WO2018141117A1 - Procédé, dispositif et système de traitement de données - Google Patents

Procédé, dispositif et système de traitement de données Download PDF

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Publication number
WO2018141117A1
WO2018141117A1 PCT/CN2017/073009 CN2017073009W WO2018141117A1 WO 2018141117 A1 WO2018141117 A1 WO 2018141117A1 CN 2017073009 W CN2017073009 W CN 2017073009W WO 2018141117 A1 WO2018141117 A1 WO 2018141117A1
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WIPO (PCT)
Prior art keywords
terminal device
message
session
network device
information
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PCT/CN2017/073009
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English (en)
Chinese (zh)
Inventor
段小嫣
何岳
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to PCT/CN2017/073009 priority Critical patent/WO2018141117A1/fr
Priority to CN201780072381.6A priority patent/CN109983792A/zh
Publication of WO2018141117A1 publication Critical patent/WO2018141117A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/02Processing of mobility data, e.g. registration information at HLR [Home Location Register] or VLR [Visitor Location Register]; Transfer of mobility data, e.g. between HLR, VLR or external networks
    • H04W8/08Mobility data transfer

Definitions

  • the embodiments of the present invention relate to the field of communications, and in particular, to a data processing method, apparatus, and system.
  • the 5G communication system divides the mobility area of the terminal device into: an allowed area, a non-allowed area, and a forbidden area.
  • the terminal device can initiate all communication within the subscription range to the network device; when the terminal device resides in the non-allowed area, the terminal device can only perform some mobility management processes, but cannot communicate with the network.
  • the device performs data interaction; when the terminal device resides in the forbidden area, the terminal device cannot initiate any communication to the network device.
  • the terminal device cannot perform data interaction with the network device when the terminal device resides in the non-allowed area, the terminal device cannot respond to the paging of the terminal device by the network device, or cannot receive the network device to send to the terminal device. Downstream data.
  • the present application provides a data processing method, apparatus, and system, which can enable a terminal device to be in an allowed area, and then respond to paging of the terminal device by the network device, or receive downlink data sent by the network device to the terminal device.
  • an embodiment of the present invention provides a data processing method.
  • the terminal device receives the paging message.
  • the terminal device determines, according to the paging message, that the first mobility restriction information of the terminal device needs to be updated.
  • the terminal device sends a first message to the core network device, where the first message is sent.
  • At least a first parameter for requesting the core network device to update the first mobility restriction information for the terminal device after that, the terminal device receives the second message sent by the core network device, where the second message includes at least the second mobility restriction Information; finally, the terminal device updates the first mobility restriction information to the second mobility restriction information.
  • the terminal device updates the first mobility restriction information to the second mobility restriction information, and the terminal device can register to the registration area that is updated by the core network device according to the second mobility restriction information according to the second mobility restriction information. Therefore, the terminal device can respond to subsequent paging messages of the core network device and/or receive downlink data sent by the core network device to the terminal device. The problem that the terminal device cannot respond to the paging of the terminal device by the core network device or the downlink data sent by the network device to the terminal device is avoided.
  • the paging message includes a second parameter.
  • the method for determining, by the terminal device, that the first mobility restriction information of the terminal device needs to be updated according to the paging message Specifically, the terminal device determines, according to the second parameter, that the first mobility restriction information of the terminal device needs to be updated.
  • the second parameter is used to indicate that the paging message is a paging message triggered by the first mobility restriction information update of the terminal device; or A mobility restriction information update; or the second parameter is used to notify the terminal device that the first mobility restriction information has been updated.
  • the method for determining, by the terminal device, that the first mobility restriction information of the terminal device needs to be updated according to the paging message includes: determining, by the terminal device, the terminal when receiving the paging message The device is in an unallowed area.
  • the second message further includes a registration area, where the registration area is a registration area that is updated by the core network device according to the second mobility restriction information.
  • the registration area that the terminal device can update according to the second mobility restriction information is registered in the permission area.
  • an embodiment of the present invention provides a data processing method.
  • the core network device receives the first message sent by the terminal device, where the first message includes at least a first parameter, where the first parameter is used to request the core network device to update the first mobility restriction information for the terminal device;
  • the device sends a second message to the terminal device, where the second message includes at least the second mobility restriction information.
  • the terminal device to receive the second message sent by the core network device, and updating the first mobility restriction information to the second mobility restriction information. It can be seen that, because the terminal device updates the first mobility restriction information to the second mobility restriction information, and the terminal device can register to the registration area that is updated by the core network device according to the second mobility restriction information according to the second mobility restriction information.
  • the terminal device can respond to subsequent paging messages of the core network device and/or receive downlink data sent by the core network device to the terminal device.
  • the problem that the terminal device cannot respond to the paging of the terminal device by the core network device or the downlink data sent by the network device to the terminal device is avoided.
  • the second message further includes a registration area, where the registration area is a registration area that is updated by the core network device according to the second mobility restriction information.
  • the registration area that the terminal device can update according to the second mobility restriction information is registered in the permission area.
  • an embodiment of the present invention provides a data processing method. First, when the terminal device is in the non-allowed area, the terminal device registers with the first network device by the first network device; secondly, the terminal device receives the third message that is sent by the first network device and carries the allowed area information; The area information is allowed to access the second network device, wherein the terminal device accesses the second network device and is located in the allowed area of the allowed area information identifier; finally, the terminal device transmits the data in the allowed area according to the third message.
  • the terminal device can register the second AN according to the allowed area information, so that the terminal device can transmit data in the allowed area (for example, responding to the subsequent paging message of the network) And/or receiving downlink data sent by the core network device to the terminal device).
  • the problem that the terminal device cannot respond to the paging of the terminal device by the core network device or the downlink data sent by the network device to the terminal device is avoided.
  • the allowed area information is any one of a tracking area identifier TAI, a TAI list, a cell identifier, a cell identifier list, a cell carrier frequency, a cell carrier frequency list, and an access network node identifier. Or a combination of multiples.
  • the third message further includes first session information, where the first session information is information used to indicate that the terminal device establishes a session, or information used to indicate that the terminal device activates the session. Or information for indicating a session in which the terminal device receives downlink data.
  • the information used to indicate that the terminal device establishes the session includes the terminal device establishing an application or service information corresponding to the session; or the information used to indicate that the terminal device activates the session includes the terminal device activation.
  • the session identifier of the session; or the information indicating the session in which the terminal device receives the downlink data includes the identifier of the session of the downlink data.
  • the third message is a paging message
  • the paging message further includes a paging reason
  • the paging reason is used to indicate that the terminal device establishes a session, or the terminal device is instructed to activate the session, or Instructing the terminal device to receive downlink data.
  • the non-permitted area belongs to the area of the first network slice service
  • the allowed area belongs to the area of the second network slice service
  • the third message further includes information of the second network slice.
  • the method for the terminal device to access the second network device according to the allowed area information includes: the terminal device registers with the second network device by using the second network device according to the information of the second network slice.
  • an embodiment of the present invention provides a data processing method.
  • the first network device receives the fourth message sent by the third network device, where the fourth message is used to instruct the terminal device to establish a session, or instruct the terminal device to activate the session, or instruct the terminal device to receive downlink data; and second, the first network The device determines that the terminal device is in the non-allowed area.
  • the first network device sends a third message to the terminal device, where the third message includes the allowed area information, so that the terminal device accesses the second network device according to the allowed area information. And transmitting data in the allowed area, wherein the terminal device accesses the second network device and is located in the allowed area of the allowed area information identifier.
  • the terminal device can register the second AN according to the allowed area information, so that the terminal device can transmit data in the allowed area (for example, responding to the subsequent paging message of the network) And/or receiving downlink data sent by the core network device to the terminal device).
  • the problem that the terminal device cannot respond to the paging of the terminal device by the core network device or the downlink data sent by the network device to the terminal device is avoided.
  • the allowed area information is any one of a tracking area identifier TAI, a TAI list, a cell identifier, a cell identifier list, a cell carrier frequency, a cell carrier frequency list, and an access network node identifier, or Multiple combinations.
  • the third message further includes first session information, where the first session information is information used to indicate that the terminal device establishes a session, or information used to indicate that the terminal device activates the session, Or information for indicating a session in which the terminal device receives downlink data.
  • first session information is information used to indicate that the terminal device establishes a session, or information used to indicate that the terminal device activates the session, Or information for indicating a session in which the terminal device receives downlink data.
  • the information used to indicate that the terminal device establishes the session includes the terminal device establishing an application or service information corresponding to the session; or the information used to indicate that the terminal device activates the session includes the terminal device activating the session.
  • the session identifier; or the information indicating the session in which the terminal device receives the downlink data includes the identifier of the session of the downlink data.
  • the third message is a paging message
  • the paging message further includes a paging reason, where the paging reason is used to indicate that the terminal device establishes a session, or the terminal device is instructed to Live session, or instruct the terminal device to receive downlink data.
  • the allowed area information is obtained by the first network device according to the pre-configuration; or the first network device is obtained according to the measurement report of the terminal device; or the first network device is connected Obtained by the network access device; or obtained by the first network device according to the fourth message, where the fourth message includes the allowed area information.
  • an embodiment of the present invention provides a data processing method.
  • the fourth network device receives the fifth message sent by the fifth network device, where the fifth message is used to instruct the terminal device to establish a session, or instruct the terminal device to activate the session, or instruct the terminal device to receive downlink data; and second, the fourth network The device determines that the terminal device is in the non-allowed area, and the fourth network device delays sending the fifth message to the terminal device; finally, the fourth network device determines that the terminal device is moved from the non-permitted area to the allowed area, and the fourth network device sends the information to the terminal device.
  • the fifth message is such that the terminal device transmits data in the allowed area according to the fifth message.
  • the terminal device sends the fifth message after moving to the allowed area.
  • the message is sent to the terminal device such that the terminal device can transmit data within the allowed area (eg, responding to subsequent paging messages of the network and/or receiving downlink data sent by the core network device to the terminal device).
  • the problem that the terminal device cannot respond to the paging of the terminal device by the core network device or the downlink data sent by the network device to the terminal device is avoided.
  • the method for the fourth network device to delay sending the fifth message to the terminal device specifically includes: the fourth network device may delay the established feature according to the session, or the session may delay the activated feature. Or the data may delay the transmission characteristics, delay sending a fifth message to the terminal device.
  • the fourth network device determines that the terminal device is in the non-allowed area
  • the method for the fourth network device to delay sending the fifth message to the terminal device includes: determining, by the fourth network device, the terminal The device is in a non-allowed area, and the fourth network device starts the first timer;
  • the fourth network device determines that the terminal device is moved from the non-permitted area to the allowed area, and the method for the fourth network device to send the fifth message to the terminal device includes: determining, by the fourth network device, that the terminal device is moved from the non-permitted area to the allowed area, The fourth network device determines that the first timer has not timed out; and the fourth network device sends a fifth message to the terminal device.
  • the method for the fourth network device to determine that the terminal device is in the non-allowed area includes: receiving, by the fourth network device, the sixth message sent by the terminal device or the sixth network device, where The sixth message includes information of the non-permitted area, or the sixth message is used to notify the fourth network device that the terminal device is in the non-permitted area;
  • the method for the fourth network device to determine that the terminal device is moved from the non-permitted area to the allowed area includes: the fourth network device receives the seventh message sent by the terminal device or the sixth network device, where the seventh message includes the information of the allowed area, or The seventh message is used to notify the fourth network device that the terminal device is in the allowed area.
  • the area information is allowed to be the tracking area identifier.
  • the non-permitted area belongs to the area of the first network slice service, and the allowed area belongs to the area of the second network slice service; the seventh message further includes information of the second network slice, The information of the two network slices is used to instruct the terminal device to register to the second network slice.
  • an embodiment of the present invention provides a terminal device.
  • the terminal device includes a receiving module, a determining module, a sending module, and an updating module.
  • a receiving module configured to receive a paging message
  • a determining module configured to: after the receiving module receives the paging message, determine, according to the paging message, that the first mobility restriction information of the terminal device needs to be updated; and the sending module is configured to determine the module
  • the first message is sent to the core network device, where the first message includes at least a first parameter, and the first parameter is used to request the core network device to update the first device for the terminal device.
  • the mobility restriction information is further configured to: after the sending module sends the first message to the core network device, receive the second message sent by the core network device, where the second message includes at least the second mobility restriction information; And a module, configured to update the first mobility restriction information to the second mobility restriction information after the receiving module receives the second message sent by the core network device.
  • the paging message includes a second parameter
  • the determining module is configured to determine, according to the second parameter, that the first mobility restriction information of the terminal device needs to be updated.
  • the second parameter is used to indicate that the paging message is a paging message triggered by the first mobility restriction information update of the terminal device; or the second parameter is used to indicate the first The mobility restriction information is updated; or the second parameter is used to notify the terminal device that the first mobility restriction information has been updated.
  • the determining module is specifically configured to determine that the terminal device is in a non-permitted area when receiving the paging message.
  • the second message further includes a registration area, where the registration area is a registration area that is updated by the core network device according to the second mobility restriction information.
  • an embodiment of the present invention provides a core network device.
  • the core network device includes a receiving module and a sending module.
  • a receiving module configured to receive a first message sent by the terminal device, where the first message includes at least a first parameter, where the first parameter is used to request the core network device to update the first mobility restriction information for the terminal device;
  • the receiving module After receiving the first message sent by the terminal device, the receiving module sends a second message to the terminal device, where the second message includes at least the second mobility restriction information.
  • the second message further includes a registration area, where the registration area is a registration area that is updated by the core network device according to the second mobility restriction information.
  • an embodiment of the present invention provides a terminal device.
  • the terminal device includes an access module, a receiving module and a communication module.
  • An access module configured to register, by the first network device, to the first network when the terminal device is in the non-allowed area, and the receiving module, configured to receive the first after the access module registers with the first network by using the first network device a third message sent by the network device, the third message carrying the permission area information;
  • the access module is further configured to: after the receiving module receives the third message sent by the first network device, access the second network device according to the allowed area information After the access device accesses the second network device, the terminal device is located in the allowed area of the permission area information identifier; and the communication module is configured to: after the access module accesses the second network device, transmit the data in the allowed area according to the third message. data.
  • the allowed area information is any one of a tracking area identifier TAI, a TAI list, a cell identifier, a cell identifier list, a cell carrier frequency, a cell carrier frequency list, and an access network node identifier, or Multiple combinations.
  • the third message further includes first session information, where the first session information is information used to indicate that the terminal device establishes a session, or information used to indicate that the terminal device activates the session, Or information for indicating a session in which the terminal device receives downlink data.
  • first session information is information used to indicate that the terminal device establishes a session, or information used to indicate that the terminal device activates the session, Or information for indicating a session in which the terminal device receives downlink data.
  • the information used to indicate that the terminal device establishes the session includes the terminal device establishing an application or service information corresponding to the session; or the information used to indicate that the terminal device activates the session includes the terminal device activating the session.
  • the session identifier; or the information indicating the session in which the terminal device receives the downlink data includes the identifier of the session of the downlink data.
  • the third message is a paging message; the paging message further includes a paging reason, the paging reason is used to indicate that the terminal device establishes a session, or the terminal device is instructed to activate the session, or The terminal device receives downlink data.
  • the non-permitted area belongs to the area of the first network slice service, the allowed area belongs to the area of the second network slice service, and the third message further includes information of the second network slice;
  • the module is specifically configured to register to the second network slice by using the second network device according to the information of the second network slice.
  • an embodiment of the present invention provides a network device.
  • the network device is a first network device, and the first network device includes a receiving module, a determining module, and a sending module.
  • a receiving module configured to receive a fourth message sent by the third network device, where the fourth message is used to indicate that the terminal device establishes a session, or instruct the terminal device to activate the session, or instruct the terminal device to receive downlink data;
  • the receiving module determines that the terminal device is in the non-allowed area
  • the sending module is configured to: after the determining module determines that the terminal device is in the non-allowed area, Sending a third message to the terminal device, where the third message includes the permission area information, so that the terminal device accesses the second network device according to the allowed area information, and transmits data in the allowed area, where the terminal device accesses the second The network device is then within the allowed area of the allowed area information identification.
  • the allowed area information is any one of a tracking area identifier TAI, a TAI list, a cell identifier, a cell identifier list, a cell carrier frequency, a cell carrier frequency list, and an access network node identifier. Or a combination of multiples.
  • the third message further includes first session information, where the first session information is information used to indicate that the terminal device establishes a session, or information used to indicate that the terminal device activates the session. Or information for indicating a session in which the terminal device receives downlink data.
  • the information used to indicate that the terminal device establishes the session includes the terminal device establishing an application or service information corresponding to the session; or the information used to indicate that the terminal device activates the session includes the terminal device activation.
  • the session identifier of the session; or the information indicating the session in which the terminal device receives the downlink data includes the identifier of the session of the downlink data.
  • the third message is a paging message
  • the paging message further includes a paging reason
  • the paging reason is used to indicate that the terminal device establishes a session, or the terminal device is instructed to activate the session, or Instructing the terminal device to receive downlink data.
  • the area information is obtained by the first network device according to the pre-configuration; or the first network device is obtained according to the measurement report of the terminal device; or the first network device is Obtained by the access network device; or obtained by the first network device according to the fourth message, where the fourth message includes the allowed area information.
  • the tenth aspect of the present invention provides a network device.
  • the network device is a fourth network device, and the fourth network device includes a receiving module, a determining module, a delay module, and a sending module.
  • a receiving module configured to receive a fifth message sent by the fifth network device, where the fifth message is used to indicate that the terminal device establishes a session, or instruct the terminal device to activate the session, or instruct the terminal device to receive downlink data;
  • the receiving module determines that the terminal device is in the non-allowed area; and the delaying module is configured to delay sending the fifth message to the terminal device after the determining module determines that the terminal device is in the non-allowed area;
  • the determining module is further configured to: after the delay module delays sending the fifth message to the terminal device, determine that the terminal device is moved by the non-permitted area into the allowed area; and the sending module is configured to determine, in the determining module, that the terminal device is moved from the non-permitted area to the allowed After the area
  • the delay module is specifically configured to delay the establishment according to the session, or the session may delay the activation feature, or the data may delay the transmission, and delay sending the terminal to the terminal device. Five news.
  • the delay module is specifically configured to determine the mode After the block determines that the terminal device is in the non-allowed area, the first timer is started; and the determining module is configured to: after the delay module starts the first timer, determine that the terminal device moves from the non-permitted area to the allowed area, and the first timing The device did not time out.
  • the determining module is specifically configured to receive the sixth message sent by the terminal device or the sixth network device, where the sixth message includes information of the non-permitted area, or The message is used to notify the fourth network device that the terminal device is in the non-allowed area; or the seventh message sent by the terminal device or the sixth network device, where the seventh message includes information of the allowed area, or the seventh message is used for The fourth network device terminal device is notified to be in the allowed area.
  • the allowed area information is any one of a tracking area identifier TAI, a TAI list, a cell identifier, a cell identifier list, a cell carrier frequency, a cell carrier frequency list, and an access network node identifier. Or a combination of multiples.
  • the non-permitted area belongs to the area of the first network slice service, and the allowed area belongs to the area of the second network slice service; the seventh message further includes information of the second network slice, The information of the two network slices is used to instruct the terminal device to register to the second network slice.
  • an embodiment of the present invention further provides a terminal device, including a memory, a processor, a communication interface, and a system bus.
  • the memory, the processor and the communication interface are connected by a system bus, the memory is for storing computer instructions, and the processor is configured to execute the computer instructions of the memory storage to cause the terminal device to perform the data processing method of the first aspect.
  • the embodiment of the present invention further provides a core network device, including a memory, a processor, a communication interface, and a system bus; the memory, the processor, and the communication interface are connected through a system bus, and the memory is used to store computer instructions, and the processor is configured to The computer instructions for executing the memory are stored to cause the core network device to perform the data processing method of the second aspect.
  • an embodiment of the present invention provides a terminal device, including a memory, a processor, a communication interface, and a system bus.
  • the memory, the processor, and the communication interface are connected by a system bus, the memory is used to store computer instructions, and the processor is configured to execute computer instructions for memory storage to end The end device performs the data processing method of the third aspect.
  • an embodiment of the present invention provides a network device, including a memory, a processor, a communication interface, and a system bus.
  • the memory, the processor and the communication interface are connected by a system bus, the memory is for storing computer instructions, and the processor is configured to execute the computer instructions of the memory storage to cause the network device to perform the data processing method of the fourth aspect.
  • an embodiment of the present invention provides a network device, including a memory, a processor, a communication interface, and a system bus.
  • the memory, the processor and the communication interface are connected by a system bus, the memory is for storing computer instructions, and the processor is configured to execute the computer instructions of the memory storage to cause the network device to perform the data processing method of the fifth aspect.
  • the embodiment of the present invention provides a communication system, comprising: the terminal device according to any one of the sixth aspect, and the core network device according to any one of the seventh aspect; or The terminal device, and the network device according to any one of the ninth aspects; or the network device according to any of the tenth aspects; or the terminal device according to the eleventh aspect, and the core network device according to the twelfth aspect Or the terminal device of the thirteenth aspect, and the network device of the fourteenth aspect; or the network device of the fifteenth aspect.
  • the embodiment of the present invention further provides a software product, where the software product includes computer instructions for implementing a data processing method.
  • the computer instructions can be stored on a readable storage medium; the processor can read and execute the computer instructions from the readable storage medium, such that the processor implements the first to fifth aspects described above or any alternative implementation thereof The data processing method in the mode.
  • the names of the terminal device, the core network device, and the network device are not limited to the device or the function module itself.
  • the devices or function modules may appear under other names. As long as the functions of the respective devices or functional modules are similar to the present application, they are within the scope of the claims and their equivalents.
  • FIG. 1 is a schematic diagram of a 5G system architecture according to an embodiment of the present invention
  • FIG. 2 is a hardware architecture diagram of a smart phone according to an embodiment of the present invention.
  • FIG. 3 is a schematic flowchart 1 of a data processing method according to an embodiment of the present invention.
  • FIG. 4 is a schematic flowchart 2 of a data processing method according to an embodiment of the present invention.
  • FIG. 5 is a schematic flowchart 3 of a data processing method according to an embodiment of the present disclosure.
  • FIG. 6 is a schematic flowchart 4 of a data processing method according to an embodiment of the present disclosure.
  • FIG. 7 is a schematic flowchart 5 of a data processing method according to an embodiment of the present disclosure.
  • FIG. 8 is a schematic flowchart 6 of a data processing method according to an embodiment of the present disclosure.
  • FIG. 9 is a schematic flowchart diagram of a data processing method according to an embodiment of the present disclosure.
  • FIG. 10 is a schematic flowchart 8 of a data processing method according to an embodiment of the present invention.
  • FIG. 11 is a schematic structural diagram 1 of a terminal device according to an embodiment of the present disclosure.
  • FIG. 12 is a schematic structural diagram 2 of a terminal device according to an embodiment of the present disclosure.
  • FIG. 13 is a schematic structural diagram 1 of a core network device according to an embodiment of the present disclosure.
  • FIG. 14 is a schematic structural diagram 2 of a core network device according to an embodiment of the present disclosure.
  • FIG. 15 is a schematic structural diagram 3 of a terminal device according to an embodiment of the present disclosure.
  • FIG. 16 is a schematic structural diagram 4 of a terminal device according to an embodiment of the present disclosure.
  • FIG. 17 is a schematic structural diagram 1 of a network device according to an embodiment of the present disclosure.
  • FIG. 18 is a schematic structural diagram 2 of a network device according to an embodiment of the present disclosure.
  • FIG. 19 is a schematic structural diagram 3 of a network device according to an embodiment of the present disclosure.
  • FIG. 20 is a schematic structural diagram 4 of a network device according to an embodiment of the present disclosure.
  • system and “network” are used interchangeably herein.
  • the terms “comprising” and “having”, and any variations thereof, are intended to cover a non-exclusive inclusion.
  • a process, method, system, product, or device that comprises a series of steps or units is not limited to the listed steps or units, but optionally also includes steps or units not listed, or alternatively Other steps or units inherent to these processes, methods, products or equipment.
  • the technology described in the embodiments of the present invention can be applied to various communication systems, such as 2G, 3G, 4G, 5G communication systems and next generation communication systems, such as 2G systems such as Global System for Mobile communications (GSM), codes.
  • 3D systems such as the Code Division Multiple Access (CDMA) system, the Time Division Multiple Access (TDMA) system, and the Wideband Code Division Multiple Access Wireless (WCDMA) system, Long Term Evolution (Long) Term Evolution, LTE) system, Time Division Duplexing (TDD) system, Frequency Division Duplexing (FDD) system and other 4G systems, and LTE subsequent evolution standard communication systems, or other similar communication systems.
  • CDMA Code Division Multiple Access
  • TDMA Time Division Multiple Access
  • WCDMA Wideband Code Division Multiple Access Wireless
  • LTE Long Term Evolution
  • TDD Time Division Duplexing
  • FDD Frequency Division Duplexing
  • LTE subsequent evolution standard communication systems or other similar communication systems.
  • FIG. 1 is a schematic diagram of a 5G system architecture provided by an embodiment of the present invention.
  • the 5G system may include at least two network elements: a terminal device and a network device, wherein the network device may include a 5G Core Network device and a 5G Access Network (5G-RAN) device.
  • a terminal device may include a 5G Core Network device and a 5G Access Network (5G-RAN) device.
  • 5G-RAN 5G Access Network
  • the 5G core network may include at least one of the following plurality of network element devices: an Access and Mobility Management Function (AMF) for handling mobility management related signaling; and a session management entity (Session Management) Function, SMF) for handling session management related signaling; Authentication Server Function (AUSF) for authenticating users; Unified Data Management (UDM) for storage User's subscription data; Policy Control Function (PCF), which is responsible for the control of policies and rules; User plane Function (UPF), which is responsible for data forwarding.
  • AMF Access and Mobility Management Function
  • SMF Session Management
  • AUSF Authentication Server Function
  • UDM Unified Data Management
  • PCF Policy Control Function
  • UPF User plane Function
  • AUSF is connected to UDM and AMF respectively
  • UDM is connected with AMF and SMF respectively
  • AMF is connected with SMF
  • PCF terminal equipment and access node
  • AN terminal equipment and access node
  • SMF is connected with PCF
  • UPF is connected with AN
  • terminal The device is connected to the AN.
  • the terminal device mentioned in the embodiment of the present invention may be a user equipment (User Equipment, UE), such as a wireless terminal or a wired terminal, and the wireless terminal may be a device that provides voice and/or data connectivity to the user, and has a wireless connection function. Handheld device, or other processing device connected to a wireless modem.
  • the wireless terminal can communicate with one or more core networks via a wireless access network, such as a Radio Access Network (RAN).
  • the terminal device may be a mobile terminal, such as a mobile phone (or "cellular" phone) and a computer having a mobile terminal, and the terminal device may also be a portable, pocket, handheld, computer built-in or vehicle-mounted mobile device, and
  • the wireless access network exchanges languages and/or data.
  • the terminal device may also be referred to as a system, a Subscriber Unit, a Subscriber station, a Mobile Station, a Mobile, a Remote Station, an Access Point, Remote Terminal, Access Terminal, User Terminal, User Agent, User Equipment, transmission point (transmission and receiver point, TRP or transmission point, TP).
  • the terminal device mentioned in the embodiment of the present invention may also be a UE-based client, such as a client of an APP application.
  • the network device may be a base station, a hub, a switch, a bridge, a router, a gateway, a transmission point, and the like, and the present invention does not limit this.
  • the smart phone 100 includes: a radio frequency (RF) circuit 110 , a memory 120 , other input devices 130 , a display screen 140 , a sensor 150 , an audio circuit 160 , an I/O subsystem 170 , and a processor 180 . And power supply 190 and other components.
  • RF radio frequency
  • the structure of the smartphone 100 shown in FIG. 4 does not constitute a limitation on the mobile phone, and may include more or less components than those illustrated, or combine some components or split some components. , or different parts layout.
  • the display screen 140 belongs to a User Interface (UI), and the smartphone 100 can include more or less components than illustrated.
  • the mobile phone 100 may further include a camera, a Bluetooth module, and the like, and details are not described herein.
  • the processor 180 is connected to the RF circuit 110, the memory 120, the audio circuit 160, the I/O subsystem 170, and the power supply 190, respectively, and the I/O subsystem 170 and the other input device 130, the display 140, and the sensor, respectively. 150 are connected.
  • the RF circuit 110 can be used for transmitting and receiving information or during a call, and receiving and transmitting the signal. Specifically, after receiving the downlink information of the base station, the processing is performed by the processor 180.
  • the memory 120 can be used to store the software program and the module, and the processor 180 Various functional applications and data processing of the mobile phone 100 are performed by running software programs and modules stored in the memory 120; other input devices 130 can be used to receive input numeric or character information, as well as generate user settings and function controls with the mobile phone 100.
  • display 140 can be used to display information input by the user or information provided to the user and various menus of the mobile phone 100, and can also accept user input;
  • the sensor 150 can be a light sensor, a motion sensor or other sensor;
  • the audio circuit 160 can provide an audio interface between the user and the mobile phone 100;
  • the external device used by the I/O subsystem 170 to control input and output can include other device input controllers, sensor controllers, display controllers;
  • the processor 180 is The control center of the mobile phone 100 utilizes various interfaces and lines The entire portion of the entire handset performs overall monitoring of the handset by executing or executing software programs and/or modules stored in the memory 120, as well as invoking data stored in the memory 120, performing various functions and processing data of the handset 100.
  • a power source 190 (such as a battery) is used to power the various components described above.
  • the power source can be logically coupled to the processor 180 through a power management system to manage functions such as charging, discharging, and power consumption through the power management system.
  • the terminal device when the terminal device resides in the allowed area, the terminal device may initiate all communication within the subscription range to the network device; when the terminal device resides in the non-allowed area, the terminal device only Some mobility management processes can be performed, but data interaction with the network device cannot be performed; when the terminal device resides in the forbidden area, the terminal device cannot initiate any communication to the network device. Therefore, when the terminal device resides in the non-permitted area, the terminal device cannot perform data interaction with the network device.
  • the embodiment of the present application provides a data processing method, which can enable a terminal device to be in an allowed area, thereby responding to a paging of a terminal device by a network device, or receiving a network device to send to a terminal device. Downstream data sent.
  • the data processing method provided by the embodiment of the present invention may be applicable to, but not limited to, the following three scenarios:
  • Scenario A The terminal device is in the non-permitted area or in the allowed area. When the terminal device determines that its mobility restriction information needs to be updated, it can actively request the core network device to update the mobility restriction information.
  • Scenario B The terminal device is in the non-allowed area.
  • the network device for example, AN
  • the terminal device needs to reselect to the allowed area to respond to the paging and perform the corresponding service.
  • the corresponding service may include, but is not limited to, establishing a session by the terminal device, activating the session of the terminal device, and receiving the downlink data by the terminal device.
  • Scenario C The terminal device is in the non-permitted area, and the network device can delay paging to the terminal device, wait for the terminal device to be in the allowed area, and then initiate paging to the terminal device to perform the corresponding service.
  • the corresponding service may include, but is not limited to, establishing a session by the terminal device, activating the session of the terminal device, and receiving the downlink data by the terminal device.
  • the embodiment of the invention provides a data processing method, which can be applied to the scenario A described above.
  • the core network device mentioned in the embodiment of the present invention may be an AMF.
  • the data processing method includes steps S101-S107:
  • the terminal device receives a paging message.
  • the paging message received by the terminal device may be sent by the AMF, or may be sent by a radio access network (RAN), or may be sent by another network device, which is not used by the embodiment of the present invention. Specific restrictions.
  • the terminal device determines, according to the paging message, that the first mobility restriction information of the terminal device needs to be updated.
  • step S102 may specifically include S102a:
  • the terminal device determines, according to the second parameter, that the first mobility restriction information of the terminal device needs to be updated.
  • the second parameter is used to indicate that the paging message is a paging message triggered by the first mobility restriction information update of the terminal device, for example, the paging message carries the paging reason, and the paging reason may be the mobility restriction information update.
  • the second parameter is used to indicate the first mobility restriction information update, for example, the Mobility Restriction Information Update Indication is carried in the paging message; or the second parameter is used.
  • the first mobility restriction information is notified that the terminal device has been updated.
  • step S102 may specifically include S102b:
  • the terminal device determines that the terminal device is in a non-allowed area when receiving the paging message.
  • the terminal device when the terminal device receives the paging message, the terminal device is in the non-allowed area, indicating that the terminal device cannot perform data interaction with the network device at this time, but the network The device wants to interact with the terminal device on the data. Then, the terminal device can determine that the first mobility restriction information of the terminal device needs to be updated.
  • the terminal device sends a first message to the core network device, where the first message includes at least a first parameter, where the first parameter is used to request the core network device to update the first mobility restriction information for the terminal device.
  • the first message may be a registration request (Registration Request) message
  • the first parameter may be a registration type, where the registration type is Mobility Restriction Info Update, and the registration type is used for
  • the core network device is requested to update the first mobility restriction information for the terminal device.
  • the core network device receives the first message sent by the terminal device.
  • the terminal device may send, to the core network device, a first message for requesting the core network device to update the first mobility restriction information for the terminal device.
  • the core network device may also perform authentication on the terminal device.
  • the core network device sends a second message to the terminal device, where the second message includes at least the second mobility restriction information.
  • the second message may be a Registration Accept message.
  • the terminal device receives the second message sent by the core network device.
  • the second mobility restriction information is the mobility restriction information that the core network device updates for the terminal device.
  • the second message further includes a registration area, where the registration area is a registration area updated by the core network device according to the second mobility restriction information.
  • the terminal device updates the first mobility restriction information to the second mobility restriction information.
  • the terminal device may obtain the second mobility restriction message according to the second message, and update the first mobility restriction information to the second mobility restriction information. Thereby the terminal device can respond to the paging message sent by the AMF or the RAN.
  • the terminal device since the terminal device updates the first mobility restriction information to the second mobility restriction information, and the terminal device can register to the registration area updated by the core network device according to the second mobility restriction information according to the second mobility restriction information. Therefore, the terminal device can respond to subsequent paging messages of the core network device and/or receive downlink data sent by the core network device to the terminal device. The problem that the terminal device cannot respond to the paging of the terminal device by the core network device or the downlink data sent by the network device to the terminal device is avoided.
  • the embodiment of the invention provides a data processing method, which can be applied to the scenario B described above. As shown in FIG. 6, the data processing method includes steps S201-S239:
  • the terminal device When the terminal device is in the non-allowed area, the terminal device registers with the first network by using the first AN.
  • the application server sends a packet data session request message to the NEF.
  • the NEF receives the packet data session request message sent by the AS.
  • the packet data session request message may carry the identifier of the terminal device and/or the application identifier, where the packet data session request message is used to trigger a packet data session between the terminal device and the AS, so that the AS sends the downlink data or the AS to the terminal device. Receiving uplink data sent by the terminal device.
  • the NEF may authenticate the AS. If the authentication succeeds, the following steps are continued; if the authentication fails, the data processing method provided by the embodiment of the present invention is terminated.
  • the NEF sends a subscription information request message to the UDM.
  • the UDM receives the subscription information request message sent by the NEF.
  • the UDM sends a subscription information response message to the NEF according to the subscription information request message.
  • the NEF receives the subscription information response message sent by the UDM.
  • the signing information request message may carry the identifier of the terminal device and/or the application identifier.
  • the subscription information request message is used to request information about the AMF currently serving the terminal device from the UDM.
  • the subscription information response message may carry information about the AMF currently serving the terminal device, such as an identifier (ID) of the AMF.
  • the UDM can also be called the Subscriber Data Repository (SDR), which is an intelligent data management implementation for data management and data disaster recovery business operations.
  • SDR Subscriber Data Repository
  • UDM creates a unified management hub for communications systems, helping users achieve more effective management, utilization, and protection of data assets.
  • the NEF sends a packet data session trigger request message to the AMF.
  • the AMF receives a packet data session trigger request message sent by the NEF.
  • the packet data session trigger request message is used to instruct the terminal device to establish a session, or instruct the terminal device to activate the session, or instruct the terminal device to receive downlink data.
  • the packet data session trigger request message may carry the identifier of the terminal device and/or the application identifier, and may also carry a data network name (DDN) for indicating which data network the packet data session is established (also called access) Information such as the Access Point Name (APN) and Network Slice info (NSI) (for example, network slice type and/or service type, network slice identifier).
  • DDN data network name
  • APN Access Point Name
  • NBI Network Slice info
  • the AMF determines that the terminal device is in a non-permitted area.
  • the method for determining, by the AMF, that the terminal device is in the non-permitted area may include: the AMF first determining whether the terminal device is in the non-allowed area and the overlapping coverage area of the allowed area.
  • the terminal device is in a common coverage/service area of the first AN and the second AN, and all or part of the first AN is a non-allowed area for the terminal device, and all or a partial area of the second AN is The terminal device is an allowed area.
  • the first AN is a 5G home base station (Home GNB)
  • the second AN is a 5G base station of the public network; the terminal device accesses the Home GNB, and the area under the Home GNB is a non-allowable area for the terminal device, for example, the terminal device is not Home GNB.
  • the terminal device accesses the second AN, the area under the second AN is an allowed area for the terminal device.
  • the terminal device is in an area of common coverage/service of the first AN and the second AN, and is registered to the first network slice by the first AN, but the terminal device is in the entire area of the first AN coverage/service or
  • the service of the first network slice cannot be used in some areas, that is, for the terminal device, all areas or partial areas of the first AN coverage/service under the first network slice management are non-allowable areas. However, for the terminal device, all areas or partial areas of the second AN coverage/service under the second network slice management are allowed areas.
  • the AS initiates establishment of a packet data session by using the second network slice.
  • the AMF is shared/shared for the first network slice and the second network slice.
  • the first AN and the second AN may also be the same physical entity or logical functional entity.
  • first AN and the second AN are different logical functional entities, but the first AN and the second AN may belong to the same physical entity.
  • first AN and the second AN are different software modules (ie, logical function entities) that implement the functions of the access network node, but the first AN and the second AN may belong to the same base station device (ie, physical entity).
  • the AMF sends a fourth message to the first AN.
  • the first AN receives the fourth message sent by the AMF.
  • the first AN sends a third message to the terminal device.
  • the terminal device receives the third message sent by the first AN.
  • the third message and the fourth message may be the paging message, the packet data session triggering request message, and the other information including the allowed area information, which is not specifically limited in this embodiment of the present invention.
  • the third message includes allowed area information.
  • the allowed area information includes information for redirecting the terminal device to the allowed area, wherein the allowed area information is a tracking area identifier TAI, a TAI list, a cell identifier, a cell identification list, a cell carrier frequency, a cell carrier frequency list, and an access network node identifier. Any combination of one or more.
  • the allowed area information may be obtained by the AN or the AMF according to the pre-configuration; or the allowed area information may be obtained by the AN or the AMF according to the measurement report of the terminal device; or the allowed area information may be an AN or AMF connection. Obtained by the network access device.
  • the fourth message may further include permission area information.
  • the first AN may obtain the allowed area information from the fourth message.
  • the allowed area information may be obtained by the AMF according to a pre-configuration or from an access network device such as a first AN. After receiving the fourth message, the first AN may directly obtain the allowed area information from the fourth message. If the fourth message sent by the AMF to the first AN does not include the allowed area information in the step S211, the first AN may be pre-configured, or obtained from the neighboring AN through a core network device such as AMF, or according to the measurement of the terminal device. Report to get the allowed area information. Therefore, the third message sent by the first AN to the terminal device includes the allowed area information.
  • the third message further includes first session information, where the first session information is used to indicate that the terminal device establishes a session, and is used to indicate The information that the terminal device establishes the session includes the terminal device establishing the session corresponding to the Application or service information; or information for instructing the terminal device to activate the session, the information for indicating that the terminal device activates the session includes the session identifier of the terminal device activation session; or information for indicating the session of the terminal device receiving the downlink data, for The information indicating the session in which the terminal device receives the downlink data includes the identifier of the session of the downlink data.
  • the first session information may further include information such as DDN, network slice related information, and the like.
  • the paging message may include a paging reason, the paging reason is used to indicate that the terminal device establishes a session, or the terminal device is instructed to activate the session, or the terminal device is indicated. Receive downlink data. And, the paging message may further include the foregoing first session information.
  • the third message may further include a temporary identifier allocated by the AMF for the terminal device.
  • the terminal device accesses the second AN according to the allowed area information, where the terminal device accesses the second AN and is located in the allowed area of the allowed area information identifier.
  • the third message further includes information of the second network slice.
  • the step S215 may specifically include: the terminal device registers with the second network device by using the second network device according to the information of the second network slice.
  • the terminal device may complete the registration to the second network slice while establishing the packet data session; or the terminal device first completes the registration process to the second network slice, for example, sends a registration request, where the second network slice is carried. Information, after the registration is successful, a packet data session is established in the second network slice.
  • the terminal device may further send a packet data session establishment request or a service request to the second AN according to the paging cause in the third message and/or the first session information.
  • Request may carry the temporary identifier of the terminal device, the ID of the packet data session allocated by the terminal device, and other information of the packet data session (eg, application identifier, DNN, network slice information) ) and other information.
  • the terminal device may further send a packet data session establishment request to the second AN according to the first session information, where the packet data session establishment request may carry the terminal device
  • the temporary identification, the ID of the packet data session assigned by the terminal device, and other information of the packet data session eg, application identification, DNN, network slice information
  • the second AN sends a packet data session establishment request message to the AMF.
  • the packet data session establishment request message may further carry tunnel information, such as a second AN Tunnel ID, allocated by the second AN to the packet data session.
  • the AMF receives a packet data session establishment request message sent by the second AN.
  • the AMF sends a packet data session establishment request message to the SMF.
  • the SMF receives the packet data session establishment request message sent by the AMF.
  • the SMF sends a user information request message to the UDM.
  • the user information request message may carry information such as an identifier of the terminal device, and the user information request message is used to request subscription information related to session management of the terminal device, such as a DNN.
  • the UDM receives the user information request message sent by the SMF.
  • the UDM sends a user information response message to the SMF.
  • the SMF receives the user information response message sent by the UDM.
  • the user information response message may carry the subscription information related to the session management of the terminal device.
  • the SMF selects the UPF and sends a setup session request message to the UPF.
  • the session request message carries information of the packet data session (eg, the ID of the session). If the packet data session establishment request message in the above step S216 carries the information of the tunnel allocated by the second AN for the packet data session, the setup session request message further carries the second AN information (for example, the ID of the second AN) and the second Information about the AN tunnel (for example, the second AN Tunnel ID).
  • the second AN information for example, the ID of the second AN
  • the second Information about the AN tunnel for example, the second AN Tunnel ID
  • the UPF receives a setup session request message sent by the SMF.
  • the UPF sends a session establishment response message to the SMF.
  • the session response message may carry the tunnel information (for example, the UPF Tunnel ID) allocated by the UPF for the packet data session. If the establishment session response message carries the second AN information (for example, the ID of the second AN) and the information of the second AN Tunnel (for example, the second AN Tunnel ID), the UPF may send the packet data to the terminal device by using the second AN. Downstream data for the session.
  • the tunnel information for example, the UPF Tunnel ID
  • the SMF receives the establishment session response message sent by the UPF.
  • the SMF sends a packet data session establishment response message to the AMF.
  • the packet data session setup response message includes information of the UPF (for example, UPF ID) allocated to the packet data session, information of the UPF tunnel (for example, UPF Tunnel ID), and quality of service (QoS) information.
  • UPF ID for example, UPF ID
  • UPF tunnel ID for example, UPF Tunnel ID
  • QoS quality of service
  • the AMF receives a packet data session setup response message sent by the SMF.
  • the AMF sends a packet data session establishment response message to the second AN.
  • the second AN receives the packet data session establishment response message sent by the AMF.
  • the second AN2 may allocate a resource for establishing a tunnel with the UPF according to the packet data session establishment response message, for example, the second AN Tunnel ID. .
  • the second AN allocates a radio bearer resource for the packet data session.
  • the terminal device may send the uplink data of the packet data session to the UPF through the second AN.
  • the terminal device sends a packet data session establishment complete message to the second AN.
  • the second AN sends a packet data session establishment complete message to the AMF.
  • the packet data session establishment complete message further carries the second AN Tunnel information (for example, the second AN Tunnel ID).
  • the AMF may further forward the packet data session establishment completion message to the SMF.
  • the embodiment of the present invention provides The data processing methods also include:
  • the SMF sends a modify session request message to the UPF.
  • the UPF receives the modify session request message sent by the SMF.
  • the information about the second AN (for example, the second AN ID) and the information of the second AN Tunnel (for example, the second AN Tunnel ID) may be included in the modify session request message. Thereafter, the UPF may send downlink data of the packet data session to the terminal device through the second AN.
  • the UPF sends a modify session response message to the SMF.
  • the SMF receives the modified session response message sent by the UPF.
  • steps S216-S238 establish a session with the existing terminal device and the network device, or the terminal device is similar to the network device activation session process. For brevity, this will not be described in detail in FIG. 6.
  • the terminal device transmits data in the allowed area according to the third message.
  • the terminal device can access the second AN according to the allowed area information, so that the terminal device can transmit data in the allowed area (for example, responding to the subsequent access of the network).
  • the embodiment of the invention provides a data processing method, which can be applied to the scenario B described above. As shown in FIG. 7, the data processing method includes steps S301-S337:
  • the terminal device When the terminal device is in the non-allowed area, the terminal device registers with the first network by using the first AN.
  • the application server sends the downlink data of the packet data session to be sent to the terminal device to the UPF, or sends a downlink data notification message or activates the session request message.
  • the UPF receives the downlink data of the packet data session to be sent by the AS to the terminal device, or the downlink data notification message or the activation session request message.
  • the identifier of the terminal device and/or the application identifier may be carried in the downlink data notification message or the activation session request message.
  • the downlink data notification message or the activation session request message is used to trigger the activation of the existing packet data session between the terminal device and the AS, so that the AS sends the downlink data to the terminal device or the AS receives the uplink data sent by the terminal device.
  • the UPF sends a downlink data notification message or an activation session request message to the SMF.
  • the downlink data notification message or the activation session request message may carry the identifier ID of the existing packet data session to be activated (that is, the identifier of the packet data session corresponding to the downlink data) and/or the existing packet to be activated.
  • the tunnel ID (Tunnel ID) assigned by the data session.
  • the SMF receives a downlink data notification message sent by the UPF or activates a session request message.
  • the SMF sends a downlink data notification message or an activation session request message to the AMF.
  • the AMF receives the downlink data notification message sent by the SMF or activates the session request message.
  • step S306 if the downlink data notification message of step S304 is The live session request message carries the tunnel ID assigned to the existing packet data session to be activated, and the SMF can obtain the ID of the existing packet data session to be activated according to the tunnel ID mapping.
  • the SMF can also verify whether the ID of the existing packet data session to be activated and/or the Tunnel ID assigned to the existing packet data session to be activated is valid, that is, whether it corresponds to the currently established packet data session. If the ID of the existing packet data session to be activated and/or the tunnel ID assigned to the existing packet data session to be activated is invalid, the data processing method provided by the embodiment of the present invention is terminated.
  • the AMF determines that the terminal device is in a non-permitted area.
  • the AMF sends a fourth message to the first AN.
  • the first AN receives the fourth message sent by the AMF.
  • the first AN sends a third message to the terminal device.
  • the terminal device receives the third message sent by the first AN.
  • the third message and the fourth message may be the paging message, the downlink data notification message, or the activation session request message, and may also be other messages including the allowed area information, which is not specifically limited in this embodiment of the present invention. .
  • the third message includes allowed area information.
  • the allowed area information includes information for redirecting the terminal device to the allowed area, wherein the allowed area information is a tracking area identifier TAI, a TAI list, a cell identifier, a cell identification list, a cell carrier frequency, a cell carrier frequency list, and an access network node identifier. Any combination of one or more.
  • the allowed area information may be obtained by the AN or the AMF according to the pre-configuration; or the allowed area information may be obtained by the AN or the AMF according to the measurement report of the terminal device; or the allowed area information may be an AN or AMF connection. Obtained by the network access device.
  • the fourth message may further include permission area information.
  • the first AN may obtain the allowed area information from the fourth message.
  • the allowed area information may be obtained by the AMF according to a pre-configuration or from an access network device such as a first AN. After receiving the fourth message, the first AN may directly obtain the allowed area information from the fourth message. If the fourth message sent by the AMF to the first AN does not include the allowed area information in the step S309, the first AN may be pre-configured, or obtained from the neighboring AN through a core network device such as AMF, or according to the measurement of the terminal device. Report to get the allowed area information. Therefore, the third message sent by the first AN to the terminal device includes the allowed area information.
  • the third message further includes first session information, where the first session information is information used to indicate that the terminal device activates the session, The information for indicating the activation of the session by the terminal device includes the session identifier of the terminal device activation session; or information for indicating the session of the terminal device to receive the downlink data, and the information for indicating the session of the terminal device that receives the downlink data includes the session of the downlink data.
  • the first session information may further include information such as DDN, network slice related information, and the like.
  • the paging message may include a paging reason, the paging reason is used to indicate that the terminal device activates the session, or the terminal device is instructed to receive Downstream data. And, the paging message may further include the foregoing first session information.
  • the third message may further include a temporary identifier allocated by the AMF for the terminal device.
  • the terminal device accesses the second AN according to the allowed area information, where the terminal device accesses the second AN and is located in the allowed area of the allowed area information identifier.
  • the step S215 may specifically include: the terminal device registers with the second network device by using the second network device according to the information of the second network slice.
  • the terminal device may complete the registration to the second network slice while establishing the packet data session; or the terminal device first completes the registration process to the second network slice, for example, sends a registration request, where the second network slice is carried. Information, after the registration is successful, a packet data session is established in the second network slice.
  • the terminal device may further send a service request (Service Request) to the second AN according to the paging cause in the third message and/or the first session information, where
  • the data session establishment request or the service request may carry the temporary identifier of the terminal device, the ID of the packet data session, and other information of the packet data session (eg, application identifier, DNN, network slice information) and the like.
  • the terminal device may further send an activation session request message or an activation session response message to the second AN according to the first session information, where the session request message is activated.
  • the activation session response message may carry the temporary identifier of the terminal device, the ID of the packet data session, and other information of the packet data session (eg, application identifier, DNN, network slice information) and the like.
  • the second AN sends a service request message to the AMF.
  • the AMF receives the service request message sent by the second AN.
  • the AMF sends a service request message to the SMF.
  • the SMF receives the service request message sent by the AMF.
  • the SMF sends a context establishment message or a context modification message to the AMF.
  • the context establishment message or the context modification message carries information such as QoS information, security parameters, and the like of the existing packet data session to be activated.
  • the AMF receives a context setup message or a context modification message sent by the SMF.
  • the AMF sends a context setup message or a context modification message to the second AN.
  • the second AN receives a context setup message or a context modification message sent by the AMF.
  • the second AN allocates a radio bearer resource for the packet data session according to a context setup message or a context modification message.
  • the terminal device may send the uplink data of the packet data session to the UPF through the second AN.
  • the second AN sends a context establishment complete message or a context modification complete message to the AMF.
  • the context establishment completion message or the context modification completion message may carry the second AN.
  • Tunnel information eg, second AN Tunnel ID assigned to the packet data session.
  • the AMF receives a context setup complete message or a context modification complete message sent by the second AN.
  • the AMF sends an activation session response message to the SMF.
  • the SMF receives an activation session response message sent by the AMF.
  • the activation session response message may be sent by the second AN to the AMF, where the activation session response message may carry the information of the second AN (for example, the ID of the second AN), and the tunnel information of the second AN (for example, Two AN Tunnel ID).
  • the information of the second AN for example, the ID of the second AN
  • the tunnel information of the second AN for example, Two AN Tunnel ID
  • the SMF sends an activation session response message to the UPF.
  • the UPF receives an activation session response message sent by the SMF.
  • the UPF may send the downlink data of the packet data session to the terminal device through the second AN.
  • the AMF sends an activation session request message to the SMF.
  • the SMF receives an activation session request message sent by the AMF.
  • the activation session request message may be sent by the second AN to the AMF, where the activation session request message may carry the information of the second AN (for example, the ID of the second AN), and the tunnel information of the second AN (for example, Two AN Tunnel ID).
  • the information of the second AN for example, the ID of the second AN
  • the tunnel information of the second AN for example, Two AN Tunnel ID
  • the SMF sends an activation session request message to the UPF.
  • the UPF receives an activation session request message sent by the SMF.
  • the UPF may send the downlink data of the packet data session to the terminal device through the second AN.
  • the UPF sends an activation session response message to the SMF.
  • the SMF receives an activation session response message sent by the UPF.
  • the SMF sends an activation session response message to the AMF.
  • the AMF receives an activation session response message sent by the SMF.
  • the AMF may further send the activation session response message to the UE through the second AN.
  • steps S314-S336 establish a session with the existing terminal device and the network device, or the terminal device is similar to the network device activation session process, which will not be described in detail in FIG. 7 for brevity.
  • the terminal device transmits data in the allowed area according to the third message.
  • the AMF or the first AN sends the allowed area information to the terminal device, and the terminal device can access the second AN according to the allowed area information, so that the terminal device can transmit data in the allowed area (for example, responding to the subsequent access of the network).
  • the embodiment of the invention provides a data processing method, which can be applied to the scenario C described above. As shown in FIG. 8, the data processing method includes steps S401-S446:
  • the terminal device When the terminal device is in the non-allowed area, the terminal device registers with the first network by using the first AN.
  • the AS sends a packet data session request message to the NEF.
  • the NEF receives the packet data session request message sent by the AS.
  • the NEF sends a subscription information request message to the UDM.
  • the UDM receives the subscription information request message sent by the NEF.
  • the UDM sends a subscription information response message to the NEF according to the subscription information request message.
  • the NEF receives the subscription information response message sent by the UDM.
  • steps S401-S407 is similar to the content described in steps S201-S207 in the foregoing embodiment, and is not described herein again for brevity.
  • the NEF sends a packet data session trigger request message to the AMF.
  • the AMF receives a packet data session trigger request message sent by the NEF.
  • the packet data session trigger request message is used to instruct the terminal device to establish a session, or instruct the terminal device to activate the session, or instruct the terminal device to receive downlink data.
  • the packet data session trigger request message may carry the identifier of the terminal device and/or the application identifier, and may also carry a data network name (DDN) and an NSI (for example, a network slice) for indicating which data network the packet data session is established.
  • DDN data network name
  • NSI for example, a network slice
  • Information such as type and/or service type, network slice identifier), attribute information of the packet data session (eg, session establishment delay allowed time, session activation delay allowed time, data transmission delay allowed time).
  • the session establishment delay allowed time indicates that the packet data session is allowed to be delayed for a period of time establishment;
  • the session activation delay allowed time indicates that the packet data session is allowed to be delayed for a period of time activation;
  • the data transmission delay allowed time indicates that the data of the packet data session is allowed to be delayed for a period of time
  • the time transmission, wherein the data transmission may include the reception of the downlink data and the transmission of the uplink data, which are not specifically limited in this embodiment of the present invention.
  • the AMF determines that the terminal device is in the non-allowed area, and the AMF delays sending the fifth message to the terminal device.
  • the fifth message includes a packet data session trigger request message.
  • the AMF may delay the establishment of the session according to the feature that the session is established, or the activation session may delay the activation, or the terminal device may receive the downlink data to delay the reception, and delay sending the fifth message to the terminal device.
  • the AMF determines that the terminal device is in the non-permitted area, and the AMF determines that the terminal device is in the non-allowed area according to the information of the latest location update of the stored terminal device, that is, the AMF receives the registration or location update request sent by the terminal device (for example, the tracking area). Update request), which carries the non-permitted area information of the terminal device. Or the AMF receives a notification message sent by the terminal device for notifying the AMF terminal device that it is in the non-permitted area.
  • step S410 may include S410a:
  • AMF determines that the terminal device is in the non-allowed area, and the AMF starts the first timer.
  • the AMF sets the duration of the first timer according to the attribute information of the packet data session (for example, the session establishment delay allowable time, the session activation delay allowable time, and the data transmission delay allowable time), for example, setting the duration of the first timer as the session establishment. Delay allowed time.
  • the AMF determines that the terminal device moves from the non-permitted area to the allowed area, the AMF sends a fifth message to the first AN.
  • step S411 may include S411a:
  • the AMF determines that the terminal device moves from the non-permitted area to the allowed area, and the first timer does not time out, the AMF sends a fifth message to the second AN.
  • the AMF determines that the terminal device is moved from the non-permitted area to the allowed area, and the AMF determines that the terminal device is in the allowed area according to the information of the latest location update of the stored terminal device, that is, the AMF receives the registration or location update request sent by the terminal device ( For example, tracking area update request), which carries the allowed area information where the terminal device is located. Or the AMF receives a notification message sent by the terminal device for notifying the AMF terminal device that the device is in the allowed area.
  • the registration or location update request sent by the terminal device ( For example, tracking area update request)
  • the AMF receives a notification message sent by the terminal device for notifying the AMF terminal device that the device is in the allowed area.
  • the second AN receives the fifth message sent by the AMF.
  • the second AN sends a fifth message to the terminal device.
  • the terminal device receives the fifth message sent by the second AN.
  • the AMF may also send a tracking area update accept (TAU Accept) message to the second AN, where optionally, the TAU Accept message carries a follow-on indication indicating After the TAU Accept, the air interface connection (or RRC Connection) established by the TAU process is used to transmit other signaling to the terminal device. Therefore, the air interface connection established by the TAU process is not released.
  • TAU Accept tracking area update accept
  • the terminal device sends a packet data session trigger response message to the second AN.
  • the second AN receives a packet data session trigger response message sent by the terminal device.
  • the packet data session trigger response message is used to indicate that the terminal device accepts the packet data session trigger request.
  • the second AN sends a packet data session trigger response message to the AMF.
  • the AMF receives a packet data session trigger response message sent by the second AN.
  • the AMF sends a packet data session trigger response message to the NEF.
  • the NEF receives a packet data session trigger response message sent by the AMF.
  • the terminal device sends a packet data session establishment request message to the second AN.
  • the second AN receives a packet data session establishment request message sent by the terminal device.
  • the packet data session establishment request message may carry the temporary identifier of the terminal device, the ID of the packet data session, and other information of the packet data session (eg, application identifier, DNN, network slice information) and the like.
  • the second AN sends a packet data session establishment request message to the AMF.
  • the packet data session establishment request message may further carry tunnel information, such as a second AN Tunnel ID, allocated by the second AN to the packet data session.
  • the AMF receives a packet data session establishment request message sent by the second AN.
  • the AMF sends a packet data session establishment request message to the SMF.
  • the SMF receives the packet data session establishment request message sent by the AMF.
  • the SMF sends a user information request message to the UDM.
  • the UDM receives the user information request message sent by the SMF.
  • the UDM sends a user information response message to the SMF.
  • the SMF receives the user information response message sent by the UDM.
  • the SMF selects the UPF and sends a setup session request message to the UPF.
  • the UPF receives the setup session request message sent by the SMF.
  • the UPF sends a session establishment response message to the SMF.
  • the SMF receives the setup session response message sent by the UPF.
  • the SMF sends a packet data session establishment response message to the AMF.
  • the AMF receives the packet data session establishment response message sent by the SMF.
  • the AMF sends a packet data session establishment response message to the second AN.
  • the second AN receives the packet data session establishment response message sent by the AMF.
  • the second AN allocates a radio bearer resource for the packet data session.
  • the terminal device may send the uplink data of the packet data session to the UPF through the second AN.
  • the terminal device sends a packet data session establishment complete message to the second AN.
  • the second AN sends a packet data session establishment complete message to the AMF.
  • the SMF sends a modify session request message to the UPF.
  • the UPF receives the modify session request message sent by the SMF.
  • the UPF sends a modify session response message to the SMF.
  • the SMF receives the modified session response message sent by the UPF.
  • steps S423-S445 is similar to the content described in steps S216-S238 in the foregoing embodiment, and is not described herein again for brevity.
  • steps S415-S445 establish a session with the existing terminal device and the network device, or the terminal device is similar to the network device activation session process, which will not be described in detail in FIG. 8 and FIG. 9 for brevity.
  • the terminal device transmits data in the allowed area according to the fifth message.
  • the terminal device since the AMF can delay sending a fifth message for instructing the terminal device to establish a session, or instructing the terminal device to activate the session, or instructing the terminal device to receive downlink data, the terminal device sends the fifth message to the terminal after moving to the allowed area.
  • the device such that the terminal device can transmit data within the allowed area (eg, in response to subsequent paging messages of the network, establish or activate a session to transmit data, and/or receive downlink data transmitted by the core network device to the terminal device).
  • the problem that the terminal device cannot respond to the paging of the terminal device by the core network device or the downlink data sent by the network device to the terminal device is avoided.
  • the embodiment of the invention provides a data processing method, which can be applied to the scenario C described above. As shown in FIG. 10, the data processing method includes steps S501-S549:
  • the terminal device When the terminal device is in the non-allowed area, the terminal device registers with the first network by using the first AN.
  • the AS sends the downlink data of the packet data session to be sent to the terminal device to the UPF, or sends a downlink data notification message or activates the session request message.
  • the UPF receives the downlink data of the packet data session to be sent by the AS to the terminal device, or the downlink data notification message or the activation session request message.
  • the UPF sends a downlink data notification message or an activation session request message to the SMF.
  • the SMF receives the downlink data notification message sent by the UPF or activates the session request message.
  • the SMF sends a downlink data notification message or an activation session request message to the AMF.
  • the AMF receives the downlink data notification message sent by the SMF or activates the session request message.
  • steps S501-S507 is similar to the content described in steps S301-S307 in the foregoing embodiment, and is not described herein again for brevity.
  • the downlink data notification message or the activation session request message is used to instruct the terminal device to activate the session, or instruct the terminal device to receive the downlink data.
  • the downlink data notification message or the activation session request message may carry the identifier and/or the application identifier of the terminal device, and may also carry a data network name (DDN) and an NSI (indicating which data network the packet data session is established).
  • DDN data network name
  • NSI indicating which data network the packet data session is established.
  • network slice type and/or service type, network slice identifier attribute information of packet data session (such as session activation delay allowable time, data transmission delay allowable time) and the like.
  • the session activation delay allowed time indicates that the packet data session is allowed to be delayed for a period of time;
  • the data transmission delay allowed time indicates that the data of the packet data session is allowed to be delayed for a period of time, wherein the data transmission may include receiving and uplink data of the downlink data.
  • the embodiment of the present invention does not specifically limit this.
  • the AMF determines that the terminal device is in the non-allowed area, and the AMF sends the first terminal device reachability notification message or the fifth message delay sending message to the SMF.
  • the fifth message includes a downlink data notification message or an activation session request message.
  • the AMF may delay the established feature according to the establishment session, or activate the session to delay the activation feature, or the terminal device may receive the downlink data to delay the receiving feature, determine the delay to send the fifth message to the terminal device, and send the fifth message to the SMF. The message is delayed to send the message.
  • the first terminal device reachability notification message or the fifth message delay sending message is used to notify the SMF that the terminal device resides in the non-allowed area at the current moment.
  • the AMF starts the first timer. Specifically, the AMF sets the duration of the first timer according to the attribute information of the packet data session (for example, the session establishment delay allowable time, the session activation delay allowable time, and the data transmission delay allowable time), for example, setting the duration of the first timer as the session establishment. Delay allowed time.
  • the AMF determines that the terminal device is in the non-permitted area, and the AMF determines that the terminal device is in the non-allowed area according to the information of the latest location update of the stored terminal device, that is, the AMF receives the registration or location update request sent by the terminal device (for example, the tracking area). Update request), which carries the terminal The non-permitted area information of the device. Or the AMF receives a notification message sent by the terminal device for notifying the AMF terminal device that it is in the non-permitted area.
  • the SMF receives the terminal device reachability notification message sent by the AMF or the fifth message delays sending the message.
  • the SMF starts the second timer.
  • the SMF may delay the establishment of the session according to the feature that the session is established, or the activation session may delay the activation, or the terminal device may receive the downlink data to delay the reception, and determine to delay sending the fifth message to the terminal device. Or, the SMF delays sending the message according to the fifth message to determine to delay sending the fifth message to the terminal device. Thus the SMF starts the second timer.
  • the SMF sets the duration of the second timer according to the attribute information of the packet data session (eg, session establishment delay allowable time, session activation delay allowable time, data transmission delay allowable time), for example, setting the duration of the first timer to session activation. Delay allowed time or data transmission delay allowed time.
  • the AMF determines that the terminal device is moved from the non-permitted area to the allowed area, the AMF sends a second terminal device reachability notification message or a fifth message sending message to the SMF.
  • the second terminal device reachability notification message or the fifth message sending message is used to notify the SMF that the terminal device resides in the allowed area at the current moment.
  • the AMF determines that the terminal device is moved from the non-permitted area to the allowed area, and the AMF determines that the terminal device is in the allowed area according to the information of the latest location update of the stored terminal device, that is, the AMF receives the registration or location update request sent by the terminal device ( For example, tracking area update request), which carries the allowed area information where the terminal device is located. Or the AMF receives a notification message sent by the terminal device for notifying the AMF terminal device that the device is in the allowed area.
  • the registration or location update request sent by the terminal device ( For example, tracking area update request)
  • the AMF receives a notification message sent by the terminal device for notifying the AMF terminal device that the device is in the allowed area.
  • S512 The SMF determines that the second timer does not time out, and the SMF sends a fifth message to the AMF.
  • the AMF receives the fifth message sent by the SMF.
  • the AMF sends a fifth message to the second AN.
  • the AMF determines that the first timer has not timed out (if the AMF starts the first timer in step S508), or receives the fifth message sent by the SMF, the fifth message is sent to the second AN.
  • the second AN receives the fifth message sent by the AMF.
  • the second AN sends a fifth message to the terminal device.
  • the terminal device receives the fifth message sent by the second AN.
  • the second AN sends a service request message to the AMF.
  • the AMF receives the service request message sent by the second AN.
  • the AMF sends a service request message to the SMF.
  • the SMF receives the service request message sent by the AMF.
  • the SMF sends a context establishment message or a context modification message to the AMF.
  • the AMF receives a context establishment message or a context modification message sent by the SMF.
  • the AMF sends a context setup message or a context modification message to the second AN.
  • the second AN receives a context setup message or a context modification message sent by the AMF.
  • the second AN establishes a message according to a context or a context modification message, and is a packet data.
  • the session allocates radio bearer resources.
  • the second AN sends a context setup complete message or a context modification complete message to the AMF.
  • the AMF receives a context setup complete message or a context modification complete message sent by the second AN.
  • the AMF sends an activation session response message to the SMF.
  • the SMF receives an activation session response message sent by the AMF.
  • the SMF sends an activation session response message to the UPF.
  • the UPF receives an activation session response message sent by the SMF.
  • the AMF sends an activation session request message to the SMF.
  • the SMF receives an activation session request message sent by the AMF.
  • the SMF sends an activation session request message to the UPF.
  • the UPF receives an activation session request message sent by the SMF.
  • the UPF sends an activation session response message to the SMF.
  • the SMF receives an activation session response message sent by the UPF.
  • the SMF sends an activation session response message to the AMF.
  • the AMF receives an activation session response message sent by the SMF.
  • steps S518-S540 establish a session with the existing terminal device and the network device, or the terminal device is similar to the network device activation session process, which will not be described in detail in FIG. 10 for the sake of brevity.
  • steps S518-S540 is similar to the content described in steps S314-S336 in the foregoing embodiment, and is not described herein again for brevity.
  • the terminal device transmits data in the allowed area according to the fifth message.
  • the terminal device since the SMF can delay sending a fifth message for instructing the terminal device to establish a session, or instructing the terminal device to activate the session, or instructing the terminal device to receive downlink data, the terminal device sends the fifth message to the terminal after moving to the allowed area.
  • the device such that the terminal device can transmit data within the allowed area (eg, in response to subsequent paging messages of the network, establish or activate a session to transmit data, and/or receive downlink data transmitted by the core network device to the terminal device).
  • the problem that the terminal device cannot respond to the paging of the terminal device by the core network device or the downlink data sent by the network device to the terminal device is avoided.
  • the embodiment of the invention provides a terminal device, which is used to execute the steps performed by the terminal device in the above data processing method.
  • the terminal device provided by the embodiment of the present invention may include a module corresponding to the corresponding step.
  • the embodiment of the present invention may perform the division of the function module on the terminal device according to the foregoing method example.
  • each function module may be divided according to each function, or two or more functions may be performed.
  • the above integrated modules can be implemented in the form of hardware or in the form of software functional modules.
  • the division of modules in the embodiment of the present invention is schematic, and is only a logical function division, and may be further divided in actual implementation.
  • FIG. 11 is a schematic diagram showing a possible structure of the terminal device involved in the foregoing embodiment, in the case where the respective functional modules are divided by corresponding functions.
  • the terminal device includes a receiving module 10, a determining module 11, a sending module 12, and an updating module 13.
  • the receiving module 10 is configured to support the terminal device to perform the corresponding steps in FIGS. 3 to 5 (eg, steps S101 and S106), and/or other processes for the techniques described herein;
  • the determining module 11 is configured to support the terminal device Performing respective steps in FIGS. 3 through 5 (eg, step S102), and/or other processes for the techniques described herein; transmitting module 12 for supporting the terminal device to perform the respective steps of FIGS.
  • the terminal device may further include a storage module 14 for storing program codes and data of the terminal device.
  • the above-described receiving module 10 and transmitting module 12 as shown in FIG. 11 can be integrated into one communication module.
  • the determination module 11 and the update module 13 shown in FIG. 11 described above can be integrated into one processing module.
  • the processing module may be a processor or a controller, and may be, for example, a central processing unit (CPU) or a digital signal processor (DSP). It is possible to implement or carry out various exemplary logical blocks, modules and circuits described in connection with the disclosure of the embodiments of the invention.
  • the receiving module 10 can be a receiver; the sending module 12 can be a transmitter; the communication module integrated by the receiving module 10 and the sending module 12 can be a transceiver, a transceiver circuit or a communication interface.
  • the storage module 14 can be a memory.
  • the terminal device involved in the embodiment of the present invention may be the terminal device shown in FIG.
  • the terminal device includes a communication interface 20, a processor 21, and a memory 22.
  • the communication interface 20, the processor 21 and the memory 22 are connected by the system bus 23, and communication with each other is completed.
  • the terminal device When the terminal device is in operation, the terminal device performs the data processing method of the embodiment as shown in any one of FIGS. 3 to 5.
  • the terminal device performs the data processing method of the embodiment as shown in any one of FIGS. 3 to 5.
  • the terminal device performs the data processing method of the embodiment as shown in any one of FIGS. 3 to 5.
  • the communication interface 20 is used to communicate with other devices; or communicate with a communication network such as Ethernet, Wireless Local Area Networks (WLAN), or the like.
  • a communication network such as Ethernet, Wireless Local Area Networks (WLAN), or the like.
  • the memory 22 can be used to store software programs and application modules, and the processor 21 executes various functional applications and data processing of the terminal devices by running software programs and application modules stored in the memory 22.
  • the memory 22 may mainly include a storage program area 220 and a storage data area 221, wherein the storage program area 220 may store an operating system, an application required for at least one function; the storage data area 221 may store data processing provided by the embodiment of the present invention. Method related data.
  • the memory 22 can be a read-only memory (ROM), or other types of static storage devices that can store static information and instructions, a random access memory (RAM), or can store information and instructions.
  • ROM read-only memory
  • RAM random access memory
  • Other types of dynamic storage devices which may also be Electrically Erasable Programmable Read-Only Memory (EEPROM), magnetic disk storage media or other magnetic storage devices, or capable of carrying or storing instructions or
  • EEPROM Electrically Erasable Programmable Read-Only Memory
  • magnetic disk storage media or other magnetic storage devices, or capable of carrying or storing instructions or
  • the desired program code in the form of a data structure and any other medium that can be accessed by the terminal device, but is not limited thereto.
  • Memory 22 may be present independently and coupled to processor 21 via system bus 23.
  • the memory 22 can also be integrated with the processor 21.
  • the processor 21 is a control center of the terminal device.
  • the processor 21 connects various parts of the entire terminal device using various interfaces and lines, and executes each of the terminal devices by running or executing a software program and/or an application module stored in the memory 22, and calling data stored in the memory 22. Functions and processing data to monitor the terminal device as a whole.
  • the processor 21 may include one or more CPUs, for example, the processor 21 in FIG. 12 includes a CPU 0 and a CPU 1. Since the CPU 1 can be optional, the CPU 1 is indicated by a dashed box in FIG.
  • the system bus 23 can be divided into an address bus, a data bus, a control bus, and the like. For the sake of clarity in the embodiments of the present invention, various buses are illustrated as the system bus 23 in FIG.
  • the embodiment of the invention provides a terminal device. Since the terminal device updates the first mobility restriction information to the second mobility restriction information, and the terminal device can register to the registration area updated by the core network device according to the second mobility restriction information according to the second mobility restriction information, thereby The terminal device can be configured to respond to subsequent paging messages of the core network device and/or receive downlink data sent by the core network device to the terminal device. The problem that the terminal device cannot respond to the paging of the terminal device by the core network device or the downlink data sent by the network device to the terminal device is avoided.
  • the embodiment of the invention provides a core network device, which is used to perform the steps performed by the core network device in the above data processing method.
  • the core network device provided by the embodiment of the present invention may include a module corresponding to the corresponding step.
  • the embodiment of the present invention may divide the function module of the core network device according to the foregoing method example.
  • each function module may be divided according to each function, or two or more functions may be integrated into one processing module.
  • the above integrated modules can be implemented in the form of hardware or in the form of software functional modules.
  • the division of modules in the embodiment of the present invention is schematic, and is only a logical function division, and may be further divided in actual implementation.
  • FIG. 13 is a schematic diagram showing a possible structure of the core network device involved in the foregoing embodiment, in the case where the respective functional modules are divided by corresponding functions.
  • the core network device includes a receiving module 30 and a transmitting module 31.
  • the receiving module 30 is configured to support the core network device to perform 3 to 5 corresponding steps (eg, step S105), and/or other processes for the techniques described herein;
  • the transmitting module 31 is configured to support the core network device to perform the respective steps of FIGS. 3 through 5 ( For example, step S106), and/or other processes for the techniques described herein. All the related content of the steps involved in the foregoing method embodiments may be referred to the functional descriptions of the corresponding functional modules, and details are not described herein again.
  • the core network device may further include a processing module 32 and a storage module 33.
  • the processing module 32 is configured to control and manage the action of the core network device
  • the storage module 33 is configured to store the core network device. Program code and data.
  • the above-described receiving module 30 and transmitting module 31 as shown in FIG. 13 can be integrated into one communication module.
  • the processing module 32 may be a processor or a controller, such as a CPU or a DSP. It is possible to implement or carry out the various illustrative logical blocks, modules and circuits described in connection with the present disclosure.
  • the receiving module 30 can be a receiver; the sending module 31 can be a transmitter; the communication module integrated by the receiving module 30 and the sending module 31 can be a transceiver, a transceiver circuit or a communication interface or the like.
  • the storage module 33 can be a memory.
  • the core network device involved in the embodiment of the present invention may be the core network device shown in FIG. .
  • the core network device includes a communication interface 40, a processor 41, and a memory 42.
  • the communication interface 40, the processor 41 and the memory 42 are connected by the system bus 43, and communication with each other is completed.
  • the core network device When the core network device is running, the core network device performs the data processing method of the embodiment shown in any one of FIGS. 3 to 5.
  • the core network device performs the data processing method of the embodiment shown in any one of FIGS. 3 to 5.
  • the core network device performs the data processing method of the embodiment shown in any one of FIGS. 3 to 5.
  • the communication interface 40 is used for communication with other devices; or with a communication network such as Ethernet, WLAN, or the like.
  • the memory 42 can be used to store software programs and application modules, and the processor 41 executes various functional applications and data processing of the core network device by running the software programs and application modules stored in the memory 42.
  • the memory 42 may mainly include a storage program area 420 and an storage data area 421, wherein the storage program area 420 may store an operating system, an application required for at least one function; and the storage data area 421 may store related data of the core network device.
  • the memory 42 may be a ROM, or other type of static storage device that can store static information and instructions, RAM or other types of dynamic storage devices that can store information and instructions, or EEPROM, disk storage media, or other magnetic storage.
  • Memory 42 may be present independently and coupled to processor 41 via system bus 43.
  • the memory 42 can also be integrated with the processor 41.
  • the processor 41 is the control center of the core network device.
  • the processor 41 utilizes various interfaces and lines
  • the various functions of the core network device and the processing data are executed by running or executing various software devices and/or application modules stored in the memory 42 and calling data stored in the memory 42, thereby
  • the core network equipment is monitored as a whole.
  • the processor 41 may include one or more CPUs, for example, the processor 41 in FIG. 14 includes a CPU 0 and a CPU 1. Since the CPU 1 can be optional, the CPU 1 is indicated by a dashed box in FIG.
  • the system bus 43 can be divided into an address bus, a data bus, a control bus, and the like. For the sake of clarity in the embodiments of the present invention, various buses are illustrated as the system bus 43 in FIG.
  • the embodiment of the invention provides a core network device. Since the terminal device updates the first mobility restriction information to the second mobility restriction information, and the terminal device can register to the registration area updated by the core network device according to the second mobility restriction information according to the second mobility restriction information, thereby The terminal device can be configured to respond to subsequent paging messages of the core network device and/or receive downlink data sent by the core network device to the terminal device. The problem that the terminal device cannot respond to the paging of the terminal device by the core network device or the downlink data sent by the network device to the terminal device is avoided.
  • the embodiment of the invention provides a terminal device, which is used to execute the steps performed by the terminal device in the above data processing method.
  • the terminal device provided by the embodiment of the present invention may include a module corresponding to the corresponding step.
  • the embodiment of the present invention may divide the function module into the terminal device according to the foregoing method example.
  • each function module may be divided according to each function, or two or more functions may be integrated into one processing module.
  • the above integrated modules can be implemented in the form of hardware or in the form of software functional modules.
  • the division of modules in the embodiment of the present invention is schematic, and is only a logical function division, and may be further divided in actual implementation.
  • FIG. 15 shows a possible structural diagram of the terminal device involved in the foregoing embodiment, in the case where the respective functional modules are divided by corresponding functions.
  • the terminal device includes an access module 50, a receiving module 51, and a communication module 52. Access module 50, receiving module 51 and communication module 52 are respectively used to support the terminal device in performing the respective steps of Figures 6 and 7, and/or other processes for the techniques described herein. All the related content of the steps involved in the foregoing method embodiments may be referred to the functional descriptions of the corresponding functional modules, and details are not described herein again.
  • the terminal device may further include a storage module 53 for storing program codes and data of the terminal device.
  • the above-described receiving module 51 and communication module 52 as shown in FIG. 15 can be integrated into one communication module.
  • the access module 50 shown in FIG. 15 above can be integrated into one processing module.
  • the processing module may be a processor or a controller, for example, a CPU or a DSP. It is possible to implement or carry out various exemplary logical blocks, modules and circuits described in connection with the disclosure of the embodiments of the invention.
  • the communication module can be a transceiver, a transceiver circuit, or a communication interface.
  • the storage module 53 can be a memory.
  • the terminal device involved in the embodiment of the present invention may be the terminal device shown in FIG. 16.
  • the terminal device includes a communication interface 60, a processor 61, and a memory 62.
  • the communication interface 60, the processor 61 and the memory 62 are connected by the system bus 63, and the mutual communication is completed.
  • the terminal device When the terminal device is in operation, the terminal device performs the data processing method of the embodiment as shown in any one of FIGS. 6 and 7.
  • the terminal device performs the data processing method of the embodiment as shown in any one of FIGS. 6 and 7.
  • the terminal device performs the data processing method of the embodiment as shown in any one of FIGS. 6 and 7.
  • the communication interface 60 is used to communicate with other devices; or communicate with a communication network such as Ethernet, WLAN, or the like.
  • the memory 62 can be used to store software programs and application modules, and the processor 61 executes various functional applications and data processing of the terminal devices by running software programs stored in the memory 62 and application modules.
  • the memory 62 can mainly include a storage program area 620 and a storage data area 621, wherein the storage program area 620 can store an operating system, an application required for at least one function, and the storage data area 621 can store data processing provided by the embodiment of the present invention. Method related data.
  • the memory 62 may be a ROM, or other type of static storage device that can store static information and instructions, RAM or other types of dynamic storage devices that can store information and instructions, or EEPROM, disk storage media, or other magnetic storage.
  • Memory 62 may be present independently and coupled to processor 61 via system bus 63.
  • the memory 62 can also be integrated with the processor 61.
  • the processor 61 is a control center of the terminal device.
  • the processor 61 connects various parts of the entire terminal device using various interfaces and lines, and executes each of the terminal devices by running or executing a software program and/or an application module stored in the memory 62, and calling data stored in the memory 62. Functions and processing data to monitor the terminal device as a whole.
  • the processor 61 may include one or more CPUs, for example, the processor 61 in FIG. 16 includes a CPU 0 and a CPU 1. Since the CPU 1 can be optional, the CPU 1 is indicated by a dashed box in FIG.
  • the system bus 63 can be divided into an address bus, a data bus, a control bus, and the like. For the sake of clarity in the embodiments of the present invention, various buses are illustrated as the system bus 63 in FIG.
  • the embodiment of the invention provides a terminal device. Since the AMF or the first AN sends the allowed area information to the terminal device, and the terminal device can access the second AN according to the allowed area information, so that the terminal device can transmit data in the allowed area (for example, responding to the subsequent paging message of the network) Establish or activate a session to transmit data, and/or receive downlink data sent by the core network device to the terminal device.
  • An embodiment of the present invention provides a network device, where the network device is a first network device, where the network device is configured to perform the steps performed by the network device in the foregoing data processing method.
  • the network device provided by the embodiment of the present invention may include a module corresponding to the corresponding step.
  • the embodiment of the present invention may divide the function module into the network device according to the foregoing method example.
  • each function module may be divided according to each function, or two or more functions may be integrated into one processing module.
  • the above integrated modules can be implemented in the form of hardware or in the form of software functional modules.
  • the division of modules in the embodiment of the present invention is schematic, and is only a logical function division, and may be further divided in actual implementation.
  • FIG. 17 shows a possible structural diagram of the network device involved in the foregoing embodiment in the case where the respective functional modules are divided by corresponding functions.
  • the network device includes a receiving module 70, a determining module 71, and a transmitting module 72.
  • the receiving module 70, the determining module 71, and the transmitting module 72 are respectively used to support the network device to perform the respective steps of performing the AMF and SMF in FIGS. 6 and 7, and/or other processes for the techniques described herein. All the related content of the steps involved in the foregoing method embodiments may be referred to the functional descriptions of the corresponding functional modules, and details are not described herein again.
  • the network device may further include a storage module 73, where the storage module 73 is configured to store program codes and data of the network device.
  • the above-described receiving module 70 and transmitting module 72 as shown in FIG. 17 can be integrated into one communication module.
  • the determination module 71 shown in FIG. 17 described above can be integrated into one processing module.
  • the processing module may be a processor or a controller, for example, a CPU or a DSP. It is possible to implement or carry out the various illustrative logical blocks, modules and circuits described in connection with the present disclosure.
  • the receiving module 70 can be a receiver; the sending module 72 can be a transmitter; the communication module integrated by the receiving module 70 and the sending module 72 can be a transceiver, a transceiver circuit or a communication interface or the like.
  • the storage module 73 can be a memory.
  • the network device involved in the embodiment of the present invention may be the network device shown in FIG. 18.
  • the network device includes a communication interface 80, a processor 81, and a memory 82.
  • the communication interface 80, the processor 81 and the memory 82 are connected by a system bus 83, and communication with each other is completed.
  • the network device When the network device is in operation, the network device performs the data processing method of the embodiment as shown in any one of FIGS. 6 and 7.
  • the network device performs the data processing method of the embodiment as shown in any one of FIGS. 6 and 7.
  • the network device performs the data processing method of the embodiment as shown in any one of FIGS. 6 and 7.
  • the communication interface 80 is used to communicate with other devices; or communicate with a communication network such as Ethernet, WLAN, or the like.
  • the memory 82 can be used to store software programs and application modules, and the processor 81 executes various functional applications and data processing of the network devices by running software programs stored in the memory 82 and application modules.
  • the memory 82 may mainly include a storage program area 820 and a storage data area 821, wherein the storage path
  • the sequence area 820 can store an operating system, an application required for at least one function; the storage data area 821 can store related data of the network device.
  • the memory 82 may be a ROM, or other type of static storage device that can store static information and instructions, RAM or other types of dynamic storage devices that can store information and instructions, or EEPROM, disk storage media, or other magnetic storage.
  • Memory 82 may be present independently and coupled to processor 81 via system bus 83. Memory 82 can also be integrated with processor 81.
  • the processor 81 is the control center of the network device.
  • the processor 81 connects various portions of the entire network device using various interfaces and lines, and executes each of the network devices by running or executing software programs and/or application modules stored in the memory 82, and recalling data stored in the memory 82.
  • the processor 81 may include one or more CPUs, for example, the processor 81 in FIG. 18 includes a CPU 0 and a CPU 1. Since the CPU 1 can be optional, the CPU 1 is indicated by a dashed box in FIG.
  • the system bus 83 can be divided into an address bus, a data bus, a control bus, and the like. For the sake of clarity in the embodiments of the present invention, various buses are illustrated as the system bus 83 in FIG.
  • the embodiment of the invention provides a network device. Since the AMF or the first AN sends the allowed area information to the terminal device, and the terminal device can access the second AN according to the allowed area information, so that the terminal device can transmit data in the allowed area (for example, responding to the subsequent paging message of the network) Establish or activate a session to transmit data, and/or receive downlink data sent by the core network device to the terminal device.
  • An embodiment of the present invention provides a network device, where the network device is a fourth network device, where the network device is configured to perform the steps performed by the network device in the foregoing data processing method.
  • the network device provided by the embodiment of the present invention may include a module corresponding to the corresponding step.
  • the embodiment of the present invention may divide the function module into the network device according to the foregoing method example.
  • each function module may be divided according to each function, or two or more functions may be integrated into one processing module.
  • the above integrated modules can be implemented in the form of hardware or in the form of software functional modules.
  • the division of modules in the embodiment of the present invention is schematic, and is only a logical function division, and may be further divided in actual implementation.
  • FIG. 19 shows a possible structural diagram of the network device involved in the foregoing embodiment in the case where the respective functional modules are divided by corresponding functions.
  • the network device includes a receiving module 90, a determining module 91, a delay module 92, and a transmitting module 93.
  • the receiving module 90, the determining module 91, the delaying module 92, and the transmitting module 93 are respectively configured to support the network device to perform the corresponding steps of the AMF and SMF in FIGS. 8-10, and/or for the techniques described herein. Other processes. All the related content of the steps involved in the foregoing method embodiments may be referred to the functional descriptions of the corresponding functional modules, and details are not described herein again.
  • the network device may further include a storage module 94 for storing program codes and data of the network device.
  • the above-described receiving module 90 and transmitting module 93 as shown in FIG. 19 can be integrated into one communication module.
  • the determining module 91 and the delay module 92 shown in FIG. 19 described above may be integrated into one processing module.
  • the processing module may be a processor or a controller, for example, a CPU or a DSP. It is possible to implement or carry out the various illustrative logical blocks, modules and circuits described in connection with the present disclosure.
  • the receiving module 90 can be a receiver; the sending module 93 can be a transmitter; the communication module integrated by the receiving module 90 and the sending module 93 can be a transceiver, a transceiver circuit, a communication interface, or the like.
  • the storage module 94 can be a memory.
  • the processing module is a processor
  • the communication module integrated by the receiving module 90 and the sending module 93 is a communication interface
  • the storage module 94 is a memory
  • the network device involved in the embodiment of the present invention may be the network device shown in FIG.
  • the network device includes a communication interface 100, a processor 101, and a memory 102.
  • the communication interface 100, the processor 101 and the memory 102 are connected by the system bus 103, and the mutual communication is completed.
  • the network device When the network device is in operation, the network device performs the data processing method of the embodiment as shown in any one of FIGS. 8 to 10.
  • the network device performs the data processing method of the embodiment as shown in any one of FIGS. 8 to 10.
  • the network device performs the data processing method of the embodiment as shown in any one of FIGS. 8 to 10.
  • the communication interface 100 is used to communicate with other devices; or communicate with a communication network such as Ethernet, WLAN, or the like.
  • the memory 102 can be used to store software programs and application modules, and the processor 101 executes various functional applications and data processing of the network devices by running software programs stored in the memory 102 and application modules.
  • the memory 102 can mainly include a storage program area 1020 and a storage data area 1021, wherein the storage program area 1020 can store an operating system, an application required for at least one function; and the storage data area 1021 can store related data of the network device.
  • the memory 102 may be a ROM, or other type of static storage device that can store static information and instructions, RAM or other types of dynamic storage devices that can store information and instructions, or EEPROM, disk storage media, or other magnetic storage.
  • the memory 102 can exist independently and is coupled to the processor 101 via a system bus 103.
  • the memory 102 can also be integrated with the processor 101.
  • the processor 101 is the control center of the network device.
  • the processor 101 connects various portions of the entire network device using various interfaces and lines, and executes each of the network devices by running or executing a software program and/or application module stored in the memory 102, and calling data stored in the memory 102.
  • the processor 101 may include one or more CPUs, for example, the processor 101 in FIG. 20 includes a CPU 0 and a CPU 1. Since the CPU 1 can be optional, the CPU 1 is indicated by a dashed box in FIG.
  • the system bus 103 can be divided into an address bus, a data bus, a control bus, and the like. For the sake of clarity in the embodiments of the present invention, various buses are illustrated as the system bus 103 in FIG.
  • the embodiment of the invention provides a network device. Since the AMF or the SMF can delay sending a fifth message for instructing the terminal device to establish a session, or instructing the terminal device to activate the session, or instructing the terminal device to receive downlink data, the terminal device sends the fifth message to the terminal after moving to the allowed area.
  • the device such that the terminal device can transmit data within the allowed area (eg, in response to subsequent paging messages of the network and/or receiving downlink data sent by the core network device to the terminal device).
  • the problem that the terminal device cannot respond to the paging of the terminal device by the core network device or the downlink data sent by the network device to the terminal device is avoided.
  • the embodiment of the present invention further provides a communication system, comprising: a terminal device having any of the features described in the foregoing embodiments, and a network device having any of the features described in the foregoing embodiments; or having any of the features described in the foregoing embodiments A feature terminal device and a core network device having any of the features described in the above embodiments; or a network device having any of the features described in the above embodiments.
  • the embodiment of the invention further provides a software product, the software product comprising computer instructions for implementing a data processing method.
  • the computer instructions can be stored on a readable storage medium; the processor can read and execute the computer instructions from the readable storage medium such that the processor implements the resource scheduling method as described in the above method embodiments.
  • the disclosed system, apparatus, and method may be implemented in other manners.
  • the device embodiments described above are merely illustrative.
  • the division of the modules or units is only a logical function division.
  • there may be another division manner for example, multiple units or components may be used. Combinations can be integrated into another system, or some features can be ignored or not executed.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be in an electrical, mechanical or other form.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
  • each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the above integrated unit can be implemented in the form of hardware or in the form of a software functional unit.
  • the integrated unit if implemented in the form of a software functional unit and sold or used as a standalone product, may be stored in a computer readable storage medium.
  • a computer readable storage medium A number of instructions are included to cause a computer device (which may be a personal computer, server, or network device, etc.) or processor to perform all or part of the steps of the methods described in various embodiments of the present application.
  • the foregoing storage medium includes: a flash memory, a mobile hard disk, a read only memory, a random access memory, a magnetic disk, or an optical disk, and the like, which can store program codes.

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Abstract

La présente invention se rapporte au domaine des communications, et concerne, dans ses modes de réalisation, un procédé, un dispositif et un système de traitement de données, qui peuvent permettre à un dispositif terminal d'être dans une zone autorisée, ce qui permet de répondre à la radiomessagerie du dispositif terminal par un dispositif réseau ou de recevoir des données de liaison descendante envoyées par le dispositif réseau au dispositif terminal. Le procédé de traitement de données comprend les étapes suivantes : un dispositif terminal reçoit un message de radiomessagerie; le dispositif terminal détermine, selon le message de radiomessagerie, que des premières informations de restriction de mobilité du dispositif terminal doivent être mises à jour; le dispositif terminal envoie un premier message à un dispositif de réseau central, le premier message comprenant au moins un premier paramètre, et le premier paramètre est utilisé pour demander que le dispositif de réseau central met à jour les premières informations de restriction de mobilité pour le dispositif terminal; le dispositif terminal reçoit un second message envoyé par le dispositif de réseau central, le second message comprenant au moins des secondes informations de restriction de mobilité; et le dispositif terminal met à jour les premières informations de restriction de mobilité aux secondes informations de restriction de mobilité.
PCT/CN2017/073009 2017-02-06 2017-02-06 Procédé, dispositif et système de traitement de données WO2018141117A1 (fr)

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