WO2018223900A1 - Système, appareil et procédé de traitement de session - Google Patents

Système, appareil et procédé de traitement de session Download PDF

Info

Publication number
WO2018223900A1
WO2018223900A1 PCT/CN2018/089559 CN2018089559W WO2018223900A1 WO 2018223900 A1 WO2018223900 A1 WO 2018223900A1 CN 2018089559 W CN2018089559 W CN 2018089559W WO 2018223900 A1 WO2018223900 A1 WO 2018223900A1
Authority
WO
WIPO (PCT)
Prior art keywords
ladn
session
function entity
management function
area covered
Prior art date
Application number
PCT/CN2018/089559
Other languages
English (en)
Chinese (zh)
Inventor
胡勇
时书锋
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.)
Filing date
Publication date
Priority claimed from CN201710459734.XA external-priority patent/CN109246853A/zh
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to KR1020197024033A priority Critical patent/KR102334963B1/ko
Priority to EP18814410.9A priority patent/EP3634080B1/fr
Priority to JP2019539258A priority patent/JP6835369B2/ja
Priority to BR112019016891A priority patent/BR112019016891A2/pt
Publication of WO2018223900A1 publication Critical patent/WO2018223900A1/fr
Priority to US16/706,466 priority patent/US20200120752A1/en

Links

Images

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/20Manipulation of established connections
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/30Connection release

Definitions

  • the present application relates to the field of wireless communication technologies, and in particular, to a session processing method, apparatus, and system.
  • LADN Local Area Data Network
  • LADN refers to a network covering a specific local area.
  • LADN can be a network covering an enterprise campus, campus, airport, railway station, shopping mall, stadium, and the like.
  • the user equipment (UE) accesses the local gateway through the wireless access, thereby directly accessing the LADN corresponding to the local gateway, and the UE can obtain the data commonly used by the LADN from the LADN without going through the network other than the LADN, thereby reducing the acquisition data.
  • the delay reduces the bandwidth occupied by the UE to frequently request data acquisition from a network other than the LADN.
  • the session management function entity delivers the configuration information of the LADN and the information of the area covered by the LADN to the UE based on the location of the UE, when the UE is covered according to the received LADN.
  • the UE will access the LADN according to the configuration information of the received LADN, and establish a LADN session for data transmission.
  • the UE leaves the area covered by the LADN, there is no method for processing these LADN sessions in the prior art for the LADN session that the UE has established.
  • the embodiment of the present invention provides a session processing method, apparatus, and system, which are used to process a LADN session established before the UE leaves the LADN-covered area after the UE leaves the area covered by the LADN.
  • an embodiment of the present application provides a session processing method, where the method includes:
  • the session management function entity first determines whether the UE leaves the area covered by the LADN, and then triggers the deactivation of the LADN session, and determines whether to release the LADN session according to the case that the UE re-enters the area covered by the LADN within the preset duration.
  • the LADN session refers to a session for the UE to perform data transmission in the area covered by the LADN.
  • the session management function entity triggers the deactivation of the LADN session after determining that the UE leaves the area covered by the LADN to release the network resource occupied by the LADN session. And determining whether to release the LADN session according to the case that the UE re-enters the area covered by the LADN within the preset duration, and implementing the LADN session established before the UE leaves the area covered by the LADN after the UE leaves the LADN-covered area.
  • the processing helps to realize the reasonable utilization of the network resources occupied by the LADN session and improve the utilization of network resources.
  • the session management function entity determines whether to release the LADN session according to the situation that the UE re-enters the area covered by the LADN, the following two situations may be classified:
  • the first case is: if the UE does not enter the area covered by the LADN again within the preset duration, the session management function entity releases the LADN session.
  • the session management function entity may release the LADN session established by the UE that does not enter the LADN coverage area within the preset duration to avoid releasing the LADN session of the UE after the UE leaves the LADN-covered area.
  • the second case is: if the UE enters the area covered by the LADN again within the preset duration, the session management function entity determines not to release the LADN session.
  • the session management function entity may determine not to release the LADN session established by the UE that re-enters the LADN-covered area within the preset time period, so as to avoid releasing the LADN session of the UE immediately after the UE leaves the LADN-covered area. And the UE needs to repeatedly establish a LADN session for the UE in the area covered by the LADN again. Repeating the establishment of the LADN session increases the signaling overhead.
  • the session management function entity determines not to release the LADN session, the LADN session is still in a deactivated state, in which case the session management function entity receives a request from the UE for requesting to pass the LADN session.
  • the service request SR message for data transmission triggers the activation of the LADN session.
  • the UE that enters the area covered by the LADN again within the preset time period can perform data transmission through the activated LADN session, and does not need to repeatedly establish a LADN session for the UE that re-enters the area covered by the LADN, so as to avoid waste of signaling overhead.
  • the session management function entity after the session management function entity triggers the deactivation of the LADN session and determines whether to release the LADN session, the session management function entity cannot temporarily determine whether to release the LADN session, in this case, the session management function. If the entity receives an SR message from the UE for requesting data transmission through the LADN session, the entity sends a response message indicating that the SR message request fails.
  • the method for the session management function entity to determine that the UE leaves the area covered by the LADN is as follows: the session management function entity receives indication information from the mobility management function entity, where the indication information is used to indicate the location of the UE; the session management function The entity determines, based on the indication information, that the UE leaves the area covered by the LADN.
  • the session management function entity can determine that the UE leaves the area covered by the LADN so that the LADN session established by the UE before leaving the area covered by the LADN can be triggered to be deactivated.
  • the session management function entity may request the mobility management function entity to report the location information of the UE to the session management function entity, or the session The management function entity may request the mobility management function entity to notify the session management function entity when determining that the UE leaves the area covered by the LADN.
  • the method for determining that the UE leaves the area covered by the LADN for the session management function entity to receive the information included in the indication information from the mobility management function entity may be classified into the following two types:
  • the first type the indication information includes the location information of the UE; in this case, if the location indicated by the location information of the UE is not located in the area indicated by the information of the area covered by the LADN pre-stored by the session management function entity, the session The management function entity determines the area in which the UE leaves the LADN coverage.
  • the session management function entity may determine that the UE leaves the area covered by the LADN if the indication information includes the location information of the UE.
  • the indication information includes information for indicating that the UE leaves the area covered by the LADN; in this case, the session management function entity determines that the UE leaves according to the information included in the indication information for indicating that the UE leaves the area covered by the LADN.
  • the area covered by LADN is the information included in the indication information for indicating that the UE leaves the area covered by the LADN.
  • the mobility management function entity Before the session management function entity receives the indication information from the mobility management function entity, the mobility management function entity acquires the location information of the UE, and determines that the UE leaves the LADN coverage according to the location information of the UE and the information of the area covered by the LADN pre-stored by the UE. The area then sends information to the session management function entity to indicate that the UE leaves the area covered by the LADN.
  • the session management function entity may directly determine the area where the UE leaves the LADN coverage if the indication information includes information indicating the area where the UE leaves the LADN coverage.
  • the location information of the UE includes the cell identifier of the cell where the UE is located, and the information of the area covered by the LADN includes the area covered by the LADN.
  • the method for the session management function entity to trigger the deactivation of the LADN session includes the following operations:
  • the session management function entity sends a message to the user plane function entity indicating the release of the downlink tunnel resource of the LADN session; or the session management function entity sends a message to the mobility management function entity indicating the release of the air interface resource of the LADN session.
  • the downlink tunnel resource and the air interface resource occupied by the LADN session can be released, and the utilization of these resources is improved.
  • the embodiment of the present application further provides a session management function entity, where the session management function entity has a function of implementing the behavior of the session management function entity in the foregoing method example.
  • the functions may be implemented by hardware or by corresponding software implemented by hardware.
  • the hardware or the software includes one or more modules corresponding to the functions described above.
  • the structure of the session management function entity includes a processing unit and a transceiver unit, and the unit may perform the corresponding function in the method example provided by any one of the implementation manners of the foregoing first aspect. The detailed description is not repeated here.
  • the embodiment of the present application further provides a session management function entity, where the session management function entity has a function of implementing the behavior of the session management function entity in the foregoing method example.
  • the functions can be implemented in hardware.
  • the structure of the session management function entity includes a memory, a processor, and a transceiver, wherein the processor, the memory, and the transceiver are connected by a bus; the memory is configured to store a computer readable program; and the processor is called to be stored in the memory.
  • the transceiver is configured to receive data under the control of the processor And/or transmitting data to implement the functions of the transceiver unit included in the structure of the session management function entity in the second aspect.
  • the embodiment of the present application further provides a session processing system, where the system includes a mobility management function entity and a session management function entity, where the mobility management function entity is configured to send indication information to the session management function entity, and use the indication information. And indicating a location of the user equipment UE; the session management function entity is configured to receive the indication information sent by the mobility management function entity; determine, according to the indication information, the area where the UE leaves the LADN coverage; trigger the deactivation of the LADN session, where the LADN session refers to the UE A session for performing data transmission in an area covered by the LADN; determining whether to release the LADN session according to the case where the UE re-enters the area covered by the LADN within a preset time period.
  • the session management function entity is configured to perform the method provided by any one of the foregoing first aspects.
  • an embodiment of the present application provides a session processing method, where the method includes:
  • the session management function entity first sends an event subscription request to the mobility management function entity, the event in the event subscription request includes the area where the UE leaves the LADN coverage, and then receives the first from the mobility management function entity to notify the UE to leave the LADN coverage area.
  • the notification message the session management function entity may trigger the first session operation according to the first notification message.
  • the first session operation includes releasing a LADN session or deactivating a LADN session, where the LADN session refers to a session for the UE to perform data transmission in an area covered by the LADN.
  • the session management function entity subscribes to the mobile management function entity for the event of the event that the UE leaves the area covered by the LADN through the event subscription request, and receives the event.
  • the first notification message sent by the mobility management function entity to notify the UE to leave the area covered by the LADN triggering the deactivation of the LADN session or releasing the LADN session according to the first notification message
  • the processing of the LADN session established before the UE leaves the area covered by the LADN helps to realize the reasonable utilization of the network resources occupied by the LADN session and improve the utilization of network resources.
  • the method for the session management function entity to trigger the first session operation according to the first notification message may be classified into the following two types:
  • the first method is: the session management function entity releases the LADN session according to the first notification message.
  • the problem of resource waste caused by continuing to reserve the LADN session of the UE after the UE leaves the LADN-covered area can be avoided.
  • the second method is: the session management function entity triggers the deactivation of the LADN session according to the first notification message, and determines whether to release the LADN session according to the case that the UE re-enters the area covered by the LADN within the preset duration.
  • the event in the event subscription request further includes the area where the UE enters the LADN coverage.
  • the session management function entity may further receive the notification from the mobility management function entity for notifying the UE.
  • the second notification message entering the area covered by the LADN triggers the second session operation according to the second notification message.
  • the second session operation includes activating a LADN session or triggering establishment of a LADN session between the UE and the LADN.
  • the session management function entity when the event in the event subscription request includes the UE entering the area covered by the LADN, when the session management function entity triggers the second session operation according to the second notification message, the following two situations may be
  • the first case is: when the session management function entity triggers the deactivation of the LADN session according to the first notification message, and the session management function entity determines, according to the second notification message, that the UE enters the area covered by the LADN again, if the session management function entity receives To the SR message from the UE for requesting data transmission through the LADN session, since the LADN session is in the deactivated state at this time, the session management function entity deactivates the session management function entity according to the first notification message according to the second notification message. The LADN session is activated.
  • the UE can directly transmit data through the activated LADN session.
  • the second case is: if the session management function entity releases the LADN session according to the first notification message, and the session management function entity does not cancel the notification that the UE re-enters the area covered by the LADN, if the session management function entity receives the The UE's message for requesting establishment of a LADN session between LADNs triggers establishment of a LADN session between the UE and the LADN according to the second notification message.
  • the UE can perform data transmission through the established LADN session.
  • the embodiment of the present application further provides a session management function entity, where the session management function entity has a function of implementing the behavior of the session management function entity in the method example of the foregoing fifth aspect.
  • the functions may be implemented by hardware or by corresponding software implemented by hardware.
  • the hardware or the software includes one or more modules corresponding to the functions described above.
  • the structure of the session management function entity includes a processing unit and a transceiver unit, and the unit may perform the corresponding function in the method example provided by any one of the foregoing fifth aspects.
  • the processing unit and a transceiver unit may perform the corresponding function in the method example provided by any one of the foregoing fifth aspects.
  • the method example may perform the corresponding function in the method example provided by any one of the foregoing fifth aspects.
  • the embodiment of the present application further provides a session management function entity, where the session management function entity has a function of implementing the behavior of the session management function entity in the method example of the foregoing fifth aspect, and the function may be implemented by hardware.
  • the structure of the session management function entity includes a memory, a processor, and a transceiver, wherein the processor, the memory, and the transceiver are connected by a bus; the memory is configured to store a computer readable program; and the processor is called to be stored in the memory.
  • An instruction which is provided to perform the method provided by any one of the foregoing fifth aspects, to implement the functions of the processing unit included in the structure of the session management function entity in the sixth aspect; and the transceiver for receiving data under the control of the processor And/or transmitting data to implement the functions of the transceiving unit included in the structure of the session management function entity in the sixth aspect.
  • the embodiment of the present application further provides a session processing system, where the system includes a mobility management function entity and a session management function entity, where the session management function entity is configured to send an event subscription request to the mobility management function entity, where the event
  • the mobile management function entity may be configured to: after receiving the event subscription request sent by the session management function entity, if it is determined that the UE leaves the LADN coverage area, send a message to the session management function entity to notify the UE to leave the LADN. a first notification message of the coverage area; the session management function entity, further configured to: after receiving the first notification message, trigger a first session operation according to the first notification message, where the first session operation includes deactivating a LADN session or Release the LADN session.
  • the session management function entity is configured to perform the method provided by any one of the foregoing fifth aspects.
  • the embodiment of the present application further provides a computer storage medium, where the software program stores a software program, where the software program can implement the first aspect or the first one when being read and executed by one or more processors A method provided by any one of the aspects.
  • the embodiment of the present application provides a computer program product comprising instructions, which when executed on a computer, enable the computer to perform the session processing method of any of the above first aspects.
  • the embodiment of the present application further provides a computer storage medium, where the software program stores a software program, and the software program can implement the fifth aspect or the foregoing when read and executed by one or more processors.
  • the software program stores a software program
  • the software program can implement the fifth aspect or the foregoing when read and executed by one or more processors.
  • the embodiment of the present application provides a computer program product comprising instructions, which when executed on a computer, enable the computer to perform the session processing method of any of the above fifth aspects.
  • the session management function entity triggers the deactivation of the LADN session after determining that the UE leaves the area covered by the LADN. And determining whether to release the LADN session according to the case that the UE re-enters the area covered by the LADN within the preset duration, and implementing the LADN session established before the UE leaves the area covered by the LADN after the UE leaves the LADN-covered area. deal with. Therefore, the technical solution provided by the embodiment of the present application can reasonably utilize the network resources occupied by the LADN session, and improve the utilization of network resources.
  • FIG. 1 is a schematic structural diagram of a session processing system according to an embodiment of the present application
  • FIG. 2 is a schematic structural diagram of a 5G system according to an embodiment of the present application.
  • FIG. 3 is a schematic flowchart of a session processing method according to an embodiment of the present disclosure
  • FIG. 4 is a schematic flowchart of a method for processing a LADN session in a first type of 5G system according to an embodiment of the present disclosure
  • FIG. 5 is a schematic flowchart of a method for processing a LADN session in a second type of 5G system according to an embodiment of the present disclosure
  • FIG. 6 is a schematic flowchart of a method for processing a LADN session in a third 5G system according to an embodiment of the present application
  • FIG. 7 is a schematic flowchart of a method for processing a LADN session in a fourth type of 5G system according to an embodiment of the present disclosure
  • FIG. 8 is a schematic structural diagram of a first session management function entity according to an embodiment of the present application.
  • FIG. 9 is a schematic structural diagram of a second session management function entity according to an embodiment of the present application.
  • FIG. 10 is a schematic structural diagram of another session processing system according to an embodiment of the present disclosure.
  • FIG. 11 is a schematic flowchart diagram of another session processing method according to an embodiment of the present disclosure.
  • FIG. 12 is a schematic flowchart of a method for processing a LADN session in a fifth type of 5G system according to an embodiment of the present disclosure
  • FIG. 13 is a schematic flowchart of a method for processing a LADN session in a sixth type of 5G system according to an embodiment of the present disclosure
  • FIG. 14 is a schematic flowchart of a method for processing a LADN session in a seventh type of 5G system according to an embodiment of the present disclosure
  • FIG. 15 is a schematic structural diagram of a third session management function entity according to an embodiment of the present application.
  • FIG. 16 is a schematic structural diagram of a fourth session management function entity according to an embodiment of the present disclosure.
  • the embodiment of the present invention provides a session processing method, apparatus, and system, which are used to process a LADN session established before the UE leaves the LADN-covered area after the UE leaves the area covered by the LADN.
  • the method, the device and the system are based on the same concept. Since the principles of the method, the device and the system for solving the problem are similar, the implementation of the method, the device and the system can be referred to each other, and the repeated description will not be repeated.
  • LADN refers to a network that covers a specific local area.
  • LADN can be a network covering a campus network, a station, and the like.
  • the UE accesses the user plane node of the LADN through the radio access network, thereby directly accessing the LADN corresponding to the user plane node of the LADN, and the UE can obtain its commonly used data from the LADN without going through a network other than the LADN, thus reducing the acquisition data.
  • the delay reduces the bandwidth occupied by the UE to frequently request data acquisition from a network other than the LADN.
  • the process of the UE accessing the LADN includes: after the UE enters the area covered by the LADN, the session management function entity in the control plane node sends the LADN configuration information and the area information of the LADN coverage area to the UE based on the location of the UE. After determining, by the information of the area covered by the received LADN, the UE enters the area covered by the LADN, and accesses the LADN according to the configuration information of the received LADN. After the UE accesses the LADN, the network establishes a LADN session for the UE, and the LADN session refers to a session for the UE to perform data transmission in the area covered by the LADN.
  • the LADN session is divided into the LADN session in the active state and the LADN session in the deactivated state.
  • the LADN session in the active state occupies the downlink tunnel resource and the air interface resource, and the LADN session in the activated state can be in the LADN coverage area.
  • the data transmission is performed internally; the LADN session in the deactivated state does not occupy the downlink tunnel resource and the air interface resource, and the LADN session in the deactivated state cannot be used for the UE to perform data transmission in the area covered by the LADN.
  • the embodiment of the present application provides a session processing system.
  • the architecture of the system may be as shown in FIG. 1, including a mobility management function entity 101 and a session management function entity 102.
  • the system works as follows:
  • the mobility management function entity 101 sends the indication information to the session management function entity 102.
  • the session management function entity 102 determines the area where the UE leaves the LADN according to the location of the UE indicated by the indication information.
  • the session management function entity 102 triggers the deactivation of the LADN session in the case of determining that the UE leaves the area covered by the LADN, and determines whether to release the LADN session according to the case where the UE re-enters the area covered by the LADN within the preset duration.
  • the session management function entity 102 releases the LADN session, so that the LADN session can be avoided if the LADN session of the UE is not released after the UE leaves the LADN-covered area for a long time.
  • the session management function entity 102 determines not to release the LADN session, so that if the UE leaves the LADN-covered area, the LADN session of the UE is immediately released, and the UE enters again.
  • the problem of establishing a LADN session for the UE needs to be repeated in the area covered by the LADN. Repeating the establishment of the LADN session increases the signaling overhead.
  • the indication information is used to indicate a location of the UE, and the indication information may include location information of the UE or information used to indicate that the UE leaves the area covered by the LADN.
  • the indication information includes the location information of the UE
  • the session management function entity 102 determines the area where the UE leaves the LADN coverage according to the location information of the UE included in the indication information and the information of the area covered by the LADN stored in advance.
  • the mobility management function entity 101 determines, according to the location information of the UE and the information of the area covered by the LADN stored in advance, the area where the UE leaves the LADN coverage, and The session management function entity 102 transmits indication information including information for indicating that the UE leaves the area covered by the LADN.
  • the above-mentioned session processing system can implement the processing of the LADN session established before the UE leaves the area covered by the LADN after the UE leaves the area covered by the LADN, which helps to realize the network resources occupied by the LADN session and improve the network resources. Utilization.
  • the applicable system may be a Global System of Mobile Communication (GSM) system, a Code Division Multiple Access (CDMA) system, or a Wideband Code Division Multiple Access (WCDMA) general packet.
  • GSM Global System of Mobile Communication
  • CDMA Code Division Multiple Access
  • WCDMA Wideband Code Division Multiple Access
  • General Packet Radio Service (GPRS) system Long Term Evolution (LTE) system, LTE Frequency Division Duplex (FDD) system, LTE Time Division Duplex (TDD), general purpose Universal Mobile Telecommunication System (UMTS), Worldwide Interoperability for Microwave Access (WiMAX) system, and 5G system.
  • LTE Long Term Evolution
  • FDD Frequency Division Duplex
  • TDD LTE Time Division Duplex
  • UMTS general purpose Universal Mobile Telecommunication System
  • WiMAX Worldwide Interoperability for Microwave Access
  • WiMAX Worldwide Interoperability for Microwave Access
  • the session management function entity and the mobility management function entity may have different names.
  • the name of the session management function entity is SMF (Session Management Function)
  • the name of the mobility management function entity is AMF (Access and Mobility Management Function).
  • the 5G system shown in FIG. 2 includes an SMF, an AMF, a Radio Access Network (RAN), and a User Plane Function (UPF), and may also include a policy control function.
  • Policy Control Function PCF
  • AF Application Function
  • DN Data Network
  • UDM United Data Management
  • the SMF is mainly used for the establishment, release, and update of the triggering and control sessions in the 5G system.
  • the AMF can access the signaling of the UE through the N1 interface and the signaling of the RAN through the N2 interface to complete the registration and signaling of the UE.
  • N1 interface is the signaling interface between the UE and the mobility management functional entity
  • N2 interface is the signaling interface between the RAN and the mobility management functional entity
  • UPF is The user plane node can implement the user plane gateway function, and is mainly used to control the execution of specific functions such as data forwarding, monitoring, and charging on the user plane
  • the RAN can refer to all or part of the fixed user accessing the switch in a wireless manner
  • It is the ground infrastructure that provides management tasks for a range of users, including access, roaming, connecting to a public switched telephone network, and connecting to the network.
  • the UE can access the DN connected to the UPF through the UPF.
  • the DN connected to the UPF is the LADN except LADN.
  • the DN connected to the UPF is LADN.
  • the UE involved in the embodiment of the present application may be a device that provides voice and/or data connectivity to a user, a handheld device with a wireless connection function, or other processing device connected to a wireless modem.
  • the wireless terminal device can communicate with one or more core networks via the RAN, which can be a mobile terminal device, such as a mobile telephone (or "cellular" telephone) and a computer with a mobile terminal device, for example, can be portable , pocket, handheld, computer built-in or in-vehicle mobile devices that exchange language and/or data with the wireless access network.
  • the wireless terminal device may also be referred to as a system, a Subscriber Unit, a Subscriber Station, a Mobile Station, a Mobile, a Remote Station, and an Access Point. , Remote Terminal, Access Terminal, User Terminal, User Agent, User Device, or User Equipment.
  • the session management function entity triggers the deactivation of the LADN session after determining that the UE leaves the area covered by the LADN, and determines, after deactivating the LADN session, based on the case that the UE re-enters the area covered by the LADN. Whether to release the LADN session, the LADN session established before the UE leaves the LADN-covered area is processed after the UE leaves the area covered by the LADN.
  • the embodiment of the present application provides a session processing method, as shown in FIG. 3, the method includes:
  • the session management function entity determines an area where the UE leaves the LADN coverage.
  • the session management function entity in S301 may determine, based on the indication information indicating the location of the UE, that the UE leaves the area covered by the LADN.
  • the session management function entity may receive indication information from the mobility management function entity indicating the location of the UE before S301.
  • the session management function entity in S301 can determine the area where the UE leaves the LADN coverage by the following two methods:
  • Method 1 In the case that the indication information includes the location information of the UE, the session management function entity determines whether the location indicated by the location information of the UE is located according to the location information of the UE and the information of the area covered by the LADN stored in the UE.
  • the pre-stored LADN covers the area indicated by the information within the area. If the location indicated by the location information of the UE is not located in the area indicated by the information of the area covered by the LADN pre-stored by the session management function entity, it indicates that the UE is not in the area covered by the LADN, so that the session management function entity may determine that the UE leaves the LADN. Covered area.
  • Method 2 In the case that the foregoing indication information includes information for indicating that the UE leaves the area covered by the LADN, the session management function entity directly determines, according to the indication information, the area that the UE leaves the LADN coverage. Before the mobility management function entity sends the information indicating the area where the UE leaves the LADN coverage to the session management function entity, the mobility management function entity acquires the location information of the UE, and according to the location information of the UE and the area covered by the LADN pre-stored by itself. The information is used to determine whether the location indicated by the location information of the UE is located in an area indicated by the information of the area covered by the LADN stored in advance.
  • the mobility management function entity may determine that the UE leaves the LADN. Covered area.
  • the mobility management function entity may obtain location information of the UE from the radio access network.
  • the information of the area covered by the LADN includes the cells of all the cells in the area covered by the LADN.
  • the location information of the UE includes the cell identifier of the cell where the UE is located, and/or the information of the area covered by the LADN includes all Tracking Area Identity (TAI) in the area covered by the LADN, and the location information of the UE includes the UE. TAI.
  • TAI Tracking Area Identity
  • the information of the area covered by the LADN includes the cell identifier of all the cells in the area covered by the LADN, and the location information of the UE includes the cell identity of the cell where the UE is located, and the session management function entity receives the cell of the UE from the mobility management function entity.
  • the cell identifier if the cell identifier of the cell where the UE is located does not exist in the cell identifier of all the cells in the area covered by the LADN, the cell where the UE is located is not the cell in the area covered by the LADN, and the session management function entity may determine that the UE leaves the LADN coverage. Area.
  • the session management function entity triggers deactivation of the LADN session.
  • a LADN session refers to a session for a UE to perform data transmission within an area covered by LADN. Since the LADN session is still active after the UE leaves the area covered by the LADN, and the LADN session can only be used for data transmission by the UE in the area covered by the LADN, it is necessary to prohibit the UE from continuing to pass the activated state after leaving the area covered by the LADN.
  • the LADN session performs data transfer.
  • the LADN session in the active state occupies the downlink tunnel resource and the air interface resource, the LADN session that is in the active state after the UE leaves the LADN-covered region will continue to occupy these resources, thereby causing waste of resources.
  • the session management function entity triggers the deactivation of the LADN session in the case that the UE leaves the area covered by the LADN, so as to prevent the UE from continuing to perform data through the LADN session in the activated state after leaving the area covered by the LADN.
  • the downlink tunnel resource and air interface resource occupied by the LADN session are released.
  • the method for the session management function entity to trigger the deactivation of the LADN session includes:
  • the session management function entity sends a message to the user plane function entity to indicate that the downlink tunnel resource occupied by the LADN session is released, and the user plane function entity releases the downlink tunnel resource occupied by the LADN session after receiving the message; or, the session management function entity
  • the mobile management function entity sends a message for instructing to release the air interface resource occupied by the LADN session, and the mobility management function entity forwards the message to the radio access network, and the radio access network interacts with the UE to release the air interface resource occupied by the LADN session.
  • the process of releasing the downlink tunnel resource and the air interface resource occupied by the LADN session may be referred to the prior art, and details are not described herein again.
  • the embodiment does not limit that the execution session management function entity sends a message to the user plane function entity for indicating the release of the downlink tunnel resource occupied by the LADN session, and the session management function entity sends the mobility management function entity to indicate that the LADN session occupation is released. The order of the messages of the air interface resources.
  • the session management function entity determines whether to release the LADN session according to the case that the UE re-enters the area covered by the LADN.
  • the session management function entity releases the LADN session, so that the LADN of the UE may not be released after the UE leaves the LADN-covered area for a long time. Session, the problem of wasted resources caused by long-term occupation of network resources by the LADN session.
  • the session management function entity determines not to release the LADN session, so that if the LADN session of the UE is released immediately after the UE leaves the area covered by the LADN, and the UE again
  • the problem of establishing a LADN session for the UE needs to be repeated in the area covered by the LADN. Repeating the establishment of the LADN session increases the signaling overhead.
  • a timer may be used to preset a preset duration, and then S303 is implemented, where the method includes:
  • the session management function entity determines that the UE leaves the area covered by the LADN
  • the session management function entity starts a timer whose preset duration is a preset duration, and starts detecting whether the UE enters the area covered by the LADN again. If it is detected that the UE enters the area covered by the LADN again when the timer does not time out, the session management function entity determines not to release the LADN session and turns off the timer; if the timer expires and still does not detect that the UE enters the area covered by the LADN again, then The session management function entity releases the LADN session.
  • the method for the session management function entity to detect whether the UE re-enters the area covered by the LADN the method for determining whether the UE leaves the area covered by the LADN is not described herein.
  • the session management function entity determines that the UE leaves the LADN coverage area and triggers the deactivation of the LADN session, if the session management function entity temporarily does not detect that the UE re-enters the LADN coverage area within the preset duration, and the preset duration is If there is no end, then the session management function entity cannot temporarily determine whether to release the LADN session. If the session management function entity receives a Service Request (SR) message from the UE, the SR message is used for the UE to request to pass. The LADN session performs data transmission. At this time, the LADN session is in the deactivated state, and the session management function entity does not detect that the UE re-enters the area covered by the LADN.
  • SR Service Request
  • the session management function entity sends a response message for indicating that the SR message request fails.
  • the SR message may be further used to indicate a location of the UE, so that the session management function entity may determine, according to the location of the UE indicated by the SR message, that the UE does not enter the area covered by the LADN again. For example, the preset duration is 5 minutes.
  • the session management function entity receives the SR message from the UE.
  • the session management function entity does not detect that the UE re-enters the area covered by the LADN, and the session management function entity sends the message to the UE.
  • the session management function entity determines not to release the LADN session, if the session management function entity receives an SR message from the UE for requesting data transmission through the LADN session, the session is deactivated because the LADN session is in a session.
  • the management function entity triggers the activation of the LADN session so that the UE can directly transmit data through the activated LADN session.
  • a session processing method provided by an embodiment of the present application is exemplified by the 5G system shown in FIG. 2 .
  • the process of performing RAN handover by the UE based on the Xn interface is combined with the process of processing the LADN session, where the Xn interface is an interface between the source RAN and the target RAN, which is provided by the embodiment of the present application.
  • the network element in the 5G system involved in a session processing method includes a source RAN, a target RAN, an AMF, an SMF, and a UPF.
  • the interaction process of each network element is as follows:
  • the target RAN sends an N2 message to the AMF.
  • the target RAN After the UE is switched from the source RAN to the target RAN, the target RAN sends an N2 message to the AMF, where the N2 message includes the location information of the UE and the N2 interface-based session management (SM) N2 information, where the SM N2 information includes the UE. N3 tunnel information for all active LADN sessions.
  • the N2 message includes the location information of the UE and the N2 interface-based session management (SM) N2 information, where the SM N2 information includes the UE.
  • SM N2 information includes the UE.
  • N3 tunnel information for all active LADN sessions for all active LADN sessions.
  • the AMF determines an area where the UE leaves the LADN coverage.
  • the AMF After receiving the N2 message sent by the target RAN, the AMF determines the area where the UE leaves the LADN according to the location information of the UE included in the N2 message and the information of the area covered by the LADN pre-stored by the AMF.
  • the AMF sends an update session request message to the SMF.
  • the update session request message sent by the AMF to the SMF includes information indicating that the UE leaves the area covered by the LADN.
  • the SMF determines that the UE leaves the area covered by the LADN, triggers deactivation of the LADN session, and starts a timer.
  • the SMF After receiving the update session request message sent by the AMF, the SMF directly determines the area where the UE leaves the LADN coverage according to the information included in the received update session request message for indicating that the UE leaves the area covered by the LADN. After the SMF determines that the UE leaves the area covered by the LADN, the SMF triggers the deactivation of the LADN session, and starts a timer whose preset duration is a preset duration, where the start time of the timer may be the time when the SMF determines that the UE leaves the area covered by the LADN.
  • the SMF triggers the deactivation of the LADN session, including releasing the air interface resource and the N3 tunnel resource of the LADN session.
  • the air interface resources for releasing the LADN session are implemented by performing the following four steps S405 to S408, by performing the following S409 to S410. Steps to implement the release of the N3 tunnel resource for the LADN session.
  • the SMF sends an update session response message to the AMF.
  • the update session response message sent by the SMF to the AMF includes an identifier for indicating a LADN session to deactivate the UE.
  • the AMF determines to release the air interface resource of the LADN session.
  • the AMF After receiving the update session response message sent by the SMF, the AMF determines the air interface resource occupied by the LADN session of the UE according to the identifier of the LADN session used to indicate the UE to be activated.
  • the AMF sends an N2 response message to the target RAN.
  • the AMF After the AMF determines to release the air interface resource occupied by the LADN session of the UE, it sends an N2 response message to the target RAN, where the N2 response message includes an identifier for indicating the LADN session for deactivating the UE.
  • the target RAN After the target RAN receives the N2 response message sent by the AMF, the target RAN releases the air interface resource occupied by the LADN session of the UE according to the identifier of the LADN session that is used to indicate that the UE is deactivated according to the N2 response message, and the target RAN passes the The UE performs an interaction to release the air interface resource occupied by the LADN session of the UE.
  • the SMF sends a message to the UPF to indicate that the N3 tunnel information of the LADN session is released.
  • the UPF releases the N3 tunnel information of the LADN session.
  • the UPF After receiving the message sent by the SMF to indicate the release of the N3 tunnel information of the LADN session, the UPF releases the N3 tunnel information of the LADN session, where the N3 interface is a user plane interface between the RAN and the UPF, and the N3 interface can be used for the RAN and the RAN. Signaling transmission between UPFs.
  • the sequence between the four steps S405 to S408 and the steps S409 to S410 are not limited, that is, the air interface resource for releasing the LADN session and the release LADN are not limited.
  • the SMF determines whether to release the LADN session according to the detected situation that the UE re-enters the area covered by the LADN within the timing duration of the timer.
  • S412 If the SMF detects that the UE enters the area covered by the LADN again within the timing of the timer, then S412 is performed. If the SMF does not detect that the UE enters the area covered by the LADN again within the timing of the timer, S413 is performed.
  • the SMF determines not to release the LADN session.
  • the SMF determines not to release the LADN session and turns off the timer.
  • the SMF releases the LADN session.
  • the SMF In the case that the timer expires, if the SMF still does not detect that the UE enters the area covered by the LADN again, the SMF releases the LADN session.
  • the SMF sends a message to the AMF to indicate that the LADN session is released.
  • the AMF After the AMF receives the message sent by the SMF to indicate the release of the LADN session, the AMF releases the LADN session according to the indication of the message.
  • the process of performing RAN handover by the UE based on the Xn interface is combined with the process of processing the LADN session.
  • the session processing method provided by the embodiment of the present application is related to the network in the 5G system.
  • the element includes a source RAN, a target RAN, an AMF, an SMF, and a UPF, and the interaction process of each network element is as shown in FIG. 5.
  • the interaction process shown in Figure 5 is similar to the interaction process shown in Figure 4. The similarities between the two are not repeated here. The main difference between the two is the following steps:
  • the AMF sends an update session request message including location information of the UE to the SMF.
  • the AMF After receiving the N2 message sent by the target RAN, the AMF obtains the location information of the UE included in the N2 message, and sends an update session request message to the SMF, where the update session request message includes the location information of the UE.
  • the SMF determines that the UE leaves the area covered by the LADN, triggers deactivation of the LADN session, and starts a timer.
  • the SMF After receiving the update session request message sent by the AMF, the SMF determines the area where the UE leaves the LADN coverage according to the location information of the UE included in the received update session request message and the information of the area covered by the LADN stored in advance. After the SMF determines that the UE leaves the area covered by the LADN, the SMF triggers the deactivation of the LADN session, and starts a timer whose preset duration is a preset duration, where the start time of the timer may be the time when the SMF determines that the UE leaves the area covered by the LADN.
  • steps S501, S503 to S514, and the like in the process of the interaction between the network elements shown in FIG. 5 refer to steps S401, S404 to S415, etc. in the interaction process between the network elements shown in FIG. The related descriptions are not repeated here.
  • the process of processing the LADN session by using the independent information exchange process in the 5G system shown in FIG. 2 is taken as an example.
  • the specific interaction process of each network element in the 5G system is shown in FIG. 6 .
  • the network element in the 5G system involved in the session processing method provided by the embodiment of the present application includes a source RAN, a target RAN, an AMF, an SMF, and an UPF.
  • the interaction process of each network element is as follows:
  • the AMF sends the location information of the UE to the SMF.
  • the AMF After the network establishes a LADN session for the UE, the AMF sends the location information of the UE to the SMF.
  • the SMF may request the AMF to report the location information of the UE to the SMF before the S601.
  • the SMF may also request the AMF to report the frequency, the number of times, and the like of the location information of the UE to the SMF.
  • the SMF may request the AMF to report the location of the UE only to the SMF.
  • the SMF may request the AMF to report the location information of the UE to the SMF every 1 second.
  • the SMF determines that the UE leaves the area covered by the LADN, triggers deactivation of the LADN session, and starts a timer.
  • the SMF After receiving the location information of the UE sent by the AMF, the SMF determines, according to the received location information of the UE and the information of the area covered by the LADN stored in advance, the area where the UE leaves the LADN.
  • the SMF After the SMF determines that the UE leaves the area covered by the LADN, the SMF triggers the deactivation of the LADN session and starts a timer whose preset duration is a preset duration. In the process of the SMF triggering the deactivation of the LADN session, the SMF sends a message to the AMF indicating to deactivate the LADN session of the UE, or the SMF sends a message to the UPF indicating the release of the N3 tunnel information of the LADN session.
  • the SMF triggers the deactivation of the LADN session, including releasing the air interface resource and the downlink tunnel resource of the LADN session.
  • the air interface resource and the downlink tunnel resource for releasing the LADN session are implemented by performing the following step S603.
  • the process of releasing the air interface resources of the LADN session by the AMF and the target RAN in S603 is similar to the four steps S405 to S408 in the interaction process shown in FIG. 4 above, and the process of releasing the downlink tunnel resource of the LADN session by the UPF is as shown in FIG. 4 above.
  • the two steps S409 to S410 are similar in the illustrated interaction process, and are not described here.
  • the five steps S410 to S608 in the interaction between the network elements shown in FIG. 6 are similar to the five steps S411 to S415 in the interaction between the network elements shown in FIG. 4 above. Let me repeat.
  • the process of processing the LADN session by using the independent information exchange process in the 5G system shown in FIG. 2 is an example.
  • the network element in the 5G system involved in the session processing method provided by the embodiment of the present application includes the source RAN and the target. RAN, AMF, SMF, UPF, etc., the interaction process of each network element is shown in Figure 7.
  • the interaction process shown in Figure 7 is similar to the interaction process shown in Figure 6. The similarities between the two are not repeated here.
  • the main difference between the two is the following two steps:
  • the AMF determines an area where the UE leaves the LADN coverage.
  • the AMF determines the area where the UE leaves the LADN coverage according to the location information of the UE and the information of the area covered by the LADN stored in advance.
  • the AMF sends, to the SMF, information used to indicate that the UE leaves the area covered by the LADN.
  • the SMF determines an area where the UE leaves the LADN coverage.
  • the SMF After receiving the information sent by the AMF to indicate that the UE leaves the LADN coverage area, the SMF directly determines, according to the information, the area where the UE leaves the LADN coverage.
  • the session management function entity triggers the deactivation of the LADN session after determining that the UE leaves the area covered by the LADN, and Determining whether to release the LADN session according to the case that the UE re-enters the area covered by the LADN within the preset duration, realizes processing the LADN session established before the UE leaves the LADN-covered area after the UE leaves the area covered by the LADN. Therefore, the technical solution provided by the embodiment of the present application can reasonably utilize the network resources occupied by the LADN session, and improve the utilization of network resources.
  • the embodiment of the present application further provides a session management function entity, and the session management function entity can implement the method provided by the embodiment corresponding to FIG.
  • the session management function entity includes: a processing unit 801 and a transceiver unit 802, where
  • the processing unit 801 is configured to determine an area where the user equipment UE leaves the local area data network LADN;
  • the transceiver unit 802 is configured to trigger a deactivation of the LADN session, where the LADN session refers to a session for the UE to perform data transmission in an area covered by the LADN;
  • the processing unit 801 is further configured to determine whether to release the LADN session according to the case that the UE re-enters the area covered by the LADN within the preset duration.
  • the processing unit 801 determines whether to release the LADN session according to the case that the UE re-enters the area covered by the LADN within the preset duration, and is specifically used to: if the UE does not enter the area covered by the LADN again within the preset duration, The LADN session is released.
  • the processing unit 801 determines, according to the case that the UE re-enters the area covered by the LADN, whether the LADN session is released, and is used to: if the UE enters the LADN coverage area again within the preset duration, Make sure not to release the LADN session.
  • the processing unit 801 is further configured to: after receiving the LADN session, if the service request SR message from the UE for requesting data transmission through the LADN session is received by the transceiver unit 802, triggering by the transceiver unit 802 Activate the LADN session.
  • the transceiver unit 802 is further configured to: after receiving the deactivated LADN session, and before the processing unit 801 determines whether to release the LADN session, if receiving a service request SR from the UE for requesting data transmission through the LADN session The message is sent to the UE to indicate a response message that the SR message request failed.
  • the processing unit 801 is specifically configured to:
  • the indication information from the mobility management function entity is received by the transceiver unit 802, the indication information is used to indicate the location of the UE; and the area where the UE leaves the LADN coverage is determined based on the indication information.
  • the indication information may include the location information of the UE.
  • the processing unit 801 determines, according to the indication information, that the UE leaves the area covered by the LADN, specifically:
  • the location indicated by the location information of the UE is not within the area indicated by the information of the area covered by the LADN pre-stored by the session management function entity, it is determined that the UE leaves the area covered by the LADN.
  • the indication information may include information indicating an area where the UE leaves the LADN coverage; where the indication information includes information indicating an area where the UE leaves the LADN coverage, the processing unit 801 determines, according to the indication information, that the UE leaves the LADN coverage.
  • the area is specifically used for:
  • the area where the UE leaves the LADN coverage is determined according to the information included in the indication information for indicating that the UE leaves the area covered by the LADN.
  • the location information of the UE includes the cell identifier of the cell where the UE is located, and the information of the area covered by the LADN includes the cell identifier of all the cells in the area covered by the LADN; or the location information of the UE includes the tracking area identifier TAI of the UE, and the LADN is covered.
  • the information for the area includes all TAIs within the area covered by the LADN.
  • the method is specifically configured to: send a message to the user plane function entity to indicate that the LADN session is released, or send a message to the mobility management function entity to indicate that the LADN session is released.
  • the message of the air interface resource is specifically configured to: send a message to the user plane function entity to indicate that the LADN session is released, or send a message to the mobility management function entity to indicate that the LADN session is released. The message of the air interface resource.
  • the division of the unit in the embodiment of the present application is schematic, and is only a logical function division. In actual implementation, there may be another division manner.
  • the functional units in the embodiments 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 a 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 U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and the like, which can store program codes. .
  • the embodiment of the present application further provides a session management function entity, which uses the method provided by the embodiment corresponding to FIG. 3, and may be the same device as the session management function entity shown in FIG. .
  • the session management function entity includes a processor 901, a transceiver 902, a bus 903, and a memory 904, where:
  • the processor 901 is configured to read a program in the memory 903 and perform the following process:
  • the LADN session refers to the session for the UE to perform data transmission in the area covered by the LADN; and enters the LADN coverage again according to the UE within the preset duration The situation in the area to determine whether to release the LADN session;
  • the transceiver 902 is configured to receive and transmit data under the control of the processor 901.
  • the processor 901 determines whether to release the LADN session, the processor 901 is specifically configured to: if the UE does not enter the area covered by the LADN again within the preset duration, release the LADN session.
  • the method is specifically configured to: if the UE enters the LADN coverage area again within the preset duration, determine that the LADN session is not released.
  • the processor 901 is further configured to: after receiving the SR message for requesting data transmission through the LADN session by the transceiver 902 after determining to not release the LADN session, triggering the activation of the LADN session.
  • the processor 901 is further configured to: after receiving the LADN session by the transceiver 902, and before determining whether to release the LADN session, if the transceiver 902 receives the data transmission from the UE for requesting the LADN session.
  • the SR message is sent to the UE through the transceiver 902 to send a response message indicating that the SR message request failed.
  • the processor 901 determines that the user equipment UE leaves the area covered by the local area data network LADN, the processor 901 is specifically configured to:
  • the indication information from the mobility management function entity is received by the transceiver 902, the indication information is used to indicate the location of the UE; and the area where the UE leaves the LADN coverage is determined based on the indication information.
  • the indication information may include the location information of the UE. If the indication information includes the location information of the UE, the processor 901 determines, according to the indication information, that the UE leaves the area covered by the LADN, specifically:
  • the location indicated by the location information of the UE is not within the area indicated by the information of the area covered by the LADN pre-stored by the session management function entity, it is determined that the UE leaves the area covered by the LADN.
  • the indication information may include information for indicating that the UE leaves the area covered by the LADN; in case the indication information includes information for indicating that the UE leaves the area covered by the LADN, the processor 901 determines that the UE leaves the LADN coverage based on the indication information.
  • the area is specifically used for:
  • the area where the UE leaves the LADN coverage is determined according to the information included in the indication information for indicating that the UE leaves the area covered by the LADN.
  • the location information of the UE includes the cell identifier of the cell where the UE is located, and the information of the area covered by the LADN includes the cell identifier of all the cells in the area covered by the LADN; or the location information of the UE includes the tracking area identifier of the UE, and the LADN is covered by the LADN.
  • the information for the area includes all TAIs within the area covered by the LADN.
  • processor 901 triggers the deactivation of the LADN session by the transceiver 902, specifically:
  • a message for instructing to release the downlink tunnel resource of the LADN session is sent by the transceiver 902 to the user plane function entity; or a message for indicating the release of the air interface resource of the LADN session is sent to the mobility management function entity by the transceiver 902.
  • the processor 901, the transceiver 902, and the memory 904 are connected to each other through a bus 903.
  • the bus 903 may be a peripheral component interconnect (PCI) bus or an extended industry standard architecture (EISA) bus.
  • PCI peripheral component interconnect
  • EISA extended industry standard architecture
  • the bus can be divided into an address bus, a data bus, a control bus, and the like.
  • the bus architecture may include any number of interconnected buses and bridges, specifically linked by one or more processors represented by processor 901 and various circuits of memory represented by memory 904.
  • the bus architecture can also link various other circuits such as peripherals, voltage regulators, and power management circuits, which are well known in the art and, therefore, will not be further described herein.
  • the bus interface provides an interface.
  • Transceiver 902 can be a plurality of components, including a transmitter and a transceiver, providing means for communicating with various other devices on a transmission medium.
  • the processor 901 is responsible for managing the bus architecture and general processing, and the memory 904 can store data used by the processor 901 in performing operations.
  • the processor 901 can be a central processing unit, an application specific integrated circuit (ASIC), a field-programmable gate array (FPGA), or a complex programmable logic device (Complex Programmable Logic Device). , CPLD).
  • ASIC application specific integrated circuit
  • FPGA field-programmable gate array
  • CPLD complex programmable logic device
  • the embodiment of the present application further provides a session processing system.
  • the architecture of the system may be the same as that of the session processing system described above.
  • the mobile management function entity 1001 and the session management function entity 1002 are included.
  • the system works as follows:
  • the session management function entity 1002 sends an event subscription request to the mobility management function entity 1001, which may include the area where the UE leaves the LADN coverage.
  • the mobility management function entity 1001 After receiving the event subscription request sent by the session management function entity 1002, the mobility management function entity 1001, after determining that the UE leaves the area covered by the LADN, sends a first notification message to the session management function entity 1002 for notifying the UE to leave the area covered by the LADN;
  • the session management function entity 1002 may trigger a first session operation according to the first notification message, where the first session operation includes deactivating a LADN session or releasing a LADN session.
  • the session management function entity 1002 can trigger the deactivation of the LADN session according to the first notification message, which helps release the UE after leaving the area covered by the LADN.
  • the downlink tunnel resource and the air interface resource occupied by the LADN session improve the utilization of network resources.
  • the session management function entity 1002 may also release the LADN session according to the first notification message, so that the LADN session of the UE may be retained after the UE leaves the LADN-covered area. The problem of wasted resources.
  • the session management function entity 1002 may further activate the LADN session according to the first notification message, and determine, according to the situation that the UE re-enters the area covered by the LADN within the preset time period. Whether to release the LADN session.
  • the mobility management function entity 1001 may determine, according to the location information of the UE and the information of the area covered by the LADN stored in advance, the area where the UE leaves the LADN.
  • the event in the event subscription request may further include the UE re-entering the area covered by the LADN.
  • the mobile management function entity 1001 receives the event subscription request sent by the session management function entity 1002, if the event in the event subscription request includes the UE re-entering the area covered by the LADN, the mobility management function entity 1001 determines that the UE enters the LADN again. The covered area sends a second notification message to the session management function entity 1002 for informing the UE to re-enter the area covered by the LADN.
  • the session management function entity 1002 After receiving the second notification message from the mobility management function entity 1001, the session management function entity 1002 triggers a second session operation including activating a LADN session or triggering establishment of a LADN session between the UE and the LADN.
  • the mobility management function entity 1001 may also determine, according to the location information of the UE and the information of the area covered by the LADN stored in advance, the UE enters the area covered by the LADN.
  • the embodiment of the present application further provides a session processing method, as shown in FIG. 11, the method includes:
  • S1101 The session management function entity sends an event subscription request to the mobility management function entity.
  • the event in the event subscription request may include an area where the UE leaves the LADN coverage.
  • the event subscription request is used to instruct the mobility management function entity to notify the session management function entity that the UE leaves the area covered by the LADN after determining that the UE leaves the area covered by the LADN. event.
  • the event in the event subscription request may further include the area where the UE enters the LADN coverage, where it may be understood that the event further includes the UE entering the area covered by the LADN again after leaving the area covered by the LADN.
  • the event subscription request includes, but is not limited to, the identifier of the UE and the identifier of the LADN, and the identifier of the LADN may be a Local Data Network (NTO) (Local DNN).
  • NTO Local Data Network
  • the session management function entity may send the message to the mobility management function entity.
  • An event subscription request is implemented, and may be implemented by separately sending two event subscription requests to the mobility management function entity at different times, which is not limited in this embodiment.
  • the session management function entity sends an event subscription request for notifying the UE of the notification of the event that the UE leaves the area covered by the LADN to the mobility management function entity, where the mobility management function entity determines that the UE leaves the LAND coverage area.
  • the session management function entity receives the first notification message and sends an event subscription request to the mobility management function entity for notifying the notification of the event that the UE enters the area covered by the LADN.
  • the mobility management function entity may obtain the identifier of the UE and the identifier of the LADN included in the event subscription request, and then determine whether the UE indicated by the identifier of the UE is leaving. The area covered by the LADN indicated by the LADN's identity. If the mobility management function entity determines that the UE leaves the area covered by the LADN, the mobility management function entity may send a first notification message to the session management function entity for notifying the UE to leave the area covered by the LADN.
  • the mobility management function entity in S1102 may determine, according to the location information of the UE and the information of the area covered by the LADN, the area where the UE leaves the LADN coverage, the method for determining that the UE leaves the area covered by the LADN, and the session management function entity in S301 above determines whether the UE leaves the LADN.
  • the method of the coverage area is the same. For the specific method, refer to the method for determining whether the UE leaves the area covered by the LADN in the S301, and the details are not described herein.
  • the session management function entity triggers the first session operation according to the first notification message.
  • a LADN session refers to a session for a UE to perform data transmission within an area covered by LADN. Since the LADN session is still active after the UE leaves the area covered by the LADN, and the LADN session can only be used for data transmission by the UE in the area covered by the LADN, it is necessary to prohibit the UE from continuing to pass the activated state after leaving the area covered by the LADN. The LADN session performs data transfer. In addition, since the active LADN session occupies network resources, the LADN session that is active after the UE leaves the LADN-covered area will continue to occupy network resources and cause network resources to be wasted.
  • the session management function entity may determine that the UE leaves the LADN-covered area according to the first notification message.
  • the first session operation is triggered to prevent the UE from continuing to transmit data through the LADN session in the active state after leaving the area covered by the LADN, releasing the network resources occupied by the LADN session, and improving the utilization of network resources.
  • the first session operation in the S1103 includes releasing the LADN session or deactivating the LADN session.
  • the session management function entity releases the LADN session, including two cases. The following includes several cases including the first session operation:
  • Case 1 In the case that the first session operation includes deactivating the LADN session, the session management function entity may send a message to the user plane function entity to indicate that the downlink tunnel resource occupied by the LADN session is released, and the user plane function entity receives the message.
  • the downlink tunnel resource occupied by the LADN session is released; or the session management function entity may send a message to the mobility management function entity to indicate that the air interface resource occupied by the LADN session is released, and the mobility management function entity forwards the message to the radio access network.
  • the radio access network interacts with the UE to release the air interface resources occupied by the LADN session.
  • the method for the session management function entity to trigger the deactivation of the LADN session is similar to the method for the session management function entity to trigger the deactivation of the LADN session in S302.
  • the session management function entity triggers the deactivation of the LADN session.
  • Case 2 In the case that the first session operation includes releasing the LADN session, the session management function entity releases the LADN session according to the first notification message, specifically: the session management function entity may directly release the LADN session according to the first notification message.
  • Case 3 In the case that the foregoing first session operation includes releasing the LADN session, the session management function entity releases the LADN session according to the first notification message, specifically: the session management function entity triggers the deactivation of the LADN session according to the first notification message, and Determine whether to release the LADN session according to the case where the UE enters the area covered by the LADN again within the preset duration. If the session management function entity does not detect that the UE re-enters the area covered by the LADN within the preset time period, the session management function entity releases the LADN session.
  • the following is a method for determining, in the third case, the session management function entity in the case of the preset time, whether the UE enters the area covered by the LADN again.
  • Method 1 In the event that the event in the event subscription request sent by the session management function entity to the mobility management function entity includes the UE entering the area covered by the LADN, the session management function entity may determine, according to the second notification message from the mobility management function entity, Whether the UE enters the area covered by the LADN again within the preset duration.
  • the second notification message is used to notify the UE to enter the area covered by the LADN. Specifically, if the session management function entity receives the second notification message from the mobility management function entity within the preset duration, the UE re-enters the area covered by the LADN, so that the session management function entity may determine according to the second notification message.
  • the LADN session is released; if the session management function entity does not receive the second notification message from the mobility management function entity within the preset duration, the UE does not enter the LADN coverage area again within the preset duration, so that the session management function entity can Release the LADN session.
  • Method 2 The session management function entity determines, according to the location information of the UE and the information of the area covered by the LADN stored in advance, whether the UE enters the area covered by the LADN again within the preset time period.
  • the session management function entity determines whether to release the LADN session according to the case that the UE re-enters the area covered by the LADN within the preset duration, and the session management function entity in S303 determines whether to release the LADN.
  • the method of the session is similar. For details, refer to the method in which the session management function entity determines whether to release the LADN session in S303, and details are not described herein again.
  • the timer can be used to preset the preset duration.
  • the session management function entity may send a request for canceling the subscription event to the mobility management function entity.
  • the session management function entity may send a request to the mobility management function entity to unsubscribe from such an event.
  • the session management function entity may send a request for canceling the subscription of the two events to the mobility management function entity, or may The mobility management function entity sends a request to unsubscribe from either of these two events.
  • the mobility management function entity determines that the UE enters the LADN coverage area again. Then sending a second notification message to the session management function entity.
  • the session management function entity may determine that the UE re-enters the area covered by the LADN according to the second notification message, the session management function entity may trigger a second session operation, where The second session operation includes activating a LADN session or triggering a LADN session between the UE and the LADN.
  • Case 1 In the case that the session management function entity triggers the deactivation of the LADN session according to the first notification message, and the session management function entity determines, according to the second notification message, that the UE re-enters the area covered by the LADN, if the session management function entity receives the UE from the UE The SR message for requesting data transmission through the LADN session. Since the LADN session is in a deactivated state at this time, the session management function entity may activate the LADN session activated by the session management function entity according to the first notification message. So that the UE can directly transmit data through the activated LADN session.
  • Case 2 In the case that the session management function entity releases the LADN session according to the first notification message, the session management function entity determines, after the UE re-enters the area covered by the LADN according to the second notification message, if the session management function entity receives the UE from the UE In the request to establish a LADN session to the LADN session, since the LADN session established by the UE before leaving the area covered by the LADN has been released, the session management function entity may trigger the establishment of the LADN session between the UE and the LADN, and The UE returns a response message indicating that the LADN session establishment between the UE and the LADN is successful, so that the UE can perform data transmission through the established LADN session.
  • a session processing method provided by an embodiment of the present application is exemplified by the 5G system shown in FIG. 2 .
  • the process of processing the LADN session by using the independent information interaction process in the 5G system shown in FIG. 2 is as follows.
  • the first session operation triggered by the session management function entity in the process is to deactivate the LADN session.
  • the network element in the 5G system involved in the session processing method of the embodiment of the present application includes a source RAN, a target RAN, an AMF, an SMF, and a UPF.
  • the interaction process of each network element is as follows:
  • S1201 The SMF sends an event subscription request to the AMF.
  • the AMF After the network establishes a LADN session for the UE, the AMF sends an event subscription request to the SMF, the event including the area where the UE leaves the LADN coverage.
  • the event may further include the UE entering an area covered by the LADN.
  • the target RAN sends the location information of the UE to the AMF.
  • the target RAN After the UE switches from the source RAN to the target RAN, the target RAN sends the location information of the UE to the AMF.
  • the AMF determines an area where the UE leaves the LADN coverage.
  • the AMF sends a first notification message to the SMF.
  • the first notification message sent by the AMF to the SMF may be used to notify the UE to leave the area covered by the LADN.
  • the AMF in S1204 may also send an update session request message to the SMF, where the update session request message may include information for indicating that the UE leaves the area covered by the LADN.
  • the SMF triggers to deactivate the LADN session according to the first notification message.
  • the SMF triggers the deactivation of the LADN session, including releasing the air interface resource of the LADN session and the N3 tunnel resource.
  • the process of releasing the air interface resource of the LADN session by the AMF and the target RAN in S1205 is the same as the steps S405 to S408 in the interaction process shown in FIG. 4 above.
  • the process of releasing the downlink tunnel resource of the LADN session by the UPF is similar to the steps S409 to S410 in the interaction process shown in FIG. 4 above, and details are not described herein again.
  • the target RAN sends the location information of the UE to the AMF.
  • the AMF determines that the UE enters an area covered by the LADN.
  • the AMF sends a second notification message to the SMF.
  • the second notification message sent by the AMF to the SMF may be used to notify the UE to enter the area covered by the LADN.
  • the UE sends an SR message to the SMF.
  • the SR message sent by the UE to the SMF may be used to request the UE to perform data transmission through the LADN session.
  • SMF triggers activation of the LADN session that the SMF deactivates according to the first notification message.
  • the event in the event subscription request sent by the SMF to the AMF in S1201 includes the steps of performing S1206 to S1211 in the case that the UE enters the area covered by the LADN.
  • the process of processing the LADN session by using the independent information exchange process in the 5G system shown in FIG. 2 is an example.
  • the network element in the 5G system involved in the session processing method provided by the embodiment of the present application includes the source RAN and the target. RAN, AMF, SMF, UPF, etc., the interaction process of each network element is as shown in FIG. 13 , wherein the first session operation triggered by the session management function entity in the interaction process is to release the LADN session.
  • the interaction process shown in Figure 13 is similar to the interaction process shown in Figure 12. The similarities between the two are not repeated here. The main difference between the two is the following steps:
  • the SMF releases the LADN session according to the first notification message.
  • the SMF sends a request message for canceling the event subscription to the AMF. If the SMF sends a request message to the AMF for canceling the event that the UE enters the area covered by the LADN, the steps S1310 to S1312 are not performed.
  • the UE sends a message to the SMF for requesting to establish a LADN session between the LADNs.
  • the SMF establishes a LADN session between the UE and the LADN.
  • S1312 The SMF returns a response message to the UE.
  • the response message is used to indicate that the LADN session establishment between the UE and the LADN is successful.
  • the process of processing the LADN session by using the independent information interaction process in the 5G system shown in FIG. 2 is an example.
  • the first session operation triggered by the session management function entity in the interaction process is to release the LADN session, which is provided by the embodiment of the present application.
  • the network element in the 5G system involved in a session processing method includes a source RAN, a target RAN, an AMF, an SMF, and a UPF.
  • the interaction process of each network element is as shown in FIG. 14.
  • the interaction process shown in FIG. 14 is similar to the interaction process shown in FIG. 12 and FIG. 13, and the similarities between the interaction process shown in FIG. 14 and the two are not described again.
  • the interaction process shown in FIG. 14 is The main difference between the two is the following steps:
  • the SMF triggers deactivation of the LADN session according to the first notification message, and starts a timer.
  • the SMF triggers the deactivation of the LADN session according to the first notification message, and starts a timer whose preset duration is a preset duration.
  • the start time of the timer may be a time when the SMF determines, according to the first notification message, that the UE leaves the area covered by the LADN.
  • the SMF determines whether to release the LADN session according to the detected situation that the UE re-enters the area covered by the LADN within the timing duration of the timer.
  • S1411 If the SMF detects that the UE enters the area covered by the LADN again within the timing of the timer, S1411 is performed, and if the SMF does not detect that the UE enters the area covered by the LADN again within the timing of the timer, S1414 is performed.
  • SMF determines not to release the LADN session.
  • the SMF determines not to release the LADN session and turns off the timer.
  • steps S1412 to S1413 in the interaction process between the network elements shown in FIG. 14 refer to the related description of S1210 to S1211 in the interaction process between the network elements shown in FIG. No longer.
  • S1410 needs to be executed before S1411, and S1412 needs to be executed before S1413, but the sequence between the two steps S1210 and S1412 is not limited in this embodiment.
  • the order of execution of the steps S1410 to S1413 from first to last may be: S1412, S1410, S1111, S1413.
  • the SMF In the case of a timer timeout, if the SMF still does not receive the second notification message, the SMF releases the LADN session. Optionally, after the SMF releases the LADN session, the SMF sends a request message for canceling the event subscription to the AMF.
  • steps S1417 to S1422 in the interaction process between the network elements shown in FIG. 14 refer to the related descriptions of steps S1307 to S1312 in the interaction process between the network elements shown in FIG. I will not repeat them here.
  • the technical solution provided by the embodiment of the present application can reasonably utilize the network resources occupied by the LADN session, and improve the utilization of network resources.
  • the embodiment of the present application further provides a session management function entity, and the session management function entity can implement the method provided by the embodiment corresponding to FIG. 11 to FIG.
  • the session management function entity includes: a transceiver unit 1501 and a processing unit 1502, where
  • the transceiver unit 1501 is configured to send an event subscription request to the mobility management function entity, where the event includes the area where the user equipment UE leaves the local area data network LADN, and receives the first area from the mobility management function entity for notifying the UE to leave the LADN coverage area. Notification message
  • the processing unit 1502 is configured to trigger a first session operation according to the first notification message received by the transceiver unit 1501, where the first session operation includes releasing the LADN session or deactivating the LADN session, where the LADN session is used for the UE to perform in the LADN coverage area.
  • the session of data transfer includes releasing the LADN session or deactivating the LADN session, where the LADN session is used for the UE to perform in the LADN coverage area.
  • the processing unit 1502 is specifically configured to: if the first session operation includes releasing the LADN session, releasing the LADN session according to the first notification message; or if the first session operation includes releasing the LADN session, sending and receiving according to the first notification message.
  • the unit 1501 triggers the deactivation of the LADN session and determines whether to release the LADN session according to the case where the UE re-enters the area covered by the LADN within the preset duration.
  • the processing unit 1502 determines, during the preset duration, that the session management function entity determines whether to release the LADN session according to the case that the UE re-enters the area covered by the LADN, and is specifically used to: if the UE does not enter the LADN again within the preset duration The covered area releases the LADN session; or if the UE enters the LADN-covered area again within the preset duration, it is determined that the LADN session is not released.
  • the transceiver unit 1501 is further configured to: after the processing unit 1502 releases the LADN session, send a request for canceling the subscription event to the mobility management function entity.
  • the processing unit 1502 is specifically configured to: if the first session operation includes deactivating the LADN session, send, by the transceiver unit 1501, a message for instructing to release the downlink tunnel resource of the LADN session to the user plane function entity; or The session operation includes deactivating the LADN session, and then transmitting, by the transceiving unit 1501, a message for indicating the release of the air interface resource of the LADN session to the mobility management function entity.
  • the event further includes the UE entering an area covered by the LADN.
  • the transceiver unit 1501 is further configured to: after sending the event subscription request to the mobility management function entity, receive a second notification message from the mobility management function entity for informing the UE to enter the LADN coverage area; the processing unit 1502 further uses After the receiving unit 1501 receives the second notification message, triggering a second session operation according to the second notification message, the second session operation includes activating a LADN session or triggering establishment of a LADN session between the UE and the LADN.
  • the processing unit 1502 triggers the second session operation according to the second notification message, where, in the case that the first session operation includes deactivating the LADN session, if the request is received by the transceiver unit 1501 from the UE.
  • the service request SR message for data transmission of the LADN session is activated by the transceiver unit 1501 according to the second notification message to the LADN session deactivated by the session management function entity according to the first notification message.
  • the processing unit 1502 triggers the second session operation according to the second notification message, specifically:
  • the first session operation includes releasing the LADN session
  • the message from the UE for requesting establishment of the LADN session between the LADNs is received through the transceiver unit 1501
  • the establishment of the UE to the LADN is triggered according to the second notification message.
  • the embodiment of the present application further provides a session management function entity, which has the functions provided by the embodiments corresponding to FIG. 11 to FIG. 14 and implements the function of the session management function entity in the embodiment corresponding to FIG. 11 to FIG. .
  • the functions can be implemented in hardware.
  • the session management function entity may be the same device as the session management function entity shown in FIG. Referring to FIG. 16, the session management function entity includes: a processor 1601, a transceiver 1602, a bus 1603, and a memory 1604.
  • the processor 1601, the memory and the transceiver 1602 are connected by a bus, and the memory 1604 is configured to store a computer.
  • the processor 1601 instructing the instructions stored in the memory 1604, to perform the method provided by the embodiment corresponding to the foregoing FIGS. 11 to 14 to implement the function of the processing unit in the session management function entity shown in FIG. 15; 1602.
  • the processor 1601 For receiving data and/or transmitting data under the control of the processor 1601, to implement the function of the transceiver unit in the session management function entity shown in FIG.
  • the embodiment of the present application further provides a computer storage medium, where the software program stores a software program, and when the software program is read and executed by one or more processors, the session management function entity in the foregoing embodiment may be implemented. method.
  • the embodiment of the present application provides a computer program product including instructions, which when executed on a computer, enable the computer to execute the session processing method executed by the session management function entity in the above embodiment.
  • a computer program product including instructions, which when executed on a computer, enable the computer to execute the session processing method executed by the session management function entity in the above embodiment.
  • the present application can be provided as a method, system, or computer program product.
  • the present application can take the form of an entirely hardware embodiment, an entirely software embodiment, or an embodiment in combination of software and hardware.
  • the application can take the form of a computer program product embodied on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) including computer usable program code.
  • the computer program instructions can also be stored in a computer readable memory that can direct a computer or other programmable data processing device to operate in a particular manner, such that the instructions stored in the computer readable memory produce an article of manufacture comprising the instruction device.
  • the apparatus implements the functions specified in one or more blocks of a flow or a flow and/or block diagram of the flowchart.
  • These computer program instructions can also be loaded onto a computer or other programmable data processing device such that a series of operational steps are performed on a computer or other programmable device to produce computer-implemented processing for execution on a computer or other programmable device.
  • the instructions provide steps for implementing the functions specified in one or more of the flow or in a block or blocks of a flow diagram.

Landscapes

  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

L'invention concerne un procédé, un appareil et un système de traitement de session, permettant de traiter, après qu'un UE quitte une région couverte par un LADN, une session LADN établie avant l'UE a quitté la région couverte par le LADN. Le procédé comprend les étapes suivantes : une entité fonctionnelle de gestion de session détermine qu'un UE a quitté une région couverte par un LADN ; l'entité fonctionnelle de gestion de session déclenche la désactivation d'une session LADN, la session LADN étant une session pour que l'UE effectue une transmission de données dans la région couverte par le LADN ; et dans une durée prédéfinie, l'entité fonctionnelle de gestion de session détermine s'il faut libérer la session LADN en fonction de la condition de l'UE entrant de nouveau dans la région couverte par le LADN.
PCT/CN2018/089559 2017-06-08 2018-06-01 Système, appareil et procédé de traitement de session WO2018223900A1 (fr)

Priority Applications (5)

Application Number Priority Date Filing Date Title
KR1020197024033A KR102334963B1 (ko) 2017-06-08 2018-06-01 세션 처리 방법, 장치 및 시스템
EP18814410.9A EP3634080B1 (fr) 2017-06-08 2018-06-01 Système, appareil et procédé de traitement de session
JP2019539258A JP6835369B2 (ja) 2017-06-08 2018-06-01 セッション処理方法、装置、及びシステム
BR112019016891A BR112019016891A2 (pt) 2017-06-08 2018-06-01 método, aparelho e sistema de processamento de sessão
US16/706,466 US20200120752A1 (en) 2017-06-08 2019-12-06 Session processing method, apparatus, and system

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
CN201710428385 2017-06-08
CN201710428385.5 2017-06-08
CN201710459734.X 2017-06-16
CN201710459734.XA CN109246853A (zh) 2017-06-08 2017-06-16 一种会话处理方法、装置及系统

Related Child Applications (1)

Application Number Title Priority Date Filing Date
US16/706,466 Continuation US20200120752A1 (en) 2017-06-08 2019-12-06 Session processing method, apparatus, and system

Publications (1)

Publication Number Publication Date
WO2018223900A1 true WO2018223900A1 (fr) 2018-12-13

Family

ID=64566918

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2018/089559 WO2018223900A1 (fr) 2017-06-08 2018-06-01 Système, appareil et procédé de traitement de session

Country Status (1)

Country Link
WO (1) WO2018223900A1 (fr)

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101686563A (zh) * 2008-09-23 2010-03-31 三星电子株式会社 移动通信系统中资源释放的方法
US20170070892A1 (en) * 2015-09-07 2017-03-09 Electronics And Telecommunications Research Institute Mobile communication network system and method for composing network component configurations

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101686563A (zh) * 2008-09-23 2010-03-31 三星电子株式会社 移动通信系统中资源释放的方法
US20170070892A1 (en) * 2015-09-07 2017-03-09 Electronics And Telecommunications Research Institute Mobile communication network system and method for composing network component configurations

Non-Patent Citations (3)

* Cited by examiner, † Cited by third party
Title
"Technical Specification Group Services and System Aspects; System Architecture for the 5G System; Stage 2 (Release 15)", 3GPP TS 23.501, 1 May 2017 (2017-05-01), pages 1 - 145, XP055565011 *
QUALCOMM INCORPORATED ET AL.: "TS 23.501: PDU Sessions Handling for LADNs", SA WG2 MEETING #121 S 2-173110, 19 May 2017 (2017-05-19), pages 1 - 5, XP051281222 *
See also references of EP3634080A4 *

Similar Documents

Publication Publication Date Title
KR102378376B1 (ko) 위치 정보 보고 방법 및 디바이스
KR102334963B1 (ko) 세션 처리 방법, 장치 및 시스템
JP6910445B2 (ja) 通信方法、アクセスネットワークデバイス、及び端末
CN109819485B (zh) 一种通信方法、装置及系统
EP3740028A1 (fr) Procédé et dispositif d'établissement d'une session d'unité de données de protocole
CN113316223B (zh) 一种状态切换方法及装置
KR102708129B1 (ko) 보안 보호 모드 결정 방법 및 장치
WO2020156116A1 (fr) Procédé et appareil de mémorisation de contexte
CN109548109B (zh) 一种ue和网络状态不匹配的处理方法及装置、存储介质
WO2020248791A1 (fr) Procédé de radiomessagerie, dispositif, ainsi que support de stockage
US11224096B2 (en) Method and apparatus for configuring power consumption parameter
CN116156049A (zh) 一种消息传输方法和通信设备
CN110650489A (zh) 一种管理监控事件的方法及装置
WO2019095379A1 (fr) Procédé, dispositif, et support de stockage informatique pour l'activation et la désactivation d'un service
WO2019157716A1 (fr) Procédé de communication, dispositif de réseau et dispositif terminal
EP3841836B1 (fr) Méthode de communication et dispositif terminal correspondant
EP4316018A1 (fr) Différenciation de réception discontinue étendue pour nouvelle radio (nr)
WO2017185199A1 (fr) Procédé de fixation et appareil, procédé de pagination et dispositif
AU2017397594B2 (en) Connection release method and apparatus
KR20200033883A (ko) 통신 방법, 네트워크 기기 및 단말 기기
US20210250727A1 (en) Notification information presentation method and apparatus
WO2018223900A1 (fr) Système, appareil et procédé de traitement de session
WO2020034972A1 (fr) Procédé et dispositif de migration de session
WO2017214776A1 (fr) Procédé de communication, dispositif de réseau central, dispositif de réseau d'accès, dispositif de terminal et système de communication
US20230048805A1 (en) Method and apparatus for acquiring communication services

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 18814410

Country of ref document: EP

Kind code of ref document: A1

ENP Entry into the national phase

Ref document number: 2019539258

Country of ref document: JP

Kind code of ref document: A

ENP Entry into the national phase

Ref document number: 20197024033

Country of ref document: KR

Kind code of ref document: A

REG Reference to national code

Ref country code: BR

Ref legal event code: B01A

Ref document number: 112019016891

Country of ref document: BR

NENP Non-entry into the national phase

Ref country code: DE

ENP Entry into the national phase

Ref document number: 2018814410

Country of ref document: EP

Effective date: 20200103

ENP Entry into the national phase

Ref document number: 112019016891

Country of ref document: BR

Kind code of ref document: A2

Effective date: 20190814