WO2022099481A1 - 一种公用陆地移动网的选择方法以及相关装置 - Google Patents

一种公用陆地移动网的选择方法以及相关装置 Download PDF

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Publication number
WO2022099481A1
WO2022099481A1 PCT/CN2020/127895 CN2020127895W WO2022099481A1 WO 2022099481 A1 WO2022099481 A1 WO 2022099481A1 CN 2020127895 W CN2020127895 W CN 2020127895W WO 2022099481 A1 WO2022099481 A1 WO 2022099481A1
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WIPO (PCT)
Prior art keywords
information
network element
terminal
positioning
management network
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PCT/CN2020/127895
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English (en)
French (fr)
Inventor
李永翠
倪慧
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华为技术有限公司
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.)
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Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to PCT/CN2020/127895 priority Critical patent/WO2022099481A1/zh
Priority to CN202080103885.1A priority patent/CN116097792A/zh
Publication of WO2022099481A1 publication Critical patent/WO2022099481A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W60/00Affiliation to network, e.g. registration; Terminating affiliation with the network, e.g. de-registration
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W64/00Locating users or terminals or network equipment for network management purposes, e.g. mobility management

Definitions

  • the present application relates to the field of communications, and in particular, to a method for selecting a public land mobile network and a related device.
  • the access and mobility management function (AMF) will determine whether the PLMN selected by the terminal to access corresponds to the area where the terminal is located. If the PLMN is the same, the terminal is allowed to access, if not, the terminal is not allowed to access; when the terminal successfully accesses the PLMN corresponding to the current area, the AMF will allocate a registration area for the terminal. Due to the coverage of the communication satellite Larger, the registration area may cover more than one area.
  • the terminal may move out of the boundary of the current area when moving within the registration area. After the terminal moves out of the boundary of the area, the terminal will not trigger the process of re-accessing the PLMN , so the terminal cannot access the PLMN corresponding to the current area, which violates the supervision principle.
  • the access and mobility management network element can start to periodically acquire the terminal's positioning information. After acquiring the terminal's positioning information, the access and mobility management network element can The positioning information of the terminal determines the first information for the terminal to determine the public land mobile network to be accessed, and sends the first information to the terminal.
  • the access and mobility management network element periodically determines the first information according to the positioning information, and sends the first information to the terminal, so that the terminal can access the public land mobile network to be accessed , that is, it can access the public land mobile network corresponding to the current area of the terminal, without violating the supervision principle.
  • the first information may include identification information of a public land mobile network and identification information of an area, or the first information may also include identification information of an area .
  • the specific content of the first information is limited, which improves the feasibility of the solution.
  • the access and mobility management network element may periodically send a positioning request to the positioning management function
  • the access and mobility management network element can receive the positioning information from the positioning management function after sending the positioning request to the positioning management function, or the access and mobility management network element can also send the positioning management function to the positioning management function.
  • the function sends a first subscription request for the location management function to periodically send location information to the access and mobility management network element.
  • the specific manner in which the access and mobility management network element obtains the positioning information is limited, which improves the practicability of the solution.
  • the access and mobility management network element first receives the second data from the unified data management network element.
  • Subscription request after which the access and mobility management network element periodically sends a positioning request to the positioning management function according to the second subscription request to obtain positioning information, or, after receiving the second subscription request from the unified data management network element , the access and mobility management network element may also send a first subscription request to the positioning management function, where the first subscription request is used for the positioning management function to periodically send positioning information to the access and mobility management network element.
  • the second subscription request may include second information, where the second information is used to determine that the terminal moves across regions .
  • the access and mobility management network elements may be directed to a unified
  • the data management network element sends the positioning information, after which the access and mobility management network element can receive the first information from the unified data management network element, and then the access and mobility management network element can send the first information to the terminal.
  • the manner in which the access and mobility management network element sends the first information to the terminal is limited, which improves the practicability of the solution.
  • the access and mobility management network element may determine that the terminal moves across regions when , and then send the positioning information to the unified data management network element.
  • the access and mobility management network element when the terminal sends cross-area mobility, the access and mobility management network element re-sends the positioning information, which reduces the consumption of network resources.
  • the access and mobility The management network element may send positioning information to the terminal when it is determined that the terminal moves across regions.
  • the access and mobility management network element when the terminal sends cross-area mobility, the access and mobility management network element sends positioning information to the terminal, which reduces the consumption of network resources.
  • the access and mobility management network element in the initial process of the terminal, can obtain the positioning measurement information for determining the positioning information, and send it to the positioning management function, which improves the selection efficiency of the public land mobile network .
  • the unified data management network element can receive the positioning information of the terminal from the access and mobility management network element, and after receiving the positioning information, the unified data management network element according to the positioning information The first information is determined, and the first information is sent to the terminal, where the first information is used to determine the public land mobile network to be accessed.
  • the unified data management network element sends the first information to the terminal according to the positioning information of the terminal.
  • the first information is used for the terminal to access the public land mobile network to be accessed, that is, it can access the current location of the terminal.
  • the public land mobile network corresponding to the location thus not violating regulatory principles.
  • the first information may include identification information of a public land mobile network and identification information of an area, or the first information also includes identification information of an area.
  • the unified data management network element may send a first subscription request to the access and mobility management network element , the first subscription request is used for subscribing positioning information, and after sending the first subscription request, the unified data management network element may receive the positioning information from the access and mobility management network element.
  • the first subscription request may include second information, where the second information is used to determine that the terminal moves across regions , at this time, the first subscription request for subscribing to the positioning information is the first subscription request for subscribing the positioning information when the terminal moves across regions.
  • the unified data management network element sends the first information to the terminal after determining that the terminal sends cross-regional movement, which reduces the load degree of the network.
  • the unified data management network element The first information may be sent to the terminal through the access and mobility management network element.
  • the manner in which the unified data management network element sends the first information to the terminal is limited, which improves the implementability of the solution.
  • the unified data management network element may send an acquisition request to the roaming preference application function, and the acquisition request may carry positioning information, and the roaming
  • the application function can send the first information to the unified data management network element.
  • a third aspect of the embodiments of the present application provides a device for selecting a public land mobile network, the device having the function of implementing the behavior of the access and mobility management network elements in the first aspect.
  • This function can be implemented by hardware or by executing corresponding software by hardware.
  • the hardware or software includes one or more modules corresponding to the above functions.
  • a fourth aspect of the embodiments of the present application provides a device for selecting a public land mobile network, the device having the function of implementing the behavior of the unified data management network element in the second aspect.
  • This function can be implemented by hardware or by executing corresponding software by hardware.
  • the hardware or software includes one or more modules corresponding to the above functions.
  • the processor, the memory, and the input and output devices are connected to the bus;
  • the processor, the memory, and the input and output devices are connected to the bus;
  • the processor is configured to execute the method described in any one of the above second aspects.
  • a ninth aspect of the embodiments of the present application provides a computer program product.
  • the computer program product When the computer program product is executed on a computer, the computer executes the method described in any one of the first aspect or the second aspect.
  • FIG. 3 is another schematic diagram of a communication system architecture in an embodiment of the application.
  • FIG. 6 is another schematic flowchart of the PLMN selection method in the embodiment of the application.
  • FIG. 8 is a schematic structural diagram of an access and mobility management network element device in an embodiment of the present application.
  • FIG. 10 is another schematic structural diagram of an access and mobility management network element device in an embodiment of the application.
  • FIG. 11 is another schematic structural diagram of a network element device for unified data management in an embodiment of the present application.
  • the embodiments of the present application provide a method for selecting a PLMN and a related device, which are used to ensure that the terminal instructs the terminal to access the PLMN corresponding to the current country in a timely manner when a movement across a national border occurs within the tracking.
  • the system framework of 5G mainly includes the following key logical network elements: radio access network (RAN), access and mobility management network elements (access and mobility) management function, AMF), session management function (SMF), user plane function (UPF), policy control function (PCF) and unified data management network element (unified data) management, UDM).
  • RAN radio access network
  • AMF access and mobility management network elements
  • SMF session management function
  • UPF user plane function
  • PCF policy control function
  • UDM unified data management network element
  • AMF is mainly responsible for the mobility management in the mobile network, such as user location update, user registration network and user switching functions.
  • SMF is mainly responsible for session management in mobile networks, such as session establishment, session modification, and session release functions.
  • UPF is mainly responsible for allocating Internet Protocol (IP) addresses to users and providing packet forwarding functions.
  • the PCF is responsible for providing policies to the AMF and SMF, for example, providing a quality of service policy and a slice selection policy.
  • the UDM is responsible for storing user data, such as subscription information, authorization information, and authentication information.
  • the application function (AF) is responsible for providing services to the 3rd generation partnership project (3GPP) network, such as influencing service routing and interacting with the PCF for policy control.
  • 3GPP 3rd generation partnership project
  • the network data analytics function is responsible for providing network analysis information to network function network elements (NF) such as AMF, SMF and PCF, and NWDAF notifies the network analysis information to the subscribed NF, or NF Specific network analysis information can also be obtained directly from NWDAF.
  • a data network may be an operator network that provides data transmission services for users, such as an IP multimedia service (ip multi-media service, IP multimedia service) and the Internet.
  • the terminal may be a terminal device such as a mobile phone or an IoT terminal, and the terminal accesses the DN by establishing a session from the terminal to the RAN to the UPF to the DN.
  • the RAN can be a device that provides satellite access for terminals. It is divided according to the functions of the satellite.
  • the RAN can include satellites, ground stations, and base stations (next generation Node B, gNB).
  • the remote radio unit mainly performs intermediate frequency processing on the signal, such as I/Q modulation and demodulation, frequency up and down conversion and analog-to-digital conversion.
  • the satellite can also perform radio frequency processing on the signal and realize the duplex function.
  • This satellite communication mode is called transparent Transmission mode (transparent satellite enabled NR-RAN).
  • the satellite can act as a gNB, and this satellite transmission mode is called regenerative satellite enabled NR-RAN.
  • the satellite can also act as a base station Data unit (gNB data Unit, gNB-DU).
  • gNB data Unit gNB-DU
  • the satellite has on-board processing capabilities.
  • 5G architecture is one of the architectures applicable to the embodiments of the present application, and the technical solutions of the embodiments of the present application can be applied to various mobile communication systems, such as future mobile communication systems.
  • the PLMNs that the terminal can receive through satellite include PLMN-A corresponding to country A and PLMN-B corresponding to country B.
  • the terminal should access the country The PLMN-B corresponding to B, assuming that the terminal accesses PLMN-B when it is in country B, and then moves to country A.
  • the terminal should access the PLMN corresponding to the current location, that is, country A. Corresponding PLMN-A.
  • both country A and country B may be within the coverage of communication satellites.
  • the terminal will no longer trigger the selection of PLMN. Therefore, the terminal cannot know the PLMN-A corresponding to country A, and thus cannot access the PLMN-A, which violates the supervision principle.
  • the AMF can periodically determine the current location of the terminal, and after determining the current location of the terminal, it can obtain the first information corresponding to the location of the terminal according to the location information of the terminal, and The first information is sent to the terminal, where the first information is used to determine the public land mobile network element to be accessed. That is, after receiving the first information, the terminal determines the public land mobile network of the current location according to the first information.
  • the first information may be replaced by instructing the terminal to access the public land mobile network corresponding to its location.
  • the first information may indirectly or directly instruct the terminal to access the public land mobile network corresponding to its location, for example, the indirect indication is that the first information indicates the public land mobile network, and the terminal determines that it needs to access according to the first information.
  • the information that enables the terminal to access the public land mobile network at the current location can be understood as the first information of the present application, which is not limited in the present application.
  • the first information may specifically include the identification information of the public land mobile network and the identification information of the area, or may include the identification information of the area.
  • the identification information of the area may specifically be a mobile country code (MCC);
  • MCC mobile country code
  • the identification information of the network may include a public land mobile network identification (PLMN identifier, PLMN ID) or a mobile network code (mobile network code, MNC), and the first information may also be presented in other forms, which are not limited in this application.
  • PLMN ID public land mobile network identification
  • MNC mobile network code
  • the process takes a network element in the 5G architecture as an example, and this example does not constitute a limitation of the embodiment of the present application.
  • the involved RAN can be replaced by the radio access network
  • the AMF can be replaced by the access and mobility management network element
  • the LMF can be replaced by the location management function.
  • the process includes:
  • the terminal and the RAN perform positioning measurement, and obtain the positioning measurement parameters of the terminal and the positioning measurement parameters of the RAN;
  • the terminal and the RAN perform positioning measurement for the terminal.
  • the downlink time difference of arrival (DL-TDOA) measurement method the uplink time difference of arrival (UL-TDOA) measurement method, the Cell round-trip delay measurement method (multiple round-trip time, MULTI-RTT) measurement method, uplink angle of arrival (uplink angle of arrival, UL-AOA) measurement method and downlink angle of departure (downlink angle of departure, UL-AOD) in
  • the positioning measurement parameter of the terminal is the time difference of the reference signals of different cells received by the terminal;
  • the terminal adopts the DL-AOD measurement method the The positioning measurement parameter is the received power of the reference signal received by the terminal from multiple transmission points; when the terminal can connect to both satellites and terrestrial base stations, the positioning measurement parameter of the terminal is the identifier of the terrestrial base station to which the terminal is connected.
  • the positioning measurement parameter of the RAN is the relative arrival time of the uplink signal received from the terminal.
  • the positioning measurement parameter of the RAN is the received uplink signal of the terminal. The azimuth of arrival and the vertex angle of arrival of the signal.
  • the positioning measurement parameters of the terminal and the positioning measurement parameters of the RAN may be used to determine the positioning information of the terminal.
  • only the terminal may perform the positioning measurement, or only the RAN may perform the positioning measurement, or neither the terminal nor the RAN may perform the positioning measurement, which is not specifically limited here.
  • the terminal sends an AN message to the RAN;
  • the AN message may also carry the ID of the PLMN selected by the terminal.
  • the terminal does not perform positioning measurement in step 501, the AN message sent by the terminal to the RAN in this step does not carry the positioning measurement parameters of the terminal.
  • the RAN sends an N2 message to the AMF;
  • the RAN may send an N2 message to the AMF, where the N2 message may carry the registration request, the positioning measurement parameters of the terminal, and the positioning measurement parameters of the RAN;
  • the N2 message sent by the RAN to the AMF only carries the positioning measurement parameters of the terminal, but does not carry the positioning measurement parameters of the RAN.
  • the RAN starts to perform positioning measurement, or according to the positioning measurement performed by the RAN on the UE in step 501, the N2 message sent by the RAN to the AMF may carry the positioning measurement parameters of the terminal and the positioning of the RAN. Measurement parameters.
  • the RAN must perform the positioning measurement, and the N2 message sent by the RAN to the AMF carries the positioning measurement parameters of the RAN.
  • the AMF can determine that the access technology of the terminal is satellite access according to the N2 message sent by the RAN.
  • the access technology of the terminal can be determined by the indication information carried in the N2 message. access to the network, or the access technology of the terminal may be determined as satellite access according to the identity of the RAN, or the access technology of the terminal may be determined as satellite access according to the tracking area of the RAN, which is not limited here. .
  • the AMF sends the location measurement parameters of the terminal and the location measurement parameters of the RAN to a location management function (location management function, LMF);
  • location management function location management function, LMF
  • the AMF may send the positioning measurement parameters of the terminal and the positioning measurement parameters of the RAN to the LMF.
  • the AMF only receives one of the positioning measurement parameters of the terminal and the positioning measurement parameters of the RAN, for example, only the positioning measurement parameters of the terminal are received, the AMF only needs to send the positioning measurement of the terminal to the LMF. parameter.
  • the LMF determines the positioning information according to the positioning measurement parameters of the terminal and the positioning measurement parameters of the RAN;
  • the LMF may determine the positioning information of the terminal, that is, determine the current location of the terminal.
  • the positioning information may be latitude and longitude information and altitude information.
  • the LMF sends the positioning information to the AMF;
  • the LMF may send the location information of the terminal to the AMF.
  • the AMF determines that the ID of the PLMN accessed by the terminal corresponds to the PLMN corresponding to the positioning information of the terminal;
  • the AMF After receiving the positioning information sent by the LMF, the AMF can determine whether the PLMN corresponding to the positioning information of the terminal corresponds to the ID of the PLMN accessed by the terminal. If so, the AMF allows the terminal to access the PLMN; if not, the AMF does not allow the terminal to access the PLMN, and sends a registration rejection message to the terminal.
  • the registration rejection message may carry information used to instruct the terminal to access the PLMN corresponding to the location information of the terminal.
  • the AMF sends a registration acceptance message to the terminal;
  • the AMF can send a registration acceptance message to the terminal, indicating that the terminal can access the PLMN through satellite.
  • the AMF After sending the registration acceptance message to the terminal, that is, the terminal has accessed through the satellite, the AMF can periodically send a positioning request to the LMF;
  • the AMF may not send the positioning request to the LMF, but send the first subscription request to the LMF, so as to periodically subscribe to the positioning information of the terminal.
  • the LMF sends positioning information to the AMF
  • the LMF After receiving the positioning request sent by the AMF, the LMF obtains the positioning information of the terminal, and sends the positioning information to the AMF. Alternatively, after receiving the first subscription request sent by the AMF, the LMF periodically acquires the positioning information of the terminal, and sends the positioning information to the AMF.
  • the AMF sends the first information to the terminal according to the positioning information
  • the AMF may determine the first information corresponding to the positioning information according to the positioning information, and send the determined first information to the terminal.
  • the second information may be configured on the AMF, where the second information is information indicating the coverage of the area, which may be specifically embodied in the form of longitude and latitude, tracking area, and cell.
  • the AMF may determine the first information corresponding to the positioning information according to the configured second information and the positioning information, and send the first information to the terminal.
  • the AMF may send the first information to the terminal only when the terminal moves across regions.
  • the second information may indicate the coverage of the national territory. In this case, when the terminal sends the cross-country movement For example, when the terminal moves from China to Russia, the AMF sends first information to the terminal, where the first information should instruct the terminal to access the Russian network.
  • the second information is not configured on the AMF, and after receiving the positioning information, the AMF determines the first information according to the positioning information. It should be noted that, in a specific implementation, when the first information determined by the AMF according to the positioning information is consistent with the first information determined last time recorded by the AMF, the AMF may not send the first information to the terminal; When the first information determined by the information is inconsistent with the last determined first information recorded by the AMF, the AMF sends the first information to the terminal.
  • the first information may be sent to the terminal in a form controlled by an operator or in a form controlled by a user.
  • the terminal accesses the PLMN to be accessed according to the first information.
  • the terminal After receiving the first information sent by the AMF, the terminal can access the PLMN to be accessed according to the first information, that is, access the PLMN corresponding to the first information.
  • steps 509 to 512 in this embodiment can also be implemented independently of steps 501 to 508. In specific implementation, it is only necessary to ensure that the terminal successfully accesses through the satellite, and then steps 509 to 509 can be executed. In step 512, the specific manner in which the terminal successfully accesses is implemented, which is not limited herein.
  • the AMF may periodically obtain the location information of the terminal, determine the first information corresponding to the location information of the terminal according to the location information of the terminal, and send the first information to the location information of the terminal. sent by the terminal, the terminal can access the corresponding PLMN according to the received first information without violating the supervision principle.
  • the RAN sends an N2 message to the AMF;
  • the RAN may send an N2 message to the AMF, where the N2 message may carry the registration request, the positioning measurement parameters of the terminal, and the positioning measurement parameters of the RAN;
  • the N2 message may also carry the PLMN ID selected by the terminal;
  • the AMF may determine that the terminal's access technology is satellite access according to the N2 message sent by the RAN, or may determine that the terminal's access technology is satellite access according to the RAN identifier, which is not specifically limited here.
  • the AMF After the AMF determines that the access technology of the terminal is satellite access, it can send messages such as AMF ID, subscription permanent identifier (SUPI), and RAT type to UDM through the Nudm_Registration message, where SUPI represents the identifier of the terminal, RAT type indicates the access mode of the terminal, that is, satellite access.
  • AMF ID AMF ID
  • SUPI subscription permanent identifier
  • RAT type RAT type indicates the access mode of the terminal, that is, satellite access.
  • Steps 605 to 609 in this embodiment are similar to steps 504 to 508 in the embodiment described in FIG. 5 , and details are not repeated here.
  • the AMF receives the second subscription request sent by the UDM;
  • the AMF After the AMF sends the registration acceptance message to the terminal, that is, the terminal has accessed through the satellite, at this time, the AMF can receive the second subscription request sent by the UDM, and the second subscription request carries the UDM ID, the terminal ID and the event ID, where , the terminal ID can be used to indicate the current location of the terminal, and the event ID can be used to indicate the location information of the UDM subscription terminal.
  • the second subscription request may further include indication information, where the indication information is used to indicate that the UDM periodically subscribes to the positioning information of the terminal, and specifically, the indication information may be a timer value;
  • the second subscription request may further include second information, where the second information is information indicating the coverage of the area, and the second information may specifically be embodied in the form of longitude and latitude, tracking area, and cell.
  • the second subscription request is used to instruct the AMF to send the location information of the terminal to the UDM only when it is determined that the terminal moves across regions.
  • the UDM may send the second information to the AMF through the second subscription request; when the second information is configured on the AMF, the UDM may not send the second information to the AMF,
  • the AMF can send the positioning information to the UDM according to its own configuration, or send the positioning information to the UDM only when the terminal moves across regions.
  • the AMF periodically sends a positioning request to the LMF
  • the AMF may periodically send a positioning request to the LMF, where the positioning request is used for the LMF to obtain the positioning information of the terminal and send the positioning information to the AMF.
  • the AMF may also send a first subscription request to the LMF for subscribing to the positioning information of the terminal.
  • the first subscription request in this step may further carry target information, where the target information is used to identify the intended recipient of the subscription notification.
  • the target information may be the identity of the AMF or the identity of the UDM.
  • the first subscription request may also carry second information.
  • the second information may be obtained by the AMF and sent to the LMF.
  • the AMF may obtain the second information from the UDM and send it to the LMF; or, the AMF may obtain the second information from the local configuration and send it to the LMF. Do limit.
  • the AMF may not send the second information to the LMF.
  • the first subscription request may be the same as the second subscription request in step 610 .
  • step 610 may not be performed, but step 611 may be directly performed, that is, after the AMF sends a registration accept message to the terminal, the AMF may directly send a positioning request to the LMF.
  • the LMF sends positioning information to the AMF
  • the LMF may directly send the positioning information to the UDM.
  • the AMF may send the positioning information to the UDM only when the terminal moves across regions. Specifically, the AMF determines that the terminal moves across regions according to the second information configured on the AMF or according to the second information received from the UDM.
  • step 613 may not be executed, but step 614 is directly executed.
  • the UDM sends an acquisition request to the roaming preference application function SOR-AF;
  • the UDM may send an acquisition request to the SOR-AF, where the acquisition request carries the positioning information.
  • the UDM may also send an acquisition request to the SOR-AF only when it is determined according to the positioning information that the terminal sends cross-area movement.
  • the SOR-AF sends the first information to the UDM
  • the SOR-AF After receiving the acquisition request sent by the UDM, the SOR-AF determines the first information according to the positioning information in the acquisition request, and sends the first information to the UDM.
  • the AMF sends the first information to the terminal
  • the AMF may send the first information to the terminal.
  • the first information may be sent to the terminal in a form controlled by an operator or in a form controlled by a user.
  • the terminal accesses the to-be-accessed PLMN according to the first information.
  • the terminal After receiving the first information sent by the AMF, the terminal can access the PLMN to be accessed, that is, access the PLMN corresponding to the first information.
  • the UDM can obtain the first information through the SOR-AF, and send the first information to the terminal through the AMF, and promptly instruct the terminal to access the PLMN corresponding to the current location, without violating the supervision principle.
  • Steps 701 to 713 in this embodiment are similar to steps 601 to 613 in the embodiment shown in FIG. 6 , and details are not repeated here.
  • the UDM sends the first information to the AMF;
  • the UDM may determine the first information according to the positioning information, and then send the first information to the AMF.
  • the UDM after receiving the positioning information sent by the AMF, the UDM can also determine the first information by itself, and does not need to obtain the first information from the SOR-AF.
  • the access and mobility management network element device 800 includes an obtaining module 801 and a sending module 801 .
  • an acquisition module 801, configured to periodically acquire the positioning information of the terminal when the terminal accesses the communication network through the satellite;
  • the sending module 802 is configured to send first information to the terminal according to the located information, where the first information is used to determine the public land mobile network to be accessed.
  • the obtaining module 801 is specifically configured to periodically send a positioning request to the positioning management function LMF, where the positioning request is used to request positioning information;
  • the obtaining module 801 is further configured to send a first subscription request to the LMF, where the first subscription request is used to subscribe to positioning information;
  • the acquiring module 801 is further configured to periodically receive positioning information from the LMF;
  • the obtaining module 801 is further configured to periodically send a positioning request to the positioning management function LMF according to the second subscription request, where the positioning request is used to request positioning information;
  • the acquiring module 801 is further configured to send a first subscription request to the LMF according to the second subscription request, where the first subscription request is used to subscribe to positioning information;
  • the acquiring module 801 is further configured to periodically receive positioning information from the LMF;
  • the sending module 802 is specifically configured to send positioning information to the unified data management network element
  • the sending module 802 is further configured to receive the first information from the unified data management network element;
  • the sending module 802 is further configured to send the first information to the terminal;
  • the sending module 802 is specifically configured to send positioning information to the unified data management network element when the terminal moves across regions;
  • the sending module 802 is specifically configured to send the first information to the terminal when the terminal moves across regions;
  • the obtaining module 801 is further configured to obtain positioning measurement parameters during the initial registration process
  • the sending module 802 is further configured to send positioning measurement parameters to the LMF, where the positioning measurement parameters are used to determine positioning information.
  • the unified data management network element device 900 includes a receiving module 901 and a sending module 902 .
  • a receiving module 901 configured to receive the positioning information of the terminal from the access and mobility management network element when the terminal accesses the communication network through the satellite;
  • the sending module 902 is configured to send first information to the terminal according to the located information, where the first information is used to determine the public land mobile network to be accessed.
  • the receiving module 901 is specifically configured to send a first subscription request to an access and mobility management network element, where the first subscription request is used to subscribe to positioning information;
  • the sending module 902 is specifically configured to send the first information to the terminal after receiving the positioning information
  • the sending module 902 is specifically configured to send the first information to the terminal when the terminal moves across regions;
  • the sending module 902 is specifically configured to send the first information to the terminal through the access and mobility management network element;
  • the sending module 902 is further configured to send an acquisition request to the roaming preference application function SOR-AF, where the acquisition request carries positioning information, and the acquisition request is used to request the first information.
  • FIG. 10 is a schematic structural diagram of an access and mobility management network element device according to an embodiment of the present application.
  • the access and mobility management network element device 1000 may include one or more central processing units (CPUs) ) 1001 and a memory 1005 in which one or more applications or data are stored.
  • CPUs central processing units
  • memory 1005 in which one or more applications or data are stored.
  • the memory 1005 may be volatile storage or persistent storage.
  • a program stored in memory 1005 may include one or more modules, each of which may include a series of instructions to operate on the server.
  • the central processing unit 1001 may be configured to communicate with the memory 1005 to execute a series of instruction operations in the memory 1005 on the server 1000 .
  • Server 1000 may also include one or more power supplies 1002, one or more wired or wireless network interfaces 1003, one or more input and output interfaces 1004, and/or, one or more operating systems, such as Windows ServerTM, Mac OS XTM , UnixTM, LinuxTM, FreeBSDTM, etc.
  • one or more operating systems such as Windows ServerTM, Mac OS XTM , UnixTM, LinuxTM, FreeBSDTM, etc.
  • the central processing unit 1001 may perform the operations performed by the access and mobility management network element equipment in the foregoing embodiments shown in FIG. 5 to FIG. 7 , and details are not described herein again.
  • the unified data management network element device 1100 may include one or more central processing units (central processing units, CPU) 1101 and a memory 1105,
  • the memory 1105 stores one or more application programs or data.
  • the memory 1105 may be volatile storage or persistent storage.
  • a program stored in memory 1105 may include one or more modules, each of which may include a series of instructions to operate on the server.
  • the central processing unit 1101 may be configured to communicate with the memory 1105 to execute a series of instruction operations in the memory 1105 on the server 1100 .
  • Server 1100 may also include one or more power supplies 1102, one or more wired or wireless network interfaces 1103, one or more input and output interfaces 1104, and/or, one or more operating systems, such as Windows ServerTM, Mac OS XTM , UnixTM, LinuxTM, FreeBSDTM, etc.
  • one or more operating systems such as Windows ServerTM, Mac OS XTM , UnixTM, LinuxTM, FreeBSDTM, etc.
  • the central processing unit 1101 may perform the operations performed by the unified data management network element device in the foregoing embodiments shown in FIG. 5 to FIG. 7 , and details are not described herein again.
  • the disclosed system, apparatus and method may be implemented in other manners.
  • the apparatus embodiments described above are only illustrative.
  • the division of the units is only a logical function division. In actual implementation, there may be other division methods.
  • multiple units or components may be combined or Can be integrated into another system, or some features can be ignored, or not implemented.
  • the shown or discussed mutual coupling or direct coupling or communication connection may be through some interfaces, indirect coupling or communication connection of devices or units, and may be in electrical, mechanical or other forms.
  • the units described as separate components may or may not be physically separated, and components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution in this embodiment.
  • each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist physically alone, or two or more units may be integrated into one unit.
  • the above-mentioned integrated units may be implemented in the form of hardware, or may be implemented in the form of software functional units.
  • the integrated unit if implemented in the form of a software functional unit and sold or used as an independent product, may be stored in a computer-readable storage medium.
  • the technical solutions of the present application can be embodied in the form of software products in essence, or the parts that contribute to the prior art, or all or part of the technical solutions, and the computer software products are stored in a storage medium , including several instructions for causing a computer device (which may be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of the present application.
  • the aforementioned storage medium includes: U disk, mobile hard disk, read-only memory (ROM, read-only memory), random access memory (RAM, random access memory), magnetic disk or optical disk and other media that can store program codes .

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Abstract

本申请实施例提供了一种公用陆地移动网的选择方法,用于指示终端接入待接入的PLMN。本申请实施例方法包括:接入和移动性管理网元周期性地获取终端的定位信息,并根据终端的定位信息确定出第一信息,并将该第一信息向终端发送,使得终端接入与第一信息对应的PLMN。

Description

一种公用陆地移动网的选择方法以及相关装置 技术领域
本申请涉及通信领域,尤其涉及一种公用陆地移动网的选择方法以及相关装置。
背景技术
通信卫星拥有较大的覆盖范围,在其可以覆盖的范围内往往存在多个区域,按照监管原则,终端应当接入该终端当前所在的区域对应的公用陆地移动网(public land mobile network,PLMN)。
在现有的技术中,终端在接入到PLMN的过程中,接入和移动性管理网元(access and mobility management function,AMF)会判断终端选择接入的PLMN是否与终端所处的区域对应的PLMN一致,如果一致,则允许终端接入,如果不一致,则不允许终端接入;当终端成功接入当前所在区域对应的PLMN之后,AMF会为终端分配注册区,由于通信卫星的覆盖范围较大,该注册区可能会覆盖多个区域。
然而,由于旅行等因素的影响,终端在注册区内进行移动的时候有可能会移动出当前所在区域的边界,当终端移动出该区域的边界之后,终端并不会触发重新接入PLMN的过程,因此终端无法接入当前所处的区域对应的PLMN,而这违反了监管原则。
发明内容
本申请实施例提供了一种公用陆地移动网的选择方法以及相关装置,用于确保终端移出区域边界后及时地接入当前所在区域对应的PLMN。
本申请实施例第一方面提供了一种公用陆地移动网的选择方法:
当终端通过卫星接入通信网络时,接入和移动性管理网元就可以开始周期性地获取终端的定位信息,在获取到终端的定位信息之后,接入和移动性管理网元可以根据该终端的定位信息确定出用于终端确定待接入的公用陆地移动网的第一信息,并将该第一信息向终端发送。
本申请实施例中,接入和移动性管理网元通过周期性地根据定位信息确定出第一信息,并向终端发送该第一信息,从而令终端可以接入待接入的公用陆地移动网,也即可以接入与终端的当前所在区域对应的公用陆地移动网,不违反监管原则。
结合第一方面,本申请实施例第一方面的第一种实现方式中,第一信息可以包括公用陆地移动网的标识信息以及区域的标识信息,或者,第一信息也可以包括区域的标识信息。
本申请实施例中,限定了第一信息的具体内容,提高了方案的可实现性。
结合第一方面或第一方面的第一种实现方式,本申请实施例第一方面的第二种实现方式中,接入和移动性管理网元可以通过周期性地向定位管理功能发送定位请求的方式来获取定位信息,接入和移动性管理网元在向定位管理功能发送定位请求后可以接收到来自定位管理功能的定位信息,或者,接入和移动性管理网元也可以向定位管理功能发送第一订阅请求,该第一订阅请求用于定位管理功能周期性地向接入和移动性管理网元发送定位信息。
本申请实施例中,限定了接入和移动性管理网元获取定位信息的具体方式,提高了方案的可实现性。
结合第一方面或第一方面的第一种实现方式,本申请实施例第一方面的第三种实现方式中,接入和移动性管理网元先接收到来自统一数据管理网元的第二订阅请求,这之后接入和移动性管理网元根据第二订阅请求周期性地向定位管理功能发送定位请求,以获取定位信息,或者,在接收到统一数据管理网元的第二订阅请求后,接入和移动性管理网元也可以向定位管理功能发送第一订阅请求,该第一订阅请求用于定位管理功能周期性地向接入和移动性管理网元发送定位信息。
本申请实施例中,限定了接入和移动性管理网元获取定位信息的另一种方式,提高了方案的可实现性。
结合第一方面的第三种实现方式,本申请实施例第一方面的第四种实现方式中,第二订阅请求中可以包括第二信息,该第二信息用于确定终端发生跨区域的移动。
结合第一方面的第二种实现方式至第四种实现方式中任一种的实现方式,本申请实施例第一方面的第五种实现方式中,接入和移动性管理网元可以向统一数据管理网元发送定位信息,这之后,接入和移动性管理网元可以接收来自统一数据管理网元的第一信息,然后接入和移动性管理网元可以向终端发送该第一信息。
本申请实施例中,限定了接入和移动性管理网元向终端发送第一信息的方式,提高了方案的可实现性。
结合第一方面的第五种实现方式,本申请实施例第一方面的第六种实现方式中,接入和移动性管理网元可以接收来自统一数据管理网元的SOR信息,该SOR信息中携带了第一信息,接入和移动性管理网元在接收到该SOR信息后,向终端发送该SOR信息。
结合第一方面的第五种实现方式或第六种实现方式,本申请实施例第一方面的第七种实现方式中,接入和移动性管理网元可以在确定终端发生跨区域的移动时,再向统一数据管理网元发送定位信息。
本申请实施例中,当终端发送跨区域的移动时,接入和移动性管理网元再发送定位信息,降低了网络资源的消耗。
结合第一方面、第一方面的第一种实现方式至第一方面的第二种实现方式中的任一种,本申请实施例第一方面的第八种实现方式中,接入和移动性管理网元可以在确定终端发生跨区域的移动时,再向终端发送定位信息。
本申请实施例中,当终端发送跨区域的移动时,接入和移动性管理网元再向终端发送定位信息,降低了网络资源的消耗。
结合第一方面、第一方面的第一种实现方式至第一方面的第八种实现方式中的任一种,本申请实施例第一方面的第九种实现方式中,接入和移动性管理网元在周期性地获取终端的定位信息之前,在终端进行初始认证的过程中,接入和移动性管理网元可以获取定位测量参数,在获取到定位测量参数后,可以将定位测量参数向定位管理功能发送,该定位测量参数用于确定定位信息。
本申请实施例中,在终端的初始过程中,接入和移动性管理网元便可以获取用于确定定位信息的定位测量信息,并向定位管理功能发送,提高了公用陆地移动网的选择效率。
本申请实施例第二方面提供了一种公用陆地移动网选择方法:
当终端通过卫星接入通信网络的时候,统一数据管理网元可以接收来自接入和移动性管理网元的终端的定位信息,在接收到该定位信息后,统一数据管理网元根据该定位信息确定出第一信息,并向终端发送该第一信息,该第一信息用于确定待接入的公用陆地移动网。
本申请实施例中,统一数据管理网元根据终端的定位信息向终端发送第一信息,该第一信息用于终端接入待接入的公用陆地移动网,也即可以接入该终端当前所在位置对应的公用陆地移动网,从而不违反监管原则。
结合第二方面,本申请实施例第二方面的第一种实现方式中,第一信息可以包括公用陆地移动网的标识信息以及区域的标识信息,或者,第一信息也包括区域的标识信息。
结合第二方面或第二方面的第一种实现方式,本申请实施例第二方面的第二种实现方式中,统一数据管理网元可以向接入和移动性管理网元发送第一订阅请求,该第一订阅请求用于订阅定位信息,在发送了第一订阅请求之后,统一数据管理网元可以接收来自接入和移动性管理网元的定位信息。
结合第二方面的第二种实现方式,本申请实施例第二方面的第三种实现方式中,第一订阅请求中可以包括第二信息,该第二信息用于确定终端发生跨区域的移动,这时,第一订阅请求用于订阅定位信息即为第一订阅请求用于订阅在终端发生跨区域的移动时的定位信息。
结合第二方面的第三种实现方式,本申请实施例第二方面的第四种实现方式中,统一数据管理网元在接收到定位信息后,可以向终端发送第一信息。
结合第二方面。第二方面的第一种实现方式或第二方面的第二种实现方式中的任一种,本申请实施例第二方面的第五种实现方式中,统一数据管理网元可以根据定位信息确定终端发生了跨区域的移动,当确定终端发生了跨区域的移动的时候,统一数据管理网元向终端发送第一信息。
本申请实施例中,统一数据管理网元在确定终端发送跨区域移动后再向终端发送第一信息,降低了网络的负载程度。
结合第二方面、第二方面的第一种实现方式至第二方面的第五种实现方式中的任一种,本申请实施例第二方面的第六种实现方式中,统一数据管理网元可以通过接入和移动性管理网元向终端发送第一信息。
本申请实施例中,限定了统一数据管理网元向终端发送第一信息的方式,提高了方案的可实现性。
结合第二方面的第六种实现方式,本申请实施例第二方面的第七种实现方式中,统一数据管理网元可以向漫游优选应用功能发送获取请求,该获取请求可以携带定位信息,漫游优选应用功能在接收到该获取请求后,可以向统一数据管理网元发送第一信息。
本申请实施例中,统一数据管理网元还可以通过漫游优选应用功能确定第一信息,提高了方案的可实现性。
本申请实施例第三方面提供了一种公用陆地移动网选择的设备,该设备具有实现上述 第一方面中接入和移动性管理网元行为的功能。该功能可以通过硬件实现,也可以通过硬件执行相应的软件实现。该硬件或软件包括一个或多个与上述功能对应的模块。
本申请实施例第四方面提供了一种公用陆地移动网选择的设备,该设备具有实现上述第二方面中统一数据管理网元行为的功能。该功能可以通过硬件实现,也可以通过硬件执行相应的软件实现。该硬件或软件包括一个或多个与上述功能对应的模块。
本申请实施例第五方面提供了一种公用陆地移动网选择的设备,包括处理器、存储器、输入输出设备以及总线;
处理器、存储器、输入输出设备与总线相连;
处理器用于执行上述第一方面中任一项所述的方法。
结合上述第五方面,在一种可能的实现方式中,该设备可以是芯片或芯片系统。其中,当该设备是芯片系统时,该设备可以由芯片构成,也可以包含芯片和其他分立器件。
本申请实施例第六方面提供了一种公用陆地移动网选择的设备,包括处理器、存储器、输入输出设备以及总线;
处理器、存储器、输入输出设备与总线相连;
处理器用于执行上述第二方面中任一项所述的方法。
结合上述第六方面,在一种可能的实现方式中,该设备可以是芯片或芯片系统。其中,当该设备是芯片系统时,该设备可以由芯片构成,也可以包含芯片和其他分立器件。
本申请实施例第七方面提供了一种公用陆地移动网选择的系统,该系统包括上述第一方面至第二方面中任一项所述的设备,以及第三方面至第六方面中任一项所述的设备。
本申请实施例第八方面提供了一种计算机存储介质,该计算机可读存储介质中保存有程序,当所述计算机执行所述程序时,执行前述第一方面或第二方面中任一项所述的方法。
本申请实施例第九方面提供了一种计算机程序产品,当该计算机程序产品在计算机上执行时,计算机执行前述第一方面或第二方面中任一项所述的方法。
附图说明
图1为本申请实施例中通信系统架构的一个示意图;
图2为本申请实施例中通信系统架构的另一示意图;
图3为本申请实施例中通信系统架构的另一示意图;
图4为本申请实施例中PLMN选择的一个示意图;
图5为本申请实施例中PLMN选择方法的一个流程示意图;
图6为本申请实施例中PLMN选择方法的另一流程示意图;
图7为本申请实施例中PLMN选择方法的另一流程示意图;
图8为本申请实施例中接入和移动性管理网元设备的一个结构示意图;
图9为本申请实施例中统一数据管理网元设备的一个结构示意图;
图10为本申请实施例中接入和移动性管理网元设备的另一结构示意图;
图11为本申请实施例中统一数据管理网元设备的另一结构示意图。
具体实施方式
本申请实施例提供了一种PLMN的选择方法以及相关装置,用于确保终端在跟踪内发生 跨越国家边界的移动时,及时地指示终端接入与当前所在国家对应的PLMN。
请参阅图1,5G(5th generation mobile networks,5G)的系统框架主要包括以下几个关键逻辑网元:无线接入网络(radio access network,RAN)、接入和移动管理网元(access and mobility management function,AMF)、会话管理网元(session management function,SMF)、用户面网元(user plane function,UPF)、策略控制网元(policy control function,PCF)以及统一数据管理网元(unified data management,UDM)。
AMF主要负责移动网络中的移动性管理,如用户位置更新、用户注册网络以及用户切换等功能。SMF主要负责移动网络中的会话管理,例如会话的建立、会话的修改以及会话的释放等功能。UPF主要负责为用户分配互联网协议(internet protocol address,IP)地址以及提供报文转发功能。PCF负责向AMF以及SMF提供策略,例如,提供服务质量策略以及切片选择策略等。UDM负责存储用户数据,例如签约信息、授权信息以及鉴权信息。应用功能(application function,AF)负责向第三代合作计划(3rd generation partnership project,3GPP)网络提供业务,例如影响业务路由以及与PCF之间交互以进行策略控制。网络数据分析功能(network data analytics function,NWDAF)负责向例如AMF、SMF以及PCF的网络功能网元(network function,NF)提供网络分析信息,NWDAF将网络分析信息通知给已订阅的NF,或者NF也可以直接从NWDAF中获取特定的网络分析信息。数据网络(data network,DN)可以是为用户提供数据传输服务的运营商网络,例如IP多媒体业务(ip multi-media service,IP多媒体业务)以及互联网等。终端可以是例如手机或物联网终端等的终端设备,终端通过建立终端到RAN到UPF到DN之间的会话来访问DN。
RAN可以是为终端提供卫星接入的设备,按照卫星的功能进行划分,RAN可以包括卫星、地面站以及基站(next generation Node B,gNB),在一种情况中,请参阅图2,卫星作为射频拉远单元,主要对信号进行中频处理,例如I/Q的调制解调、上下变频以及模数转换,卫星还可以对信号进行射频处理以及实现双工功能,这种卫星通信模式称为透明传输模式(transparent satellite enabled NR-RAN)。在另一种情况中,请参阅图3,卫星可以作为gNB,这种卫星传输模式称为再生传输模式(regenerative satellite enabledNR-RAN),需要说明的是,再生传输模式下,卫星还可以作为基站数据单元(gNB data Unit,gNB-DU)。在再生传输模式下,卫星具备星上处理能力。
需要说明的是,上述5G架构是本申请实施例所能应用的架构之一,本申请实施例的技术方案可以应用于各种移动通信系统,例如未来的移动通信系统。
请参阅图4,以终端所处位置在国家B为例,终端通过卫星可以接收到的PLMN包括国家A对应的PLMN-A以及国家B对应的PLMN-B,按照监管原则,终端应该接入国家B对应的PLMN-B,假设终端在处于国家B时接入了PLMN-B,然后移动到了国家A,按照监管原则,此时终端应该接入当前所处位置对应的PLMN,也即是国家A对应的PLMN-A。
然而,由于通信卫星的覆盖范围较大,国家A与国家B可能都处于通信卫星的覆盖范围内,这时如果终端由于旅行等原因从国家B移动到国家A,终端不会再触发选择PLMN的流程,因此终端无法获知国家A对应的PLMN-A,进而也无法接入到PLMN-A,违反了监管原 则。
本申请实施例中,以5G架构为例,AMF可以周期性地确定终端当前所在的位置,在确定了终端的当前位置之后,可以根据终端的定位信息获取其所在位置对应的第一信息,并将该第一信息向终端发送,该第一信息用于确定待接入的公用陆地移动网元。即终端接收第一信息后,根据第一信息确定当前所在位置的公用陆地移动网。
其中,第一信息可替换为指示终端接入其所在位置对应的公用陆地移动网。需要注意的是,第一信息可以间接指示或直接指示终端接入其所在位置对应的公用陆地移动网,间接指示例如是第一信息指示公用陆地移动网,终端根据该第一信息确定需要接入该公用陆地移动网,或者是第一信息指示终端当前所在位置的区域,终端根据该第一信息确定该区域所对应的公用陆地移动网元。可以理解的是,能够使终端接入当前位置的公用陆地移动网的信息都可理解为本申请的第一信息,本申请不作限定。
第一信息具体可以包括公用陆地移动网的标识信息以及区域的标识信息,或者包括区域的标识信息,具体的,区域的标识信息具体可以是移动国家码(mobile country code,MCC);公用陆地移动网的标识信息可以包括公用陆地移动网的标识(PLMN identifier,PLMN ID)或移动网络码(mobile network code,MNC),第一信息也可以以其他的形式呈现,本申请不作限定。
下面对本申请的实施例进行具体说明:
请参阅图5,本申请实施例中PLMN选择方法的一个流程,需注意的是,该流程以5G架构中的网元为例,该举例并不构成本申请实施例的限定,该流程中所涉及的RAN可以替换为无线接入网络,AMF可以替换为接入和移动性管理网元,LMF可以替换为定位管理功能,该流程包括:
501、终端以及RAN执行定位测量,获得终端的定位测量参数以及RAN的定位测量参数;
终端以及RAN执行针对终端的定位测量,具体的,可以采用下行到达时间差(downlink time difference of arrival,DL-TDOA)测量法、上行到达时间差(uplink time difference of arrival,UL-TDOA)测量法、多小区往返时延测量法(multiple round-trip time,MULTI-RTT)测量法、上行到达角(uplink angle of arrival,UL-AOA)测量法以及下行离开角(downlink angle of departure,UL-AOD)中的一种或多种方法,具体的,当终端采用DL-TDOA测量法时,终端的定位测量参数为终端接收到的不同小区的参考信号时差;当终端采用DL-AOD测量法时,终端的定位测量参数为终端从多个传输点接收到的参考信号接收功率;当终端既能连接卫星又能连接陆地基站时,终端的定位测量参数为终端所连接的陆地基站的标识。当RAN采用UL-TDOA测量法时,RAN的定位测量参数为从终端接收到的上行信号的相对到达时间,当RAN采用UL-AOA测量法时,RAN的定位测量参数为接收到的终端的上行信号的到达方位角以及到达顶角。终端的定位测量参数以及RAN的定位测量参数可以用于确定终端的定位信息。
需要说明的是,在该步骤中,可以只由终端执行定位测量,或者只由RAN执行定位测量,或者终端和RAN都不执行定位测量,具体此处不做限定。
502、终端向RAN发送AN消息;
终端可以向RAN发送AN消息,该AN消息中可以携带注册请求以及终端的定位测量参数,其中,终端的定位测量参数可以包含在注册请求中。
可选的,AN消息中还可以携带终端选择的PLMN的ID。
需要说明的是,如果在步骤501中,终端没有执行定位测量,则该步骤中终端向RAN发送的AN消息中不携带终端的定位测量参数。
503、RAN向AMF发送N2消息;
RAN在接收到终端发送的AN消息之后,可以向AMF发送N2消息,该N2消息可以携带注册请求、终端的定位测量参数以及RAN的定位测量参数;
可选的,N2消息中还可以携带终端选择的PLMN的ID;
需要说明的是,如果在步骤501中,只由终端执行了定位测量,则在该步骤中,RAN向AMF发送的N2消息中只携带终端的定位测量参数,而不携带RAN的定位测量参数,或者,RAN在接收到终端发送的AN消息后,开始执行定位测量或者根据步骤501中RAN对UE的定位测量,在RAN向AMF发送的N2消息中,可以携带终端的定位测量参数以及RAN的定位测量参数。或者,如果在步骤501中,终端和RAN都没有执行定位测量,则在该步骤中,RAN必须执行定位测量,则RAN向AMF发送的N2消息中,携带RAN的定位测量参数。
需要说明的是,AMF可以根据RAN发送的N2消息确定终端的接入技术为卫星接入,例如通过N2消息中携带的指示信息确定终端的接入技术,该指示信息用于指示终端通过卫星接入网络,或者也可以根据RAN的标识确定终端的接入技术为卫星接入,或者也可以根据RAN的跟踪区(tracking area)确定终端的接入技术为卫星接入,具体此处不做限定。
504、AMF向定位管理功能(location management function,LMF)发送终端的定位测量参数以及RAN的定位测量参数;
在接收到RAN发送的终端的定位测量参数以及RAN的定位测量参数之后,AMF可以向LMF发送终端的定位测量参数以及RAN的定位测量参数。
需要说明的是,如果AMF只接收到终端的定位测量参数以及RAN的定位测量参数中的一种定位测量参数,例如只接收到终端的定位测量参数,则AMF只需向LMF发送终端的定位测量参数。
505、LMF根据终端的定位测量参数以及RAN的定位测量参数确定定位信息;
在接收到AMF发送的定位测量参数之后,LMF可以确定终端的定位信息,即确定终端的当前所在位置,具体的,定位信息可以为经纬度信息以及高度信息。
506、LMF向AMF发送定位信息;
在确定了终端的定位信息之后,LMF可以向AMF发送该终端的定位信息。
507、AMF确定终端接入的PLMN的ID与终端的定位信息对应的PLMN对应;
AMF在接收到LMF发送的定位信息之后,可以判断终端的定位信息对应的PLMN与终端接入的PLMN的ID是否对应。若对应,则AMF允许终端接入该PLMN;若不对应,则AMF不允许终端接入该PLMN,并向终端发送注册拒绝消息。该注册拒绝消息中可以携带用于指示终端接入与终端的定位信息对应的PLMN的信息。
508、AMF向终端发送注册接受消息;
在确定终端选择的PLMN ID与终端的定位信息对应的PLMN一致后,AMF可以向终端发送注册接受消息,表示终端可以通过卫星接入该PLMN。
509、AMF周期性地向LMF发送定位请求;
在向终端发送注册接受消息后,也即终端已经通过卫星接入,这时AMF可以周期性地向LMF发送定位请求;
或者AMF也可以不向LMF发送定位请求,而是向LMF发送第一订阅请求,从而周期性地订阅终端的定位信息。
510、LMF向AMF发送定位信息;
LMF接收到AMF发送的定位请求后,获取终端的定位信息,并将该定位信息向AMF发送。或者,LMF接收到AMF发送的第一订阅请求后,周期性获取终端的定位信息,并将该定位信息向AMF发送。
511、AMF根据定位信息向终端发送第一信息;
AMF接收到LMF发送的定位信息之后,可以根据定位信息确定出与该定位信息对应的第一信息,并将确定出来的第一信息向终端发送。
在一种可能的实现中,AMF上可以配置第二信息,该第二信息为表示区域的覆盖范围的信息,具体可以以经纬度、跟踪区以及小区等形式体现。AMF在接收到定位信息之后,可以根据配置的第二信息以及定位信息确定出定位信息对应的第一信息,并将该第一信息向终端发送。可选的,AMF可以在终端发生跨区域的移动时才向终端发送该第一信息,具体的,第二信息可以表示国家领土的覆盖范围,在这种情况下,当终端发送跨国家的移动,例如,当终端从中国移动到俄罗斯时,AMF向终端发送第一信息,该第一信息应指示终端接入俄罗斯的网络。
在另一种可能的实现中,AMF上没有配置第二信息,AMF在接收到定位信息之后,根据定位信息确定出第一信息。需要说明的是,在具体的实现中,当AMF根据定位信息确定出的第一信息与AMF记录的上一次确定的第一信息一致时,AMF可以不向终端发送第一信息;当AMF根据定位信息确定出的第一信息与AMF记录的上一次确定的第一信息不一致时,AMF向终端发送第一信息。
需要说明的是,该第一信息可以以运营商控制的形式,或者以用户控制的形式发送至终端。
512、终端根据第一信息接入待接入的PLMN。
在接收到AMF发送的第一信息之后,终端可以根据第一信息接入待接入的PLMN,也即接入与该第一信息对应的PLMN。
需要说明的是,本实施例的步骤509至步骤512也可以不依赖于步骤501至步骤508的基础上实现,在具体的实现中只需要保证终端成功通过卫星接入,就可以执行步骤509至步骤512,具体实现终端成功接入的方式,在此不做限定。
本申请实施例中,AMF在终端接入PLMN后,可以周期性地获取终端的定位信息,并根据终端的定位信息确定出与终端的定位信息对应的第一信息,并将该第一信息向终端发送,终端可以根据接收到的第一信息接入对应的PLMN,而不违反监管原则。
请参阅图6,本申请实施例PLMN选择方法的另一流程,需注意的是,该流程以5G架构中的网元为例,该举例并不构成本申请实施例的限定,该流程中所涉及的RAN可以替换为无线接入网络,AMF可以替换为接入和移动性管理网元,LMF可以替换为定位管理功能,该流程包括:
本实施例步骤601至步骤602与图5所示实施例中步骤501至步骤502类似,在此不再赘述。
603、RAN向AMF发送N2消息;
RAN在接收到终端发送的AN消息之后,可以向AMF发送N2消息,该N2消息可以携带注册请求、终端的定位测量参数以及RAN的定位测量参数;
可选的,N2消息中还可以携带终端选择的PLMN ID;
需要说明的是,AMF可以根据RAN发送的N2消息确定终端的接入技术为卫星接入,或者也可以根据RAN的标识确定终端的接入技术为卫星接入,具体此处不做限定。
604、AMF向UDM发送无线接入技术类型(radio access technology type,RAT type)消息;
AMF在确定终端的接入技术为卫星接入后,可以通过Nudm_Registration消息向UDM发送AMF ID、签约永久标识(subscription permanent identifier,SUPI)以及RAT type等消息,其中,SUPI表示的是终端的标识,RAT type表示的是终端的接入方式,也即为卫星接入。
本实施例步骤605至步骤609与图5所述的实施例中步骤504至508类似,具体此处不再赘述。
610、AMF接收UDM发送的第二订阅请求;
AMF在向终端发送注册接受消息后,也即终端已经通过卫星接入,这时,AMF可以接收UDM发送的第二订阅请求,该第二订阅请求中携带UDM ID、终端ID以及event ID,其中,终端ID可以用于表示终端当前的所处位置,event ID可以用于表示UDM订阅终端的定位信息。
可选的,第二订阅请求中还可以包含指示信息,该指示信息用于表示UDM周期性地订阅终端的定位信息,具体的,该指示信息可以为定时器值;
可选的,第二订阅请求中还可以包含第二信息,该第二信息为表示区域的覆盖范围的信息,该第二信息具体可以以经纬度、跟踪区、小区等形式体现。当第二订阅请求中包含第二信息时,第二订阅请求用于指示AMF在确定终端发生跨区域的移动时才向UDM发送终端的定位信息。需要说明的是,当UDM上配置了第二信息时,UDM可以通过第二订阅请求向AMF发送该第二信息;当AMF上配置了第二信息时,UDM可以不向AMF发送第二信息,AMF可以根据自身的配置情况将定位信息向UDM发送,或者,在终端发生跨区域的移动时才将定位信息向UDM发送。
需要说明的是,步骤610也可以在步骤604之后,步骤605之前执行。
611、AMF周期性地向LMF发送定位请求;
在接收到UDM发送的第二订阅请求后,AMF可以周期性地向LMF发送定位请求,该定 位请求用于LMF获取终端的定位信息,并将该定位信息向AMF发送。
或者,AMF也可以向LMF发送第一订阅请求,用于订阅终端的定位信息。可选的,该步骤中的第一订阅请求还可以携带目标信息,该目标信息用于标识订阅通知的目的接收端。该目标信息可以是AMF的标识,也可以是UDM的标识。可选的,第一订阅请求还可以携带第二信息。该第二信息可以为AMF获取并发送至LMF的,例如,AMF从UDM获取第二信息再发送至LMF;或者,AMF也可以从本地配置获取第二信息,再发送至LMF,具体此处不做限定。当LMF上配置有第二信息时,AMF可以不向LMF发送第二信息。需要说明的是,第一订阅请求可以与步骤610中的第二订阅请求相同。
需要说明的是,在实际的应用中,步骤610也可以不执行,而是直接执行步骤611,也即AMF向终端发送注册接受消息后,AMF可以直接向LMF发送定位请求。
612、LMF向AMF发送定位信息;
LMF接收到该定位请求后,获取终端的定位信息,并将该定位信息向AMF发送。
需要说明的是,当步骤611中的第一订阅请求包含的目标信息为UDM的标识时,LMF可以直接向UDM发送定位信息。
613、AMF向UDM发送定位信息;
AMF在接收到LMF发送的定位信息之后,可以向UDM发送该定位信息,具体的,AMF可以通过UDM提供的服务化接口信息Nudm_ParameterProvision_Update向UDM发送定位信息,或者,AMF也可以通过UDM提供的服务化信息Namf_EventExsposure_Notify向UDM发送定位信息。
可选的,AMF可以在终端发生跨区域的移动时,才向UDM发送该定位信息。具体的,AMF根据AMF上配置的第二信息,或者根据从UDM接收到的第二信息,确定终端发生跨区域的移动。
需要说明的是,在步骤612中LMF直接向UDM发送定位信息的情况下,步骤613也可以不执行,而直接执行步骤614。
614、UDM向漫游优选应用功能SOR-AF发送获取请求;
在接收到AMF发送的定位信息之后,UDM可以向SOR-AF发送获取请求,该获取请求中携带定位信息。
可选的,UDM也可以在根据定位信息确定终端发送跨区域的移动时,才向SOR-AF发送获取请求。
615、SOR-AF向UDM发送第一信息;
在接收到UDM发送的获取请求之后,SOR-AF根据获取请求中的定位信息确定第一信息,并将该第一信息向UDM发送。
616、UDM向AMF发送第一信息;
在接收到SOR-AF发送的第一信息之后,UDM可以将该第一信息向AMF发送。
617、AMF向终端发送第一信息;
在接收到UDM发送的第一信息之后,AMF可以向终端发送该第一信息。
需要说明的是,该第一信息可以以运营商控制的形式,或者以用户控制的形式发送至 终端。
618、终端根据第一信息接入待接入的PLMN。
在接收到AMF发送的第一信息之后,终端可以接入待接入的PLMN,也即接入与该第一信息对应的PLMN。
需要说明的是,本实施例的步骤610至步骤618也可以不依赖于步骤601至步骤609的基础上实现,在具体的实现中只需要保证终端成功通过卫星接入,就可以执行步骤610至步骤618,具体实现终端成功接入的方式,在此不做限定。
本申请实施例中,UDM可以通过SOR-AF获取第一信息,并通过AMF将该第一信息向终端发送,及时地指示终端接入与当前所在位置对应的PLMN,不违反监管原则。
请参阅图7,本申请实施例PLMN选择方法的另一流程,需注意的是,该流程以5G架构中的网元为例,该举例并不构成本申请实施例的限定,该流程中所涉及的RAN可以替换为无线接入网络,AMF可以替换为接入和移动性管理网元,LMF可以替换为定位管理功能,该流程包括:
本实施例中步骤701至步骤713与图6所示实施例中步骤601至步骤613类似,具体不再赘述。
714、UDM向AMF发送第一信息;
UDM在接收到AMF发送的定位信息之后,可以根据定位信息确定出第一信息,再将该第一信息向AMF发送。
可选的,UDM也可以在根据定位信息确定终端发送跨区域的移动之后,再向AMF发送第一信息。
本实施例中步骤715至步骤716与图6所示实施例中步骤617至步骤618类似,具体不再赘述。
本申请实施例中,UDM在接收到AMF发送的定位信息之后,也可以自行确定第一信息,不需要再向SOR-AF获取第一信息。
下面对本申请实施例中的接入和移动性管理网元设备进行描述:
请参阅图8,本申请实施例中,接入和移动性管理网元设备800包括获取模块801以及发送模块801。
获取模块801,用于当终端通过卫星接入通信网络时,周期性地获取终端的定位信息;
发送模块802,用于根据所定位信息向终端发送第一信息,第一信息用于确定待接入的公用陆地移动网。
在上述图8所示的接入和移动性管理网元设备800的基础上,
获取模块801,具体用于周期性地向定位管理功能LMF发送定位请求,定位请求用于请求定位信息;
获取模块801,还用于向LMF发送第一订阅请求,第一订阅请求用于订阅定位信息;
获取模块801,还用于周期性地接收来自LMF的定位信息;
获取模块801,具体用于接收来自统一数据管理网元的第二订阅请求;
获取模块801,还用于根据第二订阅请求周期性地向定位管理功能LMF发送定位请求, 定位请求用于请求定位信息;
获取模块801,还用于根据第二订阅请求向LMF发送第一订阅请求,第一订阅请求用于订阅定位信息;
获取模块801,还用于周期性地接收来自LMF的定位信息;
发送模块802,具体用于向统一数据管理网元发送定位信息;
发送模块802,还用于接收来自统一数据管理网元的第一信息;
发送模块802,还用于向终端发送第一信息;
发送模块802,具体用于当终端发生跨区域的移动时,向统一数据管理网元发送定位信息;
发送模块802,具体用于当终端发生跨区域的移动时,向终端发送第一信息;
获取模块801,还用于在初始注册过程中,获取定位测量参数;
发送模块802,还用于向LMF发送定位测量参数,定位测量参数用于确定定位信息。
下面对本申请实施例中的统一数据管理网元设备进行描述:
请参阅图9,本申请实施例中,统一数据管理网元设备900包括接收模块901以及发送模块902。
接收模块901,用于当终端通过卫星接入通信网络时,接收来自接入和移动性管理网元的终端的定位信息;
发送模块902,用于根据所定位信息向终端发送第一信息,第一信息用于确定待接入的公用陆地移动网。
在基于上述图9所示的统一数据管理网元设备的基础上,
接收模块901,具体用于向接入和移动性管理网元发送第一订阅请求,第一订阅请求用于订阅定位信息;
接收模块901,还用于接收来自接入和移动性管理网元的定位信息;
发送模块902,具体用于在接收定位信息后,向终端发送第一信息;
发送模块902,具体用于当终端发生跨区域的移动时,向终端发送第一信息;
发送模块902,具体用于通过接入和移动性管理网元向终端发送第一信息;
发送模块902,还用于向漫游优选应用功能SOR-AF发送获取请求,获取请求中携带定位信息,获取请求用于请求第一信息。
图10是本申请实施例提供的一种接入和移动性管理网元设备的结构示意图,该接入和移动性管理网元设备1000可以包括一个或一个以上中央处理器(central processing units,CPU)1001和存储器1005,该存储器1005中存储有一个或一个以上的应用程序或数据。
其中,存储器1005可以是易失性存储或持久存储。存储在存储器1005的程序可以包括一个或一个以上模块,每个模块可以包括对服务器中的一系列指令操作。更进一步地,中央处理器1001可以设置为与存储器1005通信,在服务器1000上执行存储器1005中的一系列指令操作。
服务器1000还可以包括一个或一个以上电源1002,一个或一个以上有线或无线网络 接口1003,一个或一个以上输入输出接口1004,和/或,一个或一个以上操作系统,例如Windows ServerTM,Mac OS XTM,UnixTM,LinuxTM,FreeBSDTM等。
该中央处理器1001可以执行前述图5至图7所示实施例中接入和移动性管理网元设备所执行的操作,具体此处不再赘述。
图11是本申请实施例提供的一种统一数据管理网元设备的结构示意图,该统一数据管理网元设备1100可以包括一个或一个以上中央处理器(central processing units,CPU)1101和存储器1105,该存储器1105中存储有一个或一个以上的应用程序或数据。
其中,存储器1105可以是易失性存储或持久存储。存储在存储器1105的程序可以包括一个或一个以上模块,每个模块可以包括对服务器中的一系列指令操作。更进一步地,中央处理器1101可以设置为与存储器1105通信,在服务器1100上执行存储器1105中的一系列指令操作。
服务器1100还可以包括一个或一个以上电源1102,一个或一个以上有线或无线网络接口1103,一个或一个以上输入输出接口1104,和/或,一个或一个以上操作系统,例如Windows ServerTM,Mac OS XTM,UnixTM,LinuxTM,FreeBSDTM等。
该中央处理器1101可以执行前述图5至图7所示实施例中统一数据管理网元设备所执行的操作,具体此处不再赘述。
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的系统,装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
在本申请所提供的几个实施例中,应该理解到,所揭露的系统,装置和方法,可以通过其它的方式实现。例如,以上所描述的装置实施例仅仅是示意性的,例如,所述单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,可以是电性,机械或其它的形式。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。
另外,在本申请各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。
所述集成的单元如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的全部或部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本申请各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(ROM,read-only memory)、随机存取存储器(RAM,random access memory)、磁碟或者光盘等各种可以存储程序代码 的介质。

Claims (39)

  1. 一种公用陆地移动网的选择方法,其特征在于,包括:
    当终端通过卫星接入通信网络时,接入和移动性管理网元周期性地获取所述终端的定位信息;
    所述接入和移动性管理网元根据所述定位信息向所述终端发送第一信息,所述第一信息用于确定待接入的公用陆地移动网。
  2. 根据权利要求1所述的方法,其特征在于,所述第一信息包括公用陆地移动网的标识信息以及区域的标识信息;
    或,所述第一信息包括所述区域的标识信息。
  3. 根据权利要求1至2中任一项所述的方法,其特征在于,所述接入和移动性管理网元周期性地获取所述终端的定位信息包括:
    所述接入和移动性管理网元周期性地向定位管理功能发送定位请求,所述定位请求用于请求所述定位信息;所述接入和移动性管理网元周期性地接收来自所述定位管理功能的所述定位信息;或,
    所述接入和移动性管理网元向所述定位管理功能发送第一订阅请求,所述第一订阅请求用于订阅所述定位信息;所述接入和移动性周期性地接收来自所述定位管理功能的所述定位信息。
  4. 根据权利要求1或2所述的方法,其特征在于,所述接入和移动性管理网元周期性地获取所述终端的定位信息包括:
    所述接入和移动性管理网元接收来自统一数据管理网元的第二订阅请求;所述接入和移动性管理网元根据所述第二订阅请求周期性地向定位管理功能发送定位请求,所述定位请求用于请求所述定位信息;所述接入和移动性管理网元周期性地接收来自所述定位管理功能的所述定位信息;或,
    所述接入和移动性管理网元接收来自所述统一数据管理网元的所述第二订阅请求;所述接入和移动性管理网元根据所述第二订阅请求向所述定位管理功能发送第一订阅请求,所述第一订阅请求用于订阅所述定位信息;所述接入和移动性管理网元周期性地接收来自所述定位管理功能的所述定位信息。
  5. 根据权利要求4所述的方法,其特征在于,所述第二订阅请求中包括第二信息,所述第二信息用于确定所述终端发生跨区域的移动。
  6. 根据权利要求3至5中任一项所述的方法,其特征在于,所述接入和移动性管理网元根据所述定位信息向所述终端发送第一信息包括:
    所述接入和移动性管理网元向统一数据管理网元发送所述定位信息;
    所述接入和移动性管理网元接收来自所述统一数据管理网元的所述第一信息;
    所述接入和移动性管理网元向所述终端发送所述第一信息。
  7. 根据权利要求6所述的方法,其特征在于,所述接入和移动性管理网元向所述统一数据管理网元发送所述定位信息包括:
    如果所述接入和移动性管理网元确定所述终端发生跨区域的移动,所述接入和移动性 管理网元向所述统一数据管理网元发送所述定位信息。
  8. 根据权利要求1至3中任一项所述的方法,其特征在于,所述接入和移动性管理网元根据所述定位信息向所述终端发送第一信息包括:
    如果所述接入和移动性管理网元根据所述定位信息确定所述终端发生跨区域的移动,所述接入和移动性管理网元向所述终端发送所述第一信息。
  9. 根据权利要求1至8中任一项所述的方法,其特征在于,所述接入和移动性管理网元周期性地获取所述终端的定位信息之前,所述方法还包括:
    初始注册过程中,所述接入和移动性管理网元获取定位测量参数;
    所述接入和移动性管理网元向定位管理功能发送所述定位测量参数,所述定位测量参数用于确定所述定位信息。
  10. 一种公用陆地移动网选择方法,其特征在于,包括:
    当终端通过卫星接入通信网络时,统一数据管理网元接收来自接入和移动性管理网元的终端的定位信息;
    所述统一数据管理网元根据所述定位信息向所述终端发送第一信息,所述第一信息用于确定待接入的公用陆地移动网。
  11. 根据权利要求10所述的方法,其特征在于,所述第一信息包括公用陆地移动网的标识信息以及区域的标识信息;
    或,所述第一信息包括所述区域的标识信息。
  12. 根据权利要求10或11所述的方法,其特征在于,所述统一数据管理网元接收来自接入和移动性管理网元的终端的定位信息包括:
    所述统一数据管理网元向所述接入和移动性管理网元发送第一订阅请求,所述第一订阅请求用于订阅所述定位信息;
    所述统一数据管理网元接收来自所述接入和移动性管理网元的所述定位信息。
  13. 根据权利要求12所述的方法,其特征在于,所述第一订阅请求中包括第二信息,所述第二信息用于确定所述终端发生跨区域的移动,
    则所述第一订阅请求用于订阅所述定位信息包括:所述第一订阅请求用于订阅在所述终端发生跨区域的移动时的所述定位信息。
  14. 根据权利要求13所述的方法,其特征在于,所述统一数据管理网元根据所述定位信息向所述终端发送第一信息包括:
    在所述统一数据管理网元接收所述定位信息后,所述统一数据管理网元向所述终端发送所述第一信息。
  15. 根据权利要求10至12中任一项所述的方法,其特征在于,所述统一数据管理网元根据所述定位信息向所述终端发送第一信息包括:
    如果所述统一数据管理网元根据所述定位信息确定所述终端发生跨区域的移动,所述统一数据管理网元向所述终端发送所述第一信息。
  16. 根据权利要求10至15中任一项所述的方法,其特征在于,所述统一数据管理网元向所述终端发送第一信息包括:
    所述统一数据管理网元通过所述接入和移动性管理网元向所述终端发送所述第一信息。
  17. 根据权利要求16所述的方法,其特征在于,所述方法还包括:
    所述统一数据管理网元向漫游优选应用功能SOR-AF发送获取请求,所述获取请求中携带所述定位信息,所述获取请求用于请求所述第一信息。
  18. 一种公用陆地移动网选择的设备,其特征在于,包括:
    获取模块,用于当终端通过卫星接入通信网络时,周期性地获取所述终端的定位信息;
    发送模块,用于根据所述定位信息向所述终端发送第一信息,所述第一信息用于确定待接入的公用陆地移动网。
  19. 根据权利要求18所述的设备,其特征在于,所述第一信息包括公用陆地移动网的标识信息以及区域的标识信息;
    或,所述第一信息包括所述区域的标识信息。
  20. 根据权利要求18至19中任一项所述的设备,其特征在于,
    所述获取模块,具体用于周期性地向定位管理功能发送定位请求,所述定位请求用于请求所述定位信息;所述获取模块还用于周期性地接收来自所述定位管理功能的所述定位信息;
    所述获取模块,还用于向所述定位管理功能发送第一订阅请求,所述第一订阅请求用于订阅所述定位信息;所述获取模块还用于周期性地接收来自所述定位管理功能的所述定位信息。
  21. 根据权利要求18至19中任一项所述的设备,其特征在于,
    所述获取模块,具体用于接收来自统一数据管理网元的第二订阅请求;所述获取模块还用于根据所述第二订阅请求周期性地向定位管理功能发送定位请求,所述定位请求用于请求所述定位信息;所述获取模块还用于根据所述第二订阅请求向所述定位管理功能发送第一订阅请求,所述第一订阅请求用于订阅所述定位信息;所述获取模块还用于周期性地接收来自所述定位管理功能的所述定位信息。
  22. 根据权利要求21所述的设备,其特征在于,所述第二订阅请求中包括第二信息,所述第二信息用于确定所述终端发生跨区域的移动。
  23. 根据权利要求20至22中任一项所述的接入和移动性管理网元设备,其特征在于,
    所述发送模块,具体用于向统一数据管理网元发送所述定位信息;
    所述发送模块,还用于接收来自所述统一数据管理网元的所述第一信息;
    所述发送模块,还用于向所述终端发送所述第一信息。
  24. 根据权利要求23所述的设备,其特征在于,
    所述发送模块,具体用于当所述接入和移动性管理网元确定所述终端发生跨区域的移动时,向所述统一数据管理网元发送所述定位信息。
  25. 根据权利要求18至20中任一项所述的设备,其特征在于,
    所述发送模块,具体用于当所述终端发生跨区域的移动时,向所述终端发送所述第一信息。
  26. 根据权利要求18至25中任一项所述的设备,其特征在于,
    所述获取模块,还用于在初始注册过程中,获取定位测量参数;
    所述发送模块,还用于向定位管理功能发送所述定位测量参数,所述定位测量参数用于确定所述定位信息。
  27. 一种公用陆地移动网选择的设备,其特征在于,包括:
    接收模块,用于当终端通过卫星接入通信网络时,接收来自接入和移动性管理网元的终端的定位信息;
    发送模块,用于根据所述定位信息向所述终端发送第一信息,所述第一信息用于确定待接入的公用陆地移动网。
  28. 根据权利要求27所述的设备,其特征在于,所述第一信息包括公用陆地移动网的标识信息以及区域的标识信息;
    或,所述第一信息包括所述区域的标识信息。
  29. 根据权利要求27或28所述的设备,其特征在于,
    所述接收模块,具体用于向所述接入和移动性管理网元发送第一订阅请求,所述第一订阅请求用于订阅所述定位信息;
    所述接收模块,还用于接收来自所述接入和移动性管理网元的所述定位信息。
  30. 根据权利要求29所述的设备,其特征在于,所述第一订阅请求中包括第二信息,所述第二信息用于确定所述终端发生跨区域的移动,
    则所述第一订阅请求用于订阅所述定位信息包括所述第一订阅请求用于订阅在所述终端发生跨区域的移动时的所述定位信息。
  31. 根据权利要求30所述的设备,其特征在于,
    所述发送模块,具体用于在接收所述定位信息后,向所述终端发送所述第一信息。
  32. 根据权利要求27至29中任一项所述的设备,其特征在于,
    所述发送模块,具体用于当所述终端发生跨区域的移动时,向所述终端发送所述第一信息。
  33. 根据权利要求27至32中任一项所述的设备,其特征在于,
    所述发送模块,具体用于通过所述接入和移动性管理网元向所述终端发送所述第一信息。
  34. 根据权利要求33所述的设备,其特征在于,
    所述发送模块,还用于向漫游优选应用功能SOR-AF发送获取请求,所述获取请求中携带所述定位信息,所述获取请求用于请求所述第一信息。
  35. 一种公用陆地移动网选择的设备,其特征在于,处理器、存储器、输入输出设备以及总线;
    所述处理器、存储器、输入输出设备与所述总线相连;
    所述处理器用于执行权利要求1至9中任一项所述的方法。
  36. 一种公用陆地移动网选择的设备,其特征在于,处理器、存储器、输入输出设备以及总线;
    所述处理器、存储器、输入输出设备与所述总线相连;
    所述处理器用于执行权利要求10至17中任一项所述的方法。
  37. 一种公用陆地移动网选择的系统,其特征在于,所述系统包括上述权利要求1至17中任一项所述的设备以及上述权利要求18至36中任一项所述的设备。
  38. 一种计算机可读存储介质,其特征在于,所述计算机可读存储介质中保存有程序,当所述计算机执行所述程序时,执行如权利要求1至17中任一项所述的方法。
  39. 一种计算机程序产品,其特征在于,当所述计算机程序产品在计算机上执行时,所述计算机执行如权利要求1至17中任一项所述的方法。
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