Data transmission methods, devices, and network-side equipment

The data transmission method using paging and broadcast instructions between network nodes addresses low service continuity issues in wireless communication by managing RRC states, ensuring seamless data reception across cells.

JP7849371B2Active Publication Date: 2026-04-21VIVO MOBILE COMM CO LTD
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
VIVO MOBILE COMM CO LTD
Filing Date
2022-01-10
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

In wireless communication systems, terminals experience low service continuity when moving out of cells that do not provide certain services like multicast/broadcast services, leading to issues with Radio Resource Control (RRC) connection initiation due to unavailability of Multicast Control Channel (MCCH) notifications.

Method used

A data transmission method involving first and second network nodes, where the first node transmits paging, broadcast, or group paging instructions to the second node, ensuring service continuity by initiating or maintaining RRC connections.

Benefits of technology

Enhances service continuity by ensuring terminals can receive data even when moving out of cells without MCCH, by using paging and broadcast instructions to manage RRC states effectively.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present application discloses a data transmission method, an apparatus and a network side device, which belong to the wireless communication technical field, the method including: a first network node transmitting first data to a second network node, where the first data is at least one of a first paging indication, a broadcast indication and a group paging indication.
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Description

Technical Field

[0001] (Cross - reference to Related Applications) This invention claims the priority of a Chinese patent application filed with the Chinese Patent Office on January 11, 2021, with an application number of 202110033339.1 and titled "Data Transmission Method, Apparatus and Network - side Device", and the priority of a Chinese patent application filed with the Chinese Patent Office on March 19, 2021, with an application number of 202110296646.9 and titled "Data Transmission Method, Apparatus and Network - side Device", and all the contents of the above two applications are incorporated into this invention by reference.

[0002] This application belongs to the field of wireless communication technology, and specifically relates to a data transmission method, apparatus and network - side device.

Background Art

[0003] In a wireless communication system, when a user equipment (UE) stays in a cell that does not provide a certain service (such as a multicast / broadcast service (MBS), etc.) while moving, there may be a problem of low service continuity.

[0004] For example, in New Radio (NR) MBS, for a Quality of Service (QoS) MBS service, the UE must receive this MBS service while connected. If the data for this MBS service is temporarily unavailable, the corresponding N3 and Radio Access Network (RAN) resources may be suspended, and the UE may be released into a non-RRC connected state. Considering that a terminal in a non-RRC connected state may move to a conventional base station (i.e., an unenhanced base station without a Multicast Control Channel (MCCH) notification mechanism), if the MBS data arrives and is restored, the UE, unaware that the MBS service has already been restored, cannot initiate a Radio Resource Control (RRC) connection and enter an RRC connected state to receive the data. [Overview of the project] [Problems that the invention aims to solve]

[0005] The embodiments of this application provide a data transmission method, apparatus, and network-side equipment that can solve the problem of low service continuity that may occur when a terminal resides in a cell that does not provide a certain service. [Means for solving the problem]

[0006] According to a first embodiment, a data transmission method is provided which is performed by a first network node, the method comprising transmitting first data to a second network node, wherein the first data is at least one of a first paging instruction, a broadcast instruction, and a group paging instruction.

[0007] According to a second aspect, a data transmission method is provided which is performed by a second network node, the method comprising receiving first data transmitted by a first network node, wherein the first data is at least one of a first paging instruction, a broadcast instruction, and a group paging instruction.

[0008] In a third embodiment, a data transmission device is provided, the device including a transmission module for transmitting first data to a second network node, wherein the first data is at least one of a first paging instruction, a broadcast instruction, and a group paging instruction.

[0009] In a fourth aspect, a data transmission device is provided, the device including a receiving module for receiving first data transmitted by a first network node, wherein the first data is at least one of a first paging instruction, a broadcast instruction, and a group paging instruction.

[0010] According to the fifth aspect, a network-side device is provided, which includes a processor, memory, and a program or instruction stored in the memory and operable on the processor, and when the program or instruction is executed by the processor, a step of the method according to the first or second aspect is realized.

[0011] According to the sixth aspect, a readable storage medium is provided on which a program or instruction is stored, and when the program or instruction is executed by a processor, a step of the method according to the first aspect is realized, or a step of the method according to the second aspect is realized.

[0012] According to the seventh aspect, a chip is provided, the chip comprising a processor and a communication interface, the communication interface being coupled with the processor, the processor running programs or instructions for network-side equipment, and used to implement the method according to the first aspect or the method according to the second aspect.

[0013] According to the eighth aspect, a computer program product is provided, which is stored in memory, and which is executed by a processor to realize a step of the method according to the first aspect or the method according to the second aspect. [Effects of the Invention]

[0014] In the embodiments of this application, the first network node transmits first data to the second network node, wherein the first data is at least one of a first paging instruction, a broadcast instruction, and a group paging instruction, thereby solving the problem of low service continuity that may occur when a terminal resides in a cell that does not provide a certain service. [Brief explanation of the drawing]

[0015] [Figure 1] This is a schematic diagram of the structure of a wireless communication system according to one exemplary embodiment of this application. [Figure 2] This is a flowchart of a data transmission method according to one exemplary embodiment of this application. [Figure 3] This is a flowchart of a data transmission method according to another exemplary embodiment of the present application. [Figure 4] This is a flowchart of a data transmission method according to another exemplary embodiment of the present application. [Figure 5] This is a flowchart of a data transmission method according to another exemplary embodiment of the present application. [Figure 6]This is a schematic diagram of the block structure of a data transmission device according to one exemplary embodiment of this application. [Figure 7a] This is a schematic diagram of the block structure of a data transmission device according to another exemplary embodiment of this application. [Figure 7b] This is a schematic diagram of the block structure of a data transmission device according to another exemplary embodiment of this application. [Figure 8] This is a schematic diagram of the block structure of network-side equipment according to another exemplary embodiment of this application. [Modes for carrying out the invention]

[0016] The following clearly describes the technical concepts in the embodiments of this application, linking them to the drawings of the embodiments. Clearly, the embodiments described are only some, not all, embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application are all within the scope of protection of this application.

[0017] The terms "first," "second," etc., used in the specification and claims of this application are intended to distinguish similar subjects and not to describe a specific order or sequence. It should be understood that the data used in this manner are interchangeable where appropriate, so that the embodiments of this application can be carried out in an order other than those illustrated or described herein, and the subjects distinguished by "first" and "second" are generally of the same kind and do not limit the number of subjects; for example, the first subject may be one or more. Furthermore, "and / or" in the specification and claims indicates at least one of the connected subjects, and the letter " / " generally indicates that the preceding and succeeding related subjects are in an "or" relationship.

[0018] It should be noted that the technology described in the embodiments of this application is not limited to the Long Term Evolution (LTE) / LTE-Advanced (LTE-A) system, but can also be applied to other wireless communication systems, such as Code Division Multiple Access (CDMA), Time Division Multiple Access (TDMA), Frequency Division Multiple Access (FDMA), Orthogonal Frequency Division Multiple Access (OFDMA), Single-carrier Frequency-Division Multiple Access (SC-FDMA), and other systems. The terms "system" and "network" in the embodiments of this application are always used interchangeably, and the described technology may be used in the systems and radio technologies mentioned above, or in other systems and radio technologies. However, the following description describes the New Radio (NR) system for illustrative purposes and uses NR terms in most of the following descriptions. These technologies may also be applied to applications other than NR system applications, such as the 6th Generation (6G) communication system.

[0019] Figure 1 is a schematic diagram of the structure of an applicable wireless communication system according to an embodiment of this application. The wireless communication system includes a terminal 11 and a network-side device 12. Here, the terminal 11 may also be called a terminal device or user terminal, and the terminal 11 may be a terminal-side device such as a mobile phone, tablet personal computer, laptop computer (or notebook computer), personal digital assistant (PDA), palmtop computer, netbook, ultra-mobile personal computer (UMPC), mobile internet device (MID), wearable device, or in-vehicle device (VUE), or pedestrian terminal (PUE), and wearable devices include bracelets, earphones, glasses, etc. It should be noted that the embodiment of this application does not limit the specific type of terminal 11. The network-side equipment 12 may be a base station or a core network (CN), where a base station may also be called a node B, an evolved node B, an access point, a base transceiver station (BTS), a radio base station, a radio transceiver, a basic service set (BSS), an extended service set (ESS), a B node, an evolved B node (eNB), a home B node, a home evolved B node, a WLAN access point, a WiFi node, a transmission and reception point (TRP), or any other appropriate term in the art, as long as the same technical effect is achieved. The base station is not limited to any particular technical term, and for the purposes of this explanation, only a base station in an NR system is used as an example in the embodiments of this application, but this does not limit the specific type of base station.

[0020] In the following, with reference to the drawings, the technical solution according to the embodiments of the present application will be described in detail by way of specific embodiments and their application scenarios. It should be noted that the data transmission method provided by the embodiments of the present application is used in Multimedia Broadcast and Multicast Service (MBMS) services, MBS services, etc., but is not limited thereto, and can be specifically determined according to actual communication requirements. For the sake of easy description, in the following parts, the data transmission method provided by the embodiments will be introduced in MBMS services and MBS services.

[0021] As shown in FIG. 2, FIG. 2 is a flowchart of a data transmission method 200 according to an exemplary embodiment of the present application. This method 200 may be executed by a first network node, for example, by software and / or hardware installed in the first network node. The method 200 includes at least the following steps.

[0022] In S210, a first data is transmitted to a second network node.

[0023] Here, the first data transmitted by the first network node by the second network node may be at least one of the following (1)-(3).

[0024] (1) A first paging instruction for instructing the second network node to transmit a second paging instruction to the terminal. In this embodiment, the first paging instruction may be a RAN paging message, for example, a RAN paging message of the XN port, or a CN paging message of the NG port, etc.

[0025] (2) A broadcast instruction to instruct the second network node to notify the terminal to send a broadcast message. In this embodiment, the broadcast message may be a system message related to the MBS service and / or a signaling message transmitted by a control channel (e.g., MCCH) related to the MBS service.

[0026] (3) A group paging instruction, in this embodiment using NR MBS as an example, which may be used to specify an MBS service identifier (e.g., a Temporary Mobile Group Identity (TMGI)), but not to specify a terminal identifier.

[0027] In this embodiment, the first network node transmits the first data to the second network node, causing the second network node to transmit the second data to the terminal. This ensures the continuity of the data service by either initiating an RRC connection and entering an RRC connection state to receive data, or notifying the terminal to continue receiving data in a non-RRC connection state.

[0028] Here, if the first data is a first paging instruction and a broadcast instruction, the transmission process for the first data may be as follows:

[0029] In one embodiment, the first network node may transmit the first paging instruction and the broadcast instruction separately in two messages. For example, the first network node may first transmit a message corresponding to the first paging instruction and then transmit a message corresponding to the broadcast instruction, or, for example, the first network node may first transmit a message corresponding to the broadcast instruction and then transmit a message corresponding to the first paging instruction.

[0030] In another embodiment, the first network node may transmit the paging instruction and the broadcast instruction simultaneously in a single message. For example, the first network node may transmit the first paging instruction after adding the broadcast instruction to the first paging instruction to enhance it, or it may define a new message and further add the first paging instruction and the broadcast instruction to the message before transmitting the message.

[0031] Accordingly, based on the difference in how the first network node transmits the first data, the second network node may receive the first paging instruction and the broadcast instruction separately in two messages, or it may receive the paging instruction and the broadcast instruction simultaneously in a single message.

[0032] It should be understood that if the first data is a first paging instruction and a group paging instruction, or if the first data is a broadcast instruction, a first paging instruction and a group paging instruction, or if the first data is a group paging instruction, the transmission method by which the first network node transmits the first data may refer to the above description, and may, for example, be transmitted in multiple messages or in a single message, and is not limited thereto.

[0033] In the embodiments of this application, the first network node transmits first data to the second network node, wherein the first data is at least one of a first paging instruction, a broadcast instruction, and a group paging instruction, thereby solving the problem of low service continuity that may occur when a terminal resides in a cell that does not provide a certain service.

[0034] As shown in Figure 3, Figure 3 is a flowchart of a data transmission method 300 according to one exemplary embodiment of the present application, the method 300 may be performed by a first network node, for example, by software and / or hardware installed on the first network node, and the method 300 includes at least the following steps.

[0035] In S310, the first data is sent to the second network node.

[0036] Here, the implementation process of S310 can be described by referring to the relevant description in Method 200, but in one possible embodiment, the first network node may include a first base station and / or core network function. The core network function may include, but is not limited to, at least one of the following: Access and Mobility Management Function (AMF), Session Management Function (SMF), MB-SMF, User Plane Function (UPF), MB-UPF, etc.

[0037] The second network node is at least one of the following (1)-(11):

[0038] (1) A second base station located within the RNA. Here, the RNA may be understood as a RAN-based notification area. In this embodiment, the RNA may be determined based on a terminal identifier, but is not limited thereto. For example, taking the first data as a group paging instruction, the first network node obtains the terminal identifier of the terminal and decides to send a group paging instruction in the terminal's RNA based on this terminal identifier.

[0039] (2) A second base station located within a Registration Area (RA). In this embodiment, the Registration Area may, but is not limited to, be determined based on a terminal identifier. For example, taking the first data as a group paging instruction, the first network node obtains the terminal identifier of the terminal and decides to send a group paging instruction in the terminal's RA based on this terminal identifier.

[0040] (3) A second base station located within the service area. Here, the service area may be the service area of ​​an MBS service, etc., and this embodiment is not limited thereto.

[0041] (4) A base station in the tracking area determined based on the terminal identifier. For example, the first network node obtains the terminal identifier and decides to send a group paging instruction in the terminal's tracking area based on this terminal identifier.

[0042] (5) The base station to which the previous serving cell belongs, determined based on the terminal identifier. For example, taking the first data as a group paging instruction, the first network node obtains the UE identifier and uses this terminal identifier to determine the base station to which the previous serving cell belongs, to which it sends the group paging instruction to the terminal. To make it clear, the previous serving cell may refer to an NG-RAN node that provides services to the terminal when the terminal releases its uplink and downlink.

[0043] (6) The base station to which the adjacent cell of the previous serving cell belongs, as determined based on the terminal identifier. For example, taking the first data as a group paging instruction, the first network node obtains the terminal identifier and uses this terminal identifier to determine the base station to which the adjacent cell of the previous serving cell to which the group paging instruction to be sent to the terminal belongs.

[0044] (7) The adjacent base station to the base station to which the previous serving cell belongs, determined based on the terminal identifier. For example, taking the first data as a group paging instruction, the first network node obtains the terminal identifier and uses this terminal identifier to determine the adjacent base station to which the previous serving cell belongs, to which the group paging instruction is sent to the terminal.

[0045] (8) The base station to which the recommended cell, determined based on the terminal identifier, belongs. For example, taking the first data as a group paging instruction, when a terminal releases the uplink and downlink, the NG-RAN node may provide the AMF with a list of recommended cells and NG-RAN nodes to be used as supplementary information for subsequent paging messages.

[0046] (9) Base stations determined based on terminal identifiers. For example, when a UE releases an uplink or downlink, an NG-RAN node may provide the AMF with a list of recommended cells and NG-RAN nodes to use as supplementary information for subsequent paging messages. In other words, the base stations determined based on the UE identifier are the NG-RAN nodes shown in parentheses.

[0047] (10) A base station to which a cell corresponding to radio access network paging area information determined based on a terminal identifier belongs. For example, taking the first data as a group paging instruction, the first network node obtains a terminal identifier and determines the base station to which the Cells in the RAN area identifier (ID) in the radio access network paging area (RAN Paging Area) belong, and transmits a group paging instruction to the terminal using this terminal identifier.

[0048] (11) A base station corresponding to the RAN Area ID in the RAN Paging Area determined based on the terminal identifier. For example, taking the first data as a group paging instruction, the first network node obtains the terminal identifier and determines the base station in the RAN Area ID in the RAN Paging Area that transmits the group paging instruction to the terminal using this terminal identifier.

[0049] Furthermore, referring again to Figure 3, the implementation process of S310 may be as shown in S311 below.

[0050] In S311, the first data is sent to the second network node based on whether or not the second network node supports the first capability.

[0051] Here, the first capability may be understood as whether the second network node is an expandable base station, supports MBMS (or MBS) capability, or can transmit at least one of the MBMS (or MBS) data in a shared delivery manner for the core network portion. Based on this, transmitting the first data to the second network node, based on whether the second network node described in S311 supports the first capability, may include either (1) or (2).

[0052] (1) If the second network node supports the first capability, a broadcast instruction is sent to the second network node, and the broadcast instruction is used to notify the second network node to send a broadcast message.

[0053] For example, the second network node may be considered to support the first capability, and the second network node may be considered to be an extended base station or support MBMS (or MBS) capability or be able to transmit at least one of the MBMS (or MBS) data in a shared transmission scheme of the core network portion, in which case the first network node notifies the second network node to transmit a broadcast message to a terminal by sending a broadcast instruction to the second network node, and the terminal further ensures the continuity of the data service by initiating an RRC connection and entering an RRC connection state to receive data or by continuing to receive data in a non-RRC connection state.

[0054] (2) If the second network node does not support the first capability, the first paging instruction is sent to the second network node.

[0055] For example, the second network node may be considered to not support the first capability, to be a conventional base station, or not be able to transmit MBMS (or MBS) data by a shared transmission method of the core network portion, but to be able to transmit MBMS or MBS data by a Protocol Data Unit session (PDU session) or a method in which the core network portion is individual delivery. In this case, the first network node transmits a first paging instruction to the second network node, thereby instructing the second network node to transmit a second paging instruction to the terminal, and the terminal ensures the continuity of data services by initiating an RRC connection and entering an RRC connection state to receive data, or by continuing to receive data in a non-RRC connection state.

[0056] It should be noted that in each embodiment given above, the first data may include at least one of the following:

[0057] (1) A terminal identifier, which may be an identifier of a terminal that needs to receive the first data.

[0058] (2) A service identifier that may be an identifier for an MBS service (e.g., TMGI), or an identifier for an MBMS service, etc.

[0059] (3) A session identifier, which may be an MBS session identifier, etc.

[0060] Furthermore, in this embodiment, after the second network node receives the first data transmitted by the first network node, it decides whether or not to transmit the second data to the terminal based on whether it itself supports the first capability and / or the first data, and the implementation process will be described below with reference to different examples.

[0061] Example 1 If the second network node transmits or does not transmit the second data to the terminal based on its own first capability, then the implementation process may include at least one of the following (1)-(4).

[0062] (1) If the second network node does not support the first capability and the first data is a broadcast instruction, the second network node does not need to transmit the second data to the terminal.

[0063] (2) If the second network node does not support the first capability and the first data is a first paging instruction, the second network node transmits the second data to the terminal.

[0064] (3) If the second network node supports the first capability and the first data is a broadcast instruction, the second network node transmits the second data to the terminal.

[0065] (4) If the second network node supports the first capability and the first data is a first paging instruction, the second network node transmits the second data to the terminal.

[0066] Example 2 When the second network node transmits second data to a terminal based on the first data it has received, the implementation process may include at least one of the following (1)-(3).

[0067] (1) Based on the first paging instruction in the first data, the second data is transmitted to the terminal.

[0068] (2) Based on the broadcast instruction in the first data, the second data is transmitted to the terminal.

[0069] (3) Based on the first data received initially, the second data is transmitted to the terminal. For example, if the second network node receives the first data transmitted by the first network node multiple times, the second network node transmits the second data to the terminal based only on the first data received the first time or on the first occasion.

[0070] In Examples 1 and 2 above, the second data may be obtained after the second network node has performed processing such as screening and merging on the first paging instructions and / or broadcast instructions contained in at least one of the first data received by the second network node, or it may be generated based on at least one of the first paging instructions, broadcast instructions and group paging instructions contained in at least one of the received first data, and then transmitted to the terminal, but this is not limited here.

[0071] In this case, the second data may include a second paging instruction and / or broadcast message, which are used to notify the terminal to initiate an RRC connection and enter an RRC connection state to receive data or to continue receiving data in a non-RRC connection state, thereby ensuring the continuity of the data service.

[0072] For example, if the second network node is a non-extended base station (e.g., a conventional base station), a second paging instruction is sent and the terminal is notified; and if the second network node is an extended base station, a broadcast message is sent and the terminal is notified.

[0073] In one embodiment, the broadcast message may include at least one of the following (1)-(3):

[0074] (1) Scheduling information, such as scheduling information for MBS data.

[0075] (2) Service information, such as MBS service information and MBMS service information.

[0076] (3) Status information, such as status information for MBS service session start, recovery, activation, suspend, deactivation, stop, and delete notifications.

[0077] Furthermore, in addition to the embodiments provided above, as one possible embodiment, the implementation process of the data transmission method provided by this embodiment may differ based on the differences in the broadcast instructions included in the first data. For example, if the broadcast instructions include a first broadcast instruction and / or a second broadcast instruction, the first broadcast instruction is used to instruct the second network node to broadcast service information or status information, and the second broadcast instruction is used to instruct the second network node to broadcast scheduling information. In this case, when the second network node receives instructions including the first and second broadcast instructions, it may perform a first operation and a second operation, the first operation including broadcasting the service information and / or status information via an air interface.

[0078] The second operation described above may include at least one of the following (1) or (2):

[0079] (1) When the second network node receives an interest instruction, it broadcasts the scheduling information via the air interface.

[0080] (2) The second network node may send a failure instruction to the first network node if it has not received an interest instruction, and in response, the first network node may send the broadcast instruction to the third network node if it has received the failure instruction sent by the second network node.

[0081] It should be explained that the “indication of interest” described in (1) and (2) above may be understood as the terminal deciding whether or not it is interested in the scheduling information after receiving the scheduling information broadcast by the second network node, and if it is interested, the terminal sending an indication of interest to the second network node, and otherwise not sending an indication of interest to the second network node. The third network node may refer to the relevant description of the second network node, which will not be explained further here. In this embodiment, the first network node can send first data to the second network node based on the capabilities of the second network node to provide better service continuity.

[0082] As shown in Figure 4, Figure 4 is a flowchart of a data transmission method 400 according to an exemplary embodiment of the present application, the method 400 may be used in a second network node and may be executed, for example, by software and / or hardware installed on the second network node, the method 400 includes at least the following steps.

[0083] S410 receives the first data transmitted by the first network node.

[0084] Here, the first data mentioned above is at least one of the following (1)-(3).

[0085] (1) First paging instruction.

[0086] (2) Broadcast instructions.

[0087] (3) Instructions for group pacing.

[0088] Here, the implementation process of S410 can be found in the relevant descriptions in Method 200 and / or Method 300, and will not be described further here to avoid repetition.

[0089] In this embodiment, the second network node receives the first data transmitted by the first network node, and the first data is at least one of the first paging instruction, the broadcast instruction, and the group paging instruction, thereby solving the problem of low service continuity that may occur when a terminal resides in a cell that does not provide a certain service.

[0090] As shown in Figure 5, Figure 5 is a flowchart of a data transmission method 500 according to an exemplary embodiment of the present application, the method 500 may be used in a second network node and may be executed, for example, by software and / or hardware installed on the second network node, the method 500 includes at least the following steps.

[0091] S510 receives the first data transmitted by the first network node.

[0092] Here, the first network node may include a first base station and / or core network functions.

[0093] The second network node is at least one of the following (1)-(11):

[0094] (1) A second base station located within the RNA. In this embodiment, the RNA may be determined based on a terminal identifier, but is not limited thereto. For example, taking the first data as a group paging instruction, the first network node obtains the terminal identifier of the terminal and decides to transmit the group paging instruction in the terminal's RNA based on this terminal identifier.

[0095] (2) A second base station located within the RA. In this embodiment, the registration area may, but is not limited to, be determined based on a terminal identifier. For example, taking the first data as a group paging instruction, the first network node obtains the terminal identifier of the terminal and decides to send a group paging instruction in the terminal's RA based on this terminal identifier.

[0096] (3) A second base station located within the service area.

[0097] (4) A base station in the tracking area determined based on the terminal identifier. For example, the first network node obtains the terminal identifier and decides to send a group paging instruction in the terminal's tracking area based on this terminal identifier.

[0098] (5) The base station to which the previous serving cell belongs, determined based on the terminal identifier. For example, taking the first data as a group paging instruction, the first network node obtains the UE identifier and uses this terminal identifier to determine the base station to which the previous serving cell that sent the group paging instruction to the terminal belongs.

[0099] (6) The base station to which the adjacent cell of the previous serving cell belongs, as determined based on the terminal identifier. For example, taking the first data as a group paging instruction, the first network node obtains the terminal identifier and uses this terminal identifier to determine the base station to which the adjacent cell of the previous serving cell to which the group paging instruction to be sent to the terminal belongs.

[0100] (7) The adjacent base station to the base station to which the previous serving cell belongs, determined based on the terminal identifier. For example, taking the first data as a group paging instruction, the first network node obtains the terminal identifier and uses this terminal identifier to determine the adjacent base station to which the previous serving cell belongs, to which the group paging instruction is sent to the terminal.

[0101] (8) The base station to which the recommended cell, determined based on the terminal identifier, belongs. For example, taking the first data as a group paging instruction, when the terminal releases the uplink and downlink, the NG-RAN node may provide the AMF with a list of recommended cells and NG-RAN nodes to be used as supplementary information for subsequent paging messages.

[0102] (9) Base stations determined based on terminal identifiers. For example, when a UE releases an uplink or downlink, an NG-RAN node may provide the AMF with a list of recommended cells and NG-RAN nodes to use as auxiliary information for subsequent paging. In other words, the base stations determined based on the UE identifier are the NG-RAN nodes shown in parentheses.

[0103] (10) A base station to which a cell corresponding to radio access network paging area information determined based on a terminal identifier belongs. For example, taking the first data as a group paging instruction, the first network node obtains a terminal identifier and determines the base station to which the Cells in the RAN area identifier (ID) in the RAN Paging Area belong, which transmits a group paging instruction to the terminal using this terminal identifier.

[0104] (11) A base station corresponding to the RAN Area ID in the RAN Paging Area determined based on the terminal identifier. For example, taking the first data as a group paging instruction, the first network node obtains the terminal identifier and determines the base station in the RAN Area ID in the RAN Paging Area that transmits the group paging instruction to the terminal using this terminal identifier.

[0105] In one possible embodiment, the second network node may or may not transmit the second data to the terminal after receiving the first data, and the implementation process thereof will be described below in conjunction with Examples 1 and 2.

[0106] Example 1 The second network node may, based on its own capabilities, transmit the second data to the terminal or not, as shown, for example, in (1)-(4) below.

[0107] (1) If the second network node does not support the first capability and the first data is a broadcast instruction, the second data is not transmitted to the terminal.

[0108] (2) If the second network node does not support the first capability and the first data is a first paging instruction, the second data is sent to the terminal.

[0109] (3) If the second network node supports the first capability and the first data is a broadcast instruction, the second data is transmitted to the terminal.

[0110] (4) If the second network node supports the first capability and the first data is a first paging instruction, the second data is transmitted to the terminal.

[0111] Example 2 The second network node may transmit second data to the terminal based on the first data it has received, for example as shown in (1)-(3) below.

[0112] (1) Based on the first paging instruction in the first data, the second data is transmitted to the terminal.

[0113] (2) Based on the broadcast instruction in the first data, the second data is transmitted to the terminal.

[0114] (3) Based on the first data received, the second data is sent to the terminal.

[0115] In Examples 1 and 2 above, the second data may include at least one of the following (1) to (3).

[0116] (1) Scheduling information.

[0117] (2) Service information.

[0118] (3) Status information.

[0119] In another possible embodiment, the broadcast instruction includes at least one of the following (1) to (2):

[0120] (1) A first broadcast instruction for instructing the second network node to broadcast service information or status information.

[0121] (2) A second broadcast instruction for instructing the second network node to broadcast scheduling information.

[0122] In response to this, if the broadcast instruction includes a first broadcast instruction and a second broadcast instruction, the method further includes performing the first operation and the second operation.

[0123] Here, the first operation includes broadcasting service information and / or status information via the air interface.

[0124] The second operation described above includes (1) and / or (2) below.

[0125] (1) When an interest instruction is received, scheduling information is broadcast via the air interface.

[0126] (2) If no interest instruction has been received, a failure instruction is sent to the first network node.

[0127] In this embodiment, the second network node, after receiving the first data, can provide better service continuity by either transmitting or not transmitting the second data to the terminal based on its own capabilities or the first data.

[0128] It should be noted that in each embodiment provided by this embodiment, the implementation process can be described by referring to the relevant descriptions in Methods 200, 300, or 400, and will not be described further here to avoid repetition.

[0129] It should be explained that, in the data transmission method according to the embodiment of this application, the execution unit may be a data transmission device or a control module for executing the data transmission method in this data transmission device. In the embodiment of this application, the data transmission device according to the embodiment of this application will be described as an example in which the data transmission device executes the data transmission method.

[0130] As shown in Figure 6, Figure 6 is a schematic block diagram of a data transmission device 600 according to an exemplary embodiment of the present application, the device 600 including a first transmission module 610 for transmitting first data to a second network node, wherein the first data is at least one of a first paging instruction, a broadcast instruction, and a group paging instruction.

[0131] In one possible embodiment, the first transmitting module 610 is used to transmit first data to the second network node, based on whether the second network node supports the first capability.

[0132] In another possible embodiment, the first transmitting module 610 is used to send a broadcast instruction to the second network node if the second network node supports the first capability, the broadcast instruction being used to notify the second network node to send a broadcast message, and to send a first paging instruction to the second network node if the second network node does not support the first capability.

[0133] In another possible embodiment, the first data includes at least one of a terminal identifier, a service identifier, and a session identifier.

[0134] In another possible embodiment, the first network node is at least one of a first base station and a core network function.

[0135] In another possible embodiment, the second network node is at least one of the following: a second base station located in a radio access network-based notification area RNA; a second base station located in a registration area RA; a second base station located in a service area; a base station in a tracking area determined based on a terminal identifier; a base station to which a former serving cell belongs, determined based on a terminal identifier; a base station to which an adjacent cell of a former serving cell belongs, determined based on a terminal identifier; an adjacent base station of a base station to which a former serving cell belongs, determined based on a terminal identifier; a base station to which a recommended cell belongs, determined based on a terminal identifier; a base station determined based on a terminal identifier; a base station to which a cell corresponding to radio access network paging area information belongs, determined based on a terminal identifier; and a base station corresponding to a RAN area identifier in the radio access network paging area, determined based on a terminal identifier.

[0136] In another possible embodiment, the wireless access network-based notification area and / or the registration area are determined based on a terminal identifier.

[0137] In another possible embodiment, the broadcast instruction includes at least one of a first broadcast instruction for instructing the second network node to broadcast service information or status information, and a second broadcast instruction for instructing the second network node to broadcast scheduling information.

[0138] In another possible embodiment, if the broadcast instruction includes the second broadcast instruction, the first transmitting module 610 is further used to transmit the broadcast instruction to a third network node if it receives a failure instruction transmitted by the second network node.

[0139] As shown in Figure 7a, Figure 7a is a schematic block diagram of a data transmission device 700 according to an exemplary embodiment of the present application, the device 700 including a receiving module 710 for receiving first data transmitted by a first network node, wherein the first data is at least one of a first paging instruction, a broadcast instruction, and a group paging instruction.

[0140] In another possible embodiment, the first data includes at least one of a terminal identifier, a service identifier, and a session identifier.

[0141] In another possible embodiment, the broadcast instruction includes at least one of a first broadcast instruction for instructing the second network node to broadcast service information or status information, and a second broadcast instruction for instructing the second network node to broadcast scheduling information.

[0142] In another possible embodiment, as shown in Figure 7b, if the broadcast instruction includes the first broadcast instruction and the second broadcast instruction, the apparatus 700 may further include a second transmit module 720 for performing the first and second operations, the first operation including broadcasting service information and / or status information via an air interface, and the second operation including at least one of broadcasting scheduling information via an air interface if an instruction of interest is received, and sending a failure instruction to the first network node if no instruction of interest is received.

[0143] In another possible embodiment, referring again to Figure 7b, the apparatus 700 further includes a third transmitting module 730, which is used to at least one of the following: not transmitting the second data to a terminal when the second network node does not support the first capability and the first data is a broadcast instruction; transmitting the second data to a terminal when the second network node does not support the first capability and the first data is a first paging instruction; transmitting the second data to a terminal when the second network node supports the first capability and the first data is a broadcast instruction; and transmitting the second data to a terminal when the second network node supports the first capability and the first data is a first paging instruction.

[0144] In another possible embodiment, referring again to Figure 7b, the device 700 further includes a fourth transmitting module 740, which is used to transmit a second data to a terminal via an air interface based on the first data.

[0145] In another possible embodiment, the fourth transmitting module 740 is used to transmit second data to a terminal based on the first paging instruction in the first data, transmit second data to a terminal based on the broadcast instruction in the first data, and transmit second data to a terminal based on the first data that was first received.

[0146] In another possible embodiment, the second data is at least one of a second paging instruction and a broadcast message.

[0147] In another possible embodiment, the broadcast message includes at least one of scheduling information, service information, and status information.

[0148] In another possible embodiment, the first network node is at least one of a first base station and a core network function.

[0149] In another possible embodiment, the second network node is at least one of the following: a second base station located in a radio access network-based notification area RNA; a second base station located in a registration area RA; a second base station located in a service area; a base station in a tracking area determined based on a terminal identifier; a base station to which a former serving cell belongs, determined based on a terminal identifier; a base station to which an adjacent cell of a former serving cell belongs, determined based on a terminal identifier; an adjacent base station of a base station to which a former serving cell belongs, determined based on a terminal identifier; a base station to which a recommended cell belongs, determined based on a terminal identifier; a base station determined based on a terminal identifier; a base station to which a cell corresponding to radio access network paging area information belongs, determined based on a terminal identifier; and a base station corresponding to a RAN area identifier in the radio access network paging area, determined based on a terminal identifier.

[0150] In another possible embodiment, the wireless access network-based notification area and / or the registration area are determined based on a terminal identifier.

[0151] The data transmission device 600 or 700 in the embodiments of this application may be a device, a component in a terminal, an integrated circuit, or a chip. This device may be a mobile terminal or a non-mobile terminal. Exemplary examples include, but are not limited to, the types of terminals 11 listed above, and non-mobile terminals may be servers, network-attached storage (NAS), personal computers (PCs), televisions (TVs), teller machines or self-service machines, and the embodiments of this application are not specifically limited.

[0152] The data transmission device 600 or 700 in the embodiments of this application may be a device having an operating system. This operating system may be the Android® operating system, the iOS operating system, or any other possible operating system, and the embodiments of this application are not specifically limited.

[0153] The data transmission devices 600 and 700 according to the embodiments of this application can realize each process realized by the embodiments of the methods shown in Figures 2 to 5 and achieve the same technical effects, and to avoid repetition of the explanation, they will not be described further here.

[0154] As shown in Figure 8, an embodiment of the present application further provides network-side equipment. As shown in Figure 8, this network-side equipment 800 includes an antenna 801, a radio frequency device 802, and a baseband device 803. The antenna 801 and the radio frequency device 802 are connected. In the uplink direction, the radio frequency device 802 receives information via the antenna 801 and transmits the received information to the baseband device 803 for processing. In the downlink direction, the baseband device 803 processes information to be transmitted and transmits it to the radio frequency device 802, which processes the received information and then transmits it via the antenna 801.

[0155] The above-mentioned frequency band processing device may be located in the baseband device 803, and the method performed by the network-side equipment in the above embodiment may be implemented in the baseband device 803, which includes a processor 804 and a memory 805.

[0156] The baseband device 803 may include, for example, at least one baseband board on which multiple chips are installed, and as shown in Figure 8, one of these chips may be, for example, a processor 804, which is connected to memory 805 and calls a program in memory 805 to perform the network equipment operations shown in the embodiment of the above method.

[0157] The baseband device 803 may further include a network interface 806 used for exchanging information with the radio frequency device 802, which is, for example, a Common Public Radio Interface (CPRI).

[0158] Specifically, the network-side device of the embodiment of the present invention further includes instructions or programs stored in memory 805 and operable on processor 804, the processor 804 can call instructions or programs in memory 805 and perform the same technical effects as those performed by the modules shown in Figures 6, 7a, and 7b, and will not be described further here to avoid repetition.

[0159] Embodiments of this application further provide a readable storage medium on which a program or instruction is stored, and when this program or instruction is executed by a processor, each process of the embodiment of the data transmission method described above can be realized and the same technical effects can be achieved. To avoid repetition, no further explanation is provided here.

[0160] Here, the processor is the processor in the terminal in the above embodiment. The readable storage medium includes computer-readable storage media such as computer read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.

[0161] Embodiments of this application further provide a chip comprising a processor and a communication interface, the communication interface being coupled with the processor, the processor running programs or instructions for network-side equipment, and used to implement each process of the embodiment of the data transmission method described above, and achieving the same technical effects. To avoid repetition, no further explanation is provided here.

[0162] It should be understood that the chips referred to in the embodiments of this application may also be called system-level chips, system chips, chip systems, or system-on-a-chip, etc.

[0163] Embodiments of this application further provide a computer program product which, when stored in memory and executed by a processor, can realize each process of the above-described embodiment of the data transmission method and achieve the same technical effects. To avoid repetition, no further explanation is provided here.

[0164] It should be noted that, in this specification, the terms “include,” “incorporate,” or any other variation thereof are intended to cover the non-exclusive “include,” thereby including not only those elements but also other elements not explicitly listed, or elements specific to such process, method, article, or apparatus. Unless otherwise specified, an element limited by the phrase “includes one of…” is not excluded from the existence of other identical elements in a process, method, article, or apparatus containing that element. It should also be noted that the scope of methods and apparatus in embodiments of this application is not limited to performing functions in the order illustrated or discussed, but may include performing functions in a manner that is essentially simultaneous or in reverse order based on the functions involved, and methods described in a different procedure than those described, for example, may be performed, and various steps may be added, omitted, or combined. Furthermore, features described by reference to some examples may be combined with other examples.

[0165] As will be readily apparent to those skilled in the art from the above description of the embodiments, the methods of the above embodiments can be implemented in the form of software and a necessary general-purpose hardware platform. Of course, they may also be implemented in hardware, but in many cases the former is a more preferred embodiment. With this understanding in mind, the technical proposal of this application may be embodied in the form of a software product, either substantially or in part with respect to the prior art. This computer software product is stored on a storage medium (e.g., ROM / RAM, magnetic disk, optical disk) and contains some instructions for causing a terminal (which may be a mobile phone, computer, server, air conditioner, or network device, etc.) to perform the methods of each embodiment of this application.

[0166] The above describes embodiments of this application, accompanied by drawings; however, this application is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can, by the suggestion of this application, make many forms, as long as they do not deviate from the spirit and scope protected by the claims of this application, and all of these fall within the scope of protection of this application.

Claims

1. A data transmission method performed by a first network node, wherein the method is This includes transmitting first data to the second network node based on whether the second network node supports the first capability, Here, the first data mentioned above is The first paging instruction is the core network paging message for the NG port, Broadcast instructions and It is at least one of the group pacing instructions, If the second network node supports MBS capabilities, it is determined that the second network node supports the first capabilities. Transmitting the first data to the second network node based on whether or not the second network node supports the first capability is: If the second network node supports the first capability, a broadcast instruction is sent to the second network node, the broadcast instruction being used to notify the second network node to send a broadcast message. A data transmission method comprising sending a first paging instruction to the second network node if the second network node does not support the first capability.

2. The first data mentioned above is Terminal identifier and Service identifier and The method according to claim 1, comprising at least one of the following: a session identifier.

3. The first network node is, The first base station and The method according to claim 1, wherein at least one of the core network functions.

4. The second network node is, A second base station located within the wireless access network-based notification area RNA, A second base station located within the registered area RA, A second base station located within the service area, The base station in the tracking area, determined based on the terminal identifier, The base station to which the serving cell belongs, determined based on the terminal identifier, The base station to which the adjacent cell of the serving cell belongs, determined based on the terminal identifier, The adjacent base stations of the base station to which the previously serving cell belongs, determined based on the terminal identifier, The base station to which the recommended cell belongs, determined based on the terminal identifier, The base station is determined based on the terminal identifier, The base station to which the cell corresponding to the radio access network paging area information determined based on the terminal identifier belongs, The method according to claim 1, wherein at least one of the following is a base station corresponding to a RAN area identifier in a radio access network paging area determined based on a terminal identifier.

5. The method according to claim 4, wherein the wireless access network-based notification area and / or registration area is determined based on a terminal identifier.

6. The aforementioned broadcast instruction is A first broadcast instruction for instructing the second network node to broadcast service information or status information, This includes at least one of the following: a second broadcast instruction for instructing the second network node to broadcast scheduling information, If the broadcast instruction includes the second broadcast instruction, the method is: The method according to claim 1, further comprising transmitting the broadcast instruction to a third network node upon receiving a failure instruction transmitted by the second network node.

7. A data transmission method performed by a second network node, wherein the method is This includes receiving first data transmitted by a first network node, Here, the first data mentioned above is The first paging instruction is the core network paging message for the NG port, Broadcast instructions and It is at least one of the group pacing instructions, After receiving the first data transmitted by the first network node, the method, If the second network node does not support the first capability and the first data is a broadcast instruction, the second data will not be sent to the terminal. If the second network node does not support the first capability and the first data is a first paging instruction, then the second data is sent to the terminal. If the second network node supports the first capability and the first data is a broadcast instruction, then the second data is transmitted to the terminal. The method further includes at least one of the following: the second network node supports a first capability and the first data is a first paging instruction, and then transmitting the second data to the terminal. Receiving the first data transmitted by the first network node means If the second network node supports the first capability, it receives a broadcast instruction transmitted by the first network node, the broadcast instruction being used to notify the second network node to transmit a broadcast message. If the second network node does not support the first capability, it includes receiving a first paging instruction transmitted by the first network node, A data transmission method wherein, if the second network node supports MBS capabilities, the second network node supports the first capability.

8. The aforementioned broadcast instruction is A first broadcast instruction for instructing the second network node to broadcast service information or status information, The method according to claim 7, further comprising at least one of the following: a second broadcast instruction for instructing the second network node to broadcast scheduling information.

9. If the broadcast instruction includes a first broadcast instruction and a second broadcast instruction, the method is: Further including performing the first and second operations, The first operation includes broadcasting the service information and / or status information via the air interface, The second operation described above is, Upon receiving an interest instruction, the scheduling information is broadcast via the air interface. This includes at least one of the following: sending a failure instruction to the first network node if no interest instruction has been received; The method according to claim 8, wherein the interest instruction is instruction information that the terminal transmits to the second network node when it determines that it is interested in the scheduling information broadcast by the second network node that it has received.

10. The first data mentioned above is Terminal identifier and Service identifier and The method according to claim 7, comprising at least one of the following: a session identifier.

11. After receiving the first data transmitted by the first network node, the method, This further includes transmitting a second data via an air interface based on the first data, Based on the first data mentioned above, transmitting the second data to the terminal via the air interface is: Based on the first paging instruction in the first data, the second data is transmitted to the terminal. Based on the broadcast instruction in the first data, the second data is transmitted to the terminal, The method according to claim 7, comprising at least one of the following: transmitting a second data to a terminal based on the initial receipt of a first data.

12. The second data mentioned above is: The second paging instruction, It is at least one of the broadcast messages, The aforementioned broadcast message is Scheduling information and, Service information and, The method according to claim 11, comprising at least one of the following: state information.

13. The first network node is, The first base station and The method according to claim 7, wherein at least one of the core network functions.

14. The second network node is, A second base station located within the wireless access network-based notification area RNA, A second base station located within the registered area RA, A second base station located within the service area, The base station in the tracking area, determined based on the terminal identifier, The base station to which the serving cell belongs, determined based on the terminal identifier, The base station to which the adjacent cell of the serving cell belongs, determined based on the terminal identifier, The adjacent base stations of the base station to which the previously serving cell belongs, determined based on the terminal identifier, The base station to which the recommended cell belongs, determined based on the terminal identifier, The base station is determined based on the terminal identifier, The base station to which the cell corresponding to the radio access network paging area information determined based on the terminal identifier belongs, At least one of the following: a base station corresponding to a RAN area identifier in the radio access network paging area determined based on the terminal identifier, The method according to any one of claims 7 to 13, wherein the wireless access network-based notification area and / or registration area is determined based on a terminal identifier.

15. A network-side device comprising a processor, memory, and a program or instruction stored in the memory and operable on the processor, wherein when the program or instruction is executed by the processor, a step of the data transmission method described in any one of claims 1 to 6 is realized.

16. A network-side device comprising a processor, memory, and a program or instruction stored in the memory and operable on the processor, wherein when the program or instruction is executed by the processor, a step of the data transmission method described in any one of claims 7 to 14 is realized.