WO2017049458A1 - 一种控制方法及本地控制面设备 - Google Patents
一种控制方法及本地控制面设备 Download PDFInfo
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- WO2017049458A1 WO2017049458A1 PCT/CN2015/090270 CN2015090270W WO2017049458A1 WO 2017049458 A1 WO2017049458 A1 WO 2017049458A1 CN 2015090270 W CN2015090270 W CN 2015090270W WO 2017049458 A1 WO2017049458 A1 WO 2017049458A1
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- user equipment
- plane device
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- local control
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/10—Connection setup
- H04W76/12—Setup of transport tunnels
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W28/00—Network traffic management; Network resource management
- H04W28/02—Traffic management, e.g. flow control or congestion control
- H04W28/08—Load balancing or load distribution
- H04W28/082—Load balancing or load distribution among bearers or channels
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/10—Connection setup
- H04W76/11—Allocation or use of connection identifiers
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/10—Connection setup
- H04W76/14—Direct-mode setup
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W60/00—Affiliation to network, e.g. registration; Terminating affiliation with the network, e.g. de-registration
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/20—Control channels or signalling for resource management
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/20—Manipulation of established connections
- H04W76/27—Transitions between radio resource control [RRC] states
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- 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 wireless communication technologies, and in particular, to a control method and a local control plane device.
- 3GPP 3rd Generation Partnership Project proposes a new EPS (Evolved Packet System) network, including UE (User Equipment) and eNB (Evolutional Node B, Base station), SGW (Serving Gateway), PGW (Packet Data Network Gateway), and MME (Mobility Management Entity).
- the SGW is used as a forwarding plane anchor between access networks
- the PGW is used as a forwarding plane anchor between the access network and the non-access network.
- the PGW deployment location is high, so that the UE remains connected to the PGW even when the UE moves, thereby ensuring the IP unchanged.
- the routing problem may occur. That is, the data of the UE will go to the PGW with a higher position and then return to the local server, resulting in a longer packet transmission delay.
- the 3GPP defines the SIPTO (Selected IP Traffic Offload) function.
- the core idea is to deploy the SGW and the PGW in a low-level manner. When the UE accesses the local server, the local PGW allocates an IP address, and the data only passes through the local.
- the SGW and the PGW which avoids the route bypass, solves the problem that the packet transmission delay is too long.
- the disadvantage of deploying the SGW and the PGW in the low position is that the distance from the centrally deployed MME is far, and the UE changes from the idle state. The signaling transmission delay becomes longer in the active state. Therefore, another way to reduce the signaling transmission delay is to move the MME down to the low level and deploy it with the local gateway. However, this also greatly reduces the number of UEs under the jurisdiction of each MME, and it is easy to switch between different MMEs when the UE moves, resulting in an increase in signaling interaction and an increase in system load.
- the embodiment of the invention provides a control method and a local control plane device, which can reduce the signaling transmission delay when the user equipment changes from the idle state to the active state, and can avoid the user equipment moving guide.
- a first aspect of the embodiments of the present invention provides a control method, where the method is applied to a wireless communication system, where the wireless communication system includes a user equipment, a base station, a gateway device, a local control plane device, and a remote control plane device, where Methods include:
- the local control plane device acquires context information of the user equipment from the remote control plane device according to an interaction process between the user equipment and the remote control plane device;
- the local control plane device establishes a radio bearer between the base station where the current camping cell of the user equipment is located and the user equipment according to the context information of the user equipment.
- the interaction process between the user equipment and the remote control plane device includes:
- the user equipment initiates an attach request process and a packet data network connection establishment process.
- the local control plane device acquires context information of the user equipment from the remote control plane device according to an interaction process between the user equipment and a remote control plane device.
- the local control plane device forwards the forwarding plane modification information sent by the remote control plane device to the gateway device, and the forwarding plane is modified.
- the information carries context information of the user equipment;
- the local control plane device obtains context information of the user equipment by parsing the forwarding plane modification information.
- the local control plane device acquires context information of the user equipment from the remote control plane device according to an interaction process between the user equipment and a remote control plane device.
- the local control plane device forwards the forwarding plane modification information sent by the remote control plane device to the gateway device;
- the local control plane device receives context information of the user equipment sent by the remote control plane device.
- the local control plane device establishes, according to the context information of the user equipment, a radio bearer between the user equipment and a base station where the user equipment currently camps on the cell include:
- the system After the service request sent by the base station where the cell is located, the system sends a context establishment request to the base station where the user equipment is currently camped according to the context information of the user equipment, so that the base station where the user equipment is currently camped is established.
- a radio bearer with the user equipment is established.
- the local control plane device receives the service that is sent by the user equipment by using a base station where the user equipment currently camps on the cell Before the request, it also includes:
- the local control plane device receives a downlink data arrival notification message, the local control plane device initiates paging to the user equipment according to the context information of the user equipment, so that the user equipment is converted from an idle state to an activated state, and passes the current station.
- the base station where the staying cell is located sends a service request.
- the local control plane device acquires the user equipment from the remote control plane device according to an interaction process between the user equipment and the remote control plane device.
- the context information it also includes:
- the local control plane After receiving the deletion context request sent by the remote control plane device, the local control plane deletes the saved context information of the user equipment;
- the local control plane device sends a delete context request to the gateway device, so that the gateway device deletes the saved context information of the user equipment.
- the local control plane device establishes, according to the context information of the user equipment, a radio bearer between the base station where the current camping cell of the user equipment is located and the user equipment After that, it also includes:
- the local control plane device sends a modify user status notification to the remote control plane device, so that the remote control plane device modifies state information of the user equipment.
- the remote control plane device includes:
- the context information of the user equipment includes:
- the security context of the user equipment and the bearer context of the user equipment includes a user plane address of the forwarding plane gateway, a tunnel identifier, a tracking area list, a global unique temporary identifier, and a control plane identifier assigned by the remote control plane.
- a second aspect of the embodiments of the present invention provides a local control plane device, where the local control plane device is applied to a wireless communication system, where the wireless communication system further includes a user equipment, a base station, a gateway device, and a remote control plane device.
- the local control plane devices include:
- An information acquiring module configured to acquire context information of the user equipment from the remote control plane device according to an interaction process between the user equipment and the remote control plane device;
- a bearer establishing module configured to establish, by the local control plane device, a radio bearer between the base station where the current camping cell of the user equipment is located and the user equipment according to the context information of the user equipment.
- the interaction process between the user equipment and the remote control plane device includes:
- the user equipment initiates an attach request process and a packet data network connection establishment process.
- the information acquiring module includes:
- the information forwarding unit is configured to forward the forwarding surface modification information sent by the remote control plane device to the gateway device during the interaction between the user equipment and the remote control plane device, where the forwarding plane is modified.
- the information carries context information of the user equipment;
- the information obtaining unit is configured to obtain context information of the user equipment by parsing the forwarding plane modification information.
- the information acquiring module includes:
- the information forwarding unit is configured to forward the forwarding surface modification information sent by the remote control plane device to the gateway device during the interaction between the user equipment and the remote control plane device;
- an information acquiring unit configured to receive context information of the user equipment sent by the remote control plane device.
- the bearer establishing module is specifically configured to: after receiving the service request sent by the user equipment by using the base station where the user equipment is currently camped, The context information of the user equipment is sent to the base station where the user equipment is currently camped to send a context establishment request, so that the base station where the user equipment currently camps on the cell establishes a radio bearer with the user equipment.
- the local control plane device includes:
- a paging initiation module configured to receive a downlink data arrival notification message according to the user equipment
- the context information initiates paging to the user equipment to cause the user equipment to transition from an idle state to an active state, and send a service request through a base station where the currently camped cell is located.
- the local control plane device further includes:
- An information deletion module configured to delete the saved context information of the user equipment after receiving the delete context request sent by the remote control plane device;
- the local control plane device sends a delete context request to the gateway device, so that the gateway device deletes the saved context information of the user equipment.
- the local control plane device further includes:
- the notification sending module is configured to send a modified user status notification to the remote control plane device, so that the remote control plane device modifies the status information of the user equipment.
- the remote control plane device includes:
- the context information of the user equipment includes:
- the security context of the user equipment and the bearer context of the user equipment includes a user plane address of the forwarding plane gateway, a tunnel identifier, a tracking area list, a global unique temporary identifier, and a control plane identifier assigned by the remote control plane.
- the local control plane device obtains the context information of the user equipment from the remote control plane device according to the interaction process between the user equipment and the remote control plane device, and further, according to the context information of the user equipment, Establishing a radio bearer between the base station and the user equipment where the user equipment is currently camped on, and reducing signaling signaling delay when the user equipment changes from the idle state to the active state, and avoiding frequent switching of the control plane caused by the user equipment moving The problem caused by excessive signaling interaction.
- FIG. 1 is a schematic flow chart of a control method according to an embodiment of the present invention.
- FIG. 2 is a schematic flow chart of a control method according to a first embodiment of the present invention
- FIG. 3 is a schematic flow chart of another control method according to the first embodiment of the present invention.
- FIG. 4 is a schematic flow chart of a control method according to a second embodiment of the present invention.
- FIG. 5 is a schematic flowchart diagram of another control method according to a second embodiment of the present invention.
- FIG. 6 is a schematic structural diagram of a local control plane device according to an embodiment of the present invention.
- FIG. 7 is a schematic structural diagram of an information acquiring module according to an embodiment of the present invention.
- FIG. 8 is a schematic structural diagram of another information acquiring module according to an embodiment of the present disclosure.
- FIG. 9 is a schematic structural diagram of another local control plane device according to an embodiment of the present invention.
- FIG. 10 is a schematic structural diagram of a wireless communication system according to a first embodiment of the present invention.
- FIG. 11 is a schematic structural diagram of a wireless communication system according to a second embodiment of the present invention.
- GSM Global System of Mobile communication
- CDMA Code Division Multiple Access
- WCDMA Wideband Code Division Multiple Access
- GPRS General Packet Radio Service
- LTE Long Term Evolution
- FDD Frequency Division Duplex
- TDD Time Division Duplex
- Universal Mobile Telecommunication System Universal Mobile Telecommunication System
- WiMAX Worldwide Interoperability for Microwave Access
- the user equipment (User Equipment, referred to as “UE”) provided by the embodiment of the present invention includes a terminal. (Terminal), mobile station (Mobile Station, "MS”) or mobile terminal (Mobile Terminal), etc., the user equipment may be through a radio access network (Radio Access Network, referred to as "RAN") and one or more The core network communicates, for example, the user equipment may be a mobile phone (or “cellular” phone) or a computer with a mobile terminal, etc., for example, the user device may also be portable, pocket-sized, handheld, built-in or on-board. Mobile devices that exchange voice and/or data with a wireless access network.
- the base station provided by the embodiment of the present invention may be an evolved base station (Evolutional Node B, referred to as "eNB”) in LTE.
- eNB evolved base station
- FIG. 1 is a schematic flowchart of a control method according to an embodiment of the present invention.
- the method is applied to a wireless communication system, where the wireless communication system includes a user equipment, a base station, a gateway device, a local control plane device, and a remote control plane device, such as
- the flow of the control method in this embodiment shown in the figure may include:
- the local control plane device acquires context information of the user equipment from the remote control plane device according to the interaction process between the user equipment and the remote control plane device.
- the context information of the user equipment includes at least a security context, a bearer context (including the user plane address of the SGW and the user plane TEID-U), a TAI (Tracking Area Identity) list, and a globally unique Temporary Identity (GUTI).
- the unique temporary identifier includes the control plane TEID-C assigned by the MME, and the TEID-C assigned by the SGW.
- the TEID (Tunnel Endpoint ID) is a tunnel endpoint identifier.
- the interaction process between the user equipment and the remote control plane device includes an attach request process initiated by the user equipment and a packet data network (PDN) connection establishment process.
- PDN packet data network
- the manner in which the local control plane device obtains the context information of the user equipment from the remote control plane device according to the interaction process between the user equipment and the remote control plane device includes the following two types:
- Manner 1 During the interaction between the user equipment and the remote control plane device, the local control plane device forwards the forwarding surface modification information sent by the remote control plane device to the gateway device, and the forwarding surface modification information carries the context information of the user equipment. Then, the local control plane device can obtain the context information of the user equipment by parsing the forwarding surface modification information.
- the forwarding plane modification information herein may be a modified bearer request in the application scenario described in FIG. 2 below, that is, when the local control plane device forwards the modified bearer request sent by the remote control plane device to the gateway device. And parsing the context information of the user equipment carried therein.
- the modification information may also be a modified downlink data forwarding rule message in the application scenario described in FIG. 4, that is, the local control plane device parses the modified downlink data forwarding rule sent by the remote control plane device to the gateway device. Context information of the user equipment carried.
- the local control plane device forwards the forwarding plane modification information sent by the remote control plane device to the gateway device, and receives the user equipment directly sent by the remote control plane device. Contextual information.
- the local control plane device establishes, according to the context information of the user equipment, a radio bearer between the base station where the current camping cell of the user equipment is located and the user equipment.
- the local control plane device After receiving the service request sent by the user equipment by the base station where the current camping cell is located, the local control plane device sends a context establishment request to the base station according to the context information of the user equipment, so that the base station establishes the user equipment with the user equipment. Wireless bearer between.
- the user equipment sending a service request through the base station where the current camping cell is located may be triggered by the downlink data arrival notification.
- the local control plane device when the user equipment is in an idle state, after receiving the downlink data arrival notification message, the local control plane device initiates paging to the user equipment according to the context information of the user equipment, so that the user equipment changes from the idle state to the active state. Status, and send a service request through the base station where the currently camped cell is located.
- the source local control plane device and the source gateway device are changed.
- the process of deleting the context information of the saved user device is performed.
- the source local control plane after receiving the delete context request sent by the remote control plane device, deletes the saved context information of the user equipment, and sends a delete context request to the source gateway device to delete the source gateway device. Context information for the user device.
- the source gateway here includes the source SGW and does not include the source PGW.
- the local control plane device processes the paging and service request process of the user equipment, and after the user equipment transitions from the idle state to the activated state, the local control plane The device sends a modify user status notification to the remote control plane device, so that the remote control plane device modifies the status information of the user equipment.
- the embodiment of the present invention introduces a local control plane device in an existing wireless network system, and has the following functions: a signaling agent between a base station and a remote control plane device, and a remote control plane device and Signaling agent between local gateway devices.
- the local control plane device can save the user's bearer context, security context, and user TAI list, and is responsible for the user's paging and service request flow. Other processes are still processed by the remote control plane device in the existing wireless network system.
- the embodiment of the invention distributes part of the functions of the remote control plane device in the existing wireless network system, so that the paging and service request functions can be processed locally, thereby saving the time required for signaling transmission.
- the low latency application provides a shorter transition time from idle to active, reducing the first packet transmission delay.
- FIG. 2 is a schematic flowchart of a control method according to a first embodiment of the present invention. The method is applied to a wireless communication system, where the wireless communication system includes a user equipment, a base station, a gateway device, a local control plane device, and a remote control plane. device.
- the wireless communication system includes a user equipment, a base station, a gateway device, a local control plane device, and a remote control plane. device.
- the architecture is based on a centralized deployment scenario of a SIP (Selected IP Traffic Offload) gateway of a macro network.
- the function entity local control plane (Local Control, LC), the local control plane device integrates the functions of SGW and PGW offload offloading, and is close to the access network.
- the S1 interface is the interface between the remote control plane and the base station
- the S11 interface is the interface between the remote control plane and the SGW
- the local control plane is the signaling proxy between the two interfaces, facing the base station and the SGW.
- the MME, the remote control plane acts as a base station and SGW.
- the gateway device includes an SGW/PGW
- the remote control plane device includes an MME of a traditional network architecture.
- the flow of the control method in this embodiment shown in FIG. 2 may include:
- the user equipment sends an attach request to the base station.
- the UE sends an attach request to the eNB to initiate a network attach procedure, where the attach request carries an IMSI (International Mobile Subscriber Identification Number), a core network capability, a PDN type, and a selected PLMN of the UE. (Public Land Mobile Network, public land mobile network).
- IMSI International Mobile Subscriber Identification Number
- PDN type Public Land Mobile Network
- PLMN Public Land Mobile Network
- the base station sends an attach request to the local control plane device.
- the eNB sends the initial UE message of the S1AP to the local control plane device, where the initial UE message of the S1AP carries an attach request.
- the local control plane device sends an attach request to the remote control plane device.
- the local control plane device sends an attach request message to the MME.
- the local control plane device authenticates the user equipment and establishes a security process.
- the MME authenticates the UE and performs a NAS (Network Attached Storage) security establishment process, after which all NAS messages are performed by the NAS security function indicated by the MME. protection.
- NAS Network Attached Storage
- the remote control plane device sends a create session request to the local control plane device.
- the MME sends a create session request to the local control plane device, where the create session request includes an EPS bearer identifier, an APN (Access Point Name) of the UE, an MME TEID of the control plane, and a default EPS bearer QoS (Quality). Information such as service, quality of service, and PDN type.
- the local control plane device sends a create session request to the gateway device.
- the local control plane forwards the create session request to the SGW/PGW.
- the gateway device sends a create session response to the local control plane device.
- the SGW/PGW returns a create session response, where the create session response includes information such as a PDN type, a user plane SGW address and a TEID, a control plane SGW TEID, an EPS bearer identifier, an EPS bearer QoS, a PGW address, and a TEID.
- the create session response includes information such as a PDN type, a user plane SGW address and a TEID, a control plane SGW TEID, an EPS bearer identifier, an EPS bearer QoS, a PGW address, and a TEID.
- the local control plane device sends a create session response to the remote control plane device.
- the local control plane device forwards the create session response to the MME.
- the remote control plane device sends an initial context setup request to the base station by using the local control plane device.
- the MME sends an initial context setup request of the S1AP to the eNB, where the initial context setup request of the S1AP carries an attach accept message.
- the S1AP message includes a security context of the UE, an EPS bearer QoS, an EPS bearer identifier, a user plane SGW address, and a TEID.
- the attach accept message includes information such as GUTI, PDN type, PDN address, APN, and TAI list.
- the base station performs a radio resource control connection configuration with the user equipment.
- an RRC (Radio Resource Control) connection configuration process is completed between the eNB and the UE.
- the base station sends an initial context setup response to the remote control plane device by using the local control plane device.
- the eNB returns an initial context setup response message, where the initial context setup response message includes an address and TEID of the eNB transmitting the downlink data on the S1-U interface, and the UE is attached. Into the message.
- the remote control plane device sends a modify bearer request to the local control plane device.
- the MME sends a modify bearer request to the local control plane device, where the modify bearer request includes an EPS bearer identifier, an address of the eNB, and a TEID.
- the local control plane device acquires context information of the user equipment.
- the manner in which the local control plane device acquires the context information of the UE from the MME includes the following two types:
- the modified bearer request sent by the MME carries the context information of the UE, and the local control plane device can obtain the context information of the UE by parsing and modifying the bearer request.
- Manner 2 The local control plane device receives the context information of the UE directly sent by the MME.
- the context information of the UE includes a security context, a bearer context (including the user plane address of the SGW and the user plane TEID-U), a TAI list, a GUTI, a control plane TEID-C allocated by the MME, and a TEID-C allocated by the SGW.
- the local control plane device saves this information.
- the local control plane device sends a modify bearer request to the gateway device.
- the local control plane device forwards the modify bearer request to the SGW/PGW.
- the gateway device sends a modify bearer response to the local control plane device.
- the SGW/PGW returns a modified bearer response, where the modified bearer response carries an EPS bearer identifier.
- the local control plane device sends a modify bearer response to the remote control plane device.
- the local control plane notifies the MME of the modify bearer response message.
- the local control plane device After receiving the downlink data arrival notification message, the local control plane device initiates paging to the user equipment.
- the local control plane device determines the saved context information according to the TEID-C allocated by the MME, acquires the TAI list, and initiates the locating to all the eNBs in the TAI list where the UE is located.
- the message is sent and carries the S-TMSI (partial information of the GUTI), and the eNB initiates paging to the UE.
- the user equipment sends a service request to the local control plane device by using the base station.
- the UE re-enters the active state in response to the paging message, and sends a service request to the local control plane device, where the service request carries the S-TMSI.
- the local control plane device sends a context establishment request to the base station.
- the local control plane finds a corresponding saved bearer context (including an EPS bearer QoS, a bearer identifier, an SGW user plane address, a user plane TEID-U) and a security context according to the S-TMSI, and sends an initial context setup request message to the eNB according to the S-TMSI, and sends an initial context setup request message to the eNB according to the S-TMSI, and sends an initial context setup request message to the eNB according to the
- the saved bearer context establishes a transport tunnel between the eNB and the SGW/PGW and transmits the security context to the eNB to ensure secure transmission between the UE and the eNB.
- the base station sends a context establishment complete message to the local control plane device.
- the eNB After completing the user plane radio bearer setup process, the eNB returns an initial context setup complete message to the local control plane, where the initial context setup complete message carries the address and TEID of the eNB for transmitting the downlink data by the S1 interface, and the EPS accepted by the eNB. Bearer list, optional list of rejected EPS bearers.
- the local control plane device sends a modify bearer request to the SGW/PGW, where the modify bearer request carries the TEID-C allocated by the SGW, and the EPS bearer list accepted by the eNB (the address of the eNB and the user plane TEID of the downlink data transmitted by the S1 interface) ), an optional list of EPS bearers rejected by the eNB.
- the local control plane device sends a modify user status notification to the remote control plane device.
- the local control plane device since the UE transitions from the Idle state to the Active state, the local control plane device notifies the MME of the latest state of the UE. This is to prevent the MME from repeatedly paging the UE when it needs to transmit signaling to the UE. Secondly, in the above process, if there is a rejected EPS bearer, the MME needs to delete the EPS bearer that has been rejected in the core network.
- FIG. 3 is a schematic flowchart of another control method according to the first embodiment of the present invention.
- the flow of the control method in this embodiment may include:
- the user equipment sends a tracking area update request to the remote control plane device.
- the UE when the UE crosses the domain to reach the new tracking area, the UE sends a TA (Tracking Area) update request to the MME to trigger the TA update process.
- TA Tracking Area
- the remote control plane device sends a create session request to the target local control plane device.
- the MME saves the context information of the UE, and sends a create session request to the target local control plane device, where the create session request carries the MME address and the control plane TEID, and the bearer context (including the address of the source PGW1).
- the target local control plane device sends a create session request to the target gateway device.
- the target local control plane passes the create session request to SGW2.
- the SGW2 sends a modify bearer request according to the address of the PGW1, and establishes an S5 connection of the SGW2 to the PGW1.
- the remote control plane device sends a delete session request to the source local control plane device.
- the MME sends a delete session request to the source local control plane device, where the delete session request carries the TEID-C allocated by the MME.
- the source local control plane device deletes the context information of the user equipment.
- the source local control plane device deletes the corresponding context information according to the TEID-C allocated by the MME.
- the source local control plane device sends a delete session request to the source gateway device.
- the source local control plane device sends a delete session request to the SGW1.
- the source gateway device deletes the context information of the user equipment.
- the SGW 1 deletes the corresponding context information.
- the remote control plane device sends an initial context setup request to the base station by using the target local control plane device.
- the MME sends an initial context (including the user plane SGW address and the TEID-U) to the base station by using the target local control plane device, where the initial context creation request includes a TA update accept message (GUTI, TAI list, EPS bearer status) .
- GUI TA update accept message
- the base station performs a radio resource control connection configuration with the user equipment.
- the eNB after receiving the initial context setup request, performs RRC connection reconfiguration to establish a radio bearer with the UE.
- the UE deletes the local resource of the bearer that is not marked as "active" in the received EPS bearer status, and returns an RRC Connection Reconfiguration Complete message.
- the base station sends an initial context setup response to the remote control plane device.
- the eNB sends an initial context setup response to the MME to return the address and TEID of the eNB that transmits the downlink data by the S1 interface.
- the remote control plane device sends a modify bearer request to the target local control plane device.
- the MME sends a modify bearer request to the target local control plane device, where the modify bearer request includes an EPS bearer identifier, an address of the eNB, and a TEID.
- the target local control plane device forwards the modify bearer request to the source gateway device.
- the source gateway device sends a modify bearer response to the target local control plane device.
- the SGW1/PGW1 sends a modify bearer response to the target local control plane device, where the modified bearer response includes an EPS bearer identifier. Then, the target local control plane device notifies the MME of the modification bearer response, so that the MME instructs the UE to perform the PDN connection release process between SGW2 and PGW1, and deletes all bearer contexts in the PDN connection process. And instructing the UE to initiate a PDN connection re-establishment procedure, and establishing a PDN connection between the local SGW2 and the PGW2.
- the user equipment sends a network connection request to the remote control plane device by using the base station.
- the UE sends a PDN connection request to the MME through the eNB.
- the remote control plane device sends a create session request to the target local control plane device.
- the MME sends a create session request to the target local control plane device, where the create session request includes the address of the target PGW2, the EPS bearer identifier, the APN of the user, the MME TEID-C of the control plane, the default EPS bearer QoS, and the PDN type. information.
- the target local control plane device sends a create session request to the target gateway device.
- the target local control plane device passes the create session request message to SGW2.
- the target gateway device sends a create session response to the target local control plane device.
- the SGW2 sends a modify bearer request according to the address of the PGW2, establishes an S5 connection of the SGW2 to the PGW2, and thereafter returns a create session response to the target local control plane device.
- the returned creation session response includes information such as a PDN type, a user plane S-GW address and a TEID and a control plane S-GW TEID, an EPS bearer identifier, an EPS bearer QoS, a P-GW address, and a TEID.
- the remote control plane device sends a bearer setup request to the base station.
- the MME sends a bearer setup request to the eNB, where the bearer setup request carries a PDN connection accept message (APN, PDN type, PDN address, EPS bearer identifier), including EPS bearer QoS, user plane S-GW address, and TEID.
- PDN connection accept message APN, PDN type, PDN address, EPS bearer identifier
- the base station performs a radio resource control connection configuration with the user equipment.
- the eNB completes an RRC connection reconfiguration process with the UE.
- the base station sends a bearer setup complete message to the remote control plane device.
- the eNB returns a bearer setup complete message to the MME, including an address and a TEID of the eNB that transmits the downlink data on the S1-U interface.
- the UE then sends a direct transfer message to the eNB, including a PDN Connection Complete message.
- the eNB sends a bearer setup complete message to the MME, where the bearer setup complete message carries the PDN connection complete message.
- the remote control plane device sends a modify bearer request to the local control plane device.
- the MME sends a modify bearer request to the local control plane device, where the modify bearer request includes an EPS bearer identifier, an address of the eNB, and a TEID.
- the target local control plane device acquires context information of the user equipment.
- the manner in which the target local control plane device acquires the context information of the UE includes the following two types:
- the modified bearer request sent by the MME carries the context information of the UE, and the target local control plane device can obtain the context information of the UE by parsing and modifying the bearer request.
- the target local control plane device receives the context information of the UE directly sent by the MME.
- the context information of the UE includes a security context, a bearer context (including the user plane address of the SGW and the user plane TEID-U), a TAI list, a GUTI, a control plane TEID-C allocated by the MME, and a TEID-C allocated by the SGW.
- the local control plane device saves this information.
- the target local control plane device forwards the modify bearer request to the SGW2/PGW2, and the SGW2/PGW2 returns a modified bearer response, including the EPS bearer identifier.
- the paging and service request procedure in the embodiment of the present invention is responsible for the local control plane, and has the functions of S1 signaling and S11 signaling proxy, which greatly reduces the signaling transmission path and time, and not only avoids the prior art.
- the signaling interaction caused by frequent replacement between MMEs also avoids frequent update of user location information by the HSS due to UE mobility.
- FIG. 4 is a schematic flowchart of a control method according to a second embodiment of the present invention. The method is applied to a wireless communication system, where the wireless communication system includes a user equipment, a base station, a gateway device, a local control plane device, and a remote control plane. device.
- the wireless communication system includes a user equipment, a base station, a gateway device, a local control plane device, and a remote control plane. device.
- FIG. 11 is a schematic structural diagram of a wireless communication system according to a second embodiment of the present invention.
- the local control plane device is introduced on the basis of forwarding a separate mobile network architecture, and the control plane function of the gateway device is implemented (GW-C).
- GW-C control plane function of the gateway device
- the control plane device or Central Control (CC)
- SGW-U SGW's forwarding plane function
- PGW-U Packet Control
- the (PGW-U) function is merged into a gateway device (GW-U), and the Mobile flow interface is a reference point after the gateway data forwarding is separated.
- the flow of the control method in this embodiment as shown in FIG. 4 may include:
- the user equipment sends an attach request to the base station.
- the UE sends an attach request to the eNB.
- the base station sends an attach request to the local control plane device.
- the eNB sends an attach request to the local control plane device.
- the local control plane device sends an attach request to the remote control plane device.
- the local control plane device forwards the attach request to the remote control plane device, so that the authentication and authentication process is completed between the remote control plane device and the UE.
- the remote control plane device sends an uplink data forwarding rule to the local control plane device.
- the remote control plane device allocates an uplink tunnel identifier and sends an uplink data forwarding rule, where the uplink data forwarding rule includes index information.
- the local control plane device sends an uplink data forwarding rule to the gateway device.
- the local control plane device sends an uplink data forwarding rule to the GW-U, so that the GW-U forwards according to the uplink forwarding rule.
- the remote control plane device sends an initial context setup request to the base station by using the local control plane device.
- the remote control plane device sends an initial context setup request to the eNB, where the initial context setup request includes the allocated uplink tunnel identity.
- the base station performs a radio resource control connection configuration with the user equipment.
- the RRC connection configuration is completed between the eNB and the UE.
- the base station sends an initial context setup response to the remote control plane device by using the local control plane device.
- the eNB returns an initial context setup response to the control plane, wherein the initial context setup response includes a downlink tunnel ID assigned by the eNB, and an attach complete message.
- the remote control plane device sends a downlink data forwarding rule to the local control plane device.
- the downlink data forwarding rule includes index information to indicate a manner in which the GW-U sends an IP packet to the UE.
- the local control plane device acquires context information of the user equipment.
- the manner in which the local control plane device acquires the context information of the UE includes the following two types:
- the modified downlink data forwarding rule sent by the remote control plane device carries the context information of the UE, and the local control plane device can obtain the context information of the UE by parsing and modifying the downlink data forwarding rule.
- the local control plane device receives the context information of the UE directly sent by the remote control plane device.
- the context information of the UE includes the UE security context, the bearer context, the TAI list, the GUTI, and the uplink and downlink forwarding rule index information, and the local control plane device saves the information.
- the local control plane device sends a modified downlink data forwarding rule to the gateway device.
- the local control plane device notifies the GW-U of the downlink data forwarding rule.
- the local control plane device After receiving the downlink data arrival notification message, the local control plane device initiates paging to the user equipment.
- the GW-U matches the downlink forwarding rule and the buffered downlink data, and sends a downlink data arrival notification to the local control plane device, where the downlink data arrival notification includes index information corresponding to the downlink forwarding rule.
- the local control plane determines the TAI list of the corresponding UE according to the index information of the downlink forwarding rule, and initiates a paging message to all the eNBs in the TAI list of the UE, where the message carries the S-TMSI (partial information of the GUTI), so that the eNB A paging is initiated for the UE.
- S-TMSI partial information of the GUTI
- the user equipment sends a service request to the local control plane device by using the base station.
- the UE re-enters the Active state in response to the paging message, and sends a service request to the local control plane device, where the service request carries the S-TMSI (partial information of the GUTI).
- S-TMSI partial information of the GUTI
- the local control plane device sends a context establishment request to the base station.
- the local control plane finds a corresponding saved bearer context (including an EPS bearer QoS, an EPS bearer identifier, an uplink tunnel identifier) and a security context according to the S-TMSI, and sends an initial context setup request to the eNB, so that the eNB performs the saved bearer according to the saved bearer.
- the context establishes a transmission tunnel between the eNB and the GW-U and transmits the security context to the eNB to ensure secure transmission between the UE and the eNB.
- the base station sends a context setup complete message to the local control plane device.
- the eNB After the eNB completes the user plane radio bearer setup process, the eNB returns to the initial context.
- the local control plane device sends a modified downlink data forwarding rule to the remote control plane device.
- the local control plane device After acquiring the tunnel identifier of the eNB, the local control plane device updates the downlink forwarding rule of the UE according to the buffered downlink forwarding rule index, and establishes a transmission tunnel between the eNB and the GW-U to enable the GW-U to the eNB. Send a buffered message.
- the local control plane device sends a modify user status notification to the remote control plane device.
- the local control plane device since the UE transitions from the Idle state to the Active state, the local control plane device notifies the remote control plane device of the latest state of the UE.
- FIG. 5 is a schematic flowchart of another control method according to a second embodiment of the present invention.
- the flow of the control method in this embodiment may include:
- the user equipment sends a tracking area update request to the remote control plane device.
- the UE when the UE crosses the domain to reach the new tracking area, the UE sends a TA update request to the remote control plane device to trigger the TA update procedure.
- the remote control plane device sends an uplink data forwarding rule to the target local control plane device.
- the remote control plane device allocates an uplink tunnel identifier, and sends an uplink data forwarding rule to the target local control plane device, where the uplink data forwarding rule includes index information.
- the target local control plane device sends an uplink data forwarding rule to the target gateway device.
- the target local control plane notifies the GW-U2 to accept the packet of the tunnel and forward the packet according to the uplink forwarding rule.
- the remote control plane device sends a context release command to the source local control plane device.
- the source local control plane device deletes the context information of the user equipment.
- the source local control plane device deletes the context information of the corresponding UE according to the context release command.
- the source local control plane device sends a context release command to the source gateway device.
- the source local control plane device sends a context release command to GW-U1.
- the source gateway device deletes the context information of the user equipment.
- the GW-U1 deletes the context information of the corresponding UE according to the context release command.
- the remote control plane device sends an initial context setup request to the base station by using the target local control plane device.
- the remote control plane device sends an initial context setup request to the base station, where the initial context setup request includes the allocated uplink tunnel identifier and carries a TAU accept message, where the TAU accept message includes a GUTI, a PDN type, a PDN address, an APN, Information such as TAI list.
- the base station performs a radio resource control connection configuration with the user equipment.
- the base station sends an initial context setup response to the remote control plane device.
- the eNB returns an initial context setup response to the remote control plane device, wherein the initial context setup response includes the downlink tunnel ID assigned by the eNB.
- the remote control plane device sends a modified downlink data forwarding rule to the target local control plane device.
- the remote control plane device sends the modified downlink data forwarding rule to the target local control plane device, where the modified downlink data forwarding rule includes the index information, and indicates the manner in which the GW-U sends the IP packet to the UE.
- the target local control plane device forwards the modified downlink data forwarding rule to the target gateway device.
- the target local control plane device notifies the GW-U2 of the modified downlink forwarding rule.
- the user equipment sends a network connection request to the remote control plane device by using the base station.
- the remote control plane device instructs the UE to perform a PDN connection release process, deletes all bearers in the source PDN connection process, and instructs the UE to initiate a PDN connection re-establishment process.
- the UE sends a network connection request to the remote control plane device through the eNB.
- the remote control plane device sends a downlink data forwarding rule to the target local control plane device.
- the remote control plane device allocates an uplink tunnel identifier, and sends a downlink data forwarding rule, where the downlink data forwarding rule includes an index information, and indicates a manner in which the GW-U sends the IP packet to the UE.
- the target local control plane device sends a downlink data forwarding rule to the target gateway device.
- the target local control plane device notifies the GW-U2 to accept the packet of the tunnel and forward the packet according to the downlink forwarding rule.
- the remote control plane device sends a bearer setup request to the base station.
- the remote control plane device sends a bearer setup request to the eNB, where the bearer setup request carries a PDN connection accept message (APN, PDN type, PDN address, EPS bearer identifier),
- PDN connection accept message includes the assigned uplink tunnel identity.
- the base station performs a radio resource control connection configuration with the user equipment.
- the base station sends a bearer setup complete message to the remote control plane device.
- the eNB returns a bearer setup response to the remote control plane device, where the bearer setup response includes the address and TEID of the eNB transmitting the downlink data on the S1-U interface. Then, the UE sends a direct transmission message to the eNB, where the direct transmission message includes a PDN connection complete message.
- the eNB delivers the PDN connection complete message to the remote control plane device.
- the remote control plane device sends a modified downlink data forwarding rule to the local control plane device.
- the modified downlink data forwarding rule includes index information to indicate a manner in which the GW-U sends an IP packet to the UE.
- the target local control plane acquires context information of the user equipment.
- the manner in which the target local control plane device acquires the context information of the UE includes the following two types:
- the modified downlink data forwarding rule sent by the remote control plane device carries the context information of the UE, and the target local control plane device can obtain the context information of the UE by parsing and modifying the downlink data forwarding rule.
- the target local control plane device receives the context information of the UE directly sent by the MME.
- the context information of the UE includes the UE security context, the bearer context, the TAI list, the GUTI, and the uplink and downlink forwarding rule index information, and the local control plane device saves the information.
- the target local control plane device sends a modified downlink data forwarding rule to the target gateway device.
- the signaling proxy function of the local control plane device can implement the paging and service request process of the user directly in the local area without the transit of the remote control plane device, which greatly shortens the signaling transmission path and time.
- FIG. 6 is a schematic structural diagram of a local control plane device according to an embodiment of the present invention, where the local control plane device is used to implement the control method described in FIG. 1 to FIG. 5.
- the local control plane device in the embodiment of the present invention may include at least an information acquiring module 510 and a bearer establishing module 520, where:
- the information obtaining module 510 is configured to acquire context information of the user equipment from the remote control plane device according to an interaction process between the user equipment and the remote control plane device.
- the context information of the user equipment includes at least a security context and a bearer context (including SGW user plane address and user plane TEID-U), TAI (Tracking Area Identity) list, GUTI (Globally Unique Temporary Identity), MME assigned control plane TEID-C and SGW TEID-C.
- the TEID (Tunnel Endpoint ID) is a tunnel endpoint identifier.
- the interaction process between the user equipment and the remote control plane device includes an attach request process initiated by the user equipment and a packet data network (PDN) connection establishment process.
- PDN packet data network
- the information obtaining module 510 can further include an information forwarding unit 511 and an information acquiring unit 512 as shown in FIG. 7, wherein:
- the information forwarding unit 511 is configured to forward the forwarding surface modification information sent by the remote control plane device to the gateway device during the interaction between the user equipment and the remote control plane device, where the forwarding plane
- the modification information carries context information of the user equipment.
- the information obtaining unit 512 is configured to obtain context information of the user equipment by parsing the forwarding plane modification information.
- the information acquisition module 510 may further include an information forwarding unit 513 and an information receiving unit 514 as shown in FIG. 8, wherein:
- the information forwarding unit 513 is configured to forward the forwarding surface modification information sent by the remote control plane device to the gateway device during the interaction between the user equipment and the remote control plane device.
- the information receiving unit 514 is configured to receive context information of the user equipment sent by the remote control plane device.
- the bearer establishing module 520 is configured to establish, by the local control plane device, a radio bearer between the base station where the current camping cell of the user equipment is located and the user equipment according to the context information of the user equipment.
- the bearer establishing module 520 After receiving the service request sent by the user equipment by the base station where the current camping cell is located, the bearer establishing module 520 sends a context establishment request to the base station according to the context information of the user equipment, so that the base station establishes the user equipment with the user equipment. Wireless bearer between.
- the local control plane device in the embodiment of the present invention may further include a paging initiation module 530, configured to receive a downlink data arrival notification message according to the context information of the user equipment.
- the user equipment initiates paging to change the user equipment from an idle state to an active state, and sends a service request by the base station where the currently camped cell is located.
- the local control plane device in the embodiment of the present invention may further include an information deletion module 540, configured to delete the saved location after receiving the delete context request sent by the remote control plane device.
- Context information of the user equipment sending a delete context request to the gateway device, so that the gateway device deletes the saved context information of the user equipment.
- the source gateway here includes the source SGW and does not include the source PGW.
- the local control plane device in the embodiment of the present invention may further include a notification sending module 550, configured to send a modified user status notification to the remote control plane device, so that the remote control The device modifies the status information of the user equipment.
- a notification sending module 550 configured to send a modified user status notification to the remote control plane device, so that the remote control The device modifies the status information of the user equipment.
- FIG. 7 is a schematic structural diagram of another local control plane device according to an embodiment of the present invention.
- the local control plane device may include: at least one processor 601, such as a CPU, at least one network interface 603, and a memory. 604, at least one communication bus 602. Among them, the communication bus 602 is used to implement connection communication between these components.
- the network interface 603 can be a wireless interface, such as an antenna device, for signaling or data communication with other node devices.
- the memory 604 may be a high speed RAM memory or a non-volatile memory such as at least one disk memory.
- the memory 604 may also be at least one storage device located away from the foregoing processor 601.
- a set of program codes is stored in the memory 604, and the processor 601 is configured to call the program code stored in the memory 604 to perform the following operations:
- the interaction process between the user equipment and the remote control plane device includes:
- the user equipment initiates an attach request process and a packet data network connection establishment process.
- the specific operation of the processor 601 to obtain the context information of the user equipment from the remote control plane device according to the interaction process between the user equipment and the remote control plane device is:
- the forwarding plane modification information sent by the remote control plane device is forwarded to the gateway device, and the forwarding plane modification information carries the user Context information of the device;
- the context information of the user equipment is obtained by parsing the forwarding plane modification information.
- the specific operation of the processor 601 to obtain the context information of the user equipment from the remote control plane device according to the interaction process between the user equipment and the remote control plane device is:
- the specific operation of the processor 601 to establish a radio bearer between the user equipment and the base station where the user equipment is currently camped according to the context information of the user equipment is:
- the processor 601 before receiving the service request sent by the user equipment by the base station where the user equipment is currently camped by the user equipment, the processor 601 further performs:
- the processor 601 after acquiring the context information of the user equipment from the remote control plane device, according to the interaction process between the user equipment and the remote control plane device, further performs:
- the processor 601 further performs:
- the remote control plane device includes:
- the context information of the user equipment includes:
- the security context of the user equipment and the bearer context of the user equipment includes a user plane address of the forwarding plane gateway, a tunnel identifier, a tracking area list, a global unique temporary identifier, and a control plane identifier assigned by the remote control plane.
- the embodiment of the present invention further provides a computer storage medium, wherein the computer storage medium stores a program, and the program includes a plurality of instructions for executing a part of a control method described in the embodiments of the present invention. Or all the steps.
- the local control plane device obtains the context information of the user equipment from the remote control plane device according to the interaction process between the user equipment and the remote control plane device, and then establishes the current user equipment according to the context information of the user equipment.
- the radio bearer between the base station where the cell is located and the user equipment can reduce the signaling delay when the user equipment changes from the idle state to the active state, and can avoid the problem that the user equipment moves cause excessive signaling interaction.
- the storage medium may be a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).
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Abstract
Description
Claims (20)
- 一种控制方法,其特征在于,所述方法应用于无线通信系统,所述无线通信系统包括用户设备、基站、网关设备、本地控制面设备和远端控制面设备,所述方法包括:所述本地控制面设备根据所述用户设备和所述远端控制面设备的交互过程,从所述远端控制面设备获取所述用户设备的上下文信息;所述本地控制面设备根据所述用户设备的上下文信息,建立所述用户设备当前驻留小区所在的基站与所述用户设备之间的无线承载。
- 如权利要求1所述的方法,其特征在于,所述用户设备和所述远端控制面设备的交互过程包括:所述用户设备发起的附着请求过程和分组数据网络连接建立过程。
- 如权利要求1所述的方法,其特征在于,所述本地控制面设备根据所述用户设备和远端控制面设备的交互过程,从所述远端控制面设备获取所述用户设备的上下文信息包括:在所述用户设备和所述远端控制面设备的交互过程中,所述本地控制面设备将所述远端控制面设备发送的转发面修改信息转发至所述网关设备,所述转发面修改信息携带有所述用户设备的上下文信息;所述本地控制面设备通过解析所述转发面修改信息,获取所述用户设备的上下文信息。
- 如权利要求1所述的方法,其特征在于,所述本地控制面设备根据所述用户设备和远端控制面设备的交互过程,从所述远端控制面设备获取所述用户设备的上下文信息包括:在所述用户设备和所述远端控制面设备的交互过程中,所述本地控制面设备将所述远端控制面设备发送的转发面修改信息转发至所述网关设备;所述本地控制面设备接收所述远端控制面设备发送的所述用户设备的上下文信息。
- 如权利要求1所述的方法,其特征在于,所述本地控制面设备根据所述用户设备的上下文信息,建立所述用户设备与所述用户设备当前驻留小区所在的基站之间的无线承载包括:所述本地控制面设备在接收到所述用户设备通过所述用户设备当前驻留小区所在的基站发送来的业务请求之后,根据所述用户设备的上下文信息向所述用户设备当前驻留小区所在的基站发送上下文建立请求,以使所述用户设备当前驻留小区所在的基站建立与所述用户设备之间的无线承载。
- 如权利要求5所述的方法,其特征在于,所述本地控制面设备在接收到所述用户设备通过所述用户设备当前驻留小区所在的基站发送来的业务请求之前,还包括:所述本地控制面设备在接收到下行数据到达通知消息之后,根据所述用户设备的上下文信息向所述用户设备发起寻呼,以使所述用户设备从空闲状态转换为激活状态,并通过当前驻留小区所在的基站发送业务请求。
- 如权利要求1所述的方法,其特征在于,所述本地控制面设备根据所述用户设备和所述远端控制面设备的交互过程,从所述远端控制面设备获取所述用户设备的上下文信息之后,还包括:所述本地控制面在接收到所述远端控制面设备发送的删除上下文请求之后,删除保存的所述用户设备的上下文信息;所述本地控制面设备发送删除上下文请求至所述网关设备,以使所述网关设备删除保存的所述用户设备的上下文信息。
- 如权利要求1所述的方法,其特征在于,所述本地控制面设备根据所述用户设备的上下文信息,建立所述用户设备当前驻留小区所在的基站与所述用户设备之间的无线承载之后,还包括:所述本地控制面设备向所述远端控制面设备发送修改用户状态通知,以使所述远端控制面设备修改所述用户设备的状态信息。
- 如权利要求1-8任一项所述的方法,其特征在于,所述远端控制面设备包括:传统EPC网络架构的移动性管理实体;或者控制转发解耦网络架构的集中控制面设备。
- 如权利要求1所述的方法,其特征在于,所述用户设备的上下文信息包括:用户设备的安全上下文和用户设备的承载上下文,所述用户设备的承载上下文包括转发面网关的用户面地址、隧道标识、跟踪区列表、全球唯一临时标识以及远端控制面分配的控制面标识。
- 一种本地控制面设备,其特征在于,所述本地控制面设备应用于无线通信系统,所述无线通信系统还包括用户设备、基站、网关设备和远端控制面设备,所述本地控制面设备包括:信息获取模块,用于根据所述用户设备和所述远端控制面设备的交互过程,从所述远端控制面设备获取所述用户设备的上下文信息;承载建立模块,用于所述本地控制面设备根据所述用户设备的上下文信息,建立所述用户设备当前驻留小区所在的基站与所述用户设备之间的无线承载。
- 如权利要求11所述的本地控制面设备,其特征在于,所述用户设备和所述远端控制面设备的交互过程包括:所述用户设备发起的附着请求过程和分组数据网络连接建立过程。
- 如权利要求11所述的本地控制面设备,其特征在于,所述信息获取模块包括:信息转发单元,用于在所述用户设备和所述远端控制面设备的交互过程中,将所述远端控制面设备发送的转发面修改信息转发至所述网关设备,所述转发面修改信息携带有所述用户设备的上下文信息;信息解析单元,用于通过解析所述转发面修改信息,获取所述用户设备的 上下文信息。
- 如权利要求11所述的本地控制面设备,其特征在于,所述信息获取模块包括:信息转发单元,用于在所述用户设备和所述远端控制面设备的交互过程中,将所述远端控制面设备发送的转发面修改信息转发至所述网关设备;信息接收单元,用于接收所述远端控制面设备发送的所述用户设备的上下文信息。
- 如权利要求11所述的本地控制面设备,其特征在于,所述承载建立模块,具体用于在接收到所述用户设备通过所述用户设备当前驻留小区所在的基站发送来的业务请求之后,根据所述用户设备的上下文信息向所述用户设备当前驻留小区所在的基站发送上下文建立请求,以使所述用户设备当前驻留小区所在的基站建立与所述用户设备之间的无线承载。
- 如权利要求15所述的本地控制面设备,其特征在于,所述本地控制面设备,还包括:寻呼发起模块,用于在接收到下行数据到达通知消息,根据所述用户设备的上下文信息向所述用户设备发起寻呼,以使所述用户设备从空闲状态转换为激活状态,并通过当前驻留小区所在的基站发送业务请求。
- 如权利要求11所述的本地控制面设备,其特征在于,所述本地控制面设备,还包括:信息删除模块,用于在接收到所述远端控制面设备发送的删除上下文请求之后,删除保存的所述用户设备的上下文信息;发送删除上下文请求至所述网关设备,以使所述网关设备删除保存的所述用户设备的上下文信息。
- 如权利要求12所述的本地控制面设备,其特征在于,所述本地控制面设备,还包括:通知发送模块,用于向所述远端控制面设备发送修改用户状态通知,以使 所述远端控制面设备修改所述用户设备的状态信息。
- 如权利要求11-18任一项所述的本地控制面设备,其特征在于,所述远端控制面设备包括:传统EPC网络架构的移动性管理实体;或者控制转发解耦网络架构的集中控制面设备。
- 如权利要求11所述的本地控制面设备,其特征在于,所述用户设备的上下文信息包括:用户设备的安全上下文和用户设备的承载上下文,所述用户设备的承载上下文包括转发面网关的用户面地址、隧道标识、跟踪区列表、全球唯一临时标识以及远端控制面分配的控制面标识。
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EP15904346.2A EP3334236B1 (en) | 2015-09-22 | 2015-09-22 | Control method and local control-plane device |
BR112018004604-3A BR112018004604B1 (pt) | 2015-09-22 | 2015-09-22 | Método de controle e dispositivo de plano de controle local |
EP19189923.6A EP3629669B1 (en) | 2015-09-22 | 2015-09-22 | Control method,local control-plane device, system and computer-readable storage medium for switching a user equipment from idle state to active state |
CN201580082315.8A CN107926064B (zh) | 2015-09-22 | 2015-09-22 | 一种控制方法及本地控制面设备 |
MYPI2018700807A MY189130A (en) | 2015-09-22 | 2015-09-22 | Control method and local control plane device |
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CN107926064A (zh) | 2018-04-17 |
EP3334236A4 (en) | 2018-08-22 |
BR112018004604B1 (pt) | 2023-10-03 |
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EP3629669B1 (en) | 2022-11-02 |
BR112018004604A2 (zh) | 2018-09-25 |
US11096227B2 (en) | 2021-08-17 |
CN107926064B (zh) | 2020-06-16 |
US20180192456A1 (en) | 2018-07-05 |
EP3334236A1 (en) | 2018-06-13 |
US20200092924A1 (en) | 2020-03-19 |
US10506648B2 (en) | 2019-12-10 |
MY189130A (en) | 2022-01-27 |
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CN111726888A (zh) | 2020-09-29 |
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