WO2012068935A1 - Procédé de translation de passerelle et passerelle de dérivation source - Google Patents
Procédé de translation de passerelle et passerelle de dérivation source Download PDFInfo
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- WO2012068935A1 WO2012068935A1 PCT/CN2011/081151 CN2011081151W WO2012068935A1 WO 2012068935 A1 WO2012068935 A1 WO 2012068935A1 CN 2011081151 W CN2011081151 W CN 2011081151W WO 2012068935 A1 WO2012068935 A1 WO 2012068935A1
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- WIPO (PCT)
- Prior art keywords
- gateway
- offload gateway
- source
- management entity
- mobility management
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W36/00—Hand-off or reselection arrangements
- H04W36/0005—Control or signalling for completing the hand-off
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W88/00—Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
- H04W88/16—Gateway arrangements
Definitions
- the present invention relates to the field of mobile communications, and in particular to a gateway relocation method and a source offload gateway.
- 3GPP 3rd Generation Partnership Project
- EPS evolved Evolved Packet System
- E-UTRAN Mobility Management Entity
- S-GW Serving Gateway
- P-GW Packet Data Network Gateway
- HSS Home Subscriber Server
- AAA 3GPP Authentication Authorization and Accounting
- Policy and Charging Rules Function Policy and Charging Rules Function
- PCRF Policy and Charging Rules Function
- a mobility management entity is responsible for related operations of a control plane such as mobility management, processing of non-access stratum signaling, and management of a user mobility management context;
- the offload gateway S-GW is an access gateway device connected to the E-UTRAN, and forwards data between the E-UTRAN and the P-GW, and is responsible for buffering paging waiting data;
- the access gateway P-GW is EPS and Packet Data Network (PDN)
- PDN Packet Data Network
- the border gateway of the network is responsible for PDN access and forwarding data between EPS and PDN. Both S-GW and P-GW belong to the core network gateway.
- the home base station is a small, low-power base station deployed in indoor places such as homes and offices.
- the main purpose is to provide users with higher service rates and lower the cost of using high-speed services, while making up for existing distributed Insufficient coverage of cellular wireless communication systems.
- the advantages of home base stations are affordable, convenient, low power output, plug and play, and more.
- the home base station and/or the home base station gateway are wireless side network elements, and the home base station gateway can be combined with the home base station.
- 2 is a schematic diagram 2 of the architecture of the existing communication system. As shown in FIG. 2, the home base station can access the core network through the logical network element of the home base station gateway, or can directly connect to the core network (as shown in FIG. 1).
- the main functions of the home base station gateway are: verifying the security of the home base station, processing the registration of the home base station, performing operation and maintenance management on the home base station, configuring and controlling the home base station according to the operator's requirements, and exchanging data of the core network and the home base station.
- the mobile communication system including the home base station system
- IP Internet Protocol
- the implementation of IP offloading in the system shown in Figure 1 and Figure 2 can provide powerful support for IP offloading technology by adding a shunt gateway.
- the shunt gateway acts as a gateway to the external network (such as the Internet) to provide address allocation and accounting.
- packet packet filtering, policy control, data offloading function NAS/S1-AP/RANAP (Radios Access Network Application Part, wireless access network application part) / GTP (General Tunneling Protocol) / PMIP (Proxy Mobile IP , Proxy Mobile IP Protocol) /MIP (Mobile IP, Mobile IP Protocol) Message parsing, NAT (Network Address Translation), IP offload policy routing and execution.
- the offload gateway can be combined with the wireless side network element.
- the offloading gateway may be an ISGW (Integrated Service Gateway), which may be a local serving gateway (Local SGW, referred to as L-SGW) and a local packet data gateway (Local PGW, referred to as L-PGW), or may be separate.
- L-PGW which can be a data offload function entity.
- the IP offloading can be implemented by adding or not adding a NAT address translation function on the branching gateway, and is not limited to the simultaneous access of the core network and the IP offloading through a connection.
- the traffic distribution gateway can perform relocation.
- the IP traffic distribution service data can be offloaded through the new traffic distribution gateway (as shown in Figure 3).
- One of the main purposes of the present invention is to provide a gateway relocation method and a source offload gateway, so as to at least solve the above problem that when a traffic distribution gateway between a wireless side network element and an access gateway is implemented, the mobile process cannot be performed. The technical problem of completing the switching function across the distribution gateway.
- a gateway relocation method including: when a terminal performs a mobility event, the source offload gateway receives an information update request sent by a mobility management entity; The target offload gateway creates information; the source offload gateway sends an information update response to the mobility management entity, where the information update response carries information of the target offload gateway.
- the mobility event includes one of the following: a handover, a location update, or a service request.
- the information update request includes one of the following: a packet data protocol (PDP) context request, and a bearer update request; the creation information includes one of the following: creating a PDP context, establishing a bearer, and updating the information
- the response includes one of the following: Update PDP Context Response, Host Update Response.
- the source offload gateway is a offload gateway used before the terminal is switched or before the location is updated
- the target offload gateway is a offload gateway used after the terminal is switched or after the location is updated.
- the method further includes: the source offload gateway determining the type of the service transmitted by the terminal; and if the transmitted service is a service with low service continuity, The step of executing the source offload gateway to create information to the target offload gateway.
- the method further includes: if the transmitted service is not a service with low service continuity, the source offload gateway does not execute the source offload gateway to create a target offload gateway. a step of information and transmitting the information update response to the mobility management entity.
- the source offload gateway and the target offload gateway are one of the following: an ISGW; an L-SGW L-PGW; or an L-PGW.
- a source offload gateway comprising: a receiving unit, configured to receive an information update request sent by a mobility management entity when a terminal performs a mobility event; and create a unit, set to target The offload gateway creates information; the transmitting unit is configured to send an information update response to the mobility management entity after the information is created, wherein the information update response carries information of the target offload gateway.
- the source offload gateway is a offload gateway used before the terminal is switched or before the location is updated
- the target offload gateway is a offload gateway used after the terminal is switched or after the location is updated.
- the source offloading gateway further includes: a determining unit, configured to determine a type of the service transmitted by the terminal after receiving the information update request sent by the mobility management entity; and the notification unit is configured to determine the transmission
- the creating unit is notified to perform the step of creating the information to the target offload gateway.
- information such as a PDP context is created by the source offload gateway to the target offload gateway, and an information update response such as a PDP update context response is sent to the mobility management entity, thereby solving the problem of the radio side network element and the access gateway.
- FIG. 1 is a schematic diagram of a wireless communication network connection according to the related art
- FIG. 2 is another schematic diagram of a wireless communication network connection according to the related art
- FIG. 3 is a related art wireless communication system IP offloading
- FIG. 4 is another schematic diagram of IP split data of a wireless communication system in the related art
- FIG. 5 is a preferred flowchart of a gateway relocation method according to an embodiment of the present invention
- FIG. 7 is a scenario based on the system architecture of FIG. 1 according to an embodiment of the present invention, mobility management
- FIG. 8 is a flowchart of a handover process performed by a terminal when the entity does not change
- FIG. 8 is a flowchart of a handover process performed by the terminal when the mobility management entity changes according to the scenario of the system architecture of FIG. 1 according to an embodiment of the present invention
- the terminal performs a location update process.
- FIG. 10 is a system architecture based on the scenario of FIG. 1 embodiment of the present invention, the mobility management entity is not changed when the terminal is a flowchart of a location update procedure occurs
- 11 is a flowchart of a service request process when a terminal is changed from an idle state to a connected state according to the scenario of the system architecture of FIG. 1 according to an embodiment of the present invention
- FIG. 10 is a system architecture based on the scenario of FIG. 1 embodiment of the present invention, the mobility management entity is not changed when the terminal is a flowchart of a location update procedure occurs
- 11 is a flowchart of a service request process when a terminal is changed from an idle state to a connected state according to the scenario of the system architecture of FIG. 1 according to an embodiment of the present invention
- FIG. 5 is a preferred flowchart of a gateway relocation method according to an embodiment of the present invention, which includes the following steps:
- the source offload gateway receives the information update request sent by the mobility management entity.
- the source offload gateway creates information to the target offload gateway.
- the source offload gateway sends an information update response to the mobility management entity, where the information update response carries information of the target offload gateway.
- information such as a PDP context is created by the source offload gateway to the target offload gateway, and an information update response such as a PDP update context response is sent to the mobility management entity, thereby solving the problem that the existing mobile process cannot be completed.
- the problem of the switching function of the offload gateway ensures the continuity of the service when the terminal switches from the source offload gateway to the target offload gateway, so as to effectively enhance the user experience.
- the mobility event comprises one of the following: a handover, a location update, or a service request.
- the utility of the present invention is increased by the definition of different mobility events.
- the information update request includes one of the following: an update PDP context request, a bearer update request;
- the creation information includes one of the following: creating a PDP context, establishing a bearer;
- the information update response includes one of the following: updating the PDP Context response, hosting update response.
- the gateway relocation method of the present invention can be applied to different scenarios.
- the source offload gateway is a offload gateway used before the terminal is switched or before the location is updated
- the target offload gateway is a offload gateway used after the terminal is switched or after the location is updated.
- the method further includes: the source offload gateway determining the type of the service transmitted by the terminal; if the transmitted service is low in service continuity The service performs the step of creating information by the source offload gateway to the target offload gateway.
- the step of creating information to the target offload gateway by performing the source offload gateway on the service with low service continuity can better ensure the continuity of the service with low service continuity.
- the method further includes: if the transmitted service is not a service with low service continuity, the source offload gateway does not execute the source offload gateway to the target The step of dividing the gateway to create information, and sending an information update response to the mobility management entity.
- the step of creating the information to the target offload gateway by the source offload gateway is not performed on the service whose type is not the service continuity is low, and the continuity of the service with low service continuity can be better ensured.
- the source offload gateway and the target offload gateway are one of the following: an ISGW, an L-SGW, and
- FIG. 6 is a flowchart of a handover process performed by a terminal when a mobility management entity changes based on a scenario of the system architecture of FIG. 1. The specific steps are described as follows: Step 602: The radio side network element determines that a handover needs to be initiated.
- Step 603 The source radio side network element sends a relocation request to the source mobility management entity.
- Step 604 The source mobility management entity sends a relocation forward request message to the target mobility management entity.
- Step 605 The target mobility management entity requests the target radio side network element to perform relocation.
- Step 606 The target radio side network element responds to the target mobility management entity with a relocation response message.
- Step 607 The target mobility management entity sends a relocation forward response message to the source mobility management entity.
- Step 609 The source radio side network element sends a relocation execution message to the target radio side network element.
- Step 610 After receiving the relocation execution, the target radio side network element initiates relocation detection to the target mobility management entity.
- Step 611 The target radio side network element sends the radio access network mobility information to the terminal. After the terminal reconfigures, the target radio side network element returns an acknowledgement message.
- Step 612 The target radio side network element sends a relocation complete notification message to the target mobility management entity.
- Step 613 The relocation redirection completion message is exchanged between the source mobility management entity and the target mobility management entity.
- Step 614 The target mobility management entity sends a PDP context update request message to the source offload gateway.
- Step 616 The source offload gateway sends a PDP context creation request to the target offload gateway, and carries the access gateway information.
- Step 617 The target offload gateway sends a PDP context update request to the access gateway.
- Step 618 The access gateway replies with a PDP context update response.
- Step 619 The target offload gateway returns a PDP context setup response to the source offload gateway.
- Step 620 The source offload gateway initiates a PDP context update response to the target mobility management entity, and carries the target offload gateway information.
- Step 621 The target mobility management entity may update the locally saved offload gateway information, and update the radio bearer to the target radio side network element to carry the target offload gateway information.
- FIG. 7 is a flowchart of a handover process performed by a terminal when a mobility management entity does not change based on a scenario of the system architecture of FIG. 1.
- step 6a02 the radio side network element determines that a handover needs to be initiated.
- step 6a03 The source radio side network element sends a relocation request to the mobility management entity.
- step 6a04 the mobility management entity requests the target radio side network element to perform relocation.
- step 6a05 the target radio side network element responds to the mobility management entity with a relocation response message.
- Step 6a06 The mobility management entity sends a relocation command to the source radio side network element.
- Step 6a07 The source radio side network element sends a relocation execution message to the target radio side network element.
- Step 6a08 after receiving the relocation execution, the target radio side network element initiates relocation detection to the target mobility management entity.
- Step 6a09 The target radio side network element sends the radio access network mobility information to the terminal. After the terminal reconfigures, the target radio side network element returns an acknowledgement message.
- the target radio side network element sends a relocation complete notification message to the mobility management entity.
- the mobility management entity sends a PDP context update request message to the source offload gateway.
- the source offload gateway selects the target offload gateway, and the selection manner thereof may be: selecting by using terminal location information.
- the source offload gateway sends a PDP context creation request to the target offload gateway, and carries the access gateway.
- step 6al4 the target offload gateway sends a PDP context update request to the access gateway, step 6al5, and the access gateway replies to the PDP context update response.
- step 6al6 the target offload gateway returns a PDP context establishment response to the source offload gateway.
- step 6al7 the source offload gateway initiates a PDP context update response to the mobility management entity, and carries the target offload gateway information.
- the mobility management entity may update the locally saved offload gateway information, and update the radio bearer to the target radio side network element to carry the target offload gateway information.
- FIG. 8 is a flowchart of a handover process performed by a terminal when a mobility management entity changes according to a scenario of the system architecture of FIG. 1.
- Step 702 The radio side network element determines that a handover needs to be initiated.
- Step 703 The source radio side network element sends a relocation request to the source mobility management entity.
- Step 704 The source mobility management entity sends a relocation forward request message to the target mobility management entity.
- Step 705 The target mobility management entity requests the target radio side network element to perform relocation.
- Step 706 The target radio side network element responds to the target mobility management entity with a relocation response message.
- Step 707 The target mobility management entity sends a relocation forward response message to the source mobility management entity.
- Step 708 The source mobility management entity sends a relocation command to the source radio side network element.
- Step 709 The source radio side network element sends a relocation execution message to the target radio side network element.
- Step 710 After receiving the relocation execution, the target radio side network element initiates relocation detection to the target mobility management entity.
- Step 711 The target radio side network element sends the radio access network mobility information to the terminal. After the terminal reconfigures, the target radio side network element returns an acknowledgement message.
- Step 712 The target radio side network element sends a relocation complete notification message to the target mobility management entity.
- Step 713 The relocation redirection completion message is exchanged between the source mobility management entity and the target mobility management entity.
- Step 714 The target mobility management entity sends a PDP context update request message to the source offload gateway.
- Step 715 The source offload gateway determines the handover mode according to the service type. For example, if the service continuity requirement is low, the handover mode of FIG. 6 is used, and step 615 to step 621 are performed; otherwise, the following step 716 is performed.
- Step 716 The source offload gateway initiates a PDP context update response to the target mobility management entity.
- FIG. 9 is a flowchart of a location update process performed by a terminal when a mobility management entity changes according to the scenario of the system architecture of FIG. 1 according to the present invention. The specific steps are described as follows: Step 801: The terminal sends a routing area update request to the target mobility management entity via the target wireless side network element.
- Step 802 The target mobility management entity sends a context request message to the source mobility management entity.
- Step 803 The source mobility management entity sends a context response message to the target mobility management entity.
- Step 804 The target mobility management entity sends a context accept message to the source mobility management entity.
- Step 805 The target mobility management entity initiates a PDP context update request to the source offload gateway.
- Step 806 The source offload gateway selects a target offload gateway, and the selection manner may be: selecting by using terminal location information.
- Step 807 The source offload gateway sends a PDP context creation request to the target offload gateway, and carries the access gateway information.
- Step 808 The target offload gateway sends a PDP context update request to the access gateway.
- Step 809 the access gateway replies with a PDP context update response.
- Step 810 The target offload gateway returns a PDP context establishment response to the source offload gateway.
- Step 811 The source offload gateway initiates a PDP context update response to the target mobility management entity, and carries the target offload gateway information.
- Step 812 The target mobility management entity and the authentication authorization database perform location update and subscription acquisition. The source mobility management entity and the authentication authorization database perform a location cancellation process.
- Step 813 The target mobility management entity initiates a tracking area update accept message to the terminal via the target wireless side network element.
- Step 814 The terminal replies to the tracking area update completion message.
- Step 8a01 The terminal sends a routing area update request message to the mobility management entity via the target radio side network element.
- step 8a05 the target offload gateway sends a PDP context update request to the access gateway.
- step 8a06 the access gateway replies with a PDP context update response.
- step 8a07 the target offload gateway replies to the source offload gateway with a PDP context setup response.
- step 8a08 the source offload gateway initiates a PDP context update response to the target mobility management entity, and carries the target offload gateway information.
- step 8a09 the mobility management entity initiates a tracking area update accept message to the terminal via the target wireless side network element.
- step 8al0 the terminal replies to the tracking area update completion message.
- Step 11 is a flow chart showing the process of requesting a service when a terminal is switched from an idle state to a connected state based on the system architecture of FIG. 1.
- the specific steps are as follows: Step 901: The terminal sends a Radio Resource Control (Radio Resource Control, RRC for short) connection establishment request to the radio side network element.
- Step 902 The radio side network element performs RRC connection establishment.
- Step 903 The terminal sends a service request message to the mobility management entity via the radio side network element.
- Step 904 The mobility management entity sends a radio bearer assignment request to the radio side network element, and the mobility management entity, the radio side network element, and the terminal perform a radio bearer assignment and establishment process.
- Step 905 The mobility management entity sends a PDP context update request message to the source offload gateway.
- Step 906 The source offload gateway selects a target offload gateway, and the selection manner may be: selecting by using terminal location information.
- Step 907 The source offload gateway sends a PDP context creation request to the target offload gateway, and carries the access gateway.
- Step 908 The target offload gateway sends a PDP context update request to the access gateway, step 909, and the access gateway replies with a PDP context update response.
- Step 910 The target offload gateway returns a PDP context setup response to the source offload gateway.
- Step 911 The source offload gateway initiates a PDP context update response to the mobility management entity, and carries the target offload gateway information.
- Step 912 The mobility management entity may update the locally saved offload gateway information, and update the radio bearer to the radio side network element to carry the target offload gateway information.
- Embodiment 8 In this embodiment, communication can be realized by a wireless connection and a wired connection.
- FIG. 12 is a block diagram of a preferred structure of a source offload gateway according to an embodiment of the present invention, including: a receiving unit 1202, configured to receive an information update request sent by a mobility management entity when a terminal performs a mobility event; 1204, in communication with the receiving unit 1202, configured to create information to the target offload gateway; the transmitting unit 1206, in communication with the creating unit 1204, configured to send an information update response to the mobility management entity after the information is created, where The information update response carries information of the target offload gateway.
- information such as a PDP context is created by the source offload gateway to the target offload gateway, and an information update response such as a PDP update context response is sent to the mobility management entity, thereby solving the problem that the existing mobile process cannot be completed.
- the mobility event comprises one of the following: a handover, a location update, or a service request.
- the utility of the present invention is increased by the definition of different mobility events.
- the information update request includes one of the following: an update PDP context request, a bearer update request; the creation information includes one of the following: creating a PDP context, establishing a bearer; and the information update response includes one of the following: updating the PDP Context response, hosting update response.
- the gateway relocation method of the present invention can be applied to different scenarios.
- the source offload gateway is a offload gateway used before the terminal is switched or before the location is updated
- the target offload gateway is a offload gateway used after the terminal is switched or after the location is updated.
- the terminal performs handover if the mobility management entity before and after the handover of the terminal changes, the mobility management entity that sends the information update request and receives the information update response is the terminal The switched mobility management entity.
- the correct transmission and continuity of the service of the terminal is ensured by communicating with the mobility management entity after the terminal handover.
- the source offloading gateway further includes: a determining unit 1208, configured to communicate with the receiving unit 1202, and configured to: after receiving the information update request sent by the mobility management entity, determine a type of the service transmitted by the terminal; the notification unit 1210,
- the creating unit 1204 is configured to notify the creating unit 1204 to perform the step of creating information to the target offload gateway when it is determined that the transmitted service is a service with low business continuity.
- the determining unit 1208 is in communication with the notifying unit 1210.
- the step of creating information to the target offload gateway by performing the source offload gateway on the service with low service continuity can better ensure the continuity of the service with low service continuity.
- the notification unit 1210 notifies the creating unit 1204 not to perform the Describe the step of the source offload gateway creating information to the target offload gateway, and sending an information update response to the mobility management entity.
- the step of creating the information to the target offload gateway by the source offload gateway is not performed on the service whose type is not the service continuity is low, and the continuity of the service with low service continuity can be better ensured.
- the source offload gateway and the target offload gateway are one of the following: 1) ISGW; 2) L-SGW and L-PGW; or 3) L-PGW.
- the source offload gateway and the target offload gateway are both ISGWs, or L-SGWs and L-PGWs, respectively, or both are L-PGWs.
- the offload gateway information may be one or more of the following: a traffic distribution gateway identifier, a traffic distribution gateway address.
- the above embodiment only illustrates the manner in which the serving gateway performs relocation in the IP offload connection communication system by taking the case of FIG. 1 as an example. In the case of the system of FIG.
- the update PDP context request can be replaced with a bearer update request, the created PDP context is replaced with a bearer, and the updated PDP context response is replaced with a bearer update response.
- the process of relocating the traffic distribution gateway is similar to that of the foregoing embodiment, and will not affect the description of the present invention, and therefore will not be described again.
- the source offload gateway receives the information update request sent by the mobility management entity; the source offload gateway creates information to the target offload gateway; and the source offload gateway sends an information update response to the mobility management entity.
- the update PDP context response carries information of the target offload gateway.
- the information update request includes one of the following: an update PDP context request, a bearer update request.
- the creation information includes one of the following: Create a PDP context, establish a bearer.
- the information update response includes one of the following: Update PDP context response, bearer update response.
- the offload gateway may be an ISGW, may be an L-SGW and an L-PGW, may be a separate L-PGW, may be an L-GGSN and an L-SGSN, and may be a separate L-GGSN, and may be It is a data offloading function entity, which can be a local broadband access server (L-BRAS), an access controller (AC), or an evolved packet data gateway (Evolved Packet).
- L-BRAS local broadband access server
- AC access controller
- Evolved Packet evolved packet data gateway
- the offload gateway includes a split access gateway and/or a offload service gateway; the offload access gateway is an L-PGW or an L-GGSN or an L-BRAS; and the offload service gateway is an L-SGW or an L-SGSN or an AC, or ePDG, or PDG.
- the wireless side network element may be a base station, a home base station, a radio network controller (Radio Network Controller, RNC for short), a traffic distribution gateway, a traffic distribution function entity, a home base station gateway, and an access point (AP).
- RNC Radio Network Controller
- the mobility management entity may be an MME, a Mobile Switching Center (MSC), a GPRS Service Support Point (SGSN), a home base station gateway, and an AC.
- the access gateway may be a core network access gateway, and may be a split access gateway; the service gateway may be a core network service gateway, and may be a offload service gateway.
- the core network access gateway is a P-GW, or a Gateway GPRS Support Node (GGSN), or a Broadband Remote Access Server (BRAS); the core network service gateway is S- GW, or SGSN, or AC, or ePDG, or PDG.
- IP offloading can be local IP access to the user's local network, local IP access to the company's local network, local IP access to the Internet, Internet traffic shunting, and specific IP data offloading.
- the information of the offload gateway may be a Fully Qualified Domain Name (FQDN) or/and an IP address.
- FQDN Fully Qualified Domain Name
- the computing device may be implemented by program code executable by the computing device, such that they may be stored in the storage device by the computing device and, in some cases, may be different from this
- the steps shown or described are performed sequentially, or they are separately fabricated into individual integrated circuit modules, or a plurality of modules or steps thereof are fabricated as a single integrated circuit module.
- the invention is not limited to any specific combination of hardware and software.
- the above is only the preferred embodiment of the present invention, and is not intended to limit the present invention, and various modifications and changes can be made to the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and scope of the present invention are intended to be included within the scope of the present invention.
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Abstract
L'invention concerne un procédé de translation de passerelle et une passerelle de dérivation source. Le procédé comprend : la réception, par une passerelle de dérivation source, d'une demande de mise à jour de message envoyée par une entité de gestion de mobilité, lorsqu'un terminal exécute un événement de mobilité ; la création d'un message par la passerelle de dérivation source vers une passerelle de dérivation cible ; et l'envoi d'une réponse de mise à jour de message par la passerelle de dérivation source à l'entité de gestion de mobilité, la réponse de mise à jour de message portant le message de la passerelle de dérivation cible. L'invention résout le problème technique actuel selon lequel le processus de mouvement ne peut pas achever la fonction de transfert intercellulaire sur des passerelles de dérivation, et réalise la fonction de mouvement sur des passerelles de dérivation.
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201010560767.1A CN102480782B (zh) | 2010-11-25 | 2010-11-25 | 网关重定位方法和源分流网关 |
| CN201010560767.1 | 2010-11-25 |
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| WO2012068935A1 true WO2012068935A1 (fr) | 2012-05-31 |
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| PCT/CN2011/081151 Ceased WO2012068935A1 (fr) | 2010-11-25 | 2011-10-21 | Procédé de translation de passerelle et passerelle de dérivation source |
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| WO (1) | WO2012068935A1 (fr) |
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| CN105813111B (zh) * | 2014-12-31 | 2021-01-26 | 中兴通讯股份有限公司 | 业务流传输路径优化方法、装置及mme |
| CN108377459B (zh) | 2016-10-11 | 2020-09-01 | 中国移动通信有限公司研究院 | 一种连接管理方法及装置 |
| US20260046703A1 (en) * | 2022-08-09 | 2026-02-12 | Nokia Solutions And Networks Oy | Mobility between gateway devices in non-3gpp access |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN101072425A (zh) * | 2006-05-11 | 2007-11-14 | 华为技术有限公司 | 一种无线演进网络中的切换方法及系统 |
| CN101361386A (zh) * | 2005-12-22 | 2009-02-04 | 中兴通讯股份有限公司 | 移动终端跨无线接入网移动时分组数据流不中断的方法 |
| CN101505510A (zh) * | 2008-02-04 | 2009-08-12 | 华为技术有限公司 | 宏小区到私有小区的切换方法及其宏网络系统 |
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| Publication number | Priority date | Publication date | Assignee | Title |
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| EP1890455A1 (fr) * | 2006-08-18 | 2008-02-20 | Nokia Siemens Networks Gmbh & Co. Kg | Méthode et appareil pour effectuer un handover vers une connexion de réseau local sans fil au moyen d'un déclencheur de mobilité dans un Packet Data Gateway (PDG) |
| CN101720119B (zh) * | 2009-05-27 | 2012-06-13 | 中兴通讯股份有限公司 | 一种实现pdn连接选择的方法及系统 |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN101361386A (zh) * | 2005-12-22 | 2009-02-04 | 中兴通讯股份有限公司 | 移动终端跨无线接入网移动时分组数据流不中断的方法 |
| CN101072425A (zh) * | 2006-05-11 | 2007-11-14 | 华为技术有限公司 | 一种无线演进网络中的切换方法及系统 |
| CN101505510A (zh) * | 2008-02-04 | 2009-08-12 | 华为技术有限公司 | 宏小区到私有小区的切换方法及其宏网络系统 |
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| CN102480782B (zh) | 2016-03-30 |
| CN102480782A (zh) | 2012-05-30 |
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