WO2012079534A1 - Procédé d'enregistrement de réseau et dispositif de commande de réseau pour un terminal à double attente à carte unique - Google Patents

Procédé d'enregistrement de réseau et dispositif de commande de réseau pour un terminal à double attente à carte unique Download PDF

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Publication number
WO2012079534A1
WO2012079534A1 PCT/CN2011/084134 CN2011084134W WO2012079534A1 WO 2012079534 A1 WO2012079534 A1 WO 2012079534A1 CN 2011084134 W CN2011084134 W CN 2011084134W WO 2012079534 A1 WO2012079534 A1 WO 2012079534A1
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WIPO (PCT)
Prior art keywords
network
control device
authentication
network control
location area
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PCT/CN2011/084134
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English (en)
Chinese (zh)
Inventor
翁武林
江贝
潘颖欣
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华为技术有限公司
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Publication of WO2012079534A1 publication Critical patent/WO2012079534A1/fr

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W60/00Affiliation to network, e.g. registration; Terminating affiliation with the network, e.g. de-registration
    • H04W60/005Multiple registrations, e.g. multihoming

Definitions

  • the present invention relates to mobile communication technologies, and in particular, to a single card dual standby network registration method and a network control device. Background technique
  • TD-SCDMA Time Division Synchronous Code Division Multiple Access
  • problems such as serious missed calls, frequent reselection between systems, and poor coverage of TD-SCDAM.
  • dual-network dual-standby technology can be adopted.
  • the voice is carried by the second-generation (2G) network
  • the packets are carried by the third-generation (3G) network to enhance the TD-SCDM user experience and improve the TD-SCDM A network. Utilization rate.
  • the embodiment of the invention provides a single card dual standby network registration method and a network control device, which are used to implement account opening and registration of a user to a 3G core network through a 2G access network.
  • the embodiment of the present invention provides a method for registering a single-card dual-standby network, including: receiving, by a second network control device, a location area of a second-generation 2G network that is carried by a first network control device and carrying a single-card dual-standby terminal Information message
  • the second network control device converts the location area information in the 2G network into a third generation 3G network
  • the location area information in the network, and the location area update request message is sent to the circuit switched CS domain of the 3G network to implement the location area update registration of the single card dual standby terminal in the 3G network.
  • an embodiment of the present invention provides a method for registering a single-card dual-standby network, including: receiving, by the first network control device, a message of a type of a mobile terminal that is sent by the terminal in the second-generation 2G network;
  • the first network control device sends a location area update request message to the second network control device, where the location area update request message carries the Location area information of the terminal in the 2G network, so that the second network control device converts the location area information in the 2G network into location area information in the third generation 3G network and sends the circuit switching to the 3G network
  • the domain is configured to implement location area update registration of the terminal in the 3G network.
  • the embodiment of the present invention provides a network control device, which belongs to a third generation 3G network, and includes:
  • a receiving module configured to receive, by the first network control device that belongs to the second generation network 2G, a message that carries location area information of the single card dual standby terminal in the 2G network;
  • a location area information conversion module configured to convert location area information in the 2G network into location area information in the 3G network, and send a location area update request message to a circuit switched CS domain of the 3G network, to implement The single card dual standby terminal updates the registration in the location area in the 3G network.
  • an embodiment of the present invention provides a network control device, which belongs to a second generation 2G network, and includes:
  • a receiving module configured to receive a message of a mobile terminal category sent by the terminal in the 2G network
  • a sending module configured to send a location area update request message to the second network control device belonging to the third generation 3G network, when the terminal is determined to be a single card dual standby terminal according to the terminal category, the location area update request Transmitting, by the message, location area information of the terminal in the 2G network, so that the second network control device converts location area information in the 2G network into the 3G
  • the location area information in the network is sent to the circuit switched domain of the 3G network, and the location area update registration of the terminal in the 3G network is implemented.
  • the embodiment of the present invention provides a single-card dual-standby terminal, where the single-card dual-standby terminal resides in the first network system and the second network system at the same time, including:
  • a voice access module configured to send, by the base station of the first network system where the first network control device is located, a voice service request sent by the first network control device, so that the first network control device passes the inter-controller interface Transmitting the voice service request to the second network control device in the second network system, and sending, by the second network control device, the voice service request to a core network circuit domain connected to the second network control device Process
  • a data access module configured to send, by the base station of the second network system, a data service request to the second network control device, to send, by the second network control device, the voice service request to the second
  • the core network packet domain to which the network control device is connected is processed.
  • An embodiment of the present invention provides a single card dual standby communication system, including: a first network control device, a second network control device, and an interface between the first network control device and the second network control device through a controller Connection
  • the first network control device is configured to receive a voice service request sent by the single-card dual-standby terminal by using the 2G network where the first network control device is located, and send the voice service request to the inter-controller interface a second network control device;
  • the second network control device is configured to receive a voice service request sent by the first network control device, and send the voice service request to a core network circuit domain that is connected to the second network control device for processing; And receiving a data service request sent by the single card dual standby terminal through the 3G network where the second network control device is located, and sending the data service request to a core network packet domain connected to the second network control device Process it.
  • FIG. 1 is a schematic structural diagram of a system corresponding to an embodiment of the present invention.
  • FIG. 3 is a schematic flow chart of a method according to a second embodiment of the present invention.
  • FIG. 4 is a schematic flow chart of a method according to a third embodiment of the present invention.
  • FIG. 5 is a schematic flowchart of a method according to a fourth embodiment of the present invention.
  • FIG. 6 is a schematic flow chart of a method according to a fifth embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of a network control device according to a sixth embodiment of the present invention.
  • FIG. 8 is a schematic structural diagram of a second network control device according to a seventh embodiment of the present invention
  • FIG. 9 is a schematic structural diagram of a single card dual standby terminal according to an eighth embodiment of the present invention.
  • FIG. 10 is a schematic structural diagram of a system according to a ninth embodiment of the present invention. detailed description
  • FIG. 1 is a schematic structural diagram of a system corresponding to an embodiment of the present invention, taking a GSM (Global System of Mobile communication) network and a TD-SCDMA network as an example.
  • GSM Global System of Mobile communication
  • TD-SCDMA Time Division Multiple Access
  • UMTS Universal Mobile Telecommunications System
  • WCDMA Wideband Code Division Multiple Access
  • LTE Long Term Evolution
  • the corresponding network control node is a Base Station Controller (BSC);
  • BSC Base Station Controller
  • RNC Radio Network Controller
  • the node of the network is a Mobile Switch Center (MSC); for the LTE network, the corresponding network control node is an evolved base station (eNB), and the node of the corresponding CS domain core network is a Mobile Management Entity (MME).
  • MME Mobile Management Entity
  • a single card dual standby terminal 11, a base station (NodeB) 12, a base transceiver station (Base Transceiver Station, BTS) 13, a radio network controller (RNC) 14, and a base station controller (Base Station Controller) are included.
  • BSC BSC
  • BSC Base Station Controller
  • GPRS General Packet Radio Service
  • SGSN General Packet Radio Service
  • MSC Mobile Switch Center
  • the RNC 14 communicates with the BSC 15 through a new interface (such as the inter-controller interface Iur-g).
  • the RNC and the BSC implement the adaptation functions of the A interface and the Iu-cs interface on the Iur-g interface.
  • the MSC is a device in a Circuit Switched (CS) domain
  • the SGSN is a device in a Packet Switched (PS) domain.
  • the RNC and the BSC are separately set as an example. It can be understood that a dual mode controller can be used instead of the RNC and the BSC.
  • the dual mode controller has the functions of the RNC and the BSC, and the inter-controller interface acts as a dual mode. Controller internal interface.
  • a single-card dual-standby terminal is simultaneously attached to GSM and TD-SCDMA, and implements a dual-mode dual-standby mechanism, which can perform different services in different networks at the same time, and the dual-stack stack shares different tasks, for example, link 1
  • the data traffic is carried in the TD-SCDMA system; as shown in link 2, the voice traffic is carried in the GSM system.
  • the MSC communicates with the BSC through the RNC, so that the CS domain is unified with the Iu-cs interface relative to the core network; and is connected to the Iur-g interface or the dual-mode controller.
  • the control plane and user plane are processed on the mouth.
  • FIG. 2 is a schematic flow chart of a method according to a first embodiment of the present invention, including:
  • Step 21 The second network control device receives, by the first network control device, a message that carries the location area information of the single card dual standby terminal in the 2G network.
  • the second network control device is an RNC
  • the first network control device is a BSC.
  • the location area information is the location area information of the 2G system, which is assumed to be LAI-2.
  • Step 22 The second network control device converts the location area information in the 2G network into location area information in the 3G network, and sends a location area update request message to the circuit switched CS domain of the 3G network to implement the single card.
  • the dual standby terminal updates the registration in the location area in the 3G network.
  • the RNC may convert the location area information in the 2G network into location area information in the 3G network according to a pre-configured correspondence.
  • the terminal initiates registration in the GSM network.
  • the terminal first sends a location area update request message to the BSC, where the terminal class is carried. If the terminal category indicates that the terminal is a single card dual standby terminal, the BSC locates the location area.
  • the update request message is sent to the RNC (eg via the Iur-g interface), which carries LAI-1.
  • the RNC converts the LAI-1 into the location area information under the TD-SCDMA system according to the pre-configured correspondence, which is assumed to be LAI-3.
  • the RNC transmits a location area update request message carrying LAI-3 to the core network under 3G corresponding to TD-SCDMA.
  • the signaling between the terminal and the core network is forwarded through the BSC and the RNC, and finally the location area update registration is implemented.
  • the second network control device receives an authentication message carrying the authentication triplet sent by the first network control device, converts the authentication triplet into an authentication quintuple, and performs the authentication.
  • the quintuple is carried in an authentication message sent to the CS domain.
  • the second network control device may save the correspondence between the authentication quintuple and the authentication triplet, and perform the foregoing conversion according to the corresponding relationship.
  • the user can pass the 2G by converting the location area information in the 2G network into the location area information in the 3G network, and sending the location area update request message initiated by the terminal in the 2G network to the 3G network for registration.
  • the access network opens and registers with the 3G core network.
  • FIG. 3 is a schematic flowchart of a method according to a second embodiment of the present invention, including:
  • Step 31 The first network control device receives a message carrying the terminal category sent by the terminal in the 2G network.
  • the message may carry the information of the terminal when the terminal sends the message to the first network control device, for example, the class-1 or classmark-2 of the terminal is carried, and then the class label can be used.
  • the idle bit of -1 or class-2 carries the terminal type.
  • Step 32 When it is determined that the terminal is a single-card dual-standby terminal according to the terminal category, the first network control device sends a location area update request message to the second network control device, where the location area update request message is Carrying location area information of the terminal in the 2G network, so that the second network control device converts the location area information in the 2G network into location area information in the 3G network and sends the circuit switching to the 3G network
  • the domain is configured to implement location area update registration of the terminal in the 3G network.
  • the embodiment may further include the step of authenticating, because the authentication quintuple is used in the 3G network, and the authentication triplet is used in the 2G network, therefore, different from the first embodiment, this embodiment
  • the conversion of the authentication quintuple and the authentication triplet by the first network control device may also include: Receiving, by the first network control device, the authentication of the carrying authentication quintuple sent by the second network control device, converting the authentication quintuple into an authentication triplet, and the authenticating three The tuple is carried in an authentication message sent to the terminal;
  • the first network control device receives an authentication message carrying the authentication triplet sent by the terminal, converts the authentication triplet into an authentication quintuple, and carries the authentication quintuple In an authentication message sent to the second network control device.
  • the second network control device may save the correspondence between the authentication quintuple and the authentication triplet, and perform the foregoing conversion according to the corresponding relationship.
  • FIG. 4 is a schematic flowchart of a method according to a third embodiment of the present invention.
  • a terminal performs a location area update registration of a CS domain as an example.
  • this embodiment includes:
  • Step 401 The terminal sends a location area update request message to the BSC, where the terminal class and the LAI-2 are carried.
  • the terminal class may specifically use the idle bit of the class label -1 or the class label -2 (Classmark 1 or Classmark 2) to indicate whether the corresponding terminal is a single card dual standby terminal.
  • the composition of the class -1 can be as shown in Table 1, including two bytes, where the eighth bit of the second byte is the spare.
  • the composition of the class-2 can be as shown in Table 2.
  • the class-2 includes 5 bytes, and the 8th bit of the 3rd byte is an idle bit, similar to the class-1, which can be used by the idle bit. Indicate that the corresponding terminal is Single card dual standby terminal.
  • Step 402 When the BSC determines that the terminal is a single-card dual-standby terminal according to the terminal category, the BSC sends a location area update request message to the RNC, where the LAI-2 and the terminal identifier are carried.
  • the terminal is determined to be a single card dual standby terminal.
  • the terminal when it is determined that the terminal is a single card dual standby terminal, it can be sent to the RNC through the Iur-g interface.
  • Step 403 The RNC converts the location area information on the 2G side into the location area information on the 3G side, for example, converting LAI-2 to LAI-3.
  • the mapping table may be pre-stored in the RNC, and the mapping table indicates the correspondence between the location area information on the 2G side and the location area information on the 3G side.
  • the LAI-2 can be converted to the LAI-3.
  • Step 404 The RNC sends a location area update request message to the MSC in the 3G core network, where the LAI-3 and the terminal identifier are carried.
  • Step 405 The MSC sends a location area update response message to the terminal through the RNC and the BSC to complete the location area update registration of the terminal in the CS domain.
  • the RNC needs to authenticate the quintuple.
  • the group is converted into an authentication triplet, and the authentication triplet is sent to the BSC.
  • the correspondence between the authentication quintuple and the authentication triplet can be pre-configured in the RNC.
  • the correspondence between the authentication quintuple and the authentication triplet may be pre-configured in the BSC, and the BSC performs the conversion between the authentication quintuple and the authentication triplet.
  • the correspondence between the authentication quintuple and the authentication triplet may be pre-configured in the UE, and the UE performs the conversion of the authentication quintuple and the authentication triplet.
  • the authentication triplet needs to be converted into an authentication quintuple on the UE side.
  • the BSC After the BSC determines that the single-card dual-standby terminal initiates the registration, the BSC sends the relevant signaling to the RNC, and the RNC forwards the registration to the 3G MSC, so that the terminal can initiate registration in the 2G and register in the 3G.
  • the 2G access network opens an account and registers with the 3G core network.
  • FIG. 5 is a schematic flowchart of a method according to a fourth embodiment of the present invention.
  • a terminal performs a location area update registration in a PS domain, and a suitable TD-SCDMA cell exists as an example.
  • this embodiment includes:
  • Step 501 If a suitable TD-SCDMA cell exists, the terminal sends a location area update request message to the RNC, where the LAI-1 and the terminal identifier are carried.
  • the terminal may determine whether a suitable TD-SCDMA cell exists according to a preset condition. For example, whether the signal quality of the detected TD-SCDMA cell satisfies a preset quality requirement may be used to determine whether there is a suitable one. TD-SCDMA cell.
  • Step 502 The RNC sends the location area update request message to the SGSN in the 3G through the Iu-PS interface, where the LAI-1 and the terminal identifier are carried.
  • the SGSN may store the LAI-1 and the terminal identifier in the location area update request message in the HLR.
  • Step 503 The SGSN sends a location area update response message to the terminal through the RNC to complete The terminal is registered for registration in the PS domain.
  • the interaction between the terminal and the RNC, and the interaction between the RNC and the SGSN can directly complete the registration of the PS domain in the 3G.
  • FIG. 6 is a schematic flowchart of a method according to a fifth embodiment of the present invention.
  • a terminal performs a location area update registration in a PS domain, and there is no suitable TD-SCDMA cell as an example.
  • this embodiment includes:
  • Step 601 If there is no suitable TD-SCDMA cell, the terminal sends a routing area update request message or an attach request message to the BSC, where the LAI-2 and the terminal identifier are carried.
  • the terminal may determine whether a suitable TD-SCDMA cell exists according to a preset condition. For example, whether the signal quality of the detected TD-SCDMA cell satisfies a preset quality requirement may be used to determine whether there is a suitable one. TD-SCDMA cell.
  • Step 602 The BSC sends the routing area update request message or the attach request message to the SGSN in the 2G through the Gb interface, where the LAI-2 and the terminal identifier are carried.
  • the Gb interface is an interface between the BSC and the SGSN.
  • the SGSN may store the LAI-1 and the terminal identifier in the location area update request message in the HLR.
  • Step 603 The SGSN sends a location area update response message to the terminal through the BSC to complete the update registration of the terminal in the PS domain.
  • the interaction between the terminal and the BSC, and the interaction between the BSC and the SGSN can be completed in the PS domain of the 3G through 2G.
  • the location update request message may be sent to the MSC in the 3G through the processing of the BSC and the RNC, so that the terminal is registered in the CS domain of the 3G, so that the voice service (CS domain service) ) carried by the GSM network.
  • the RNC is registered to the PS domain of the 3G, and the data service (PS domain service) can be carried by the TD-SCDMA.
  • the terminal can be attached at the same time in GSM and TD-SCDMA, and the voice service is carried by GSM, and the data service is TD-SCDMA bearer realizes the convergence of 2/3G networks and utilizes the advantages of 2/3G networks respectively.
  • the PS domain When registering in the PS domain, whether it is initiated at 2G or initiated at 3G, it is registered in the PS domain of 3G, which can reduce the PS reselection interrupt.
  • the above registration process whether it is initiated by 2G or initiated by 3G, it is registered to the corresponding 3G CS domain or PS domain, and the dual network attachment details are shielded from the core network.
  • the core network considers that the terminal is attached in 3G, so It can carry out 3G special services, such as video phone (VP) service.
  • 3G special services such as video phone (VP) service.
  • VP video phone
  • FIG. 7 is a schematic structural diagram of a network control device according to a sixth embodiment of the present invention.
  • the device belongs to a 3G network, and the device includes a receiving module 71 and a location area information conversion module 72.
  • the receiving module 71 is configured to receive a first network control belonging to the 2G. a message sent by the device that carries the location area information of the single card dual standby terminal in the 2G network; the location area information conversion module 72 is configured to convert the location area information in the 2G network into a location area in the 3G network. And transmitting a location area update request message to the circuit switched CS domain of the 3G network to implement location area update registration of the single card dual standby terminal in the 3G network.
  • the location area information conversion module 72 may be specifically configured to convert location area information in the 2G network into location area information in a 3G network according to a pre-configured correspondence.
  • the embodiment may further include an authentication module, where the authentication module is configured to receive an authentication message carrying the authentication quintuple sent by the CS domain, and convert the authentication quintuple into an authentication triplet, and The authentication triplet is carried in the authentication message sent to the first network control device; and the authentication message carrying the authentication triplet sent by the first network control device is received, and the The authentication triplet is converted into an authentication quintuple, and the authentication quintuple is carried in an authentication message sent to the CS domain.
  • an authentication module is configured to receive an authentication message carrying the authentication quintuple sent by the CS domain, and convert the authentication quintuple into an authentication triplet, and The authentication triplet is carried in the authentication message sent to the CS domain.
  • the terminal class is used to indicate whether the corresponding terminal is a single card dual standby terminal by using the idle bit of the class standard -1 or the class standard -2.
  • This embodiment converts location area information in a 2G network into a location area in a 3G network.
  • the information and the location area update request message initiated by the terminal in the 2G network are sent to the 3G network for registration, so that the user can open an account and register with the 3G core network through the 2G access network.
  • FIG. 8 is a schematic structural diagram of a second network control device according to a seventh embodiment of the present invention.
  • the device belongs to a 2G network, and the device includes a receiving module 81 and a sending module 82.
  • the receiving module 81 is configured to receive, send, and send the terminal in the 2G network.
  • the sending module 82 is configured to: when the terminal is determined to be a single-card dual-standby terminal according to the terminal category, send a location area update request message to a second network control device that belongs to the 3G network,
  • the location area update request message carries location area information of the terminal in the 2G network, so that the second network control device converts location area information in the 2G network into a location in the 3G network.
  • the zone information is sent to the circuit switched domain of the 3G network, and the location area update registration of the terminal in the 3G network is implemented.
  • the embodiment may further include an authentication module, configured to receive an authentication of the carrying authentication quintuple sent by the second network control device, and convert the authentication quintuple into an authentication triplet, and The authentication triplet is carried in an authentication message sent to the terminal; and receiving an authentication message carrying the authentication triplet sent by the terminal, and converting the authentication triplet into a template And the quintuple is carried in the authentication message sent to the second network control device.
  • an authentication module configured to receive an authentication of the carrying authentication quintuple sent by the second network control device, and convert the authentication quintuple into an authentication triplet, and The authentication triplet is carried in an authentication message sent to the terminal; and receiving an authentication message carrying the authentication triplet sent by the terminal, and converting the authentication triplet into a template And the quintuple is carried in the authentication message sent to the second network control device.
  • the terminal class is used to indicate whether the corresponding terminal is a single card dual standby terminal by using the idle bit of the class standard -1 or the class standard -2.
  • the user can pass the 2G by converting the location area information in the 2G network into the location area information in the 3G network, and sending the location area update request message initiated by the terminal in the 2G network to the 3G network for registration.
  • the access network opens and registers with the 3G core network.
  • FIG. 9 is a schematic structural diagram of a single card dual standby terminal according to an eighth embodiment of the present invention, where the single card dual standby terminal resides in a first network system and a first network system, including a voice access module 91 and data access.
  • the voice access module 91 is configured to send, by the base station of the first network system where the first network control device is located, a voice service request sent by the base station to the first network control device, so that the first network control device passes between the controllers.
  • the interface sends the voice service request to the second network Controlling, by the second network control device, the voice service request is sent to a core network circuit domain connected to the second network control device for processing; and the data access module 92 is configured to be controlled by the second network a data service request sent by the base station of the second network system where the device is located to the second network control device, so that the second network control device sends the voice service request to a core network connected to the second network control device
  • the packet domain is processed.
  • the first network system in this embodiment may be a GSM system, and the first network control device may be a BSC; the second network system may be a UMTS system, such as a TD-SCDMA system or a WCDMA system, or an LTE system, and a second The network control device can be an RNC or an eNB.
  • FIG. 10 is a schematic structural diagram of a system according to a ninth embodiment of the present invention, including a first network control device 101 and a second network control device 102, wherein the first network control device 101 and the second network control device 102 pass a controller.
  • the first network control device 101 is configured to receive a voice service request sent by the single card dual standby terminal by using the 2G network where the first network control device is located, and send the voice through the inter-controller interface
  • the service request is sent to the second network control device
  • the second network control device 102 is configured to receive the voice service request sent by the first network control device, and send the voice service request to the second network control Processing, the core network circuit domain of the device is processed; and receiving a data service request sent by the single card dual standby terminal through the 3G network where the second network control device is located, and sending the data service request to the first
  • the core network packet domain to which the network control device is connected performs processing on the first network control device, the second network control device.
  • the 2G network in this embodiment may be a GSM system, and the first network control device may be a BSC; the 3G network may be a UMTS system, such as a TD-SCDMA system or a WCDMA system, or an LTE system, where the second network control device may For the RNC or eNB.
  • the inter-controller interface may For the Iur-g interface, of course, it can also be a new interface.
  • the inter-controller interface may be a new interface.
  • the single card dual standby terminal resides on both the 2G network and the 3G network.
  • the processing of the first network control device and the second network control device can fully utilize the good voice service advantages of 2G and the good data service advantages of 3G.
  • the foregoing program may be stored in a computer readable storage medium, and when executed, the program includes The foregoing steps of the method embodiment; and the foregoing storage medium includes: a medium that can store program codes, such as a ROM, a RAM, a magnetic disk, or an optical disk.

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Abstract

L'invention porte sur un procédé d'enregistrement de réseau et sur un dispositif de commande de réseau pour un terminal à double attente à carte unique. Le procédé comprend les étapes suivantes : un second dispositif de commande de réseau reçoit un message qui est envoyé par un premier dispositif de commande de réseau et porte des informations de zone de localisation d'un terminal à double attente à carte unique dans un réseau de seconde génération (2G) ; le second dispositif de commande de réseau convertit les informations de zone de localisation dans le réseau 2G en informations de zone de localisation dans un réseau de troisième génération (3G), et envoie un message de demande de mise à jour de zone de localisation à un domaine à commutation de circuits (CS) du réseau 3G, de façon à réaliser la mise à jour de zone de localisation et l'enregistrement du terminal à double attente à carte unique dans le réseau 3G. Le mode de réalisation de l'invention permet l'enregistrement sur un réseau principal du 3G par l'intermédiaire d'un accès réseau de deuxième génération.
PCT/CN2011/084134 2010-12-16 2011-12-16 Procédé d'enregistrement de réseau et dispositif de commande de réseau pour un terminal à double attente à carte unique WO2012079534A1 (fr)

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CN201010592910.5 2010-12-16
CN201010592910.5A CN102026366B (zh) 2010-12-16 2010-12-16 单卡双待网络注册方法以及网络控制设备

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