WO2011120379A1 - 一种实现邻区信息上报的方法及系统 - Google Patents

一种实现邻区信息上报的方法及系统 Download PDF

Info

Publication number
WO2011120379A1
WO2011120379A1 PCT/CN2011/071809 CN2011071809W WO2011120379A1 WO 2011120379 A1 WO2011120379 A1 WO 2011120379A1 CN 2011071809 W CN2011071809 W CN 2011071809W WO 2011120379 A1 WO2011120379 A1 WO 2011120379A1
Authority
WO
WIPO (PCT)
Prior art keywords
measurement
information
cell
user terminal
network side
Prior art date
Application number
PCT/CN2011/071809
Other languages
English (en)
French (fr)
Inventor
高音
韩立锋
Original Assignee
中兴通讯股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Priority to US13/583,059 priority Critical patent/US8831586B2/en
Priority to BR112012022058-6A priority patent/BR112012022058B1/pt
Priority to EP11761953.6A priority patent/EP2536197A4/en
Priority to JP2012557386A priority patent/JP5648071B2/ja
Publication of WO2011120379A1 publication Critical patent/WO2011120379A1/zh

Links

Classifications

    • 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
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0083Determination of parameters used for hand-off, e.g. generation or modification of neighbour cell lists
    • H04W36/00837Determination of triggering parameters for hand-off
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0083Determination of parameters used for hand-off, e.g. generation or modification of neighbour cell lists
    • H04W36/0085Hand-off measurements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0083Determination of parameters used for hand-off, e.g. generation or modification of neighbour cell lists
    • H04W36/00835Determination of neighbour cell lists
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/08Reselecting an access point
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/16Discovering, processing access restriction or access information

Definitions

  • the present invention relates to a Minimize Drive Test (MDT) technology, and more particularly to a method and system for implementing neighbor reporting by using MDT technology.
  • MDT Minimize Drive Test
  • UMTS Universal Mobile Telecommunications System
  • LTE Long Term Evolution
  • LTE-A Evolution LTE
  • the traditional road test is: ⁇ Manually test the areas that need to be monitored and optimized.
  • FIG. 1 is a schematic diagram of the application architecture of the existing MDT in the UMTS, as shown in FIG.
  • the network side and the terminal device wherein the network side includes a radio access network (RAN) side device and a network management system.
  • the reporting mechanism includes three types: real-time reporting in the connected state, log reporting in the IDLE state, and log reporting in the connected state.
  • the measurement content of MDT mainly includes the following:
  • Periodical downlink pilot measurement ie measurement of the wireless environment, such as common pilot channel received signal code power (CPICH RSCP), common pilot channel per chip energy and interference power spectral density Ratio (CPICH Ec/No), reference signal received power (R SRP ) and reference signal received quality (RSRQ) (connection mode only) periodic Record.
  • CPICH RSCP common pilot channel received signal code power
  • CPICH Ec/No common pilot channel per chip energy and interference power spectral density Ratio
  • R SRP reference signal received power
  • RSRQ reference signal received quality
  • RRM Radio Resource Management
  • a measurement report is made when UL covers to transmit a measurement report. This will limit the measurements collected from the UE, the UE cannot experience a Reliable Linked Frame (RLF) and experience sufficient uplink (UL) coverage.
  • RLF Reliable Linked Frame
  • Serving Cell becomes worse than threshold that is, when the metric of the serving cell is smaller than the configured threshold, the wireless environment measurement is recorded, for example: CPICH RSCP, CPICH Ec/No, or TDD primary common channel reception Signal code power (TDD P-CCPCH RSCP) and interference signal code power (ISCP), RSRP and RSRQ (only for connected mode).
  • TDD P-CCPCH RSCP TDD primary common channel reception Signal code power
  • ISCP interference signal code power
  • RSRP interference signal code power
  • the operator is interested in a particular DL coverage issue, it is valid to take a measurement log corresponding to the problem of interest.
  • operators can convert their criteria (eg, outside coverage) into a wide value.
  • the measurement content is useful for measuring log information.
  • the operator can detect the link budget without sufficient UL, and can also infer the UL throughput level that can be achieved in the network. Collecting this information can help operators better adjust CIOs, determine the layout of the cell in the network center, adjust the antenna tilt, and so on.
  • Random access failure When random access failure occurs, record detailed information about random access and wireless environment measurement, such as: CPICH RSCP, CPICH Ec/No, or TDD P-CCPCH RSCP and ISCP, RSCP and RSRQ (only in connected state). The user instance corresponding to this measurement log is "overlay optimization".
  • the reason for random access failure is, for example, incorrect transmission power setting or competition.
  • the operator can collect information about random access failures to analyze the characteristics of random access failures. Measurements of the DL radio environment are also necessary, such as CPICH RSCP, CPICH Ec/No, RSRP and RSRQ, since open loop power control during random access depends on these characteristics. Collecting this information can help operators better adjust random access parameters and adjust antenna tilt.
  • Paging Channel failure that is, when the UE does not decode the PCCH on the paging channel for the continuous time of the X2, the detailed information of the wireless environment such as location information, time and cell identity is recorded (even if the operator is The paging moment can decode the PDCCH). This measurement corresponds to the user instance "Parameterization of the common channel”.
  • the drive test can be used to evaluate the capabilities of the UE by receiving paging messages in the coverage area of the cell. Since these behaviors can result in high costs, it would be very beneficial if the UE could record the time at which it could not decode the information on the paging channel and other relevant information.
  • Broadcast Channel failure When the UE does not read the relevant DL common channel to obtain the system message required for camping in a cell, the message information of the wireless environment such as location information, time, cell identifier is recorded. And frequency, etc. This measurement corresponds to the user instance “coverage and capacity optimization” and "parameterization of the common channel”.
  • Radio Link failure report The UE reports radio measurements such as CPICH RSCP, CPICH Ec/No, or TDD P-CCPCH and ISCP, RSRP and RSRQ when the UE experiences RLF.
  • the measurement of the RLF Report corresponds to the user instance of "overlay optimization".
  • the RLF Report can identify several issues from coverage. Therefore, in the real network, the detection probability of the coverage vulnerability through the RLF Report measurement information is expected to be high. And some of the problems typically associated with DL common channel detection are also due to coverage issues.
  • the RLF Report provides a solution to the basic DL coverage problem, and specific measurements of common channel parameterization can focus on adjusting common channel parameters.
  • Collecting the measurement information of the measurement content of the above MDT can help the operator to find the coverage problem in the designated area and reduce the manual road test.
  • the service continuity of mobile users is a basic function of the cellular mobile communication system, and the handover of the mobile station serving cell is the main means to ensure service continuity.
  • the system needs to configure the adjacency relationship for each cell, so that the network side notifies the neighboring area information to the user equipment, and the user equipment reports the measurement result to the neighboring area, and the network side reports according to the reported measurement result.
  • the user equipment switches to a neighboring area.
  • the neighboring areas around a certain cell are not only related to the distance of the cell, but also closely related to the wireless environment in which the cell is located. Due to the intricacies of the wireless environment, especially in the dense urban environment of high-rise buildings, it is difficult to determine exactly which neighboring areas should be configured in a certain area in the initial stage of network planning. There are also some new cells or cell attribute changes in the system, and the neighbor relationship of the cell is not updated in time; or the environment changes, the omission of network planners, etc., will cause the neighbor information to be updated in time. This will cause the user equipment to fail to switch to other cells in time, which makes this small The load of the area is too high, the signal quality of the cell is deteriorated, the interference is serious, or the user drops the call.
  • the main purpose of the present invention is to provide a method and system for implementing neighbor cell reporting, which can automatically discover and maintain neighbor relationship, ensure timeliness of cell handover, and provide communication system performance.
  • a method for implementing ⁇ on a neighboring cell comprising:
  • the network side sends the measurement configuration and report information of the drive test to the user terminal.
  • the user terminal performs the drive test, and reports the drive test result including the neighbor information around the terminal to the network side when the report trigger condition is met.
  • the method further includes: the network side managing the neighboring area according to the neighboring area information around the user terminal in the road test result.
  • the management of the neighboring area is:
  • the network side processes the collected drive test results locally; or
  • the network side sends the collected drive test results to the network management system for processing.
  • the measurement configuration of the drive test includes a new measurement event
  • the newly added measurement event is described as a signal that the surrounding cell signal is higher than a preset threshold, and is used to record the wireless environment measurement when the signal of the surrounding cell measured by the user terminal is higher than the configured threshold.
  • the measurement event is immediately reported, and at this time,
  • the content of the newly added measurement event measurement includes:
  • Measurement trigger type The measurement is triggered when the surrounding cell signal measured by the user terminal is higher than the threshold value; Configuration parameters: wide value;
  • Measurement content Contains any combination of one or more of the following:
  • Position information Measure the position information when the event trigger occurs, and measure the position information when the record occurs;
  • Timestamp The time when the measurement event trigger occurs, and the time when the measurement record occurs;
  • Cell marker information The cell identification information of the surrounding cells measured when the event trigger is triggered;
  • Wireless environment measurement information Measurement of signal quality information of surrounding cells measured when an event trigger occurs.
  • the measurement event is reported in a log manner. At this time,
  • the content of the new measurement event measurement " ⁇ also includes:
  • the measurement log interval is used to indicate the measurement record interval under the log record window.
  • the wireless environment measurement information further includes: measuring signal quality information of surrounding cells in the log window before and after the measurement event trigger occurs.
  • the cell identifier information is a physical cell identifier PCI and/or a cell global identifier CGI information;
  • the cell representation information is a primary scrambling code of a cell.
  • PSC and / or cell identifier CI, and / or tracking area code TAC, and / or routing area code RAC, and
  • a system for implementing reporting in a neighboring area where the system includes at least a user terminal and a network side, where the network side is configured to send a measurement configuration and report information to the user terminal;
  • the user terminal is configured to perform a drive test, and report the drive test result including the neighboring area information around the terminal to the network side when the report condition is met.
  • the network side is further configured to manage the neighboring area according to the neighboring area information around the user terminal in the road test result.
  • the network side includes a radio access network RAN side device;
  • the RAN side device is a radio network controller RNC; in the long term evolution LTE system, the RAN side device is an evolved base station eNB.
  • the network side further includes a network management system, and the RAN side device is further configured to send the collected drive test result information to the network management system for processing.
  • the network side sends the measurement configuration and the report information of the drive test to the user terminal; the user terminal performs the drive test, and when the report trigger condition is met, the neighboring area around the terminal is included.
  • the test result of the information is reported to the network side.
  • the invention utilizes the MDT measurement event in the road test to realize the discovery of the neighboring area information around the user terminal, and performs maintenance on the network side, and the network side timely obtains the neighboring area information around the user terminal, thereby ensuring the user terminal.
  • the effectiveness of cell handover is performed, thereby also improving the network performance of the communication system.
  • FIG. 1 is a schematic diagram of an application architecture of an existing MDT in UMTS
  • FIG. 2 is a flowchart of a method for implementing reporting in a neighboring cell according to the present invention
  • FIG. 3 is a schematic structural diagram of a system for implementing reporting in a neighboring area according to the present invention.
  • FIG. 4 is a flow chart of an embodiment of immediately reporting a road test result in a connected state of a user terminal according to the present invention
  • FIG. 5 is a flowchart of an embodiment of a log test result in a log mode in a connected state of a user terminal according to the present invention
  • FIG. 6 is a flow chart of an embodiment of the method of logging in the log mode in the idle state of the user terminal of the present invention. detailed description
  • Step 200 The network side sends the measurement configuration and report information of the drive test to the user terminal.
  • the RAN side sends the measurement configuration and reporting information to the UE through the control plane (CP, control plane) according to the requirements of the network management system.
  • control plane CP, control plane
  • the measurement configuration in the measurement configuration and report information contains the configuration information of the MDT measurement content, and the new MDT measurement event: the surrounding cell signal is higher than the threshold. That is, when the signal of the surrounding cell measured by the UE is higher than the configured threshold, the wireless environment measurement is recorded, for example: CPICH RSCP, CPICH Ec/No, or TDD P-CCPCH RSCP and ISCP, RSRP and RSRQ (only For connection mode).
  • the newly added MDT measurement events can be reported in the log mode immediately after being recorded for a period of time.
  • the UE can perform measurement records in the IDLE state or the connected state. If the measurement record is taken when the UE is in the connected state or the IDLE state, then a measurement log window is needed, in order to collect information for a certain period of time before and after the event occurs.
  • the specific content of the new MDT measurement event measurement report includes the following:
  • Measurement trigger type The measurement is triggered when the surrounding cell signal measured by the UE is higher than the threshold.
  • Configuration parameters threshold. Can be a background configuration value.
  • Measurement content It can contain any combination of one or several of the following:
  • Position information Measures the position information when the event trigger occurs, and measures the position information when the record occurred.
  • Timestamp The time when the measurement event trigger occurs, and the time when the measurement record occurred.
  • Cell marker information The cell identification information of the surrounding cell measured when the event trigger occurs, for example, the physical cell identifier (PCI) or the cell global identifier (CGI) information of the cell under LTE, and may be a cell under UMTS Information such as the primary scrambling code (PSC) or the cell identifier (CI).
  • PCI physical cell identifier
  • CGI cell global identifier
  • PSC primary scrambling code
  • CI cell identifier
  • Wireless environment measurement information Measuring the signal quality of surrounding cells measured when an event trigger occurs The quantity information, and/or the signal quality information of the surrounding cells in the measurement log window within a preset time period before the measurement event trigger occurs.
  • Step 201 The user terminal performs a drive test, and reports the drive test result including the neighboring area information around the terminal to the network side when the report triggering condition is met.
  • the UE reports the road test result to the RAN through the control plane signaling.
  • the method of the present invention further includes the step 202: the network side manages the neighboring area according to the neighboring area information around the user terminal in the road test result.
  • the network side may send the collected drive test result information to the network management system or the base station performs local processing. How to deal with it is not within the scope of protection of the present invention and will not be described in detail herein.
  • the invention emphasizes that the MDT measurement event added in the road test is used to realize the discovery of the neighboring area information around the user terminal, and report it to the network side for maintenance.
  • the network side obtains the neighboring area information around the user terminal in time. The validity of the cell handover by the user terminal is ensured, thereby improving the network performance of the communication system.
  • FIG. 3 is a schematic structural diagram of a system for implementing reporting in a neighboring area according to the present invention. As shown in FIG. 3, at least a user terminal and a network side are included, where
  • the network side is used to send the measurement configuration and report information of the drive test to the user terminal.
  • the user terminal is configured to perform a drive test, and report the drive test result including the neighboring area information around the terminal to the network side when the report condition is met.
  • the network side is further configured to manage the neighboring area according to the neighboring area information around the user terminal in the road test result.
  • the network side further includes a network management system, and the RAN device is further configured to send the collected drive test result information to the network management system for processing.
  • the network side includes a RAN side device, and in the UMTS, the network side is a radio network controller (RNC); in LTE, the network side is an eNB.
  • RNC radio network controller
  • FIG. 4 is a flowchart of an embodiment of reporting a road test result in a connected state of a user terminal according to the present invention.
  • the UE is in a connected state in the serving cell A.
  • the following includes the following: Steps:
  • Step 400 The RAN side sends a measurement measurement configuration and a report information, that is, an MDT measurement control command, to the UE through the CP according to the requirements of the network management system.
  • the measurement configuration of the road test includes configuration information that the MDT measurement event is a surrounding cell signal higher than a threshold.
  • the measurement configuration includes the threshold information configured in the background.
  • Step 401 After the UE is in the connected state, the UE measures the signal of the surrounding cell after receiving the MDT measurement control command, for example, measuring one or more cells in the same frequency, different frequency, and inter-system (depending on the UE Depending on the capabilities); when the signal of one or more surrounding cells is higher than the threshold in the MDT measurement control command, such as recording to the same frequency cell B, and/or the inter-frequency cell C, and/or the inter-system cell D When the signal is above the threshold, the UE performs an immediate MDT measurement on the 3 ⁇ 4.
  • the threshold in the MDT measurement control command such as recording to the same frequency cell B, and/or the inter-frequency cell C, and/or the inter-system cell D
  • the UE performs an immediate MDT measurement on the 3 ⁇ 4.
  • the specific content of the MDT measurement report includes the following:
  • Measurement trigger type The measurement is triggered when the surrounding cell signal measured by the UE is higher than the threshold; configuration parameters: the threshold value, the configuration value obtained by the network management background;
  • Measurement content Can include one or more of the following:
  • Position information Measure the position information when the event trigger occurs, and measure the position information when the record occurs;
  • Timestamp The time when the measurement event trigger occurs, the time when the measurement record occurs;
  • the cell flag information The identification information of the cell B and/or the cell C and/or the cell D measured when the event trigger occurs, for example, under LTE It may be the PCI information of the cell, and the terminal may also read the cell broadcast information block (SIB) information to obtain the CGI information of the cell; under the UMTS, it may be the PSC information of the cell, and the terminal may also read the cell broadcast SIB information to obtain the cell.
  • SIB cell broadcast information block
  • Wireless environment measurement information Measurement of signal quality information of cell B and/or cell C and/or cell D measured when an event trigger occurs, and/or cell B and/or cell C within a period of time before and after the measurement event trigger occurs And/or signal quality information for cell D.
  • Signal quality information can be used RSRP and RSRQ are used to indicate.
  • Step 402 The UE reports the road test result to the RAN side device through the CP signaling, and then the RAN side device may send the collected drive test result information to the network management system or locally by the RAN side device, such as the base station/RNC.
  • the measurement result of >3 ⁇ 4 on the UE may be locally analyzed and processed by the RNC, if the cell B is not currently the neighboring cell of the cell A, and if there are multiple UEs, the cell B is performed. The measurement is reported, and the location information in the measurement report reported by the UE is used for judgment, and the RNC may add the cell B as the neighboring cell of the cell A.
  • the eNB can perform local analysis and processing on the measurement result of the UE on the UE.
  • the eNB may add the cell B as a neighboring cell of the cell A.
  • the processing of the above road test report can also be processed in the network element of the network management system.
  • FIG. 5 is a flowchart of a method for performing a log measurement result in a log mode in a connected state of the user terminal according to the present invention.
  • the UE is in a connected state in the serving cell A.
  • the method includes:
  • Step 500 The RAN side sends a measurement measurement configuration and a report information, that is, an MDT measurement control command, to the UE through the CP according to the requirements of the network management system.
  • the measurement configuration of the road test includes configuration information that the MDT measurement event is a surrounding cell signal higher than a threshold.
  • the measurement configuration includes the threshold information configured in the background.
  • Step 501 After the UE is in the connected state, the UE measures the signal of the surrounding cell after receiving the MDT measurement control command, for example, measuring one or more cells in the same frequency, different frequency, and between systems (see UE Depending on the capabilities); when the signal of one or more surrounding cells is higher than the threshold in the MDT measurement control command, such as recording to the same frequency cell B, and/or the inter-frequency cell C, and/or the inter-system cell D When the signal is higher than the threshold, the UE performs a period of MDT measurement record and reports it.
  • the specific content of the MDT measurement report includes the following:
  • Measurement trigger type The measurement is triggered when the surrounding cell signal measured by the UE is higher than the threshold; configuration parameters: the threshold value, the configuration value obtained by the network management background;
  • Measurement log window used to indicate the log record window, such as 1 hour as a record window
  • measurement log interval used to indicate the measurement record interval under the log record window, such as 10 minutes
  • Measurement content Can include one or more of the following:
  • Position information Measure the position information when the event trigger occurs, and measure the position information when the record occurs;
  • Timestamp The time when the measurement event trigger occurs, the time when the measurement record occurs;
  • the cell flag information The identification information of the cell B and/or the cell C and/or the cell D measured when the event trigger occurs, for example, under LTE
  • the terminal may also read the cell broadcast SIB information to obtain the CGI information of the cell.
  • the UMTS may be the PSC information of the cell. Further, the terminal may also read the cell broadcast SIB information and obtain the information.
  • Wireless environment measurement information Measurement of signal quality information of cell B and/or cell C and/or cell D measured when an event trigger occurs, and/or cell B and/or cell C within a period of time before and after the measurement event trigger occurs And/or signal quality information for cell D.
  • Signal quality information can be represented by RSRP and RSRQ.
  • Step 502 The UE reports the road test result to the RAN side device through the CP signaling, and then the RAN side device may send the collected drive test result information to the network management system or locally by the RAN side device, such as the base station/RNC.
  • the measurement result reported by the UE may be locally analyzed and processed by the RNC. If the cell B is not currently the neighboring cell of the cell A, and if multiple UEs have measured and reported the cell B, And determining the location information in the measurement report reported by the UE, the RNC may add the cell B as the neighboring cell of the cell A.
  • the eNB performs local analysis and processing on the measurement result of the UE on the UE.
  • the cell B is not the neighboring cell of the cell A, and if there are multiple UEs, the cell B is measured and reported, and combined with the UE reporting The location information in the measurement report is judged, and the eNB may add the cell B as a neighboring cell of the cell A.
  • the processing of the above road test report can also be processed in the network element of the network management system.
  • FIG. 6 is a flowchart of an embodiment of the method for logging in the log mode in the idle state of the user terminal.
  • the UE is in the IDLE state in the serving cell A.
  • the method includes: Step 600: RAN side
  • the measurement configuration of the drive test and the report information, that is, the MDT measurement control command, are sent to the UE through the CP according to the requirements of the network management system.
  • the measurement configuration of the road test includes configuration information that the MDT measurement event is a surrounding cell signal higher than a threshold.
  • the measurement configuration includes the threshold information configured in the background.
  • Step 601 After receiving the MDT measurement control command, the UE measures the signals of the surrounding cells, for example, measuring one or more cells in the same frequency, different frequency, and between systems (depending on the capability of the UE); The signal of one or more surrounding cells is higher than the threshold in the MDT measurement control command, for example, when recording to the same frequency cell B, and/or the inter-frequency cell C, and/or the signal of the inter-system cell D is higher than the threshold, The UE performs the MDT measurement record for a period of time and reports it.
  • the specific content of the MDT measurement report includes the following:
  • Measurement trigger type The measurement is triggered when the surrounding cell signal measured by the UE is higher than the threshold; configuration parameters: the threshold value, the configuration value obtained by the network management background;
  • Measurement log window used to indicate the log record window, such as 1 hour as a record window
  • measurement log interval used to indicate the measurement record interval under the log record window, such as 10 minutes
  • Measurement content Can include one or more of the following:
  • Position information Measure the position information when the event trigger occurs, and measure the position information when the record occurs;
  • Timestamp The time when the measurement event trigger occurs, and the time when the measurement record occurs;
  • the cell identifier information is: the measurement information of the cell B and/or the cell C and/or the cell D measured when the event triggering occurs, for example, the LTE may be the PCI information of the cell, and further, the terminal may also read the cell broadcast SIB. The information may be used to obtain the CGI information of the cell.
  • the UMTS may be the PSC information of the cell. Further, the terminal may also read the cell broadcast SIB information, obtain the CI information of the cell, and/or TAC, and/or RAC, and/or PLMN information;
  • Wireless environment measurement information Measurement of signal quality information of cell B and/or cell C and/or cell D measured when an event trigger occurs, and/or cell B and/or cell C within a period of time before and after the measurement event trigger occurs And/or signal quality information for cell D.
  • Signal quality information can be represented by RSRP and RSRQ.
  • Step 602 The UE reports the test result to the RAN side device through the CP signaling, and then the RAN side device may send the collected drive test result information to the network management system or locally by the RAN side device, such as the base station/RNC.
  • the measurement result reported by the UE may be locally analyzed and processed by the RNC. If the cell B is not currently the neighboring cell of the cell A, and if multiple UEs have measured and reported the cell B, And determining the location information in the measurement report reported by the UE, the RNC may add the cell B as the neighboring cell of the cell A.
  • the eNB can perform local analysis and processing on the measurement result of the UE on the UE.
  • the eNB may add the cell B as a neighboring cell of the cell A.
  • the processing of the above road test report can also be processed in the network element of the network management system.

Landscapes

  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Mobile Radio Communication Systems (AREA)

Description

一种实现邻区信息上报的方法及系统 技术领域
本发明涉及减少路测 (MDT, Minimize drive test )技术, 尤其涉及利 用 MDT 技术实现邻区上报的方法及系统。 适用于通用移动通信系统 ( UMTS , Universal Mobile Telecommunications System )、 长期演进 ( LTE, Long Term Evolution ) /演进 LTE ( LTE- A ) 系统。 背景技术
在通信系统中, 为了减少网络建设和运营成本, 传统的路测是: 釆用 人工对需要监测和优化的区域进行测试。
基于下一代网络的演进, 一方面, 为了降低对传统路测的依赖, 另一 方面, 为了能够利用用户终端(UE, User Equipment )的测试结果, 对网络 自动的进行优化和全面理解网络的运行情况, 在 LTE 系统中提出了 MDT 的技术研究。 MDT技术也可运用在 UMTS中。 MDT技术的实现方式基于 由演进基站( eNB )向 UE下发测量控制和上报机制, UE测量后进行上才艮, 图 1为现有 MDT在 UMTS中的应用架构示意图, 如图 1所示, 网络侧和 终端设备, 其中网络侧包括无线接入网络( RAN )侧设备和网络管理系统。 上报机制包括连接态下的即时上报、 IDLE态下的日志上报以及连接态下的 日志上报三种类型。
目前, MDT的测量内容主要包括以下几种:
1 )周期性的下行导频测量( Periodical downlink pilot measurement ): 即 无线环境的测量, 例如公共导频信道接收信号码功率(CPICH RSCP ), 公 共导频信道每码片能量与干扰功率谱密度之比 (CPICH Ec/No ), 参考信号 接收功率( R SRP )和参考信号接收质量( RSRQ ) (只对连接模式)周期性 地记录。 这个测量日志对应于用户实例 "覆盖优化"。
运营商意识到下行链路( DL )覆盖或可实现的吞吐量的主要测量是 DL 公共导频接收等级和信噪比(SIR )等级。 现存的无线资源管理(RRM )测 量的配置主要依赖于事件触发的测量报告和周期性报告。 也存在如下一些 限制:
a) 没有伴随的位置信息。 即使运营商用 DL覆盖问题能识别小区, 但 运营商仍需要通过执行路测 (Drive test ) 来确定小区中存在问题的区域, 因为准确位置信息可以被低的 DL公共导频接收等级 /SIR等级检测出来, 而不能从当前的 RRM机制中获得。
b) 现存的 RRM机制只允许在 UE已经连接到特定的小区,且有足够的
UL覆盖来传输测量报告时,进行测量报告。这将会限制从 UE收集的测量, UE不能经历可信链路帧(RLF, Reliable Linked Frame )和经历足够的上行 链路(UL )覆盖。
2 )服务小区信号小于阈值 ( Serving Cell becomes worse than threshold ): 即当服务小区的度量小于配置的阔值时,记录无线环境测量, 比如: CPICH RSCP , CPICH Ec/No , 或者 TDD 主公共信道接收信号码功率 ( TDD P-CCPCH RSCP )和干扰信号码功率(ISCP ), RSRP和 RSRQ (只对连接 模式)。 需要一个测量日志窗口, 目的是为了在事件发生的前后在某段时间 内可以搜集信息。 测量日志对应的是用户实例 "覆盖优化"。
如果运营商对一个特定的 DL覆盖问题感兴趣,釆取对应于感兴趣问题 的测量日志是有效的。为了能够找出问题区域,运营商能把它们的准则 (如: 在覆盖外)转化成阔值。 为了能够识别问题的特征(如: 发生在一个特定 的移动场景 ), 该项测量内容是有益的测量日志提供信息。
3 )传输功率余裕 ( headroom ) 小于阈值 ( Transmit power headroom becomes less than threshold ): 即当 UE的传输功率的 headroom小于配置的 阔值, 记录传输功率的 Headroom和无线环境测量比如: CPICH RSCP , CPICH Ec/No, 或者 TDD P-CCPCH RSCP和 ISCP, RSRP和 RSRQ (只对 连接模式)这个测量日志对应于用户实例 "覆盖优化"。
运营商从观察 UL传输功率的等级,可以检测出没有足够 UL的链路预 算,并且也可以推论出在网络中可以实现的 UL吞吐量等级。搜集这些信息 可以帮助运营商更好地调节 CIO , 来决定在网络中心小区的布局, 调节天 线倾角等等。
4 ) 随机接入失败(Random access failure ): 即随机接入失败发生时, 记录关于随机接入的详细信息和无线环境测量,比如: CPICH RSCP, CPICH Ec/No, 或者 TDD P-CCPCH RSCP和 ISCP, RSCP和 RSRQ (只有在连接 状态)。 这个测量日志对应的用户实例是 "覆盖优化"。
随机接入失败的原因是, 比如错误的传输功率设置或竟争等。 运营商 可以搜集关于随机接入失败的信息来分析随机接入失败的特征。 DL无线环 境的测量也是必要的, 比如 CPICH RSCP, CPICH Ec/No, RSRP和 RSRQ, 因为随机接入过程中的开环功率控制依赖于这些特征。 搜集这些信息可以 帮助运营商较好地调节随机接入参数, 调节天线倾角等。
5 )寻呼信道失败( Paging Channel failure ): 即当 UE对 X2 的连续时 间内,在寻呼信道没有解码出 PCCH,记录无线环境的详细信息如位置信息, 时间和小区标识 (即使运营商在寻呼时刻能够解码出 PDCCH )。 这个测量 曰志对应于用户实例 "公共信道的参数化"。
在空闲(IDLE )模式下, 对于运营商来说, UE是否可以被可靠地寻呼 到是很重要的。 如果一个用户不能被可靠地寻呼到, 将会对用户体验(至 少在寻呼单元)有消极影响, 并且对于运营商的收入也有影响 (因为少了 呼叫的机会)。 在当前的网络中, 路测可以用于通过接收在小区覆盖区域中 的寻呼消息评估 UE的能力。 既然这些行为会造成高的成本, 如果 UE能记 录它自身在寻呼信道上不能解码信息发生的时间以及其他相关信息, 将是 非常有益。 6 )广播信道失败( Broadcast Channel failure ): 即当 UE没有读到相关 DL公共信道来获得对于驻留在一个小区内需要的系统消息时,记录无线环 境的消息信息如位置信息, 时间, 小区标识和频率等。 这个测量对应了用 户实例 "覆盖和容量优化" 和 "公共信道的参数化"。
7 )无线链路失败报告 ( Radio Link failure report ): 即在 UE发生 RLF 时, UE报告无线测量, 如 CPICH RSCP, CPICH Ec/No, 或 TDD P-CCPCH 和 ISCP, RSRP和 RSRQ。 RLF Report的测量对应于 "覆盖优化" 的用户 实例。
RLF Report可以识别来自覆盖方面的几个问题。 因而在现实网络中, 通过 RLF Report测量信息进行覆盖漏洞的检测概率期望能高。 并且通常和 DL公共信道检测相关的一些问题也是由于覆盖问题引起的。 RLF Report提 供了解决基本 DL覆盖问题的方法,公共信道参数化的具体测量可以集中在 调节公共信道参数。
搜集上述 MDT的测量内容的测量信息,可以帮助运营商找出在指定区 域的覆盖问题, 减少人工路测。
同时, 移动用户的服务连续性是蜂窝移动通信系统的一个基本功能, 而移动台服务小区的切换是保证服务连续性的主要手段。 为了便于用户设 备进行切换, 系统需要给每个小区配置邻接关系, 以便网络侧将邻区信息 通知给用户设备, 用户设备对邻区进行测量后上报测量结果, 而网络侧根 据上报的测量结果指示用户设备切换至某一邻区。
某个小区周围有哪些邻区不仅与小区距离有关, 而且与小区所处的无 线环境密切相关。 由于无线环境错综复杂, 尤其是高层建筑密集的城区环 境, 在网络规划初期很难确切判断某个小区应该配置哪些邻区。 还有一些 如系统中新增加了一个小区或者小区属性改变, 没有及时更新小区的相邻 关系; 或者环境的变化、 网络规划人员的遗漏等, 都会造成邻区信息更新 不及时。 这样就会造成用户设备不能及时切换到其它的小区, 而使得本小 区的负载过高、 本小区信号质量变差、 干扰严重或者用户掉话等情况的发 生。
而前面提到的 MDT技术可以充分利用 UE的测量, 对周围无线环境情 况进行搜集上报, 目前,没有提供有效的测量方法使得 UE能够获得周围邻 区信息并进行上报。 发明内容
有鉴于此, 本发明的主要目的在于提供一种实现邻区上报的方法及系 统, 能够实现邻区关系的自动发现和维护, 保证小区切换的及时性, 从而 提供通信系统性能。
为达到上述目的, 本发明的技术方案是这样实现的:
一种实现邻区上 ^的方法, 该方法包括:
网络侧向用户终端下发路测的测量配置和上报信息;
用户终端进行路测, 并在满足上报触发条件时将包含有终端周围的邻 区信息的路测结果上报给网络侧。
该方法还包括: 所述网络侧根据路测结果中的用户终端周围的邻区信 息对邻区进行管理。
所述对邻区进行管理为:
所述网络侧在本地对收集到的路测结果进行处理; 或者,
所述网络侧将收集到的路测结果发送给网络管理系统进行处理。
所述路测的测量配置中包含新增的测量事件;
所述新增的测量事件描述为周围小区信号高于预设阔值, 用于当所述 用户终端测量到的周围小区的信号高于配置的阔值时, 记录无线环境测量。
所述测量事件釆用即时上报方式, 此时,
所述新增的测量事件测量上报的内容包括:
测量触发类型: 用户终端测量到的周围小区信号高于阔值时触发测量; 配置参数: 阔值;
测量内容: 包含以下一种或者几种的任意组合:
位置信息: 测量事件触发发生时的位置信息, 测量记录发生时的位置 信息;
时间戳: 测量事件触发发生时的时间, 测量记录发生时的时间; 小区标志信息: 测量事件触发发生时测量到的周围小区的小区识别信 息;
无线环境测量信息: 测量事件触发发生时测量到的周围小区的信号质 量信息。
所述测量事件釆用日志方式上报, 此时,
所述新增的测量事件测量上 "^的内容还包括:
测量日志窗口, 用于表示日志记录窗口;
测量日志间隔, 用于表示在日志记录窗口下的测量记录间隔; 所述无线环境测量信息还包括: 在测量事件触发发生前后测量日志窗 口内的周围小区的信号质量信息。
在长期演进 LTE系统中,所述小区标志信息为物理小区标志符 PCI和 / 或小区全局标志符 CGI信息;
在通用移动通信系统 UMTS 中, 所述小区表示信息为小区的主扰码
PSC, 和 /或小区标识符 CI、 和 /或跟踪区码 TAC、 和 /或路由区码 RAC、 和
/或公众陆地移动通信网 PLMN信息。
一种实现邻区上报的系统, 该系统至少包括用户终端和网络侧, 其中, 网络侧, 用于向用户终端下发路测的测量配置和上报信息;
用户终端, 用于进行路测, 并在满足上报条件时将包含有终端周围的 邻区信息的路测结果上报给网络侧。
所述网络侧, 还用于根据所述路测结果中的用户终端周围的邻区信息 对邻区进行管理。 所述网络侧包括无线接入网络 RAN侧设备;
在通用移动通信系统 UMTS中, 所述 RAN侧设备为无线网络控制器 RNC; 在长期演进 LTE系统中 , 所述 RAN侧设备为演进基站 eNB。
所述网络侧还包括网络管理系统, 所述 RAN侧设备, 进一步用于将收 集到的路测结果信息发送给网络管理系统进行处理。
从上述本发明提供的技术方案可以看出, 包括网络侧向用户终端下发 路测的测量配置和上报信息; 用户终端进行路测, 并在满足上报触发条件 时将包含有终端周围的邻区信息的路测结果上报给网络侧。 本发明利用路 测中的 MDT测量事件, 实现了用户终端周围邻区信息的发现, 并上 ^艮给网 络侧进行维护, 由于网络侧及时获得了用户终端周围的邻区信息, 保证了 用户终端进行小区切换的有效性, 从而也提高了通信系统网络性能。 附图说明
图 1为现有 MDT在 UMTS中的应用架构示意图;
图 2为本发明实现邻区上报的方法的流程图;
图 3为本发明实现邻区上报的系统的组成结构示意图;
图 4为本发明用户终端连接态下, 即时上报路测结果的实施例的流程 图;
图 5 为本发明用户终端连接态下, 以日志方式上 路测结果的实施例 的流程图;
图 6本发明用户终端空闲态下, 以日志方式上 路测结果的实施例的 流程图。 具体实施方式
图 2为本发明实现邻区上报的方法的流程图, 如图 2所示, 包括以下 步骤: 步骤 200: 网络侧向用户终端下发路测的测量配置和上报信息。
本步骤中, RAN侧根据网络管理系统的需求,通过控制面( CP , control plane ) 向 UE下发路测的测量配置以及上报信息。
测量配置和上报信息中的测量配置包含 MDT测量内容的配置信息,为 新增的 MDT测量事件: 周围小区信号高于阔值。 也就是说, 当 UE测量到 的周围小区的信号高于配置的阔值时, 记录无线环境测量, 比如: CPICH RSCP, CPICH Ec/No, 或者 TDD P-CCPCH RSCP和 ISCP, RSRP和 RSRQ (只对连接模式) 。
新增的 MDT测量事件可以即时上 也可以记录一段时间后以日志方 式进行上报, UE在 IDLE态或者连接态时都可以进行测量记录。如果是 UE 在连接态或者 IDLE态时进行测量记录, 那么, 需要一个测量日志窗口, 其 目的是为了在事件发生的前后在某段时间内可以搜集信息。
新增的 MDT测量事件测量上报的具体内容包含如下:
a) 测量触发类型: UE测量到的周围小区信号高于阔值时触发测量。 b) 配置参数: 阔值。 可以是后台配置值。
C) 如果有测量日志窗口, 用于表示日志记录窗口; 如果有测量日志间 隔, 用于表示在日志记录窗口下的测量记录间隔。
d) 测量内容: 可以包含以下一种或者几种的任意组合:
位置信息: 测量事件触发发生时的位置信息, 测量记录发生时的位置 信息。
时间戳: 测量事件触发发生时的时间, 测量记录发生时的时间。
小区标志信息: 测量事件触发发生时测量到的周围小区的小区识别信 息, 比如在 LTE下可以是小区的物理小区标志符( PCI )或者小区全局标志 符( CGI )信息, 在 UMTS下可以是小区的主扰码( PSC )或者小区标志符 ( CI )等信息。
无线环境测量信息: 测量事件触发发生时测量到的周围小区的信号质 量信息, 和 /或在测量事件触发发生前后一段预设时间内即测量日志窗口内 的周围小区的信号质量信息。
步骤 201 : 用户终端进行路测, 并在满足上报触发条件时将包含有终端 周围的邻区信息的路测结果上报给网络侧。
UE通过控制面信令, 将路测结果上报给 RAN。
本发明方法还包括步骤 202:网络侧根据路测结果中的用户终端周围的 邻区信息对邻区进行管理。 网络侧可以将收集到的路测结果信息发送给网 络管理系统或者基站在本地进行处理。 具体如何处理不属于本发明的保护 范围, 这里不再详述。 本发明强调的是, 利用在路测中新增的 MDT测量事 件, 实现了用户终端周围邻区信息的发现, 并上报给网络侧进行维护, 由 于网络侧及时获得了用户终端周围的邻区信息, 保证了用户终端进行小区 切换的有效性, 从而也提高了通信系统网络性能。
针对本发明方法, 图 3 为本发明实现邻区上报的系统的组成结构示意 图, 如图 3所示, 至少包括用户终端和网络侧, 其中,
网络侧, 用于向用户终端下发路测的测量配置和上报信息。
用户终端, 用于进行路测, 并在满足上报条件时将包含有终端周围的 邻区信息的路测结果上报给网络侧。
网络侧, 还用于根据路测结果中的用户终端周围的邻区信息对邻区进 行管理。
所述网络侧还包括网络管理系统, 所述 RAN设备进一步用于将收集到 的路测结果信息发送给网络管理系统进行处理。
所述网络侧包括 RAN侧设备,在 UMTS中,所述网络侧为无线网络控 制器( RNC ) ; 在 LTE中, 所述网络侧为 eNB。
下面结合实施例对本发明方法进行详细描述。
图 4为本发明用户终端连接态下, 即时上报路测结果的实施例的流程 图, 本实施例中 UE在服务小区 A下处于连接态, 如图 4所示, 包括以下 步骤:
步骤 400: RAN侧根据网络管理系统的需求通过 CP给 UE下发路测的 测量配置以及上报信息即 MDT测量控制命令。 其中, 路测的测量配置包含 MDT测量事件为周围小区信号高于阔值的配置信息, 本实施例中, 测量配 置包含有在后台配置的阔值信息。
步骤 401: 由于 UE当前处于连接态, UE接收到该 MDT测量控制命令 后, 对周围小区的信号进行测量, 比如对同频、 异频、 系统间的一种或多 种小区进行测量(视 UE的能力而定); 当周围一个或者多个小区的信号高 于 MDT测量控制命令中的阔值,比如记录到同频小区 B,和 /或异频小区 C, 和 /或系统间小区 D的信号高于阔值时, UE进行即时的 MDT测量上 ·¾。
本实施例中, MDT测量上报的具体内容包含如下:
测量触发类型: UE测量到的周围小区信号高于阔值时触发测量; 配置参数: 阔值, 由网络管理后台获取的配置值;
测量内容: 可以包含以下一种或者多种:
位置信息: 测量事件触发发生时的位置信息, 测量记录发生时的位置 信息;
时间戳: 测量事件触发发生时的时间, 测量记录发生时的时间; 小区标志信息: 测量事件触发发生时测量到的小区 B和 /或小区 C和 / 或小区 D的识别信息, 比如在 LTE下可以是小区的 PCI信息, 终端也可以 读取小区广播信息块(SIB )信息, 获取小区的 CGI信息; 在 UMTS下可 以是小区的 PSC信息, 终端也可以读取小区广播 SIB信息, 获取小区的 CI 信息, 和 /或跟踪区码(TAC )、 和 /或路由区码(RAC ) 、 和 /或公众陆地移 动通信网 (PLMN )信息;
无线环境测量信息: 测量事件触发发生时测量到的小区 B和 /或小区 C 和 /或小区 D的信号质量信息,和 /或在测量事件触发发生前后一段时间内的 小区 B和 /或小区 C 和 /或小区 D 的信号质量信息。 信号质量信息可以用 RSRP和 RSRQ来表示。
步骤 402: UE通过 CP信令将路测结果上报给 RAN侧设备,然后 RAN 侧设备可以将收集到的路测结果信息发给网络管理系统或者由 RAN侧设备 如基站 /RNC在本地进行处理。
本步骤中, 在 UMTS环境下中, 可以由 RNC将 UE上>¾的测量结果进 行本地分析和处理,假如小区 B当前不是小区 A的邻区,而如果有多个 UE 都对小区 B进行了测量上报, 并且结合 UE上报的测量报告中的位置信息 进行判断, RNC可以将小区 B添加为小区 A的邻区。 在 LTE环境中, 可 以由 eNB将 UE上>¾的测量结果进行本地分析和处理, ^^如小区 B当前不 是小区 A的邻区, 而如果有多个 UE都对小区 B进行了测量上报, 并且结 合 UE上报的测量报告中的位置信息进行判断, eNB可以将小区 B添加为 小区 A的邻区。
上述路测报告的处理也可以在网络管理系统的网元中进行处理。
图 5 为本发明用户终端连接态下, 以日志方式上 路测结果的实施例 的流程图, 本实施例中 UE在服务小区 A下处于连接态, 如图 5所示, 包 括:
步骤 500: RAN侧根据网络管理系统的需求通过 CP给 UE下发路测的 测量配置以及上报信息即 MDT测量控制命令。 其中, 路测的测量配置包含 MDT测量事件为周围小区信号高于阔值的配置信息, 本实施例中, 测量配 置包含有在后台配置的阔值信息。
步骤 501 : 由于 UE当前处于连接态, UE接收到该 MDT测量控制命令 后, 对周围小区的信号进行测量, 比如对同频、 异频、 系统间的一种或多 种小区进行测量(视 UE的能力而定); 当周围一个或者多个小区的信号高 于 MDT测量控制命令中的阔值,比如记录到同频小区 B,和 /或异频小区 C, 和 /或系统间小区 D的信号高于阔值时, UE进行一段时间的 MDT测量记录 后进行上报。 本实施例中, MDT测量上报的具体内容包含如下:
测量触发类型: UE测量到的周围小区信号高于阔值时触发测量; 配置参数: 阔值, 由网络管理后台获取的配置值;
测量日志窗口, 用于表示日志记录窗口, 比如 1小时为一个记录窗口; 测量日志间隔, 用于表示在日志记录窗口下的测量记录间隔, 比如 10 分钟;
测量内容: 可以包含以下一种或者多种:
位置信息: 测量事件触发发生时的位置信息, 测量记录发生时的位置 信息;
时间戳: 测量事件触发发生时的时间, 测量记录发生时的时间; 小区标志信息: 测量事件触发发生时测量到的小区 B和 /或小区 C和 / 或小区 D的识别信息, 比如在 LTE下可以是小区的 PCI信息, 进一步地, 终端也可以读取小区广播 SIB信息, 获取小区的 CGI信息; 在 UMTS下可 以是小区的 PSC信息, 进一步地, 终端也可以读取小区广播 SIB信息, 获 取小区的 CI信息 , 和 /或 TAC、 和 /或 RAC、 和 /或 PLMN信息;
无线环境测量信息: 测量事件触发发生时测量到的小区 B和 /或小区 C 和 /或小区 D的信号质量信息,和 /或在测量事件触发发生前后一段时间内的 小区 B和 /或小区 C 和 /或小区 D 的信号质量信息。 信号质量信息可以用 RSRP和 RSRQ来表示。
步骤 502: UE通过 CP信令将路测结果上报给 RAN侧设备,然后 RAN 侧设备可以将收集到的路测结果信息发给网络管理系统或者由 RAN侧设备 如基站 /RNC在本地进行处理。
本步骤中, 在 UMTS环境中, 可以由 RNC将 UE上报的测量结果进行 本地分析和处理, 假如小区 B当前不是小区 A的邻区, 而如果有多个 UE 都对小区 B进行了测量上报, 并且结合 UE上报的测量报告中的位置信息 进行判断, RNC可以将小区 B添加为小区 A的邻区。 在 LTE环境中, 可 以由 eNB将 UE上>¾的测量结果进行本地分析和处理, ^^如小区 B当前不 是小区 A的邻区, 而如果有多个 UE都对小区 B进行了测量上报, 并且结 合 UE上报的测量报告中的位置信息进行判断, eNB可以将小区 B添加为 小区 A的邻区。
上述路测报告的处理也可以在网络管理系统的网元中进行处理。
图 6本发明用户终端空闲态下, 以日志方式上 路测结果的实施例的 流程图,本实施例中 UE在服务小区 A下处于 IDLE态,如图 6所示,包括: 步骤 600: RAN侧根据网络管理系统的需求通过 CP给 UE下发路测的 测量配置以及上报信息即 MDT测量控制命令。 其中, 路测的测量配置包含 MDT测量事件为周围小区信号高于阔值的配置信息, 本实施例中, 测量配 置包含有在后台配置的阔值信息。
步骤 601 : UE接收到该 MDT测量控制命令后, 对周围小区的信号进 行测量, 比如对同频、 异频、 系统间的一种或多种小区进行测量(视 UE 的能力而定); 当周围一个或者多个小区的信号高于 MDT测量控制命令中 的阔值, 比如记录到同频小区 B, 和 /或异频小区 C, 和 /或系统间小区 D的 信号高于阔值时, UE进行一段时间的 MDT测量记录后进行上报。
本实施例中, MDT测量上报的具体内容包含如下:
测量触发类型: UE测量到的周围小区信号高于阔值时触发测量; 配置参数: 阔值, 由网络管理后台获取的配置值;
测量日志窗口, 用于表示日志记录窗口, 比如 1小时为一个记录窗口; 测量日志间隔, 用于表示在日志记录窗口下的测量记录间隔, 比如 10 分钟;
测量内容: 可以包含以下一种或者多种:
位置信息: 测量事件触发发生时的位置信息, 测量记录发生时的位置 信息;
时间戳: 测量事件触发发生时的时间, 测量记录发生时的时间; 小区标志信息: 测量事件触发发生时测量到的小区 B和 /或小区 C和 / 或小区 D的识别信息, 比如在 LTE下可以是小区的 PCI信息, 进一步地, 终端也可以读取小区广播 SIB信息, 获取小区的 CGI信息; 在 UMTS下可 以是小区的 PSC信息, 进一步地, 终端也可以读取小区广播 SIB信息, 获 取小区的 CI信息 , 和 /或 TAC、 和 /或 RAC、 和 /或 PLMN信息;
无线环境测量信息: 测量事件触发发生时测量到的小区 B和 /或小区 C 和 /或小区 D的信号质量信息,和 /或在测量事件触发发生前后一段时间内的 小区 B和 /或小区 C 和 /或小区 D 的信号质量信息。 信号质量信息可以用 RSRP和 RSRQ来表示。
步骤 602: UE通过 CP信令将路测结果上报给 RAN侧设备,然后 RAN 侧设备可以将收集到的路测结果信息发给网络管理系统或者由 RAN侧设备 如基站 /RNC在本地进行处理。
本步骤中, 在 UMTS环境中, 可以由 RNC将 UE上报的测量结果进行 本地分析和处理, 假如小区 B当前不是小区 A的邻区, 而如果有多个 UE 都对小区 B进行了测量上报, 并且结合 UE上报的测量报告中的位置信息 进行判断, RNC可以将小区 B添加为小区 A的邻区。 在 LTE环境中, 可 以由 eNB将 UE上>¾的测量结果进行本地分析和处理, ^^如小区 B当前不 是小区 A的邻区, 而如果有多个 UE都对小区 B进行了测量上报, 并且结 合 UE上报的测量报告中的位置信息进行判断, eNB可以将小区 B添加为 小区 A的邻区。
上述路测报告的处理也可以在网络管理系统的网元中进行处理。
以上所述, 仅为本发明的较佳实施例而已, 并非用于限定本发明的保 护范围, 凡在本发明的精神和原则之内所作的任何修改、 等同替换和改进 等, 均应包含在本发明的保护范围之内。

Claims

权利要求书
1、 一种实现邻区上报的方法, 其特征在于, 该方法包括:
网络侧向用户终端下发路测的测量配置和上报信息;
用户终端进行路测, 并在满足上报触发条件时将包含有终端周围的邻 区信息的路测结果上报给网络侧。
2、 根据权利要求 1所述的方法, 其特征在于, 该方法还包括: 所述网 络侧根据路测结果中的用户终端周围的邻区信息对邻区进行管理。
3、根据权利要求 2所述的方法, 其特征在于, 所述对邻区进行管理为: 所述网络侧在本地对收集到的路测结果进行处理; 或者,
所述网络侧将收集到的路测结果发送给网络管理系统进行处理。
4、 根据权利要求 1或 2或 3所述的方法, 其特征在于, 所述路测的测 量配置中包含新增的测量事件;
所述新增的测量事件描述为周围小区信号高于预设阔值, 用于当所述 用户终端测量到的周围小区的信号高于配置的阔值时, 记录无线环境测量。
5、 根据权利要求 4所述的方法, 其特征在于, 所述测量事件釆用即时 上>¾方式, 此时,
所述新增的测量事件测量上报的内容包括:
测量触发类型: 用户终端测量到的周围小区信号高于阔值时触发测量; 配置参数: 阔值;
测量内容: 包含以下一种或者几种的任意组合:
位置信息: 测量事件触发发生时的位置信息, 测量记录发生时的位置 信息;
时间戳: 测量事件触发发生时的时间, 测量记录发生时的时间; 小区标志信息: 测量事件触发发生时测量到的周围小区的小区识别信 息; 无线环境测量信息: 测量事件触发发生时测量到的周围小区的信号质 量信息。
6、 根据权利要求 5所述的方法, 其特征在于, 所述测量事件釆用日志 方式上 此时,
所述新增的测量事件测量上 "^的内容还包括:
测量日志窗口, 用于表示日志记录窗口;
测量日志间隔, 用于表示在日志记录窗口下的测量记录间隔; 所述无线环境测量信息还包括: 在测量事件触发发生前后测量日志窗 口内的周围小区的信号质量信息。
7、根据权利要求 6所述的方法,其特征在于,在长期演进 LTE系统中, 所述小区标志信息为物理小区标志符 PCI和 /或小区全局标志符 CGI信息; 在通用移动通信系统 UMTS 中, 所述小区表示信息为小区的主扰码 PSC, 和 /或小区标识符 CI、 和 /或跟踪区码 TAC、 和 /或路由区码 RAC、 和 /或公众陆地移动通信网 PLMN信息。
8、 一种实现邻区上报的系统, 其特征在于, 该系统至少包括用户终端 和网络侧, 其中,
网络侧, 用于向用户终端下发路测的测量配置和上报信息;
用户终端, 用于进行路测, 并在满足上报条件时将包含有终端周围的 邻区信息的路测结果上报给网络侧。
9、 根据权利要求 8所述的系统, 其特征在于, 所述网络侧, 还用于根 据所述路测结果中的用户终端周围的邻区信息对邻区进行管理。
10、 根据权利要求 9所述的系统, 其特征在于, 所述网络侧包括无线 接入网络 RAN侧设备;
在通用移动通信系统 UMTS中, 所述 RAN侧设备为无线网络控制器 RNC; 在长期演进 LTE系统中 , 所述 RAN侧设备为演进基站 eNB。
11、 根据权利要求 10所述的系统, 其特征在于, 所述网络侧还包括网 络管理系统, 所述 RAN侧设备, 进一步用于将收集到的路测结果信息发送 给网络管理系统进行处理。
PCT/CN2011/071809 2010-03-29 2011-03-15 一种实现邻区信息上报的方法及系统 WO2011120379A1 (zh)

Priority Applications (4)

Application Number Priority Date Filing Date Title
US13/583,059 US8831586B2 (en) 2010-03-29 2011-03-15 Method and system for reporting neighbor cell information
BR112012022058-6A BR112012022058B1 (pt) 2010-03-29 2011-03-15 Método para a implementação de reportamento de células vizinhas e sistema para a implementação de reportamento de células vizinhas
EP11761953.6A EP2536197A4 (en) 2010-03-29 2011-03-15 METHOD AND SYSTEM FOR REPORTING INFORMATION FROM NEIGHBORING CELLS
JP2012557386A JP5648071B2 (ja) 2010-03-29 2011-03-15 隣接セル情報の報告を実現する方法及びシステム

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201010140595.2A CN102209343B (zh) 2010-03-29 2010-03-29 一种实现邻区上报的方法及系统
CN201010140595.2 2010-03-29

Publications (1)

Publication Number Publication Date
WO2011120379A1 true WO2011120379A1 (zh) 2011-10-06

Family

ID=44697963

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2011/071809 WO2011120379A1 (zh) 2010-03-29 2011-03-15 一种实现邻区信息上报的方法及系统

Country Status (6)

Country Link
US (1) US8831586B2 (zh)
EP (1) EP2536197A4 (zh)
JP (1) JP5648071B2 (zh)
CN (1) CN102209343B (zh)
BR (1) BR112012022058B1 (zh)
WO (1) WO2011120379A1 (zh)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013219499A (ja) * 2012-04-06 2013-10-24 Ntt Docomo Inc 通信システム、移動端末装置、ローカルエリア基地局装置及び通信方法
JP2017099023A (ja) * 2017-02-09 2017-06-01 株式会社Nttドコモ 通信システム、移動端末装置、ローカルエリア基地局装置及び通信方法
CN107222887A (zh) * 2017-06-19 2017-09-29 京信通信系统(中国)有限公司 基站无线侧传输路径的通信性能测试方法及装置

Families Citing this family (29)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103167503B (zh) * 2011-12-14 2016-09-07 中国电信股份有限公司 网络信号参数获取方法及终端
CN103200579B (zh) * 2012-01-04 2016-08-10 中国移动通信集团公司 一种测量上报方法、装置及系统
CN103200603B (zh) * 2012-01-06 2018-07-10 北京三星通信技术研究有限公司 在多个plmn下进行mdt连续测量和汇报的方法
CN102595482A (zh) * 2012-02-16 2012-07-18 中兴通讯股份有限公司 用户设备接入信息获取方法及装置
CN102630090A (zh) * 2012-03-22 2012-08-08 中兴通讯股份有限公司 小区随机接入信道配置参数优化方法及系统
GB2503247A (en) * 2012-06-20 2013-12-25 Renesas Mobile Corp User equipment only reports measurements relevant to maintaining a network connection when experiencing unfavourable signal conditions
EP2896237B1 (en) * 2012-09-17 2017-08-09 HMD global Oy Measurement configuration and reporting with diverse traffic
WO2014094309A1 (zh) * 2012-12-21 2014-06-26 华为技术有限公司 最小化路测测量方法、用户设备和网络设备
JP5726932B2 (ja) * 2013-02-25 2015-06-03 アンリツ株式会社 LTE−Advanced方式の試験用信号発生装置および発生方法
US9801085B2 (en) 2013-05-07 2017-10-24 Telefonaktiebolaget Lm Ericsson (Publ) Radio traffic detector, network node and methods for assisting handover
EP3025540A4 (en) 2013-07-26 2017-03-15 Intel IP Corporation Signaling interference information for user equipment assistance
CN104581797B (zh) * 2013-10-29 2019-11-22 南京中兴软件有限责任公司 最小化路测方法及装置
CN104853432A (zh) * 2014-02-18 2015-08-19 电信科学技术研究院 Wlan接入点的位置确定方法及用户设备、网络侧设备
US9426715B1 (en) 2014-03-07 2016-08-23 Sprint Spectrum L.P. Neighbor access node determination
WO2015143445A1 (en) * 2014-03-21 2015-09-24 Futurewei Technologies, Inc. Device, network, and method for network adaptation and discovery
KR102205805B1 (ko) * 2014-04-30 2021-01-21 삼성전자주식회사 이동 통신 시스템에서 네트워크 최적화 프로세스 자동 수행 장치 및 방법
JPWO2015174060A1 (ja) 2014-05-16 2017-04-20 日本電気株式会社 異種ネットワーク用基地局、移動通信デバイス及び通信方法
CN106851664A (zh) * 2015-12-03 2017-06-13 中国联合网络通信集团有限公司 确定跟踪区边界的方法及装置
KR20200028882A (ko) * 2017-07-20 2020-03-17 광동 오포 모바일 텔레커뮤니케이션즈 코포레이션 리미티드 구성 측정 방법 및 관련 제품
EP3614718B1 (en) * 2017-08-11 2022-08-10 Guangdong Oppo Mobile Telecommunications Corp., Ltd. Measurement reporting control methods and related devices
CN109451823B (zh) * 2017-12-22 2023-06-13 北京小米移动软件有限公司 路测信息上报方法及装置、网络性能检测方法及装置
JP6694035B2 (ja) 2018-10-05 2020-05-13 Hapsモバイル株式会社 通信装置、通信方法及び通信プログラム
CN111586712B (zh) * 2019-02-15 2022-06-07 中国移动通信有限公司研究院 最小化路测信息的上报、配置方法、终端及网络设备
CN110474985A (zh) * 2019-08-20 2019-11-19 郑州轻工业学院 一种用于人工智能的基础数据传输方法及系统
US20230057408A1 (en) * 2020-01-17 2023-02-23 Telefonaktiebolaget Lm Ericsson (Publ) Early measurement configuration and minimization of drive test measurement report
CN113259978B (zh) * 2020-02-11 2023-06-23 大唐移动通信设备有限公司 一种进行mdt测量方法和用户终端及网络侧设备
CN116648944A (zh) * 2021-03-04 2023-08-25 中兴通讯股份有限公司 配置用于的最小化路测的用户设备的方法、设备和系统
WO2023059244A1 (en) * 2021-10-06 2023-04-13 Telefonaktiebolaget Lm Ericsson (Publ) User equipment, network node and methods in a wireless communications network
CN114885389A (zh) * 2022-07-11 2022-08-09 深圳国人无线通信有限公司 一种基于mdt功能执行切换策略的方法、系统和5g基站

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1434595A (zh) * 2002-01-24 2003-08-06 华为技术有限公司 一种cdma系统中自动维护邻区列表的方法
CN101888652A (zh) * 2009-05-14 2010-11-17 北京鼎合远传技术有限公司 一种td-scdma系统中邻区列表优化的方法

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6603966B1 (en) * 1997-12-23 2003-08-05 At&T Wireless Services, Inc. Method and system for optimizing performance of a mobile communication system
US6751457B1 (en) * 2000-06-28 2004-06-15 Bellsouth Intellectual Property Corporation Real time call monitoring system and method
JP4916920B2 (ja) 2007-03-06 2012-04-18 三菱電機株式会社 移動体通信システム、隣接セルリスト管理方法および基地局
EP2725846B1 (en) 2007-06-21 2017-08-23 InterDigital Technology Corporation Measurement reporting for E-UTRAN
JP5217688B2 (ja) * 2008-06-30 2013-06-19 富士通セミコンダクター株式会社 無線端末装置、半導体装置及び通信システム
US8885577B2 (en) * 2009-06-23 2014-11-11 Motorola Mobility Llc Method of assigning and managing gaps for reading system information of neighboring cells

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1434595A (zh) * 2002-01-24 2003-08-06 华为技术有限公司 一种cdma系统中自动维护邻区列表的方法
CN101888652A (zh) * 2009-05-14 2010-11-17 北京鼎合远传技术有限公司 一种td-scdma系统中邻区列表优化的方法

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
ERICSSON: "Logged MDT measurement reporting", 3GPP TSG-RAN WG2 MEETING #69, TDOC R2-101425, 26 February 2010 (2010-02-26), XP050421822 *

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013219499A (ja) * 2012-04-06 2013-10-24 Ntt Docomo Inc 通信システム、移動端末装置、ローカルエリア基地局装置及び通信方法
US9918272B2 (en) 2012-04-06 2018-03-13 Ntt Docomo, Inc. Communication system, mobile terminal apparatus, local area base station apparatus and communication method
JP2017099023A (ja) * 2017-02-09 2017-06-01 株式会社Nttドコモ 通信システム、移動端末装置、ローカルエリア基地局装置及び通信方法
CN107222887A (zh) * 2017-06-19 2017-09-29 京信通信系统(中国)有限公司 基站无线侧传输路径的通信性能测试方法及装置

Also Published As

Publication number Publication date
JP2013522987A (ja) 2013-06-13
CN102209343A (zh) 2011-10-05
CN102209343B (zh) 2016-01-20
BR112012022058A2 (pt) 2020-07-07
EP2536197A4 (en) 2014-03-05
EP2536197A1 (en) 2012-12-19
US20130012188A1 (en) 2013-01-10
US8831586B2 (en) 2014-09-09
BR112012022058B1 (pt) 2021-12-07
JP5648071B2 (ja) 2015-01-07

Similar Documents

Publication Publication Date Title
JP5648071B2 (ja) 隣接セル情報の報告を実現する方法及びシステム
JP6730686B2 (ja) 無線端末、無線ネットワーク、及び通信方法
JP5922133B2 (ja) 3gppシステムで測定情報を制御する方法及び装置
JP5390637B2 (ja) 無線通信システムにおける集約測定を報告する方法
US10034189B2 (en) Method and system for controlling radio parameter, network operation management apparatus, and radio station
US9451477B2 (en) Method and system for implementing drive test
CN103988540B (zh) 用于提出记录信息和获取位置信息以使得mdt技术在移动通信系统中被有效地利用的方法和设备
US9565600B2 (en) Radio communication system, radio terminal, radio station, evolved packet core, and information gathering method
US9801086B2 (en) Radio communication system, radio terminal, radio station, network apparatus, and information collecting method
US20110098042A1 (en) Apparatus and Method for Deriving Idle Mode Parameters for Cell Selection/Reselection
CN103477670A (zh) 测量收集方法、基站及无线终端
Baumann Minimization of drive tests (MDT) in mobile communication networks
WO2013020413A1 (zh) 一种检查记录最小化路测配置的终端及方法
CN102740277B (zh) 一种切换时终端测量上报的控制方法及系统
JP2012070271A (ja) 端末選択方法、ネットワーク装置、及び無線端末

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 11761953

Country of ref document: EP

Kind code of ref document: A1

WWE Wipo information: entry into national phase

Ref document number: 13583059

Country of ref document: US

WWE Wipo information: entry into national phase

Ref document number: 2012557386

Country of ref document: JP

WWE Wipo information: entry into national phase

Ref document number: 2011761953

Country of ref document: EP

NENP Non-entry into the national phase

Ref country code: DE

REG Reference to national code

Ref country code: BR

Ref legal event code: B01A

Ref document number: 112012022058

Country of ref document: BR

REG Reference to national code

Ref country code: BR

Ref legal event code: B01E

Ref document number: 112012022058

Country of ref document: BR

Free format text: APRESENTE A TRADUCAO SIMPLES DA FOLHA DE ROSTO DA CERTIDAO DE DEPOSITO DA PRIORIDADE CN 201010140595.2; OU DECLARACAO DE QUE OS DADOS DO PEDIDO INTERNACIONAL ESTAO FIELMENTE CONTIDOS NA PRIORIDADE REIVINDICADA, CONTENDO TODOS OS DADOS IDENTIFICADORES DESTA (TITULARES,NUMERO DE REGISTRO, DATA E TITULO), CONFORME O PARAGRAFO UNICO DO ART. 25 DA RESOLUCAO T7/2013 E ART. 2O DA RESOLUCAO 179/2017. CABE SALIENTAR QUE NAO FOI POSSIVEL IDENTIFICAR O TITULAR DO PEDIDO PRIORITARIO NOS DOCUMENTOS JUNTADOS AO PROCESSO, TAMPOUCO NOS APRESENTADOS NA OMPI. TAL INFORMACAO E NECESSARIA PARA O EXAME DA CESSAO DO DOCUMENTO DE PRIORIDADE.

ENP Entry into the national phase

Ref document number: 112012022058

Country of ref document: BR

Kind code of ref document: A2

Effective date: 20120831