进行事件触发型测量上报或周期型测量上报;其中,事件触发型测量上报主要包括A1、A2、A3、A4、A5、B1及B2等事件,在报告配置中设定测量事件后,UE根据测量事件上报测量结果;例如、报告配置中设定A3事件的上报测量对象参数为:Mn+Ofn+Ocn-Hys>Mp+Ofp+Ocp+Off,公式中Mn是邻区的信号、Ofn是报告配置所关联测量对象中的频率偏移、Ocn是报告配置所关联测量对象中的邻区列表中的小区个体偏移、Hys是报告配置的迟滞、Mp是当前接入小区的信号强度、Ofp是测量对象中当前接入小区的频率偏移、Ocp是测量对象服务小区的个体偏移、Off是测量上报门限,Mn和Mp是根据UE所处无线条件的测量信号强度;只要满足测量事件对应的上报参数,UE进行测量结果的上报。
目前,eNB主要根据功能需求在报告配置中设定多种目的的测量事件,将多个测量事件关联到同一个测量对象后,UE根据报告配置设定的上报测量对象参数进行测 量结果上报。将多个测量事件关联到同一个测试对象后,统一的模型设定上报的测量对象参数;由于切换优化功能修改了测量对象参数的数值,对部分测试事件而言,由于测量对象参数的数值调整,影响了测量结果的上报;例如、通过测量事件进行小区间的干扰协调的控制时,上报测量对象参数中包含小区个体偏移和频率偏移,当切换优化功能修改小区个体偏移和频率偏移的数值时,测量结果上报时间受到影响;而小区间的干扰协调的控制仅根据测量结果上报进行调整,与小区个体偏移和频率偏移并无关联;因此,上报测量对象参数包含小区个体偏移和频率偏移时由于需要满足小区个体偏移和频率偏移的触发条件,影响了小区间的干扰协调的进度,降低eNB根据UE上报的测量报告进行干扰协调的工作效率。
发明内容
为了解决上述技术问题,本发明提供一种实现测量报告上报的方法及装置,能够避免无关联的测量对象参数影响测量结果的上报。
为了达到本发明目的,本发明提供了一种实现测量报告上报的装置,包括:确定单元和发送单元;其中,
确定单元,设置为根据测量目的不同确定各测量事件相应的测量对象参数;
发送单元,设置为发送测量对象参数到用户设备UE,用于测量结果的上报控制。
测量对象参数可以为报告配置和/或测量配置中的测量对象参数。
测量事件可以包括:
所述测量目的为进行小区间的干扰协调、和/或小区切换、和/或功率控制、和/或邻区发现、和/或负载均衡邻区发现的测量事件。
确定单元可以设置为,
当所述测量事件为测量目的为进行小区间的干扰协调的测量事件时,确定所述测量对象参数不包含小区个体偏移CIO、和/或频率偏移OFN;
当所述测量事件为测量目的为进行功率控制的测量事件时,确定所述测量对象参数不包含CIO、和/或OFN;
当所述测量事件为测量目的为进行邻区发现的测量事件时,确定所述测量对象参数不包含CIO、和/或OFN;
当所述测量事件为测量目的为进行负载均衡邻区发现的测量事件时,确定所述测量对象参数不包含CIO、和/或OFN。
发送单元具体可以设置为,通过无线资源控制RRC重配消息发送所述测量对象参数到所述UE,用于测量结果的上报控制。
另一方面,本申请还提供一种实现测量报告上报的方法,包括:
根据测量目的不同确定各测量事件相应的测量对象参数;
发送测量对象参数到用户设备UE,用于进行测量结果的上报控制。
测量对象参数可以为报告配置和/或测量配置中的测量对象参数。
根据测量目的不同确定各测量事件相应的报告配置可以包括:
当所述测量事件为测量目的为进行小区间的干扰协调的测量事件时,确定所述测量对象参数不包含小区个体偏移CIO、和/或频率偏移OFN;
当所述测量事件为测量目的为进行功率控制的测量事件时,确定所述测量对象参数不包含CIO、和/或OFN;
当所述测量事件为测量目的为进行邻区发现的测量事件时,确定所述测量对象参数不包含CIO、和/或OFN;
当所述测量事件为测量目的为进行负载均衡邻区发现的测量事件时,确定所述报告配置中测量对象参数不包含CIO、和/或OFN。
发送测量对象参数到UE可以包括:
通过无线资源控制RRC重配消息发送所述测量对象参数到所述UE。
与现有技术相比,本申请技术方案包括:根据测量目的不同确定各测量事件相应的测量对象参数;发送测量对象参数到用户设备(UE),用于测量结果的上报控制。本发明方法通过对各测量事件根据测量目的确定相应的测量对象参数,避免了无关联的测量对象参数影响测量结果的上报,提高了测量报告上报的工作效率。
附图说明
此处所说明的附图用来提供对本发明的进一步理解,构成本申请的一部分,本发明的示意性实施例及其说明用于解释本发明,并不构成对本发明的不当限定。在附图中:
图1为本发明实现测量报告上报的装置的结构图;
图2为本发明实现测量报告上报的方法的流程图;
图3为本发明第一实施例的方法流程图;
图4为本发明第二实施例的方法流程图;
图5为本发明第三实施例的方法流程图。
具体实施方式
为使本发明的目的、技术方案和优点更加清楚明白,下文中将结合附图对本发明的实施例进行详细说明。需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互任意组合。
图1为本发明实现测量报告上报的装置的结构图,如图1所示,包括:确定单元和发送单元;其中,
确定单元,用于根据测量目的不同确定各测量事件相应的测量对象参数;
本发明测量对象参数为报告配置和/或测量配置中的测量对象参数。
优选的,测量事件包括:
测量目的为进行小区间的干扰协调、和/或小区切换、和/或功率控制、和/或邻区发现、和/或负载均衡邻区发现的测量事件。
确定单元具体用于,
当测量事件为测量目的为进行小区间的干扰协调的测量事件时,确定测量对象参数不包含小区个体偏移(CIO)、和/或频率偏移(OFN)。
需要说明的是,测量事件为测量目的为进行小区间的干扰协调的测量事件时,本发明方法测量对象参数不包含CIO和OFN时,具体可以包括以下测量对象参数:测量频点、邻区黑列表、邻区白列表、天线端口、允许的测量带宽。
当测量事件为测量目的为进行功率控制的测量事件时,确定测量对象参数不包含CIO、和/或OFN。
需要说明的是,测量事件为测量目的为进行功率控制的测量事件时,本发明方法测量对象参数不包含CIO和OFN时,具体可以包括以下测量对象参数:测量频点、邻区黑列表、邻区白列表、天线端口、允许的测量带宽。
当测量事件为测量目的为进行邻区发现的测量事件时,确定测量对象参数不包含CIO、和/或OFN;
需要说明的是,测量事件为测量目的为进行邻区发现的测量事件时,本发明方法测量对象参数不包含CIO和OFN时,具体可以包括以下测量对象参数:测量频点、邻区黑列表、邻区白列表、天线端口、允许的测量带宽。
当测量事件为测量目的为进行负载均衡邻区发现的测量事件时,确定测量对象参数不包含CIO、和/或OFN。
需要说明的是,测量事件为测量目的为进行负载均衡邻区发现的测量事件时,本发明方法测量对象参数不包含CIO和OFN时,具体可以包括以下测量对象参数:测量频点、邻区黑列表、邻区白列表、天线端口、允许的测量带宽。
另外,报告配置和/或测量配置中测量对象是否包含CIO、和OFN可以根据本领域技术人员对测量目的的分析,结合技术人员的经验获得。
本发明方法,由于测量对象参数不包含小区个体偏移和频率偏移,因此,切换优化功能修改了小区个体偏移和频率偏移的数值将不会影响小区间的干扰协调、功率控制、邻区发现、和负载均衡邻区发现的测量事件的测量结果上报。
发送单元,用于发送测量对象参数到用户设备(UE),用于测量结果的上报控制。
发送单元具体用于,通过无线资源控制(RRC)重配消息发送测量对象参数到UE。
需要说明的是,本发明装置可以嵌入到基站(eNB)中或与基站进行连接或交互,具体设置不需要本领域技术人员进行创造性的劳动。
本发明方法通过对各测量事件根据测量目的确定相应的测量对象参数,避免了无关联的测量对象参数影响测量结果的上报,提高了测量报告上报的工作效率。
图2为本发明实现测量报告上报的方法的流程图,如图2所示,包括:
步骤200、根据测量目的不同确定各测量事件相应的测量对象参数;
测量对象参数为报告配置和/或测量配置中的测量对象参数。
本步骤中,根据测量目的不同确定各测量事件相应的测量对象参数包括:
当测量事件为测量目的为进行小区间的干扰协调的测量事件时,确定测量对象参数不包含CIO、和/或OFN;
当测量事件为测量目的为进行功率控制的测量事件时,确定测量对象参数不包含CIO、和/或OFN;
当测量事件为测量目的为进行邻区发现的测量事件时,确定测量对象参数不包含CIO、和/或OFN;
当测量事件为测量目的为进行负载均衡邻区发现的测量事件时,确定测量对象参数不包含CIO、和/或OFN。
步骤201、发送测量对象参数到用户设备UE,用于测量结果的上报控制。
优选的,发送测量对象参数到UE具体包括:
通过无线资源控制RRC重配消息发送测量对象参数到UE。
以下通过具体实施例对本发明方法进行清楚详细的说明,实施例仅用于陈述本发明,并不用于限定本发明方法的保护范围。
实施例1
eNB对测量事件根据测量目的确定测量配置中的测量对象参数;将测量配置发往用户设备后,用户设备根据测量配置进行测量;eNB可以通过RRC重配消息将测量配置发往UE;本实施例中,测量事件为测量目的为进行小区间的干扰协调的测量事件时,根据测量目的不同确定各测量事件相应的报告配置中测量对象参数不包含小区个体偏移(CIO)、和/或频率偏移(OFN)。
本实施例通过接收外部指令确定是否根据测量目的确定各测量事件相应的测量对象参数,本实施例测量对象参数为测量配置中的测量对象参数,因此也可以简述为确定测量配置;图3为本发明第一实施例的方法流程图,如图3所示,包括:
步骤300、根据测量目的确定各测量事件的测量配置中相应的测量对象参数;
本步骤中,测量事件包括:测量目的为进行小区间的干扰协调、和/或小区切换、和/或功率控制、和/或邻区发现、和/或负载均衡邻区发现的测量事件。
优选的,本实施例测量事件为测量目的为进行小区间的干扰协调的测量事件时,确定测量配置中测量对象参数不包含小区个体偏移(CIO)、和/或频率偏移(OFN)。
需要说明的是,本实施例中对测量配置或报告配置中不同测量对象参数可以通过各测量对象分别采用独立的RRC重配消息发往UE。
步骤301、eNB将测量配置通过RRC重配消息发往用户设备(UE);测量配置可以通过填写MeasConfig实现;
步骤302、eNB根据测量配置确定报告配置,将报告配置通过RRC重配消息发往UE;
步骤303、UE接收并解析RRC重配消息后,根据测量配置进行测量,结合报告配置上报测量结果。
需要说明的是,测量配置改变时,报告配置理论上应该进行调整,例如、测量配置中测试对象参数不包含频率偏移时,报告配置中也不应该包含未测量的测量对象参数。
本实施例,当测量事件为测量目的为进行小区间的干扰协调的测量事件时,如果确定测量配置的测量对象参数不包括小区个体偏移、和/或频率偏移时,则测量及测量结果的上报将不受小区个体偏移、和/或频率偏移的影响,即进行小区间的干扰协调控制不受小区个体偏移、和/或频率偏移的测量的影响,由此避免了与干扰协调控制不关联的小区个体偏移、和/或频率偏移影响干扰协调控制的进度和效率。
实施例2
图4为本发明第二实施例的方法流程图,如图4所示,包括:
步骤400、eNB基于小区切换、小区间的干扰协调控制请求UE进行测量;这里,请求UE进行测量过程属于事件触发型测量上报。
步骤401、eNB根据测量目的确定测量配置和报告配置;
本步骤中,确定测量配置和报告配置具体是指确定测量配置和报告配置中的测量对象参数;确定测量配置的测量对象参数具体包括:确定测量配置中的测量对象参数是否包括:小区个体偏移、和频率偏移。根据测量目的确定报告配置具体包括确定报告配置的测量对象参数是否包括小区个体偏移、和频率偏移。
确定测量配置和报告配置是否包括小区个体偏移、和频率偏移可以通过扩展消息指示、或通过小区个体偏移、和频率偏移的标识列表或配置列表指示。
步骤402、eNB将测量配置和报告配置通过RRC重配消息发往UE;这里,RRC重配消息可以通过填写测量配置(MeasConfig)生成,由eNB通过测量重配消息(RRC,Connection Reconfiguration)发往UE。
步骤403、UE接收RRC重配消息后,更新测量事件的测量配置;本实施例UE还可以向eNB反馈测量配置完成的消息,一般通过回复测量重配完成消息(RRC Connection Reconfiguration Complete)实现。
步骤404、UE根据测量配置执行测量,根据确定的报告配置进行测量结果的上报;本实施例如果测量配置中的测量对象参数不包含小区个体偏移、和/或频率偏移的测量,则报告配置中上报测量结果也不应该受小区个体偏移、和/或频率偏移测量的影响。
步骤405、eNB将接收的UE上报的测量结果用于测量目的。
实施例3
图5为本发明第三实施例的方法流程图,如图5所示,包括:
步骤500、eNB基于小区切换、小区间的干扰协调控制请求UE进行测量;这里,请求UE进行测量过程属于事件触发型测量上报。
步骤501、eNB根据测量目的确定报告配置;
本步骤中,根据测量目的确定报告配置具体包括确定报告配置的测量对象参数是否包括小区个体偏移和频率偏移。
优选的,确定测量配置和报告配置是否包括小区个体偏移、和频率偏移可以通过扩展消息指示、或通过小区个体偏移、和频率偏移的标识列表或配置列表指示。
步骤502、eNB将报告配置通过RRC重配消息发往UE;这里,RRC重配消息可以通过填写测量配置(MeasConfig)生成,由eNB通过测量重配消息(RRC,Connection Reconfiguration)发往UE。
步骤503、UE接收RRC重配消息后,更新测量事件的报告配置;本实施例UE还可以向eNB反馈报告配置完成的消息。
步骤504、UE根据确定的报告配置进行测量结果的上报;本实施例如果测量目的与小区个体偏移、和/或频率偏移的测量不存在关联,则报告配置中上报测量结果也不应该受小区个体偏移、和/或频率偏移测量的影响。
步骤505、eNB将接收的UE上报的测量结果用于测量目的。
虽然本发明所揭露的实施方式如上,但所述的内容仅为便于理解本发明而采用的实施方式,并非用以限定本发明。任何本发明所属领域内的技术人员,在不脱离本发明所揭露的精神和范围的前提下,可以在实施的形式及细节上进行任何的修改与变化,但本发明的专利保护范围,仍须以所附的权利要求书所界定的范围为准。
工业实用性
本发明适用于移动通信技术领域,用以避免无关联的测量对象参数影响测量结果的上报,从而提高了测量报告上报的工作效率。

Claims (9)

  1. 一种实现测量报告上报的装置,包括:确定单元和发送单元;其中,
    确定单元,设置为根据测量目的不同确定各测量事件相应的测量对象参数;
    发送单元,设置为发送测量对象参数到用户设备UE,用于测量结果的上报控制。
  2. 根据权利要求1所述的装置,其中,所述测量对象参数为报告配置和/或测量配置中的测量对象参数。
  3. 根据权利要求1所述的装置,其中,所述测量事件包括:
    所述测量目的为进行小区间的干扰协调、和/或小区切换、和/或功率控制、和/或邻区发现、和/或负载均衡邻区发现的测量事件。
  4. 根据权利要求1、2或3所述的装置,其中,所述确定单元设置为,
    当所述测量事件为测量目的为进行小区间的干扰协调的测量事件时,确定所述测量对象参数不包含小区个体偏移CIO、和/或频率偏移OFN;
    当所述测量事件为测量目的为进行功率控制的测量事件时,确定所述测量对象参数不包含CIO、和/或OFN;
    当所述测量事件为测量目的为进行邻区发现的测量事件时,确定所述测量对象参数不包含CIO、和/或OFN;
    当所述测量事件为测量目的为进行负载均衡邻区发现的测量事件时,确定所述测量对象参数不包含CIO、和/或OFN。
  5. 根据权利要求1、2或3所述的装置,其中,所述发送单元设置为,通过无线资源控制RRC重配消息发送所述测量对象参数到所述UE,用于测量结果的上报控制。
  6. 一种实现测量报告上报的方法,其中,包括:
    根据测量目的不同确定各测量事件相应的测量对象参数;
    发送测量对象参数到用户设备UE,用于进行测量结果的上报控制。
  7. 根据权利要求6所述的方法,其中,所述测量对象参数为报告配置和/或测量配置中的测量对象参数。
  8. 根据权利要求6或7所述的方法,其中,所述根据测量目的不同确定各测量事件相应的报告配置包括:
    当所述测量事件为测量目的为进行小区间的干扰协调的测量事件时,确定所述测量对象参数不包含小区个体偏移CIO、和/或频率偏移OFN;
    当所述测量事件为测量目的为进行功率控制的测量事件时,确定所述测量对象参数不包含CIO、和/或OFN;
    当所述测量事件为测量目的为进行邻区发现的测量事件时,确定所述测量对象参数不包含CIO、和/或OFN;
    当所述测量事件为测量目的为进行负载均衡邻区发现的测量事件时,确定所述报告配置中测量对象参数不包含CIO、和/或OFN。
  9. 根据权利要求6或7所述的方法,其中,所述发送测量对象参数到UE包括:
    通过无线资源控制RRC重配消息发送所述测量对象参数到所述UE。
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