WO2017000477A1 - 管理邻区配置信息的方法和装置 - Google Patents
管理邻区配置信息的方法和装置 Download PDFInfo
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- WO2017000477A1 WO2017000477A1 PCT/CN2015/094699 CN2015094699W WO2017000477A1 WO 2017000477 A1 WO2017000477 A1 WO 2017000477A1 CN 2015094699 W CN2015094699 W CN 2015094699W WO 2017000477 A1 WO2017000477 A1 WO 2017000477A1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W8/00—Network data management
- H04W8/02—Processing of mobility data, e.g. registration information at HLR [Home Location Register] or VLR [Visitor Location Register]; Transfer of mobility data, e.g. between HLR, VLR or external networks
- H04W8/08—Mobility data transfer
- H04W8/10—Mobility data transfer between location register and external networks
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W24/00—Supervisory, monitoring or testing arrangements
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Definitions
- This document relates to, but is not limited to, the field of communications, and in particular, to a method and apparatus for managing neighbor configuration information.
- LTE Long Term Evolution
- 2G, 3G other heterogeneous systems
- the overhead parameter configuration of the neighboring area of the CDMA 1xRTT Code Division Multiple Access - 1x Wireless Transmission technology
- one LTE cell may have 32 different system neighboring cells, and one base station has dozens of LTE cells. In commercial use, there are dozens or hundreds of LTE base stations in the whole network. Therefore, regardless of the self-updating of the neighboring zone configuration parameters, the manual configuration (even with the network management import method) is still very large.
- ANR Automatic Neighbour Relation
- SON Self-Organizing Network
- the method and device for managing the configuration information of the neighboring cell provided by the embodiment of the present invention, the technical problem to be solved is how to implement self-configuration and self-synchronization of parameters of the LTE neighboring cell and the corresponding different system cell.
- a method for managing neighboring zone configuration information including:
- the configuration information of the adjacent system neighboring area is saved.
- the obtaining the configuration information of the neighboring area of the different system from the different system access network includes:
- the application information for sending the access network information management RIM includes: when detecting that the neighboring system of the different system has any of the following conditions, sending the application information of the access network information management RIM, including:
- the information of the neighboring area of the different system includes at least one of a different system type, an operation type, a target cell identifier, and a configuration information type corresponding to the newly added neighboring area;
- the information of the different system neighboring cell includes at least one of a different system type, an operation type, a target cell identifier, and a configuration information type corresponding to the deleted neighboring cell;
- the information of the different system neighboring area includes at least one of target cell identification information, a different system type, and a configuration information type of the unknown neighboring area.
- the saving the configuration information of the neighboring area of the different system includes:
- the configuration information of the adjacent system neighboring area is saved by using the neighboring area identifier as an index.
- the configuration information type includes: code division multiple access - single carrier radio transmission technology CDMA 1xRTT configuration type, universal mobile communication radio access network UTRAN configuration type, global mobile communication system GSM configuration type or evolved high speed packet network eHPRD configuration type .
- An apparatus for managing neighboring area configuration information comprising:
- Obtaining a module configured to obtain configuration information of a neighboring system of the different system from the different system access network;
- the saving module is configured to save configuration information of the adjacent system neighboring area.
- the obtaining module includes:
- a sending unit configured to send the application information of the access network information management RIM, where the application information includes information about the neighboring area of the different system;
- a receiving unit configured to receive response information of the RIM from the different system access network, where the response information includes configuration information of the neighboring system of the different system.
- the sending unit is configured to implement the application information of the sending access network information management RIM by sending the application information of the access network information management RIM when detecting that the neighboring system of the different system has any of the following conditions, include:
- the information of the neighboring area of the different system includes at least one of a different system type, an operation type, a target cell identifier, and a configuration information type corresponding to the newly added neighboring area;
- the information of the different system neighboring cell includes at least one of a different system type, an operation type, a target cell identifier, and a configuration information type corresponding to the deleted neighboring cell;
- the information of the different system neighboring area includes at least one of target cell identification information, a different system type, and a configuration information type of the unknown neighboring area.
- the save module includes:
- a determining unit configured to determine a neighboring cell identifier of the neighboring cell of the different system according to an identifier of the target cell carried in the response information of the RIM;
- the saving unit is configured to store the configuration information of the adjacent system neighboring area by using the neighboring area identifier as an index.
- the configuration information type includes: a CDMA 1xRTT configuration type, a universal mobile communication radio access network UTRAN configuration type, a global mobile communication system GSM configuration type, or an evolved high speed packet network eHPRD configuration type.
- the embodiment of the invention further provides a computer storage medium, wherein the computer storage medium stores computer executable instructions, and the computer executable instructions are used to execute the above method.
- the embodiment of the present invention provides the configuration information of the neighboring area of the different system by obtaining the configuration information of the neighboring area of the different system from the different system access network, and implements self-configuration and self-synchronization of the parameters of the LTE neighboring cell and the corresponding different system cell. Overcome the cumbersome management of configuration information in related technologies.
- FIG. 1 is a flowchart of a method for managing neighboring area configuration information according to an embodiment of the present invention
- FIG. 2 is a schematic diagram of signal connections between modules in an embodiment of the present invention.
- Embodiment 3 is a flowchart of a method for managing neighbor configuration information provided by Embodiment 1 of the present invention.
- Embodiment 4 is a flowchart of a method for managing neighboring area configuration information provided by Embodiment 2 of the present invention.
- Embodiment 5 is a flowchart of a method for managing neighboring area configuration information provided by Embodiment 3 according to an embodiment of the present invention
- FIG. 6 is a flowchart of a method for managing neighboring area configuration information provided by the fourth embodiment of the present invention.
- FIG. 7 is a flowchart of a method for managing neighboring area configuration information provided by Embodiment 5 of the present invention.
- Embodiment 8 is a flowchart of a method for managing neighboring area configuration information provided by Embodiment 6 of the present invention.
- Embodiment 9 is a flowchart of a method for managing neighboring area configuration information provided by Embodiment 7 of the present invention.
- Embodiment 10 is a flowchart of a method for managing neighboring area configuration information provided by Embodiment 8 of the present invention.
- FIG. 11 is a structural diagram of an apparatus for managing neighboring area configuration information according to an embodiment of the present invention.
- FIG. 12 is a structural diagram of an acquisition module 1201 in the apparatus shown in FIG. 11;
- FIG. 13 is a structural diagram of a save module 1202 in the apparatus shown in FIG.
- FIG. 1 is a flowchart of a method for managing neighboring area configuration information according to an embodiment of the present invention.
- the method shown in Figure 1 includes:
- Step 101 Obtain configuration information of a neighboring system of a different system from a different system access network.
- Step 102 Save configuration information of the neighboring system of the different system.
- the method provided by the embodiment of the present invention obtains the configuration information of the neighboring area of the different system by obtaining the configuration information of the neighboring area of the different system from the different system access network, and implements self-configuration and self-configuration of the parameters of the LTE neighboring cell and the corresponding different system cell. Synchronization overcomes the cumbersome management of configuration information in related art.
- the obtaining the configuration information of the neighboring area of the different system from the different system access network includes:
- RIM Radio Information Management
- GERAN GSM EDGE Radio Access Network
- GSM/EDGE radio access network GSM/EDGE radio access network
- UTRAN UMTS Terrestrial Radio Access Network
- E-UTRAN Evolved UTRAN
- CDMA Code Division Multiple Access 2000
- eHRPD Evolved High Rate Packet Data (accessible high-speed packet network) access network
- RIM technology is transparent in the core network, and initiates message application and response on the access network. In the relevant agreements, RIM mainly only delivers the following contents: broadcast messages, energy-saving instructions, loads, and so on.
- the configuration information of the neighboring area of the different system is obtained by using the interaction message of the RIM in the related art, which is simple to implement, and does not need to modify the related protocol, and has strong versatility.
- a set of interactive messages may also be newly defined to transmit configuration information of different system neighboring cells.
- the base station actively obtains configuration information from the different system access network.
- the configuration information of the neighboring area may be sent to the base station by the different system access network.
- the implementation of the former is less than the implementation of the latter, the data transmitted is less, the bandwidth is less occupied, and the processing efficiency is higher.
- the application information of the sending access network information management RIM includes:
- the access network information management RIM application information is sent, where the situation includes:
- the acquiring operation is triggered, and the number of interactions between the base station and the different system access network can be effectively controlled, thereby controlling the number of data transmission.
- the trigger condition for requesting configuration information may also be periodic.
- the change status of the addition and deletion of the adjacent system of the different system includes at least one of the following:
- the information of the neighboring area of the different system includes at least one of a different system type, an operation type, a target cell identifier, and a configuration information type corresponding to the newly added neighboring area;
- the information of the different system neighboring cell includes at least one of a different system type, an operation type, a target cell identifier, and a configuration information type corresponding to the deleted neighboring cell;
- the information of the different system neighboring area includes at least one of target cell identification information, a different system type, and a configuration information type of the unknown neighboring area.
- configuration information type can be determined directly or indirectly by the different system type.
- the configuration information of the neighboring system of the different system is saved by using the identifier of the neighboring area as an index.
- the configuration information type includes a CDMA 1xRTT configuration type, a UTRAN configuration type, a GSM configuration type, or an eHPRD configuration type.
- the embodiment of the invention further provides a computer storage medium, wherein the computer storage medium stores computer executable instructions, and the computer executable instructions are used to execute the above method.
- FIG. 2 is a schematic diagram of signal connections between modules in an embodiment of the present invention.
- the method provided by the embodiment of the present invention is implemented by the following modules in the base station, including: a neighboring area change determining module 21, an unknown neighboring area determining module 22, a neighboring area configuration requesting module 23, a neighboring area configuration analyzing module 24, and neighboring area information.
- Storage module 25 wherein:
- the neighbor change determination module 21 is set to:
- the neighboring cell configuration application module 23 is notified to initiate a RIM request application.
- the application content will include the different system type, operation type (application), target cell identifier and configuration information type corresponding to the new neighboring area. (It can be considered that each system has a configuration type, such as CDMA 1xRTT configuration type, UTRAN configuration type, GSM. Configuration type, eHPRD configuration, etc.)
- the neighboring area configuration application module 23 is notified to initiate the RIM termination application.
- the application content will include the different system types and operation types corresponding to the newly added neighboring areas. Please), target cell identification and configuration information type (it may be considered that each different system has a configuration type, such as CDMA 1xRTT configuration type, UTRAN configuration type, GSM configuration type, CDMA eHPRD configuration, etc.).
- the unknown neighbor determination module 22 is set to:
- the neighboring area configuration application module 23 is notified to initiate the RIM request application, and the application content includes the newly discovered target cell identification information and corresponding differences.
- the system type for example, GSM
- the neighbor configuration information type for example, the GSM configuration type
- the neighboring area configuration application module 23 is set to:
- the unknown neighboring cell judging module 22 decides one or more target cell information provided, and initiates a RIM application process.
- the application content includes different system types, a given target cell (one-to-one correspondence with neighboring cell identifiers), and a pre-agreed neighboring zone configuration information type.
- the termination message is sent to the target cell of the decision.
- the module may map the neighbor identifier to the target cell identifier.
- the module may map the neighbor identifier of the base station to The cell identifier of the target different system cell.
- the neighboring area configuration parsing module 24 is set to:
- the related content is delivered to the neighbor information storage module 25.
- This module can map the target cell identity to the neighbor cell identity.
- the module may map the cell identifier of the target different system cell to the neighboring cell identifier of the base station.
- the module returns the RIM analysis result to the “neighbor change determination module 21” or the “unknown neighbor determination module 22”, it is convenient to know the subsequent processing manner.
- the neighbor information storage module 25 is configured to:
- Each neighboring area configuration information obtained from the RIM may be stored by indexing the neighboring area identifier or the like.
- the LTE base station finds a new CDMA type neighbor (NCell1), and the corresponding CDMA 1xRTT cell identifies CDMARFCell1.
- the cost parameter is a mandatory parameter that supports LTE to 1xRTT interoperation.
- the overhead parameter is a name of a group of parameters, including nearly 40 parameter contents.
- An LTE cell can have 32 1xRTT CDMA neighbors. Therefore, at least 32*40 CDMA 1xRTT cell-specific parameters need to be configured in the LTE base station. The amount of configuration and the amount of updates can be imagined. (This description applies to implementation examples 1 to 3)
- FIG. 3 is a flowchart of a method for managing neighbor configuration information provided by the first embodiment of the present invention.
- the method shown in Figure 3 includes:
- Step 400 The neighboring cell change judging module 21 finds that the CDMA1xRTT neighboring cell (NCell1) is newly added, and notifies the neighboring cell configuration requesting module 23 to apply for the request: the CDMA1 xRTT system type, the neighboring cell identifier is NCell1, and the configuration parameter is applied.
- a parameter of type (CDMA1xRTT type, including overhead parameters in this type).
- Step 410 The neighboring cell configuration application module 23 receives the notification, and after mapping the neighboring cell identifier to NCell1 as the target cell identifier CDMARFCell1, carries the relevant parameters (system type, target cell identifier, and application configuration parameter type) to initiate the CDMA system.
- the BSS sends a RIM request message.
- Step 415 The CDMA 1xRTT BSS (Base Station Subsystem) performs a RIM response, and includes information related to the configuration parameter type of the applied cell.
- CDMA 1xRTT BSS Base Station Subsystem
- Step 420 The neighboring cell configuration parsing module 24 receives the RIM response message sent by the peer access network through the core network, and parses the target cell identifier CDMARFCell1 and its corresponding configuration parameter setting corresponding to the application, and the parsed content is analyzed.
- the neighboring area information storage module 25 is sent to the neighboring area information storage module 25, and the neighboring area configuration information acquisition status (for example, success or failure) of the neighboring area identifier is notified.
- Step 430 The neighboring area information storage module 25 stores the neighboring area configuration parameters by using the neighboring area identifier or the like as an index.
- Step 435 The neighboring cell change judging module 21 obtains the conclusion that the neighboring cell obtaining configuration information of the specific neighboring cell identifier given by the neighboring cell configuration parsing module 24 is successful or not. If successful, the neighbor is considered to have been properly configured. If it is not successful, repeat the application. If the repeated application fails, the neighbor is considered unavailable.
- Step 440 When the eNB needs to use CDMA 1xRTT cell configuration information (for example, an overhead parameter), the eNB obtains the neighboring cell identifier NCell1 directly or indirectly from the neighboring cell information storage module 25.
- CDMA 1xRTT cell configuration information for example, an overhead parameter
- FIG. 4 is a flowchart of a method for managing neighbor configuration information provided by Embodiment 2 of the present invention.
- the method shown in Figure 4 includes:
- Step 500 When the neighboring cell change determination module 21 finds that the CDMA1xRTT neighboring cell (NCell2) is deleted, the neighboring cell configuration application module 23 is notified to stop the application: the CDMA1 xRTT system type and the neighboring cell identifier are NCell2.
- Step 510 The neighboring cell configuration application module 23 receives the notification, and after mapping the neighboring cell identifier to NCell2 as the target cell identifier CDMARFCell2, carries the relevant parameters (system type, target cell identifier) to initiate a RIM stop application for the BSS of the CDMA system. Message.
- Step 515 The CDMA 1xRTT BSS (Base Station Subsystem) performs a RIM response.
- BSS Base Station Subsystem
- Step 520 The neighboring cell change judging module 21 notifies the neighboring cell information storage module 25 to delete the NCell2 content.
- Step 530 The neighboring area information storage module 25 deletes the configuration parameter under the neighboring area identifier by using the neighboring area identifier as an index.
- Step 540 When the eNB needs to use the CDMA 1xRTT cell configuration information (mainly the overhead parameter), the eNB obtains the neighboring cell identifier directly or indirectly from the neighboring cell information storage module 25.
- the eNB obtains the neighboring cell identifier directly or indirectly from the neighboring cell information storage module 25.
- FIG. 5 is a flowchart of a method for managing neighboring area configuration information provided by Embodiment 3 of the present invention.
- the method shown in Figure 5 includes:
- Step 600 When the unknown neighboring cell determining module 22 finds that there is an unknown CDMA1xRTT neighboring cell, it will notify the neighboring cell configuration application module 23 and carry the corresponding CDMA1 xRTT system.
- the cell identity is CDMARFCell3 and the application configuration information type (CDMA 1xRTT configuration type).
- Step 610 After receiving the notification, the neighboring cell configuration application module 23 initiates a RIM request message for the CDMA system, carrying the target cell identity (CDMARFCell3) and the application configuration information type (CDMA 1xRTT configuration type).
- CDMARFCell3 target cell identity
- CDMA 1xRTT configuration type application configuration information type
- Step 620 The neighboring area configuration parsing module 24 receives the RIM response message sent by the peer access network through the core network, and the content includes: the configuration parameter content corresponding to the application configuration information type of the CDMA RFCell3, and the module will parse the result ( Success or Failure) Notifies "Unknown Neighborhood Judgment Module 22".
- Step 630 The “unknown neighboring area judging module 22” learns the unknown neighboring area configuration parameter result from the “neighboring area configuration parsing module 24”. If successful, the new neighboring area of the discovery is confirmed as an official neighboring area according to the ANR process, and the identifier is NCell3 (identification generation according to a predetermined rule), and the neighboring area configuration parsing module 24 is notified; if not, no further deal with.
- NCell3 identification generation according to a predetermined rule
- Step 635 After the neighboring area configuration parsing module 24 receives the confirmation result of the unknown neighboring area determining module 22 (that is, whether it has been added as the official neighboring area and the neighboring area identifier NCell3), if the confirmation has been added as the official neighboring area, Then, the module informs the neighboring area information storage module 25" of the parsed configuration information and the neighboring area identifier NCell3, and informs "add".
- Step 640 The neighboring area information storage module 25 stores the neighboring area configuration parameters by using the neighboring area identifier NCell3 or the like as an index.
- Step 650 When the eNB needs to use the CDMA 1xRTT cell configuration information (mainly the overhead parameter), the eNB obtains the neighboring cell identifier directly or indirectly from the neighboring cell information storage module 25.
- the eNB obtains the neighboring cell identifier directly or indirectly from the neighboring cell information storage module 25.
- Implementation Example 4 The cell of the cell identifier CDMARFCell4 is found by the peer BSS, and its configuration parameters are changed and are parameters included in the RIM application configuration information type.
- the LTE base station already has a neighboring cell whose neighboring cell is identified as NCell4.
- FIG. 6 is a flowchart of a method for managing neighbor configuration information provided by the fourth embodiment of the present invention.
- the method shown in Figure 6 includes:
- Step 700 According to the RIM message correlation mechanism, when the other party BSS finds the configuration of the applied cell When the information is changed, the RIM message is sent to the eNB, and the content includes: the target cell identifier CDMARFCell4 corresponds to the configuration parameter content corresponding to the application configuration information type (for example, the overhead parameter).
- the target cell identifier CDMARFCell4 corresponds to the configuration parameter content corresponding to the application configuration information type (for example, the overhead parameter).
- Step 720 The neighboring cell configuration parsing module 24 receives the RIM response message sent by the peer access network through the core network, and finds that it is an update message, and the content includes: the target cell identifier CDMARFCell4 and the corresponding application configuration information type (CDMA 1xRTT type).
- Corresponding configuration parameter content (for example, overhead parameter)
- the parsed content is sent to the "neighbor region information storage module 25", after mapping CDMARFCell4 to NCell4, carrying the content of NCell4 and configuration parameters (for example, overhead parameters), "Update”.
- Step 730 After receiving the update notification of the neighboring cell configuration parsing module 24, the neighboring cell information storage module 25 updates the storage content of the neighboring cell identifier indexed by the NCell4 with the new configuration parameter.
- Step 740 When the eNB needs to use the CDMA 1xRTT cell configuration information (mainly the overhead parameter), the eNB obtains the neighboring cell identifier directly or indirectly from the neighboring cell information storage module 25.
- the above implementation examples are also applicable to different systems such as GSM, UTRAN, and eHRPD.
- the UTRAN neighbor is used as an example
- the configuration parameter type is UTRAN configuration type (for example, the configuration includes: Voip support).
- FIG. 7 is a flowchart of a method for managing neighboring area configuration information provided by the fifth embodiment of the present invention.
- the method shown in Figure 7 includes:
- Step 800 The neighboring cell change judging module 21 finds that the UTRAN neighboring cell (NCell5) is newly added, and notifies the neighboring cell configuration requesting module 23 to request the request: the UTRAN system type, the neighboring cell identifier is NCell5, and the configuration parameter type is applied.
- UTRAN type This type can include the configuration of Voip support).
- Step 810 The neighboring cell configuration application module 23 receives the notification, and after mapping the neighboring cell ID to the target cell identifier UTRANCell 5, carries the relevant parameters (system type, target cell identifier, and application configuration parameter type) to the BSS of the UTRAN system. Issue a RIM request message.
- Step 815 The UTRAN BSS (Base Station Subsystem) performs a RIM response, including the applied cell. Identifies the parameter information related to its configuration parameter type.
- Step 820 The neighboring cell configuration parsing module 24 receives the RIM response message sent by the peer access network through the core network, and parses the target cell identifier UTRANCell 5 and its corresponding configuration parameter setting corresponding to the application. The parsed content The neighboring area information storage module 25 is sent to the neighboring area information storage module 25, and the neighboring area configuration information acquisition status (for example, success or failure) of the neighboring area identifier is notified.
- Step 830 The neighboring area information storage module 25 stores the neighboring area configuration parameters by using the neighboring area identifier NCell5 or the like as an index.
- Step 835 The neighboring cell change judging module 21 obtains the conclusion that the neighboring cell obtaining configuration information of the specific neighboring cell identifier given by the neighboring cell configuration parsing module 24 is successful or not. If successful, the neighbor is considered to have been properly configured. If it is not successful, repeat the application. If the repeated application fails, the neighbor is considered unavailable.
- Step 840 When the eNB needs to use UTRAN cell configuration information (for example, Voip support), the eNB obtains the neighboring cell identifier NCell5 directly or indirectly from the neighboring cell information storage module 25.
- UTRAN cell configuration information for example, Voip support
- FIG. 8 is a flowchart of a method for managing neighbor configuration information provided by Embodiment 6 of the present invention.
- the method shown in Figure 8 includes:
- Step 900 When the neighboring cell change determination module 21 finds that the UTRAN neighboring cell (NCell6) is deleted, the neighboring cell configuration requesting module 23 is notified to stop the application: the UTRAN system type and the neighboring cell identifier are NCell6.
- Step 910 The neighboring area configuration application module 23 receives the notification, and after mapping the neighboring cell identifier to the target cell identifier UTRANCell6, carries the relevant parameters (system type, target cell identifier) to initiate a RIM stop application for the BSS of the UTRAN system. Message.
- Step 915 The UTRAN BSS (Base Station Subsystem) performs a RIM response.
- Step 920 The neighboring cell change judging module 21 notifies the neighboring cell information storage module 25 to delete the NCell6 content.
- Step 930 The neighboring area information storage module 25 deletes the configuration parameter under the neighboring area identifier by using the neighboring area identifier as the NCell6 index.
- Step 940 When the eNB needs to use UTRAN cell configuration information (for example, Voip support), the eNB obtains the neighboring cell identifier directly or indirectly from the neighboring cell information storage module 25.
- UTRAN cell configuration information for example, Voip support
- FIG. 9 is a flowchart of a method for managing neighbor configuration information provided by Embodiment 7 of the present invention.
- the method shown in Figure 9 includes:
- Step 1000 When the unknown neighboring cell judgment module 22 finds that there is an unknown UTRAN neighboring cell, it will notify the neighboring cell configuration requesting module 23, and carry the corresponding UTRAN system, the cell identifier is UTRAN7, and the application configuration information type (UTRAN configuration) Types of).
- Step 1010 After receiving the notification, the Neighbor Configuration Request Module 23 initiates a RIM request message to the UTRAN system, carrying the target cell identifier (UTRANCell7) and the application configuration information type (UTRAN configuration type).
- the target cell identifier (UTRANCell7)
- the application configuration information type (UTRAN configuration type).
- Step 1020 The neighboring area configuration parsing module 24 receives the RIM response message sent by the peer access network through the core network, and the content includes: the configuration parameter content corresponding to the application configuration information type of the UTRANCell7, and the module will parse the result ( Success or Failure) Notifies "Unknown Neighborhood Judgment Module 22".
- Step 1030 The “unknown neighboring area judging module 22” learns the unknown neighboring area configuration parameter result from the “neighboring area configuration parsing module 24”. If successful, the new neighboring area of the discovery is confirmed as an official neighboring area according to the ANR process, and the identifier is NCell7 (identification generation according to a predetermined rule), and the neighboring area configuration parsing module 24 is notified; if not, no further deal with.
- NCell7 identification generation according to a predetermined rule
- Step 1040 After the neighboring cell configuration parsing module 24 receives the confirmation result of the unknown neighboring cell determining module 22 (that is, whether it has been added as the formal neighboring cell and the neighboring cell identifier NCell7), if the confirmation has been added as the formal neighboring cell, Then, the module informs the neighboring area information storage module 25" that the parsed configuration information and the neighboring area identifier NCell7 are "added".
- Step 1040 The neighboring cell information storage module 25 is indexed by the neighboring cell identifier NCell7 or the like. Storage of neighbor configuration parameters.
- Step 1050 When the eNB needs to use UTRAN cell configuration information (for example, Voip support), the eNB obtains the neighboring cell identifier directly or indirectly from the neighboring cell information storage module 25.
- UTRAN cell configuration information for example, Voip support
- FIG. 10 is a flowchart of a method for managing neighbor configuration information provided by the eighth embodiment of the present invention.
- the method shown in Figure 10 includes:
- Step 1100 According to the RIM message correlation mechanism, when the other party's BSS finds that the configuration information of the applied cell is changed, the RIM message is sent to the eNB, and the content includes: the target cell identifier UTRANCell8 corresponds to the configuration parameter content corresponding to the application configuration information type (for example, :Voip support).
- Step 1120 The neighboring cell configuration parsing module 24 receives the RIM response message sent by the peer access network through the core network, and finds that it is an update message, and the content includes: the target cell identifier UTRANCell6 and the corresponding application configuration information type (UTRAN type).
- Corresponding configuration parameter content for example, Voip support
- the parsed content is sent to the "neighbor information storage module 25", after mapping the UTRANCell8 to the NCell8, carrying the contents of the NCell8 and the configuration parameters (for example, Voip support), the notification is " Update".
- Step 1130 After receiving the update notification of the neighboring cell configuration parsing module 24, the neighboring cell information storage module 25 updates the stored content of the neighboring cell identifier indexed by the NCell8 with the new configuration parameter.
- Step 1140 When the eNB needs to use the Voip support cell configuration information (for example, Voip support), the eNB obtains the neighboring cell identifier directly or indirectly from the neighboring cell information storage module 25.
- the Voip support cell configuration information for example, Voip support
- the implementation example provided by the present invention can automatically transmit the predefined neighbor parameter configuration information in the adjacent interval of the LTE and the different system, which not only saves the configuration resources of the base station, but also acquires the information in a timely manner.
- the configuration of the relevant parameters of the neighboring area is updated, and the saving also saves a lot of manpower to do the pre-planning and configuration work, which greatly improves the configuration and application efficiency, and reduces the front and back Communication data traffic.
- the real neighboring cell parameter configuration can be used instead of the local default value, which is also helpful for the success rate of the adjacent cell added by the ANR.
- FIG. 11 is a structural diagram of an apparatus for managing neighboring area configuration information according to an embodiment of the present invention.
- the device shown in Figure 11 includes:
- the obtaining module 1201 is configured to acquire configuration information of a neighboring system of the different system from the different system access network;
- the saving module 1202 is configured to save configuration information of the adjacent system neighboring area.
- Figure 112 is a structural diagram of the acquisition module 1201 in the apparatus shown in Figure 11.
- the obtaining module 1201 shown in FIG. 12 includes:
- the sending unit 1301 is configured to send the application information of the access network information management RIM, where the application information includes information about the neighboring system of the different system;
- the receiving unit 1302 is configured to receive response information of the RIM from the heterogeneous system access network, where the response information includes configuration information of a different system neighboring cell.
- the sending module sends the access network information management RIM application information when detecting that the neighboring system of the different system has any of the following conditions, where the situation includes:
- the information of the neighboring area of the different system includes at least one of a different system type, an operation type, a target cell identifier, and a configuration information type corresponding to the newly added neighboring area;
- the information of the different system neighboring cell includes at least one of a different system type, an operation type, a target cell identifier, and a configuration information type corresponding to the deleted neighboring cell;
- the information of the different system neighboring area includes at least one of target cell identification information, a different system type, and a configuration information type of the unknown neighboring area.
- FIG. 13 is a structural diagram of a save module 1202 in the apparatus shown in FIG.
- the save module 1202 shown in Figure 13 includes:
- the determining unit 1401 is configured to be a target of the target cell carried in the response information of the RIM And determining, in the neighboring area identifier corresponding to the neighboring area of the different system;
- the saving unit 1402 is configured to store the configuration information of the adjacent system neighboring area by using the neighboring area identifier as an index.
- the configuration information type includes a CDMA 1xRTT configuration type, a UTRAN configuration type, a GSM configuration type, or an eHPRD configuration type.
- the device provided by the embodiment of the present invention obtains the configuration information of the neighboring area of the different system by obtaining the configuration information of the neighboring area of the different system from the different system access network, and implements self-configuration and self-configuration of the parameters of the LTE neighboring cell and the corresponding different system cell. Synchronization overcomes the cumbersome management of configuration information in related technologies
- each module/unit in the above embodiment may be implemented in the form of hardware, for example, by implementing an integrated circuit to implement its corresponding function, or may be implemented in the form of a software function module, for example, executing a program stored in the memory by a processor. / instruction to achieve its corresponding function.
- the invention is not limited to any specific form of combination of hardware and software.
- the foregoing technical solution implements self-configuration and self-synchronization of parameters of the LTE neighboring cell and the corresponding different system cell, and overcomes the problem of complicated management of configuration information in the related art.
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Abstract
一种管理邻区配置信息的方法和装置。所述方法,包括:从异系统接入网获取异系统邻区的配置信息;保存所述异系统邻区的配置信息。该技术方案实现了LTE邻区和对应的异系统小区进行参数的自配置和自同步。
Description
本文涉及但不限于通信领域,尤其涉及一种管理邻区配置信息的方法和装置。
LTE(Long Term Evolution,长期演进)正在兴起,和其他异系统(2G、3G)的互操作的应用越来越广泛。为了进行LTE系统和其他异系统之间的互操作,往往需要在LTE的邻区中配置一些(甚至很多)其他异系统小区的配置信息等。
LTE邻区配置异系统小区信息较多,会导致数据冗余、占用大量配置资源,而且操作人员需要对配置的异系统参数有较高专业水平。例如CDMA 1xRTT(Code Division Multiple Access-1x Wireless Transmission technology,码分多址-单载波的无线电传输技术)邻区的开销参数配置。
同样上述情况下,当邻区对应的异系统小区配置参数有变时,不能做到及时更新,而且需要花费不少人力来进行邻区与异系统小区间配置参数的同步。
通常一个LTE小区可以有32个异系统邻区,一个基站下有几十个LTE小区,而在商用中,全网有几十或上百个LTE基站在使用。因此,无论如果不能做到邻区配置参数自更新,人工配置(即便是用网管导入方式)更新量还是很大的。
因此,如果能做到LTE邻区和对应的异系统小区进行参数的自配置和自同步可以解决上述问题。
相关技术中,最近接的是SON(Self-Organizing Network,自组织网络)的ANR(Automatic Neighbour Relation,自动邻区关系)技术,但是其也只是停留在发现新未知异系统邻区的小区标识这个层面,发现后即便同意添加为
LTE小区的邻区,其邻区中关于异系统小区的配置信息也是通过LTE系统下默认的配置来填写,与真实邻区情况很可能不符。并且即便碰巧相符,当邻区配置更新了,也不能做到同步更新
因为,目前尚未有合适方案能解决LTE邻区和对应的异系统小区进行参数的自配置和自同步的这个问题。
发明内容
以下是对本文详细描述的主题的概述。本概述并非是为了限制权利要求的保护范围。
本发明实施例提供的管理邻区配置信息的方法和装置,要解决的技术问题是如何实现LTE邻区和对应的异系统小区进行参数的自配置和自同步。
本发明实施例提供了如下技术方案:
一种管理邻区配置信息的方法,包括:
从异系统接入网获取异系统邻区的配置信息;
保存所述异系统邻区的配置信息。
其中,所述从异系统接入网获取异系统邻区的配置信息,包括:
发送接入网信息管理RIM的申请信息,其中所述申请信息包括异系统邻区的信息;
从所述异系统接入网接收所述RIM的响应信息,其中所述响应信息包括所述异系统邻区的配置信息。
其中,发送接入网信息管理RIM的申请信息,包括:当检测到异系统邻区有如下任一情况时,发送接入网信息管理RIM的申请信息,包括:
有新增异系统邻区;
有异系统邻区被删除;
发现未知邻区信息。
其中,当有新增异系统邻区时,所述异系统邻区的信息包括新增邻区对应的异系统类型、操作类型、目标小区标识和配置信息类型中的至少一个;
当有异系统邻区被删除时,所述异系统邻区的信息包括被删除邻区对应的异系统类型、操作类型、目标小区标识和配置信息类型中的至少一个;
当发现未知邻区信息时,所述异系统邻区的信息包括所述未知邻区的目标小区标识信息、异系统类型和配置信息类型中的至少一个。
其中,所述保存所述异系统邻区的配置信息,包括:
根据所述RIM的响应信息中携带的目标小区的标识,确定所述异系统邻区的邻区标识;
以所述邻区标识为索引,保存所述异系统邻区的配置信息。
其中,配置信息类型包括:码分多址-单载波的无线电传输技术CDMA 1xRTT配置类型、通用移动通信无线接入网UTRAN配置类型、全球移动通信系统GSM配置类型或者演进的高速分组网络eHPRD配置类型。
一种管理邻区配置信息的装置,包括:
获取模块,设置为从异系统接入网获取异系统邻区的配置信息;
保存模块,设置为保存所述异系统邻区的配置信息。
其中,所述获取模块包括:
发送单元,设置为发送接入网信息管理RIM的申请信息,其中所述申请信息包括所述异系统邻区的信息;
接收单元,设置为从所述异系统接入网接收所述RIM的响应信息,其中所述响应信息包括所述异系统邻区的配置信息。
其中,所述发送单元,是设置为通过如下方式实现发送接入网信息管理RIM的申请信息:当检测到异系统邻区有如下任一情况时,发送接入网信息管理RIM的申请信息,包括:
有新增异系统邻区;
有异系统邻区被删除;
发现未知邻区信息。
其中,当有新增异系统邻区时,所述异系统邻区的信息包括新增邻区对应的异系统类型、操作类型、目标小区标识和配置信息类型中的至少一个;
当有异系统邻区被删除时,所述异系统邻区的信息包括被删除邻区对应的异系统类型、操作类型、目标小区标识和配置信息类型中的至少一个;
当发现未知邻区信息时,所述异系统邻区的信息包括所述未知邻区的目标小区标识信息、异系统类型和配置信息类型中的至少一个。
其中,所述保存模块包括:
确定单元,设置为根据所述RIM的响应信息中携带的目标小区的标识,确定所述异系统邻区的邻区标识;
保存单元,设置为以所述邻区标识为索引,保存所述异系统邻区的配置信息。
其中,配置信息类型包括:CDMA 1xRTT配置类型、通用移动通信无线接入网UTRAN配置类型、全球移动通信系统GSM配置类型或者演进的高速分组网络eHPRD配置类型。
本发明实施例还提供了一种计算机存储介质,所述计算机存储介质中存储有计算机可执行指令,所述计算机可执行指令用于执行上述的方法。
本发明提供的实施例,通过从异系统接入网获取异系统邻区的配置信息来得到异系统邻区的配置信息,实现LTE邻区和对应的异系统小区进行参数的自配置和自同步,克服了相关技术中配置信息的管理繁琐的问题。
在阅读并理解了附图和详细描述后,可以明白其他方面。
附图概述
图1为本发明实施例提供的管理邻区配置信息的方法的流程图;
图2为本发明实施用例中模块之间的信号连接示意图;
图3为本发明实施用例1提供的管理邻区配置信息的方法的流程图;
图4为本发明实施用例2提供的管理邻区配置信息的方法的流程图;
图5为本发明实施用例3提供的管理邻区配置信息的方法的流程图;
图6为本发明实施用例4提供的管理邻区配置信息的方法的流程图;
图7为本发明实施用例5提供的管理邻区配置信息的方法的流程图;
图8为本发明实施用例6提供的管理邻区配置信息的方法的流程图;
图9为本发明实施用例7提供的管理邻区配置信息的方法的流程图;
图10为本发明实施用例8提供的管理邻区配置信息的方法的流程图;
图11为本发明实施例提供的管理邻区配置信息的装置的结构图;
图12为图11所示装置中获取模块1201的结构图;
图13为图11所示装置中保存模块1202的结构图。
下面将结合附图及具体实施例对本发明作进一步的详细描述。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为本发明实施例提供的管理邻区配置信息的方法的流程图。图1所示方法包括:
步骤101、从异系统接入网获取异系统邻区的配置信息;
步骤102、保存所述异系统邻区的配置信息。
本发明实施例提供的方法,通过从异系统接入网获取异系统邻区的配置信息来得到异系统邻区的配置信息,实现LTE邻区和对应的异系统小区进行参数的自配置和自同步,克服了相关技术中配置信息的管理繁琐的问题。
下面对本发明实施例提供的方法作进一步说明:
其中,所述从异系统接入网获取异系统邻区的配置信息,包括:
发送接入网信息管理RIM的申请信息,其中所述申请信息包括所述异系统邻区的信息;
从所述异系统接入网接收所述RIM的响应信息,其中所述响应信息包括所述异系统邻区的配置信息。
其中,RIM(RAN Information Management,接入网信息管理)技术广泛用于GERAN(GSM EDGE Radio Access Network,GSM/EDGE无线接入网)、
UTRAN(UMTS Terrestrial Radio Access Network,UMTS陆地无线接入网)、E-UTRAN(Evolved UTRAN,演进的UMTS陆地无线接入网)、CDMA(Code Division Multiple Access,码分多址)2000和eHRPD(Evolved High Rate Packet Data,演进的高速分组网络)接入网间,通过核心网进行信息交换,可以认为是LTE和其他异系统之间,或其他异系统之间的(经过核心网)传递的信息通道。RIM技术在核心网为透传,在接入网发起消息申请和响应。而相关协议中,RIM主要仅传递如下内容:广播消息、节能指示、负荷等等。
在本发明实施例中,借助相关技术中的RIM的交互消息来获取异系统邻区的配置信息,实现简单,且无需对相关协议进行修改,通用性强。
当然,在实际应用中,也可以新定义一组交互消息来传输异系统邻区的配置信息。
需要说明的是,上文是以基站主动向异系统接入网获取配置信息为例进行的说明,当然,也可以由异系统接入网主动向基站下发邻区的配置信息。相比较而言,前者的实现方式较后者的实现方式,传输的数据较少,对带宽占用少,处理效率要高。
其中,所述发送接入网信息管理RIM的申请信息,包括:
当检测到异系统邻区有如下任一情况时,发送接入网信息管理RIM的申请信息,所述情况包括:
有新增异系统邻区;
有异系统邻区被删除;
发现未知邻区信息。
可选的,在检测到异系统邻区的增删的变化状态发生变化时,才触发获取操作,可以有效控制基站与异系统接入网的交互次数,从而控制数据的传输数量。
当然,在实际应用中,请求配置信息的触发条件还可以是周期性的。
其中,所述异系统邻区的增删的变化状态发生变化包括如下至少一种:
当有新增异系统邻区时,所述异系统邻区的信息包括新增邻区对应的异系统类型、操作类型、目标小区标识和配置信息类型中的至少一个;
当有异系统邻区被删除时,所述异系统邻区的信息包括被删除邻区对应的异系统类型、操作类型、目标小区标识和配置信息类型中的至少一个;
当发现未知邻区信息时,所述异系统邻区的信息包括所述未知邻区的目标小区标识信息、异系统类型和配置信息类型中的至少一个。
需要说明的是,配置信息类型可以由异系统类型直接或间接的来确定。
所述保存所述异系统邻区的配置信息,包括:
从所述RIM的响应信息中携带的目标小区的标识,确定所述异系统邻区的邻区标识;
以邻区标识为索引,保存所述异系统邻区的配置信息。
其中,配置信息类型包括CDMA 1xRTT配置类型、UTRAN配置类型、GSM配置类型或者eHPRD配置类型。
本发明实施例还提供了一种计算机存储介质,所述计算机存储介质中存储有计算机可执行指令,所述计算机可执行指令用于执行上述的方法。
下面对本发明实施例提供的方法作进一步说明:
图2为本发明实施用例中模块之间的信号连接示意图。本发明实施例提供的方法是通过基站内下述模块实现的,包括:邻区变更判断模块21、未知邻区判断模块22、邻区配置申请模块23、邻区配置解析模块24和邻区信息存储模块25;其中:
邻区变更判断模块21设置为:
1)当基站发现有新增异系统邻区,将通知邻区配置申请模块23发起RIM请求申请。申请内容将包括新增邻区对应的异系统类型、操作类型(申请)、目标小区标识和配置信息类型(可以考虑不同异系统各自有一个配置类型,例如CDMA 1xRTT配置类型,UTRAN配置类型、GSM配置类型、eHPRD配置等)
2)当基站发现异系统邻区进行删除时,将通知邻区配置申请模块23发起RIM终止申请。申请内容将包括新增邻区对应的异系统类型、操作类型(申
请)、目标小区标识和配置信息类型(可以考虑不同异系统各自有一个配置类型,例如CDMA 1xRTT配置类型,UTRAN配置类型、GSM配置类型、CDMA eHPRD配置等)。
未知邻区判断模块22设置为:
当基站发现未知邻区信息后(例如通过ANR),已经获知对方的小区标识信息,则通知邻区配置申请模块23发起RIM请求申请,申请内容包括这个新发现的目标小区标识信息、对应的异系统类型(例如是GSM)、邻区配置信息类型(例如是GSM配置类型)。
邻区配置申请模块23设置为:
根据邻区变更判断模块21(当判断为新增邻区),未知邻区判断模块22决策提供的一个或多个目标小区信息,发起RIM申请过程。申请内容包括异系统类型、给定的目标小区(与邻区标识一一对应)和事先约定的邻区配置信息类型。或者根据“邻区变更判断模块21(判断为删除邻区),对决策的目标小区发起终止消息。本模块可将邻区标识映射为目标小区标识。本模块可将本基站邻区标识映射为目标异系统小区的小区标识。
邻区配置解析模块24设置为:
根据异系统接入网响应的RIM信息,获取约定的邻区配置信息类型的RIM消息内容。将相关内容传递给邻区信息存储模块25。本模块可将目标小区标识映射为邻区标识。本模块可将目标异系统小区的小区标识映射为本基站邻区标识。另外本模块如果对RIM解析结果将反馈给“邻区变更判断模块21”或“未知邻区判断模块22”,便于获知后续处理方式。
邻区信息存储模块25设置为:
可以邻区标识等为索引,对从RIM获得的每个邻区配置信息进行存储。
下面对本发明提供的实施用例进行说明:
实施用例1:LTE基站发现新增了CDMA类型邻区(NCell1),而对应的CDMA 1xRTT的小区标识CDMARFCell1。
背景说明:
以CDMA邻区中开销参数的配置为例。开销参数是支持LTE到1xRTT互操作的必配参数。目前根据协议要求是配置在eNB上,每个小区都有开销参数设置,而开销参数是一组参数的名称、包括近40个以上的参数内容。一个LTE小区可以有32个1xRTT CDMA邻区。因此在LTE基站至少需要配置32*40个CDMA 1xRTT小区特有的参数。其配置量和更新量可想而知。(本说明适用于实施用例1~3)
图3为本发明实施用例1提供的管理邻区配置信息的方法的流程图。图3所示方法包括:
步骤400:“邻区变更判断模块21”发现有CDMA1xRTT邻区(NCell1)新增时,通知“邻区配置申请模块23”进行请求申请:CDMA1 xRTT系统类型、邻区标识为NCell1,申请配置参数类型(CDMA1xRTT类型,本类型中包括了开销参数)的参数。
步骤410:“邻区配置申请模块23”收到通知,将邻区标识为NCell1映射为目标小区标识CDMARFCell1后,携带相关参数(系统类型、目标小区标识、申请配置参数类型)发起对CDMA系统的BSS发出RIM请求消息。
步骤415:CDMA 1xRTT BSS(基站子系统)进行RIM响应,包含申请的小区的配置参数类型相关的信息。
步骤420:“邻区配置解析模块24”接收到对方接入网通过核心网传过来的RIM响应消息,解析出目标小区标识CDMARFCell1和其对应的、与申请对应的配置参数设置,解析后的内容发给“邻区信息存储模块25”,告知为“新增”;并通知“邻区变更判断模块21”本邻区标识的邻区配置信息获取情况(例如:成功或失败)。
步骤430:“邻区信息存储模块25”以邻区标识等为索引进行邻区配置参数的存储。
步骤435:“邻区变更判断模块21”获取“邻区配置解析模块24”给出的特定邻区标识的邻区获取配置信息成功与否的结论。如果成功,则认为该邻区已经正确配置。如果不成功,重复申请。如果重复申请失败,则可认为此邻区不可用。
步骤440:eNB在需要使用CDMA 1xRTT小区配置信息(例如:开销参数)时,将依据邻区标识NCell1直接或间接从“邻区信息存储模块25”中获取。
实施用例2:LTE基站发现,存在新增的CDMA类型邻区(NCell2),而对应的CDMA 1xRTT的小区标识CDMARFCell2。
背景说明:同实施用例1背景。
图4为本发明实施用例2提供的管理邻区配置信息的方法的流程图。图4所示方法包括:
步骤500:“邻区变更判断模块21”发现有所述CDMA1xRTT邻区(NCell2)删除时,通知“邻区配置申请模块23”进行停止申请:CDMA1 xRTT系统类型、邻区标识为NCell2。
步骤510:“邻区配置申请模块23”收到通知,将邻区标识为NCell2映射为目标小区标识CDMARFCell2后,携带相关参数(系统类型、目标小区标识)发起对CDMA系统的BSS发出RIM停止申请消息。
步骤515:CDMA 1xRTT BSS(基站子系统)进行RIM响应。
步骤520:“邻区变更判断模块21”通知“邻区信息存储模块25”,删除NCell2内容。
步骤530:“邻区信息存储模块25”以邻区标识为索引进行该邻区标识下配置参数的删除。
步骤540:eNB在需要使用CDMA 1xRTT小区配置信息(主要是开销参数)时,将依据邻区标识直接或间接从“邻区信息存储模块25”中获取。
实施用例3:发现未知邻区后
图5为本发明实施用例3提供的管理邻区配置信息的方法的流程图。图5所示方法包括:
步骤600:“未知邻区判断模块22”发现有未知CDMA1xRTT邻区的存在时,将通知“邻区配置申请模块23”,并携带对应CDMA1 xRTT系统、
小区标识为CDMARFCell3和申请配置信息类型(CDMA 1xRTT配置类型)。
步骤610:“邻区配置申请模块23”收到通知后,发起对CDMA系统的RIM请求消息,携带目标小区标识(CDMARFCell3)和申请配置信息类型(CDMA 1xRTT配置类型)。
步骤620:“邻区配置解析模块24”接收到对方接入网通过核心网传过来的RIM响应消息,内容包括:CDMARFCell3对应申请配置信息类型对应的配置参数内容,本模块将解析后的结果(成功或失败)通知“未知邻区判断模块22”。
步骤630:“未知邻区判断模块22”从“邻区配置解析模块24”获知未知邻区配置参数结果。如果成功,则将依据ANR流程,将这个发现的新邻区确认为正式邻区,标识为NCell3(根据预定规则进行标识生成),告知“邻区配置解析模块24”;如果不成功,无进一步处理。
步骤635:“邻区配置解析模块24”收到“未知邻区判断模块22”的确认结果(即是否已经加为正式邻区和邻区标识NCell3)后,如果确认已经加为正式邻区,则本模块将解析后的配置信息和邻区标识NCell3告知邻区信息存储模块25”,告知为“新增”。
步骤640:“邻区信息存储模块25”以邻区标识NCell3等为索引进行邻区配置参数的存储。
步骤650:eNB在需要使用CDMA 1xRTT小区配置信息(主要是开销参数)时,将依据邻区标识直接或间接从“邻区信息存储模块25”中获取。
实施用例4:对方BSS发现有小区标识CDMARFCell4的小区,其配置参数有变更且是RIM申请配置信息类型包含的参数。而LTE基站已经有邻区标识为NCell4的邻区。
背景说明:同实施用例1
图6为本发明实施用例4提供的管理邻区配置信息的方法的流程图。图6所示方法包括:
步骤700:根据RIM消息相关机制,当对方BSS发现所申请小区的配置
信息有变动时,则会发RIM消息给eNB,内容包括:目标小区标识CDMARFCell4对应申请配置信息类型对应的配置参数内容(例如开销参数)。
步骤720:“邻区配置解析模块24”接收到对方接入网通过核心网传过来的RIM响应消息,发现是更新消息,其内容包括:目标小区标识CDMARFCell4和对应申请配置信息类型(CDMA 1xRTT类型)对应的配置参数内容(例如:开销参数),解析后的内容发给“邻区信息存储模块25”,将CDMARFCell4映射为NCell4后,携带NCell4及配置参数(例如:开销参数)内容,告知为“更新”。
步骤730:“邻区信息存储模块25”接收到“邻区配置解析模块24”的更新通知后,将用新的配置参数更新NCell4为索引的邻区标识的存储内容。
步骤740:eNB在需要使用CDMA 1xRTT小区配置信息(主要是开销参数)时,将依据邻区标识直接或间接从“邻区信息存储模块25”中获取。
实施用例5:新增UTRAN邻区,需要更新UTRAN配置信息类型参数(例如包含:Voip support的配置)
背景说明:上面实施用例,也适用于GSM、UTRAN、eHRPD等异系统。本例以UTRAN邻区为例、配置参数类型为UTRAN配置类型(例如包含:Voip support的配置)。
图7为本发明实施用例5提供的管理邻区配置信息的方法的流程图。图7所示方法包括:
步骤800:“邻区变更判断模块21”发现有UTRAN邻区(NCell5)新增时,通知“邻区配置申请模块23”进行请求申请:UTRAN系统类型、邻区标识为NCell5,申请配置参数类型(UTRAN类型。本类型中可包括Voip support的配置)的参数。
步骤810:“邻区配置申请模块23”收到通知,将邻区标识为NCell5映射为目标小区标识UTRANCell5后,携带相关参数(系统类型、目标小区标识、申请配置参数类型)对UTRAN系统的BSS发出RIM请求消息。
步骤815:UTRAN BSS(基站子系统)进行RIM响应,包含申请的小区
标识和其配置参数类型相关的参数信息。
步骤820:“邻区配置解析模块24”接收到对方接入网通过核心网传过来的RIM响应消息,解析出目标小区标识UTRANCell5和其对应的、与申请对应的配置参数设置.解析后的内容发给“邻区信息存储模块25”,告知为“新增”;并通知“邻区变更判断模块21”本邻区标识的邻区配置信息获取情况(例如:成功或失败)。
步骤830:“邻区信息存储模块25”以邻区标识NCell5等为索引进行邻区配置参数的存储。
步骤835:“邻区变更判断模块21”获取“邻区配置解析模块24”给出的特定邻区标识的邻区获取配置信息成功与否的结论。如果成功,则认为该邻区已经正确配置。如果不成功,重复申请。如果重复申请失败,则可认为此邻区不可用。
步骤840:eNB在需要使用UTRAN小区配置信息(例如:Voip support)时,将依据邻区标识NCell5直接或间接从“邻区信息存储模块25”中获取。
实施用例6:删除UTRAN邻区,需要更新UTRAN配置信息类型参数(例如包含:Voip support的配置)
背景说明:同实施用例5.
图8为本发明实施用例6提供的管理邻区配置信息的方法的流程图。图8所示方法包括:
步骤900:“邻区变更判断模块21”发现有UTRAN邻区(NCell6)删除时,通知“邻区配置申请模块23”进行停止申请:UTRAN系统类型、邻区标识为NCell6。
步骤910:“邻区配置申请模块23”收到通知,将邻区标识为NCell6映射为目标小区标识UTRANCell6后,携带相关参数(系统类型、目标小区标识)发起对UTRAN系统的BSS发出RIM停止申请消息。
步骤915:UTRAN BSS(基站子系统)进行RIM响应。
步骤920:“邻区变更判断模块21”通知“邻区信息存储模块25”,删除NCell6内容。
步骤930:“邻区信息存储模块25”以邻区标识为NCell6索引进行该邻区标识下配置参数的删除。
步骤940:eNB在需要使用UTRAN小区配置信息(例如:Voip support)时,将依据邻区标识直接或间接从“邻区信息存储模块25”中获取。
实施用例7:发现未知邻区,Voip参数配置(以UTRAN为异系统邻区)
背景说明:同实施用例5.
图9为本发明实施用例7提供的管理邻区配置信息的方法的流程图。图9所示方法包括:
步骤1000:“未知邻区判断模块22”发现有未知UTRAN邻区的存在时,将通知“邻区配置申请模块23”,并携带对应UTRAN系统、小区标识为UTRAN7和申请配置信息类型(UTRAN配置类型)。
步骤1010:“邻区配置申请模块23”收到通知后,发起对UTRAN系统的RIM请求消息,携带目标小区标识(UTRANCell7)和申请配置信息类型(UTRAN配置类型)。
步骤1020:“邻区配置解析模块24”接收到对方接入网通过核心网传过来的RIM响应消息,内容包括:UTRANCell7对应申请配置信息类型对应的配置参数内容,本模块将解析后的结果(成功或失败)通知“未知邻区判断模块22”。
步骤1030:“未知邻区判断模块22”从“邻区配置解析模块24”获知未知邻区配置参数结果。如果成功,则将依据ANR流程,将这个发现的新邻区确认为正式邻区,标识为NCell7(根据预定规则进行标识生成),告知“邻区配置解析模块24”;如果不成功,无进一步处理。
步骤1040:“邻区配置解析模块24”收到“未知邻区判断模块22”的确认结果(即是否已经加为正式邻区和邻区标识NCell7)后,如果确认已经加为正式邻区,则本模块将解析后的配置信息和邻区标识NCell7告知邻区信息存储模块25”,告知为“新增”。
步骤1040:“邻区信息存储模块25”以邻区标识NCell7等为索引进行
邻区配置参数的存储。
步骤1050:eNB在需要使用UTRAN小区配置信息(例如:Voip support)时,将依据邻区标识直接或间接从“邻区信息存储模块25”中获取。
实施用例8:UTRAN BSS发现有相关申请的配置参数的变动时,例如Voip参数配置从不支持变为支持(以UTRAN邻区NCell8和对应目标小区小区UTRANCell8为例)
背景说明:同实施用例5
图10为本发明实施用例8提供的管理邻区配置信息的方法的流程图。图10所示方法包括:
步骤1100:根据RIM消息相关机制,当对方BSS发现所申请小区的配置信息有变动时,则会发RIM消息给eNB,内容包括:目标小区标识UTRANCell8对应申请配置信息类型对应的配置参数内容(例如:Voip support)。
步骤1120:“邻区配置解析模块24”接收到对方接入网通过核心网传过来的RIM响应消息,发现是更新消息,其内容包括:目标小区标识UTRANCell6和对应申请配置信息类型(UTRAN类型)对应的配置参数内容(例如:Voip support),解析后的内容发给“邻区信息存储模块25”,将UTRANCell8映射为NCell8后,携带NCell8及配置参数(例如:Voip support)内容,告知为“更新”。
步骤1130:“邻区信息存储模块25”接收到“邻区配置解析模块24”的更新通知后,将用新的配置参数更新NCell8为索引的邻区标识的存储内容。
步骤1140:eNB在需要使用Voip support小区配置信息(例如:Voip support)时,将依据邻区标识直接或间接从“邻区信息存储模块25”中获取。
综上可以看出,本发明提供的实施用例,能使LTE和异系统的邻区间自动传送预定义的邻区参数配置信息,不仅较大节约了基站的配置资源,也能更为及时地获取邻区相关参数的配置更新情况,而且节省了也节省了大量的人力做预先的规划和配置工作,大大提供了配置和应用效率,减少了前后台
的通信数据流量。另外在进行ANR主动邻区添加时,可以使用真实的邻区参数配置,而非本地的默认值,对ANR添加的邻区的使用成功率也很有帮助。
图11为本发明实施例提供的管理邻区配置信息的装置的结构图。图11所示装置包括:
获取模块1201,设置为从异系统接入网获取异系统邻区的配置信息;
保存模块1202,设置为保存所述异系统邻区的配置信息。
图112为图11所示装置中获取模块1201的结构图。图12所示获取模块1201包括:
发送单元1301,设置为发送接入网信息管理RIM的申请信息,其中所述申请信息包括所述异系统邻区的信息;
接收单元1302,设置为从异系统接入网接收RIM的响应信息,其中所述响应信息包括异系统邻区的配置信息。
其中,所述发送模块当检测到异系统邻区有如下任一情况时,发送接入网信息管理RIM的申请信息,所述情况包括::
有新增异系统邻区;
有异系统邻区被删除;
发现未知邻区信息。
其中,当有新增异系统邻区时,所述异系统邻区的信息包括新增邻区对应的异系统类型、操作类型、目标小区标识和配置信息类型中的至少一个;
当有异系统邻区被删除时,所述异系统邻区的信息包括被删除邻区对应的异系统类型、操作类型、目标小区标识和配置信息类型中的至少一个;
当发现未知邻区信息时,所述异系统邻区的信息包括所述未知邻区的目标小区标识信息、异系统类型和配置信息类型中的至少一个。
图13为图11所示装置中保存模块1202的结构图。图13所示保存模块1202包括:
确定单元1401,设置为从所述RIM的响应信息中携带的目标小区的标
识,确定所述异系统邻区在本基站对应的邻区标识;
保存单元1402,设置为以邻区标识为索引,保存所述异系统邻区的配置信息。
其中,配置信息类型包括CDMA 1xRTT配置类型、UTRAN配置类型、GSM配置类型或者eHPRD配置类型。
本发明实施例提供的装置,通过从异系统接入网获取异系统邻区的配置信息来得到异系统邻区的配置信息,实现LTE邻区和对应的异系统小区进行参数的自配置和自同步,克服了相关技术中配置信息的管理繁琐的问题
本领域普通技术人员可以理解上述方法中的全部或部分步骤可通过程序来指令相关硬件(例如处理器)完成,所述程序可以存储于计算机可读存储介质中,如只读存储器、磁盘或光盘等。可选地,上述实施例的全部或部分步骤也可以使用一个或多个集成电路来实现。相应地,上述实施例中的各模块/单元可以采用硬件的形式实现,例如通过集成电路来实现其相应功能,也可以采用软件功能模块的形式实现,例如通过处理器执行存储于存储器中的程序/指令来实现其相应功能。本发明不限制于任何特定形式的硬件和软件的结合。
以上所述,仅为本发明的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本发明的保护范围之内。因此,本发明的保护范围应以权利要求所述的保护范围为准。
上述技术方案实现了LTE邻区和对应的异系统小区进行参数的自配置和自同步,克服了相关技术中配置信息的管理繁琐的问题。
Claims (13)
- 一种管理邻区配置信息的方法,包括:从异系统接入网获取异系统邻区的配置信息;保存所述异系统邻区的配置信息。
- 根据权利要求1所述的方法,其中,所述从异系统接入网获取异系统邻区的配置信息,包括:发送接入网信息管理RIM的申请信息,其中所述申请信息包括异系统邻区的信息;从所述异系统的接入网接收所述RIM的响应信息,其中所述响应信息包括所述异系统邻区的配置信息。
- 根据权利要求2所述的方法,其中,发送接入网信息管理RIM的申请信息,包括:当检测到异系统邻区有如下任一情况时,发送接入网信息管理RIM的申请信息,包括:有新增异系统邻区;有异系统邻区被删除;发现未知邻区信息。
- 根据权利要求3所述的方法,其中,当有新增异系统邻区时,所述异系统邻区的信息包括新增邻区对应的异系统类型、操作类型、目标小区标识和配置信息类型中的至少一个;当有异系统邻区被删除时,所述异系统邻区的信息包括被删除邻区对应的异系统类型、操作类型、目标小区标识和配置信息类型中的至少一个;当发现未知邻区信息时,所述异系统邻区的信息包括所述未知邻区的目标小区标识信息、异系统类型和配置信息类型中的至少一个。
- 根据权利要求4所述的方法,其中,所述保存所述异系统邻区的配置 信息,包括:根据所述RIM的响应信息中携带的目标小区的标识,确定所述异系统邻区的邻区标识;以所述邻区标识为索引,保存所述异系统邻区的配置信息。
- 根据权利要求4所述的方法,其中,配置信息类型包括:码分多址-单载波的无线电传输技术CDMA 1xRTT配置类型、通用移动通信无线接入网UTRAN配置类型、全球移动通信系统GSM配置类型或者演进的高速分组网络eHPRD配置类型。
- 一种管理邻区配置信息的装置,包括:获取模块,设置为从异系统接入网获取异系统邻区的配置信息;保存模块,设置为保存所述异系统邻区的配置信息。
- 根据权利要求7所述的装置,其中,所述获取模块包括:发送单元,设置为发送接入网信息管理RIM的申请信息,其中所述申请信息包括异系统邻区的信息;接收单元,设置为从所述异系统的接入网接收所述RIM的响应信息,其中所述响应信息包括所述异系统邻区的配置信息。
- 根据权利要求7或8所述的装置,其中,发送单元是设置为通过如下方式实现发送接入网信息管理RIM的申请信息:当检测到异系统邻区有如下任一情况时,发送接入网信息管理RIM的申请信息,包括:有新增异系统邻区;有异系统邻区被删除;发现未知邻区信息。
- 根据权利要求9所述的装置,其中,当有新增异系统邻区时,所述异系统邻区的信息包括新增邻区对应的异系统类型、操作类型、目标小区标识和配置信息类型中的至少一个;当有异系统邻区被删除时,所述异系统邻区的信息包括被删除邻区对应的异系统类型、操作类型、目标小区标识和配置信息类型中的至少一个;当发现未知邻区信息时,所述异系统邻区的信息包括所述未知邻区的目标小区标识信息、异系统类型和配置信息类型中的至少一个。
- 根据权利要求10所述的装置,其中,所述保存模块包括:确定单元,设置为根据所述RIM的响应信息中携带的目标小区的标识,确定所述异系统邻区的邻区标识;保存单元,设置为以所述邻区标识为索引,保存所述异系统邻区的配置信息。
- 根据权利要求10所述的装置,其中,配置信息类型包括:码分多址-单载波的无线电传输技术CDMA 1xRTT配置类型、通用移动通信无线接入网UTRAN配置类型、全球移动通信系统GSM配置类型或者演进的高速分组网络eHPRD配置类型。
- 一种计算机存储介质,所述计算机存储介质中存储有计算机可执行指令,所述计算机可执行指令用于执行权利要求1~6中任一项所述的方法。
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