Data transmission method, terminal, and network node
Patent Information
- Application Number
- AU2025203604
- Authority / Receiving Office
- AU · AU
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-05-19
- Publication Date
- 2026-09-03
AI Technical Summary
Existing communication systems face challenges in efficiently switching data transmission between different radio channels, especially when these channels belong to different cells, which can lead to data packet synchronization issues and interrupted connections.
The method involves configuring and managing multiple PDU sessions and radio channels, including unicast and broadcast/multicast channels, to enable seamless data transmission switching. This is achieved through the use of PDCP PDUs, logical channel identifiers, and synchronization function entities to manage time information and packet transmission.
The solution enables flexible and efficient data transmission switching between radio channels, ensuring continuous and synchronized data delivery even when channels switch between different cells, thereby improving communication reliability and efficiency.
Smart Images

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Abstract
Description
2025203604 19 May 2025 [001039] within a preset time period of starting to receive the second data through the second radio channel, receiving a first PDCP PDU including an IR packet, where the first PDCP PDU is used to carry the second data. [001040] In case that the second radio channel and the first radio channel belong to different cells, the receiving the second data of the first service transmitted by the network node to the UE through the second radio channel, includes: [001041] receiving a second PDCP PDU configured to carry the second data; where a packet header of the second PDCP PDU includes information for indicating encryption with a new key; or, the second PDCP PDU is packaged using a logical channel identifier corresponding to the second radio channel; [001042] or, [001043] when the second radio channel and the first radio channel belong to different cells, before receiving the second data of the first service transmitted by the network node to the UE through the second radio channel, the method further includes: [001044] receiving an end packet transmitted by the network node, where the end packet is used to indicate that data of the first PDU session or data of at least one QoS flow of the first PDU session has been switched from the first radio channel to the second radio channel and is carried by the second radio channel. [001045] Referring to FIG. 8a, FIG. 8a is a schematic flowchart of a data transmission method according to an embodiment of the present disclosure. The method is applied to two radio channels in different network nodes, and includes the following steps. [001046] Step 801: transmitting first data to a UE through a first radio channel; [001047] where the first radio channel is configured for a first PDU session; or, the first radio channel is configured for at least one QoS flow of the first PDU session. [001048] The first radio channel is one of a unicast radio channel, a broadcast or multicast radio channel. [001049] The first data represents first data of the first PDU session or first data of at least one QoS flow of the first PDU session. 2025203604 19 May 2025 [001050] The first radio channel is a channel configured for the first PDU session to transmit the first data; or, [001051] the first radio channel is a channel configured for at least one QoS flow of the first PDU session to transmit the first data. [001052] The transmitting the first data to the UE through the first radio channel, includes: [001053] configuring at least one of a first SDAP configuration, a first PDCP configuration, a first RLC configuration, a first MAC configuration or a first physical configuration corresponding to the first radio channel. [001054] Bandwidth parts (BWPs) corresponding to the broadcast or multicast radio channel include a first BWP and / or a second BWP. [001055] The first BWP is a dedicated BWP, and the second BWP is an initial BWP; or, both the first BWP and the second BWP are initial BWPs. [001056] Configurations of the initial BWP may be: an initial downlink BWP broadcast in SIB1, and / or, an initial downlink BWP in a serving cell configuration, and / or, an initial BWP corresponding to control resource set (coreset) 0. [001057] Optionally, the method further includes at least one of the following: [001058] activating the first radio channel through an RRC message, MAC CE and / or physical control signaling; [001059] deactivating the first radio channel through an RRC message, MAC CE and / or physical control signaling; [001060] configuring the first radio channel through an RRC message; or, [001061] deleting the first radio channel through an RRC message. [001062] Before transmitting the first data of the first service to the UE through the first radio channel, the method further includes: [001063] obtaining relevant information of the second radio channel; [001064] where the second radio channel and the first radio channel are corresponding to the same PDU session configuration or at least one QoS flow of the same PDU session, and the second radio channel is on another network radio node. 2025203604 19 May 2025 [001065] The obtaining relevant information of the second radio channel, includes: [001066] obtaining data packet transmission status information of the second radio channel. [001067] The transmitting the first data of the first service to the UE through the first radio channel, includes: [001068] transmitting a first PDCP PDU, where the first PDCP PDU is used to carry the first data; where a packet header of the first PDCP PDU includes information for indicating encryption with a new key; or, the first PDCP PDU is packaged using a logical channel identifier corresponding to the first radio channel; [001069] or, [001070] before transmitting the first data of the first service to the UE through the first radio channel, the method further includes: [001071] transmitting an end packet to the UE, where the end packet is used to indicate that data of the first PDU session or data of at least one QoS flow of the first PDU session has been switched from the first radio channel to the second radio channel and is carried by the second radio channel. [001072] The method further includes: [001073] configuring, at the network node, synchronization function entity. [001074] The synchronization function entity is configured for: [001075] transmitting and / or interacting, through signaling, time information associated with data packet transmission; and / or, [001076] adding time information associated with data packet transmission into a data packet; [001077] where the time information may be absolute and / or relative time information; or information of a system frame number (SFN), a subframe, a slot, a mini-slot and / or a time symbol. [001078] That is, functions of the synchronization function entity include: [001079] transmitting and / or interacting, through signaling, time information associated with packet transmission; and / or, 2025203604 19 May 2025 [001080] adding time information associated with packet transmission into a data packet; [001081] where the time information may be absolute and / or relative time information; or information of a system frame number (SFN), a subframe, a slot, a mini-slot and / or a time symbol. [001082] A synchronization protocol instance of the synchronization function entity is associated with a broadcast or multicast PDU session. [001083] The synchronization function entity is used to synchronize data packet transmission between the core network and / or application layer and network nodes, and / or network nodes. [001084] The synchronization function entity is an independent protocol layer, or the synchronization function entity is located in at least one of protocol layers of SDAP, PDCP, RLC and MAC. [001085] The time information is time information transmitted from the application layer or the core network, or is time information which is generated by the network node and used to synchronize transmission between base stations. [001086] In case that the synchronization function entity is used to add the time information associated with data packet transmission into the data packet, the time information and data are transmitted together in one data packet; and / or, the time information is transmitted separately in a data packet. [001087] The time information is transmitted by a centralized unit (CU) to a distributed unit (DU); and / or, [001088] the time information is information converted by the CU into SFN, subframe, slot, mini-slot and / or time symbol for scheduling. [001089] The synchronization function entity is configured to, after receiving user data frame, parse out the time information associated with data packet transmission added in the data packet, and / or, parse out the time information associated with data packet transmission transmitted and / or interacted in the signaling; and use the time information to schedule user data or perform scheduling in MTCH scheduling cycle. 2025203604 19 May 2025 [001090] The network node includes a base station of a first cell and a base station of a second cell. The first cell is a cell to which the first radio channel belongs, and the second cell is a cell to which the second radio channel belongs. The method further includes at least one of the following: [001091] the base station of the first cell informs, the base station of the second cell, of sequence indexes of packets that have been transmitted, and / or sequence indexes of packets successfully received by the UE, and then the base station of the second cell uses a unicast connection to transmit to the UE, packets which are out of sync between the first cell and the second cell; [001092] the base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache; [001093] the base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache, together with carrying time information corresponding to transmission of the packets; [001094] according to the received information, the base station of the first cell forwards packets which are out of sync between the first cell and the second cell; [001095] according to the received information, the base station of the first cell forwards packets which are out of sync between the first cell and the second cell and which are not stored in a cache of the second cell; [001096] the UE informs, the base station of the second cell, of sequence indexes of data packets successfully received in the first cell, and then the base station of the second cell uses a unicast connection to transmit to the UE, packets which are out of sync between the first cell and the second cell; [001097] the UE maintains connection with the first cell and the second cell at the same time, and does not interrupt the connection with the first cell until the UE has received, from the first cell, packets which are out of sync between the first cell and the second cell; 2025203604 19 May 2025 [001098] the base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache, optionally together with carrying time information corresponding to transmission of the packets; the first cell informs the UE in handover information; the UE maintains connection with the first cell and the second cell at the same time, and does not interrupt the connection with the first cell until the UE has received, from the first cell, packets which are out of sync between the first cell and the second cell; [001099] after the UE switches to the second cell, the UE continues to maintain the connection with the first cell and does not interrupt the connection with the first cell until the UE finds that packets received in the second cell are continuous or repeated with packets received from the first cell. [001100] Referring to FIG. 9, FIG. 9 is a schematic flowchart of a data transmission method according to an embodiment of the present disclosure. The method is performed by a network node and includes the following steps. [001101] Step 91: establishing two or more protocol data unit (PDU) sessions for a second service; [001102] where a first PDU session is used to transmit third data of the second service to a UE; [001103] a second PDU session is used to transmit fourth data of the second service to the UE. [001104] The second service is a broadcast or multicast service. [001105] The first PDU session is one of a unicast PDU session and a broadcast or multicast PDU session; and the second PDU session is the other one of the unicast PDU session and the broadcast or multicast PDU session. [001106] The unicast PDU session is separately established for all or part of UE which receive the second service. [001107] The network nodes may be the same network node, or may be different network nodes. 2025203604 19 May 2025 [001108] In this embodiment of the present disclosure, the step of transmitting the third data of the second service to the UE through the first PDU session and the step of transmitting the fourth data of the second service to the UE through the second PDU session may be performed simultaneously or not simultaneously. For example, it is to first transmit the third data of the second service to the UE through the first PDU session, and then switch to transmitting the fourth data of the second service to the UE through the second PDU session. That is, transmission of data of the second service can be switched from unicast to broadcast or multicast, or switched from broadcast or multicast to unicast. At the same time, when transmitting the third data of the second service to the UE through the first PDU session and transmitting the fourth data of the second service to the UE through the second PDU session, the third data and the fourth data may be the same, that is, data of the same service can be transmitted by unicast and broadcast or multicast at the same time. [001109] In the embodiment of the present disclosure, the transmission mode of one broadcast or multicast service can be flexibly switched between unicast and broadcast or multicast, which is suitable for intra-cell scenarios and handover / dual connectivity cross-cell scenarios. Specifically, the transmission mode of multicast or broadcast service may be switched from broadcast or multicast to unicast, or may be switched from unicast to broadcast or multicast. Data of the same service may also be transmitted simultaneously through unicast and broadcast or multicast. [001110] Specifically, in the related art, only one PDU session is established for one service. In the embodiment of the present disclosure, referring to FIG. 10, for one broadcast or multicast service, a broadcast or multicast PDU session and multiple unicast PDU sessions for different UEs are established. [001111] Optionally, the fourth data is the same as the third data, or [001112] the fourth data is a subset of the third data, or, [001113] the fourth data and the third data have no intersection, or, [001114] the fourth data is partially the same as the third data. [001115] In the embodiment of the present disclosure, the fourth data being the same as the third data means that the network node enables simultaneous transmission 2025203604 19 May 2025 of the data of the second service through the first PDU and the second PDU. The fourth data being a subset of the third data, means that the network side first enables transmission of data of the second service through the first PDU session, then enables transmission of data of the second service through the second PDU session, and maintains transmission of data of the second service through the first PDU session. That is, the data of the second service is transmitted through the first PDU session, and the data of the second service is also transmitted through the second PDU session. The fourth data and the third data having no intersection means that the network node switches from transmission of data of the second service to the UE through the first PDU session, to transmission of data of the second service to the UE through the second PDU session; that is, after transmission of data of the second service to the UE through the second PDU session is enabled, the data of the second service will not be transmitted to the UE through the first PDU session. The fourth data being partially the same as the third data means that after transmission of data of the second service to the UE through the second PDU session is enabled, part of data that has been transmitted through the first PDU session will be transmitted repeatedly to avoid data loss, or means that after transmission of data of the second service to the UE through the second PDU session is enabled, the data of the second service is continuously transmitted to the UE through the first PDU session for a period of time, and then the first PDU session will be deactivated. [001116] Optionally, the network node includes a core network; and the transmitting the third data of the second service to the UE through the first PDU session and transmitting the fourth data of the second service to the UE through the second PDU session, includes: [001117] determining, by the core network, a UE in a broadcast or multicast group, which uses a multicast PDU session established for broadcast or multicast services to receive data, and a UE which uses a unicast PDU session established for broadcast or multicast services to receive data; and / or, 2025203604 19 May 2025 [001118] determining, by the core network, in a broadcast or multicast service, data received by using the broadcast or multicast PDU session of the broadcast or multicast service, data received by using the unicast PDU session; and / or, [001119] determining, by the core network, some or all UEs in a broadcast or multicast group, which can not only use a broadcast or multicast PDU session established for broadcast or multicast services to receive data, but also use a unicast PDU session established for broadcast or multicast services to receive data. [001120] The data received by the UE from the broadcast or multicast PDU session established for the broadcast or multicast service and the data received by the UE from the unicast PDU session established for the broadcast or multicast service may be the same data, or may be different data. [001121] Optionally, the network node includes a core network; and the transmitting the third data of the second service to the UE through the first PDU session and transmitting the fourth data of the second service to the UE through the second PDU session, includes: [001122] informing, by the core network, the UE of relationship between the first PDU session and the second PDU session; [001123] informing, by the core network, the UE and the base station respectively of relationship between the first PDU session and the second PDU session, when the core network configures a broadcast or multicast PDU session and a unicast PDU session of the same broadcast or multicast service for the UE to receive data; or, [001124] informing, by the core network, a base station of relationship between the first PDU session and the second PDU session; and then, informing, by the base station, the UE of the relationship between the first PDU session and the second PDU session; or, [001125] informing, by the core network, a base station of relationship between the first PDU session and the second PDU session; or, informing, by the core network, the UE of relationship between the first PDU session and the second PDU session. 2025203604 19 May 2025 [001126] Optionally, the network node includes a core network; and the transmitting the third data of the second service to the UE through the first PDU session and transmitting the fourth data of the second service to the UE through the second PDU session, includes: [001127] informing, by the core network, the UE of a reception mode of the first PDU session and the second PDU session; [001128] determining, by the core network, some or all UEs in a broadcast or multicast group, which can not only use a broadcast or multicast PDU session established for a broadcast or multicast service to receive data, but also use a unicast PDU session established for the broadcast or multicast service to receive data; [001129] where the data received by the UE from the broadcast or multicast PDU session established for the broadcast or multicast service and the data received by the UE from the unicast PDU session established for the broadcast or multicast service may be simultaneous or time-sharing. [001130] The reception mode includes: using a broadcast or multicast PDU session established for broadcast or multicast services to receive data and using a unicast PDU session established for broadcast or multicast services to receive data. The data received by the UE from the broadcast or multicast PDU session established for the broadcast or multicast service and the data received by the UE from the unicast PDU session established for the broadcast or multicast service may be the same data or different data. [001131] Optionally, the network node includes a core network; and the transmitting the third data of the second service to the UE through the first PDU session and transmitting the fourth data of the second service to the UE through the second PDU session, includes: [001132] according to quality requirements of a service, and / or arrival characteristics of the service, and / or new radio channel, selecting for the UE, by the core network, a PDU session type and / or specific time for receiving the broadcast or multicast service. 2025203604 19 May 2025 [001133] The core network can obtain specific information from the UE, the base station and / or the network management side. The specific information includes at least one of the following: channel quality of air interface, hybrid automatic repeat request (HARQ) feedback for UE, automatic repeat request (ARQ) feedback for UE, timeout of PDCP discard timer of UE, or status of UE receiving data packets. The specific time is in the time form of bitmap format or absolute / relative time information. [001134] The PDU session type includes a first PDU session and a second PDU session. [001135] In the embodiment of the present disclosure, the arrival characteristic of the service may include a period of the service, arrival moment of the service and data packet size of the service. The channel quality of the air interface may include reporting results of RSRP, RSRQ and / or CSI. [001136] Optionally, the network node includes a core network; and the transmitting the third data of the second service to the UE through the first PDU session and transmitting the fourth data of the second service to the UE through the second PDU session, includes: [001137] informing, by the core network, a base station of a PDU session type selected for the UE to receive broadcast or multicast services; then, informing, by the base station, the UE of the PDU session type which is selected by the network node for the UE to receive broadcast or multicast service; or, [001138] informing, by the core network, a base station of specific time and a PDU session type selected for the UE to receive broadcast or multicast services; then, informing, by the base station, the UE of the specific time and the PDU session type which is selected by the network node for the UE to receive broadcast or multicast service; or, [001139] informing, by the core network, a base station of a PDU session type selected for the UE to receive broadcast or multicast services; or, informing, by the core network, the UE of a PDU session type selected for the UE to receive broadcast or multicast services; or, 2025203604 19 May 2025 [001140] informing, by the core network, a base station of specific time and a PDU session type selected for the UE to receive broadcast or multicast services; or, informing, by the core network, the UE of specific time and a PDU session type selected for the UE to receive broadcast or multicast services. [001141] Optionally, the transmitting the third data of the second service to the UE through the first PDU session and transmitting the fourth data of the second service to the UE through the second PDU session, includes: [001142] establishing, by the network node, a broadcast or multicast PDU session and a unicast PDU session for the same broadcast or multicast service, for a UE to receive data; and using signaling or a special data packet to activate a to-be-used broadcast or multicast PDU session and / or unicast PDU session established for the same broadcast or multicast service; [001143] and / or, [001144] using, by the network node, signaling or a special data packet to deactivate the broadcast or multicast PDU session and / or unicast PDU session established for the same broadcast or multicast service; [001145] where the network node may be a node on core network side and / or radio access network side. [001146] In the embodiment of the present disclosure, the network establishes the broadcast or multicast PDU session and the unicast PDU session for the same broadcast or multicast service for a UE to receive data; and then, when it is necessary to use the broadcast or multicast PDU session and / or unicast PDU session established for the same broadcast or multicast service to receive data, the network node uses signaling or a special data packet to activate a to-be-used broadcast or multicast PDU session and / or unicast PDU session established for the same broadcast or multicast service. Optionally, when it is not necessary to use the broadcast or multicast PDU session and / or unicast PDU session established for the same broadcast or multicast service to receive data, the network node uses signaling or a special data packet to deactivate the broadcast or multicast PDU session and / or unicast PDU session established for the same broadcast or multicast service. The network node may be a 2025203604 19 May 2025 node on core network side and / or radio access network side. Optionally, the core network needs to inform the radio access network of a PDU session (or a corresponding radio channel) that needs to be activated and / or deactivated, or a PDU session (or a corresponding radio channel) that needs to be activated and / or deactivated for communication between nodes on the radio access network side (such as a primary base station and a secondary base station in dual connectivity, or a source base station and a target base station in handover) related to the multicast PDU session and unicast PDU session established for the same broadcast or multicast service. [001147] Optionally, the transmitting the third data of the second service to the UE through the first PDU session and transmitting the fourth data of the second service to the UE through the second PDU session, includes: [001148] transmitting the broadcast or multicast PDU session established for the broadcast or multicast service at the network node on the radio access network side, to the UE by using a point-to-point (PTP) and / or point-to-multipoint (PTM) transmission mode; or, [001149] receiving a PDU session type reported by the UE, where the PDU session type is determined by the UE itself for receiving the multicast service according to quality requirements of a service, and / or arrival characteristics of the service, and / or new radio channel. [001150] The network node on the radio access network side may be a base station, a CU or other control nodes. [001151] Based on the PDU session selected by the UE, according to the quality requirements of the service, and / or the arrival characteristics of the service (i.e., the period of the service, the arrival moment of the service and the data packet size of the service), and / or air interface channel conditions, the UE itself determines the PDU session type and (optional) specific time used by the UE for receiving the multicast service; and informs the network side of the UE’s selection. 2025203604 19 May 2025 [001152] Referring to FIG. 11, FIG. 11 is a schematic flowchart of a data transmission method according to an embodiment of the present disclosure. The method is performed by a UE and includes the following steps: [001153] Step 111: receiving second configuration information transmitted by a network node; [001154] Step 112: establishing two or more PDU sessions for the second service according to the second configuration information. [001155] The first PDU session is used to transmit third data of the second service to the UE. [001156] The second PDU session is used to transmit fourth data of the second service to the UE. [001157] The second service is a broadcast or multicast service. [001158] The first PDU session is one of a unicast PDU session and a broadcast or multicast PDU session; and the second PDU session is the other one of the unicast PDU session and the broadcast or multicast PDU session. [001159] The unicast PDU session is separately established for all or part of UE which receive the second service. [001160] Optionally, the fourth data is the same as the third data, or [001161] the fourth data is a subset of the third data, or, [001162] the fourth data and the third data have no intersection, or, [001163] the fourth data is partially the same as the third data. [001164] Referring to FIG. 12, FIG. 12 is a schematic flowchart of a data transmission method according to an embodiment of the present disclosure. The method is performed by a network node and includes the following steps: [001165] Step 121: transmitting PDSCH to a UE; where the PDSCH includes a first transport block and a second transport block, the first transport block is used to transmit data of a unicast service, and the second transport block is used to transmit data of a broadcast or multicast service data. [001166] In the embodiment of the present disclosure, referring to FIG. 13 and FIG. 14, the data of the unicast service and the data of the broadcast or multicast 2025203604 19 May 2025 service can be scheduled on the same PDSCH, thereby realizing simultaneous execution of the unicast service and the broadcast or multicast service. The data of the unicast service and the data of the broadcast or multicast service may be different, in other words, the data of the unicast service and the data of the broadcast or multicast service may belong to QoS flows of different services, respectively. [001167] In the embodiment of the present disclosure, simultaneous unicast and multicast services are supported at a scheduling unit granularity of physical layer (one scheduling unit slot). [001168] In order to support the UE to simultaneously receive unicast and broadcast or multicast services at one scheduling unit granularity, in the embodiment of the present disclosure, data corresponding to the broadcast / multicast service and data corresponding to the unicast service are placed on one PDSCH time resource and divided into 2 TB blocks. [001169] Optionally, before transmitting the PDSCH to the UE, the method further includes: [001170] transmitting first information to the UE, where the first information is used to determine a first HARQ feedback resource and a second HARQ feedback resource; and / or, [001171] transmitting second information to the UE, where the second information is used to determine a first slot interval and a second slot interval; [001172] where the first slot interval is a time domain interval between the first HARQ feedback resource and the PDSCH, and the second slot interval is a time domain interval between the second HARQ feedback resource and the PDSCH. [001173] The first HARQ feedback resource is used to transmit HARQ feedback information for the first transport block, and the second HARQ feedback resource is used to transmit HARQ feedback information for the second transport block. [001174] In the embodiment of the present disclosure, although the data of the unicast service and the data of the broadcast or multicast service are scheduled on the same PDSCH, HARQ feedback resources are respectively configured for the unicast service and the broadcast or multicast service, so that the HARQ feedback can be 2025203604 19 May 2025 performed separately for data reception of unicast services and data reception of broadcast or multicast services. [001175] Specifically, each of the two transport blocks may have its own HARQ buffer and HARQ process index. [001176] In other words, in the embodiment of the present disclosure, in order to enable the UE to simultaneously receive the data of the unicast service and the data of the broadcast or multicast service, the data of the unicast service and the data of the broadcast or multicast service are respectively formed into two TB blocks which are transmitted in a scheduling unit of one PDSCH, and different HARQ feedback resources are allocated for the two TB blocks. Specifically, two sets of independent PUCCH resources may be defined, and KI values selected for the broadcast or multicast service and the unicast service are informed in a hierarchical manner, respectively. [001177] The following example illustrates allocation of different HARQ feedback resources for two transport blocks. [001178] In example 1, a PUCCH resource set for unicast and a PUCCH resource set for broadcast and / or multicast are configured separately through high-layer RRC signaling. For example, UL PUCCH resource of UE configured in IE PUCCH-Config of each BWP includes HARQ feedback resources. [001179] The PUCCH resources configured by the RRC signaling include a set dl-DataToUL-ACK-unicast / dl-DataToUL-ACK-groupcast of slot index differences between unicast / multicast PDSCH and unicast / multicast PUCCH, which is respectively configured for the UE and is used to determine a difference between a slot index of UE receiving unicast / multicast PDSCH and a slot index of UE feedback unicast / multicast PUCCH. Fields including PDSCH-to-HARQ_feedback timing indicator-unicast and PDSCH-to-HARQ_feedback timing indicator-groupcast, in DCI, are used to indicate which of the sets to use. PUCCH-Resource-unicast::= SEQUENCE { pucch-Resourceld PUCCH-Resourceld, — Need R 2025203604 19 May 2025 PUCCH-Resource-broadcast and / or multicast: := SEQUENCE { pucch-Resourceld PUCCH-Resourceld, } PUCCH-Resourceld ::= INTEGER (0..maxNroiPUCCH-Resources-l) [001180] In example 2, only a PUCCH resource set for unicast is configured through high-layer RRC signaling with information of indicating offset information of two resources, and then the UE derives a PUCCH resource set for the broadcast and / or multicast. PUCCH-Resource::= SEQUENCE { pucch-Resourceld PUCCH-Resourceld, starting physical RB physical resource block-Id, physical RB-offset of broadcast or multicast: physical RB-offset (positive or negative), PUCCH-format4 } PUCCH-Resourceld : := INTEGER (0. .maxNrofPUCCH-Resources-1) [001181] In example 3, two different sets of resource information (such as the following Table 1) are directly pre-defined, and then an index can be directly used. Table 1 2025203604 19 May 2025 index PUCCH format First symbol Delta-symbol for multicast Number of symbols for unicast Number of symbols for multicast PRB offset d d offset ^^BWP Delta PRB offset for multicast Set of initial CS indexes 0 0 12 1 2 1 0 1 {0,3} 1 0 12 1 2 1 0 1 {0, 4,8} 2 0 12 1 2 1 3 1 {0,4,8} 3 1 10 1 4 3 0 1 {0,6} 4 1 10 1 4 3 0 1 {0, 3, 6, 9} 5 1 10 1 4 3 2 1 {0, 3, 6,9} 6 1 10 1 4 3 4 2 {0, 3, 6, 9} 7 1 4 1 10 10 0 2 {0,6} 8 1 4 1 10 10 0 2 {0, 3, 6, 9} 9 1 4 2 10 10 2 4 {0, 3, 6, 9} 10 1 4 2 10 10 4 2 {0, 3, 6, 9} 11 1 0 2 14 13 0 2 {0,6} 12 1 0 4 14 13 0 1 {0, 3, 6, 9} 13 1 0 4 14 13 2 1 {0, 3, 6, 9} 14 1 0 4 14 13 4 1 {0, 3, 6, 9} 15 1 0 4 14 13 1 {0, 3, 6, 9} [001182] The UE respectively determines an index in a resource set for unicast and an index in a resource set for multicast, according to an explicit indication in downlink scheduling signaling; [001183] or, an offset prior to a resource set is specified in the protocol / configured by RRC. [001184] For example, in a newly designed DCI format 1-x, a 6-bit PDSCH-to-HARQ_feedback timing indicator is defined, where the first 3 bits are values KI for unicast, and the last 3 bits are values KI for multicast. A set of KI in DCI format 1-x is {1, 2, 3, 4 ,5, 6, 7, 8}, and has a total of 8 values. [001185] Or, in DCI format 1-y, bit distribution of PDSCH-to-HARQ_feedback timing indicator for unicast and multicast depends on an array length of dl-DataToUL-ACK-unicast dl-DataToUL-ACK-multicast in PUCCH-Config. 2025203604 19 May 2025 [001186] dl-DataToUL-ACK-unicast SEQUENCE(SIZE(1..8)) OF INTEGER(0..15) [001187] dl-DataToUL-ACK-multicast SEQUENCE(SIZE(1..8)) OF INTEGER(0..15) [001188] List of timing for given PDSCH to the DL ACK. [001189] Alternatively, a resource index is implicitly indicated by combining a starting CCE index of a received downlink scheduling signaling and the number of CCEs in a downlink control resource set where a received downlink scheduling signaling is located. [001190] In addition, if data rate including group PDSCH and unicast PDSCH exceeds the UE’s capability, the UE will drop one of them: [001191] 1: by comparing logical channel priorities and / or physical layer priorities (if configured) corresponding to unicast and multicast, data on PDSCH with low priority is discarded; [001192] 2: the UE defaults that a priority of multicast is higher than that of unicast, and data corresponding to unicast with low priority is discarded; [001193] 3: The UE determines which type of data to discard according to a priority indication or a discard indication of unicast and multicast packets carried in DCI. [001194] Optionally, the first information includes information of the first PUCCH set and information of the second PUCCH set; or, [001195] the first information includes information of the first PUCCH set and offset information between the first PUCCH set and the second PUCCH set; [001196] where the first HARQ feedback resource is a resource in the first PUCCH set, and the second HARQ feedback resource is a resource in the second PUCCH set. [001197] Optionally, the information of the first PUCCH set and / or the information of the second PUCCH set are pre-specified identification information of the PUCCH set. 2025203604 19 May 2025 [001198] Referring to FIG. 15, FIG. 15 is a schematic flowchart of a data transmission method according to an embodiment of the present disclosure. The method is performed by a UE and includes the following steps: [001199] Step 151: receiving PDSCH transmitted by a network node, where the PDSCH includes a first transport block and a second transport block, the first transport block is used to transmit data of a unicast service, and the second transport block is used to transmit data of a broadcast or multicast service. [001200] In the embodiment of the present disclosure, the data of the unicast service and the data of the broadcast or multicast service can be scheduled on the same PDSCH, thereby realizing simultaneous execution of the unicast service and the broadcast or multicast service. The data of the unicast service and the data of the broadcast or multicast service may be different, in other words, the data of the unicast service and the data of the broadcast or multicast service may belong to QoS flows of different services, respectively. [001201] Optionally, before receiving the PDSCH transmitted by the network node, the method further includes: [001202] receiving first information transmitted by the network node, where the first information is used to determine a first HARQ feedback resource and a second HARQ feedback resource; and / or, [001203] receiving second information transmitted by the network node, where the second information is used to determine a first slot interval and a second slot interval; [001204] where the first slot interval is a time domain interval between the first HARQ feedback resource and the PDSCH, and the second slot interval is a time domain interval between the second HARQ feedback resource and the PDSCH. [001205] The first HARQ feedback resource is used to transmit HARQ feedback information for the first transport block, and the second HARQ feedback resource is used to transmit HARQ feedback information for the second transport block. [001206] In the embodiment of the present disclosure, although the data of the unicast service and the data of the broadcast or multicast service are scheduled on the 2025203604 19 May 2025 same PDSCH, HARQ feedback resources are respectively configured for the unicast service and the broadcast or multicast service, so that the HARQ feedback can be performed separately for data reception of unicast services and data reception of broadcast or multicast services. [001207] Optionally, the first information includes information of the first PUCCH set and information of the second PUCCH set; or, [001208] the first information includes information of the first PUCCH set and offset information between the first PUCCH set and the second PUCCH set; [001209] where the first HARQ feedback resource is a resource in the first PUCCH set, and the second HARQ feedback resource is a resource in the second PUCCH set. [001210] Optionally, the information of the first PUCCH set and / or the information of the second PUCCH set are pre-specified identification information of the PUCCH set. [001211] Referring to FIG. 16, FIG. 16 is a schematic flowchart of a data transmission method according to an embodiment of the present disclosure. The method is performed by a network node and includes the following steps: [001212] Step 161: transmitting data of a unicast service to a UE through a first BWP, and transmitting data of a broadcast or multicast service to the UE through a second BWP. [001213] In the embodiment of the present disclosure, referring to FIG. 18, the data of the unicast service and the data of the broadcast or multicast service are transmitted in a manner of BWP frequency division, so that the UE can simultaneously receive unicast services and broadcast or multicast services. [001214] In the embodiment of the present disclosure, there may be one or more broadcast or multicast services. The second BWP may be one BWP associated with all broadcast or multicast services, or may include multiple BWPs associated with multiple broadcast or multicast services. That is, an associated BWP may be configured for one or more broadcast / multicast services, or all broadcast / multicast services may be configured in one associated BWP. 2025203604 19 May 2025 [001215] Optionally, the first BWP is one or more dedicated activation BWPs. [001216] The second BWP is an initial BWP, or the second BWP is a BWP that is associated with an initial BWP [001217] Configurations of the initial BWP may be: an initial downlink BWP broadcast in SIB1, and / or, an initial downlink BWP in a serving cell configuration, and / or, an initial BWP corresponding to coreset 0. [001218] Optionally, before transmitting data of a unicast service to a UE through a first BWP, and transmitting data of a broadcast or multicast service to the UE through a second BWP, the method further includes: [001219] in case that the second BWP is a BWP that has an association relationship with the initial BWP, transmitting a system message including third information; [001220] where the third information is used to indicate the association relationship between the second BWP and the initial BWP. [001221] In the embodiment of the present disclosure, the network side may configure one associated BWP for the unicast and broadcast or multicast services of the UE, respectively. Specifically, the unicast service may be configured on a dedicated activated BWP, the multicast service may be configured on the initial BWP or a BWP that has an association relationship with the initial BWP, and the association relationship between the initial BWP and the BWP that transmits the multicast service, such as offset relationship between Corset and Searchspace, PUCCH resources, relationship between ACK and CSI, is indicated in the system message. Then, the unicast service is configured into another one or more BWPs, thereby realizing cross-BWP scheduling, so that the two services can be transmitted simultaneously [001222] Referring to FIG. 17, BWP1 and BWP2 of MRB can share one HARQ entity, but use independent HARQ processes; BWPs of radio channels share one HARQ entity. In this way, blind retransmission and no HARQ feedback can be implemented on the HARQ entity of the MRB. Retransmission scheduling according to HARQ feedback is performed on the HARQ entity of the BWP of the radio channel. 2025203604 19 May 2025 [001223] In other optional embodiments, configuration information of the multicast service (such as SC-PTM) in the time domain needs to be in the system message or dedicated signaling, and then, the UE reads the broadcast / multicast service in time information configured for multicast services, and read the unicast service in time information configured for non-multicast services. [001224] If there is a conflict between transmission time of service data of the broadcast / multicast service and transmission time of service data of the unicast service, and the two types of services cannot be transmitted in parallel in the cell in a manner of frequency division such as BWP frequency division, then, the base station or MCE adjusts transmission time information of the service data of the multicast service, i.e., advancing or postponing transmission, and notifies the UE of the adjusted time information, and also notifies other base stations or cells of the same broadcast / multicast service, so that transmission time of service data of the broadcast / multicast service and transmission time of service data of the unicast service are staggered. [001225] Referring to FIG. 19, FIG. 19 is a schematic flowchart of a data transmission method according to an embodiment of the present disclosure. The method is performed by a UE and includes the following steps: [001226] Step 191: receiving data of a unicast service transmitted by a network node through a first BWP, and data of a broadcast or multicast service transmitted through a second BWP. [001227] Optionally, the first BWP is one or more dedicated activation BWPs. [001228] The second BWP is an initial BWP, or the second BWP is a BWP that is associated with an initial BWP. [001229] Configurations of the initial BWP may be: an initial downlink BWP broadcast in SIB1, and / or, an initial downlink BWP in a serving cell configuration, and / or, an initial BWP corresponding to coreset 0. [001230] Optionally, before receiving data of a unicast service transmitted by a network node through a first BWP, and data of a broadcast or multicast service transmitted through a second BWP, the method further includes: 2025203604 19 May 2025 [001231] receiving a system message including third information; [001232] where the third information is used to indicate an association relationship between the second BWP and the initial BWP. [001233] In other optional embodiments, configuration information of the multicast service (such as SC-PTM) in the time domain needs to be in the system message or dedicated signaling, and then, the UE reads the broadcast / multicast service in time information configured for multicast services, and read the unicast service in time information configured for non-multicast services. [001234] If there is a conflict between transmission time of service data of the broadcast / multicast service and transmission time of service data of the unicast service, and the two types of services cannot be transmitted in parallel in the cell in a manner of frequency division such as BWP frequency division, then, the base station or MCE adjusts transmission time information of the service data of the multicast service, i.e., advancing or postponing transmission, and notifies the UE of the adjusted time information, and also notifies other base stations or cells of the same broadcast / multicast service, so that transmission time of service data of the broadcast / multicast service and transmission time of service data of the unicast service are staggered. [001235] Referring to FIG. 20, FIG. 20 is a schematic diagram of a network node according to an embodiment of the present disclosure. The network node 200 includes: [001236] a radio channel configuration module 201 configured to configure a first radio channel and / or a second radio channel for a first PDU session, or configure a first radio channel and / or a second radio channel for at least one same QoS flow of a first PDU session. [001237] The first radio channel is configured to transmit first data to the UE. [001238] The second radio channel is configured to transmit second data to the UE. 2025203604 19 May 2025 [001239] The first radio channel is one of a unicast radio channel, a broadcast or multicast radio channel, and the second radio channel is the other one of the unicast radio channel and the broadcast or multicast radio channel. [001240] The first data represents first data of the first PDU session or first data of at least one QoS flow of the first PDU session. [001241] The second data represents second data of the first PDU session or second data of at least one QoS flow of the first PDU session. [001242] Optionally, the second data is the same as the first data, or [001243] the second data is a subset of the first data, or, [001244] the second data and the first data have no intersection, or, [001245] the second data is partially the same as the first data. [001246] Optionally, the radio channel configuration module is configured to configure at least one of a first SDAP configuration, a first PDCP configuration, a first RLC configuration, a first MAC configuration or a first physical configuration corresponding to the first radio channel; configure at least one of a second SDAP configuration, a second PDCP configuration, a second RLC configuration, a second MAC configuration or a second physical configuration corresponding to the second radio channel; [001247] where at least the first physical configuration is different from the second physical configuration. [001248] The first radio channel and the second radio channel share one radio bearer or two independent radio bearers. [001249] Optionally, the radio channel configuration module is configured to configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and configure the second PDCP configuration, the second RLC configuration, the second MAC configuration and the second physical configuration corresponding to the second radio channel; or, [001250] the radio channel configuration module is configured to configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, 2025203604 19 May 2025 the first MAC configuration and the first physical configuration corresponding to the first radio channel, and configure the second PDCP configuration, the second RLC configuration and the second physical configuration corresponding to the second radio channel; or, [001251] the radio channel configuration module is configured to configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and configure the second RLC configuration, the second MAC configuration and the second physical configuration corresponding to the second radio channel; or, [001252] the radio channel configuration module is configured to configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and configure the second RLC configuration and the second physical configuration corresponding to the second radio channel; or, [001253] the radio channel configuration module is configured to configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and configure the second MAC configuration and the second physical configuration corresponding to the second radio channel; or, [001254] the radio channel configuration module is configured to configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and configure the second physical configuration corresponding to the second radio channel. [001255] Optionally, the radio channel configuration module 201 is configured to configure the first radio channel and / or the second radio channel for the first PDU session or configure the first radio channel and / or the at least one QoS flow of the first PDU session in a manner of at least one of the following: 2025203604 19 May 2025 [001256] indicating first type information of the first PDU session and / or at least one QoS flow of the first PDU session of the UE; [001257] indicating second type information of the first PDU session and / or at least one QoS flow of the first PDU session of the UE; [001258] indicating a first type of the first radio channel and / or the second radio channel of the UE; or, [001259] indicating a second type of the first radio channel and / or the second radio channel of the UE; [001260] where the first type refers to a service type of unicast, broadcast or multicast; [001261] the second type refers to a transmission mode type of unicast, broadcast or multicast. [001262] Optionally, when the second radio channel and the first radio channel belong to the same cell and / or different cells of the same network node, relevant parameters of the first PDCP layer and the second PDCP layer are the same. The relevant parameters include at least one of security context information, security key, integrity protection configuration information, header compression algorithm and header compression context information. [001263] Optionally, the relevant parameters of PDCP layers corresponding to unicast radio channels of multiple first UEs are the same. The relevant parameters include at least one of security context information, security key, integrity protection configuration information, header compression algorithm and header compression context information. The first UE is a UE that receives data of the broadcast or multicast radio channel. [001264] Optionally, bandwidth parts (BWPs) corresponding to the broadcast or multicast radio channel include a first BWP and a second BWP. [001265] The first BWP is a dedicated BWP, and the second BWP is an initial BWP; or, both the first BWP and the second BWP are initial BWPs. 2025203604 19 May 2025 [001266] Configurations of the initial BWP may be: an initial downlink BWP broadcast in SIB1, and / or, an initial downlink BWP in a serving cell configuration, and / or, an initial BWP corresponding to coreset 0. [001267] Optionally, the network node further includes at least one of the following: [001268] a first activation module configured to activate the first radio channel or the second radio channel through an RRC message, MAC CE and / or physical control signaling; [001269] a second activation module configured to activate the first radio channel and the second radio channel through an RRC message, MAC CE and / or physical control signaling; [001270] a third activation module configured to activate the first radio channel and deactivate the second radio channel through an RRC message, MAC CE and / or physical control signaling; [001271] a first configuration module configured to simultaneously configure the first radio channel and / or the second radio channel of the first PDU session or the first radio channel and the second radio channel of at least one QoS flow of the first PDU session, through an RRC message; [001272] a second configuration module configured to configure the first radio channel and / or the second radio channel of the first PDU session, or the first radio channel or the second radio channel of at least one QoS flow of the first PDU session, through an RRC message; [001273] a third configuration module configured to use an RRC message to configure the first radio channel and / or the second radio channel of the first PDU session, or the first radio channel of at least one QoS flow of the first PDU session, and delete the second radio channel of at least one QoS flow of the first PDU session; or, [001274] a fourth configuration module configured to use an RRC message to configure the first radio channel and / or the second radio channel of the first PDU 2025203604 19 May 2025 session, or the second radio channel of at least one QoS flow of the first PDU session, and delete the first radio channel of at least one QoS flow of the first PDU session. [001275] Optionally, the network node further includes: [001276] a status report obtaining module configured to obtain a PDCP transmission status report of the first radio channel. [001277] Optionally, the second data transmission module is configured to, within a preset time period of starting to transmit the second data through the second radio channel, transmit a first PDCP PDU including an IR packet, where the first PDCP PDU is used to carry the second data. [001278] Optionally, the second data transmission module is configured to transmit a second PDCP PDU configured to carry the second data; where a packet header of the second PDCP PDU includes information for indicating encryption with a new key; or, the second PDCP PDU is packaged using a logical channel identifier corresponding to the second radio channel; [001279] or, [001280] the first data transmission module is configured to, when the second radio channel and the first radio channel belong to different cells, transmit an end packet to the UE, where the end packet is used to indicate that data of the first PDU session or data of at least one QoS flow of the first PDU session has been switched from the first radio channel to the second radio channel and is carried by the second radio channel. [001281] Optionally, the network node further includes: [001282] a function entity configuration module configured to configure, at the network node, synchronization function entity. [001283] The synchronization function entity is configured for: [001284] transmitting and / or interacting, through signaling, time information associated with data packet transmission; and / or, [001285] adding time information associated with data packet transmission into a data packet; 2025203604 19 May 2025 [001286] where the time information may be absolute and / or relative time information; or information of a system frame number (SFN), a subframe, a slot, a mini-slot and / or a time symbol. [001287] Optionally, a synchronization protocol instance of the synchronization function entity is associated with a broadcast or multicast PDU session. [001288] Optionally, the synchronization function entity is used to synchronize data packet transmission between the core network and / or application layer and network nodes, and / or network nodes. [001289] The synchronization function entity is an independent protocol layer, or the synchronization function entity is located in at least one of protocol layers of SDAP, PDCP, RLC and MAC. [001290] Optionally, the time information is time information transmitted from the application layer or the core network, or is time information which is generated by the network node and used to synchronize transmission between base stations. [001291] Optionally, in case that the synchronization function entity is used to add the time information associated with data packet transmission into the data packet, the time information and data are transmitted together in one data packet; and / or, the time information is transmitted separately in a data packet. [001292] Optionally, the time information is transmitted by a centralized unit (CU) to a distributed unit (DU); and / or, [001293] the time information is information converted by the CU into SFN, subframe, slot, mini-slot and / or time symbol for scheduling. [001294] Optionally, the synchronization function entity is configured to, after receiving user data frame, parse out the time information associated with data packet transmission added in the data packet, and / or, parse out the time information associated with data packet transmission transmitted and / or interacted in the signaling; and use the time information to schedule user data or perform scheduling in MTCH scheduling cycle. 2025203604 19 May 2025 [001295] Optionally, the network node includes a base station of a first cell and a base station of a second cell. The first cell is a cell to which the first radio channel belongs, and the second cell is a cell to which the second radio channel belongs. [001296] The base station of the first cell informs, the base station of the second cell, of sequence indexes of packets that have been transmitted, and / or sequence indexes of packets successfully received by the UE, and then the base station of the second cell uses a unicast connection to transmit to the UE, packets which are out of sync between the first cell and the second cell. [001297] The base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache. [001298] The base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache, together with carrying time information corresponding to transmission of the packets. [001299] According to the received information, the base station of the first cell forwards packets which are out of sync between the first cell and the second cell. [001300] According to the received information, the base station of the first cell forwards packets which are out of sync between the first cell and the second cell and which are not stored in a cache of the second cell. [001301] The UE informs, the base station of the second cell, of sequence indexes of data packets successfully received in the first cell, and then the base station of the second cell uses a unicast connection to transmit to the UE, packets which are out of sync between the first cell and the second cell. [001302] The UE maintains connection with the first cell and the second cell at the same time, and does not interrupt the connection with the first cell until the UE has received, from the first cell, packets which are out of sync between the first cell and the second cell. [001303] The base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or 2025203604 19 May 2025 sequence indexes of packets still stored in an cache, optionally together with carrying time information corresponding to transmission of the packets; the first cell informs the UE in handover information; the UE maintains connection with the first cell and the second cell at the same time, and does not interrupt the connection with the first cell until the UE has received, from the first cell, packets which are out of sync between the first cell and the second cell. [001304] After the UE switches to the second cell, the UE continues to maintain the connection with the first cell and does not interrupt the connection with the first cell until the UE finds that packets received in the second cell are continuous or repeated with packets received from the first cell. [001305] Optionally, the network node further includes: [001306] an indication information transmission module configured to transmit first indication information and / or second indication information to the UE; where the first indication information is used to indicate the broadcast or multicast service which is being transmitted by the network node, and the second indication information is used to instruct the UE to report concurrent demand information, and the concurrent demand information includes first concurrent demand information for unicast service and broadcast or multicast service and / or second concurrent demand information for multiple broadcast or multicast services; [001307] receive the concurrent demand information transmitted by the UE according to the first indication information and / or the second indication information; and [001308] allocate resources to the UE according to the concurrent demand information. [001309] Optionally, the concurrent demand information includes at least one of the following: demand information of a unicast service being transmitted, demand information of a broadcast or multicast service being transmitted, demand information of a unicast service to be transmitted in the future, or demand information of a broadcast or multicast service to be transmitted in the future. [001310] Optionally, the network node further includes: 2025203604 19 May 2025 [001311] a determination module configured to determine whether there is a condition or factor for switching between the first radio channel and the second radio channel, where the condition or factor includes at least one of the following: [001312] the number of participating UEs, quality of service (QoS) information, quality of experience (QoE), channel quality information, a status of UE receiving data packets, or transmission mode information selected by UE, a big data analysis node, a core network, an artificial intelligence analysis node and / or a network management node; [001313] in case that most of participating UEs of a multicast or broadcast are concentrated in a first beam and a second beam, if one or more UEs cannot receive information on the first beam and the second beam, a unicast radio channel is used for these UEs which cannot receive information on the first beam and the second beam; [001314] the number of data packets that the UE fails to receive is greater than or equal to a certain threshold or the number of data packets that the UE successfully receives is less than or equal to the certain threshold, multicast transmission is switched to unicast transmission; or, [001315] if the number of data packets that the UE fails to receive is less than or equal to a certain threshold or the number of data packets that the UE successfully receives is greater than or equal to the certain threshold, unicast transmission is switched to multicast transmission. [001316] Optionally, at least one of the following information is notified to the core network by the radio access network side, the UE, the big data analysis node, the artificial intelligence analysis node and / or a network management node: [001317] the number of participating UEs, channel quality information, status of UE receiving data packets, and selected transmission mode information. [001318] Referring to FIG. 21, FIG. 21 is a schematic diagram of a UE according to an embodiment of the present disclosure. The UE 210 includes: [001319] a first configuration information receiving module 211 configured to receive first configuration information transmitted by a network node; 2025203604 19 May 2025 [001320] a radio channel establishment and / or configuration module 212 configured to, according to the first configuration information, establish and / or configure a first radio channel and / or a second radio channel for a first PDU session, or, establish and / or configure a first radio channel and / or a second radio channel for at least one QoS flow of the first PDU session. [001321] The first radio channel is configured to receive first data transmitted by the network node through the first radio channel. [001322] The second radio channel is configured to receive second data transmitted by the network node through the second radio channel. [001323] The first radio channel is one of a unicast radio channel, a broadcast or multicast radio channel, and the second radio channel is the other one of the unicast radio channel and the broadcast or multicast radio channel. [001324] The first data represents first data of the first PDU session or first data of at least one QoS flow of the first PDU session. [001325] The second data represents second data of the first PDU session or second data of at least one QoS flow of the first PDU session. [001326] Optionally, the second data is the same as the first data, or [001327] the second data is a subset of the first data, or, [001328] the second data and the first data have no intersection, or, [001329] the second data is partially the same as the first data. [001330] Optionally, the UE further includes: [001331] an establishment and / or configuration module configured to establish and / or configure at least one of a first SDAP entity, a first PDCP configuration, a first RLC entity, a first MAC entity or a first physical layer, to be corresponding to the first radio channel; establish and / or configure at least one of a second SDAP entity, a second PDCP entity, a second RLC entity, a second MAC entity or a second physical layer, to be corresponding to the second radio channel; [001332] where at least the first physical configuration is different from the second physical configuration. 2025203604 19 May 2025 [001333] The first radio channel and the second radio channel share one radio bearer or two independent radio bearers. [001334] Optionally, the establishment and / or configuration module is configured to establish and / or configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and establish and / or configure the second PDCP configuration, the second RLC configuration, the second MAC configuration and the second physical configuration corresponding to the second radio channel; or, [001335] establish and / or configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and establish and / or configure the second PDCP configuration, the second RLC configuration and the second physical configuration corresponding to the second radio channel; or, [001336] establish and / or configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and establish and / or configure the second RLC configuration, the second MAC configuration and the second physical configuration corresponding to the second radio channel; or, [001337] establish and / or configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and establish and / or configure the second RLC configuration and the second physical configuration corresponding to the second radio channel; or, [001338] establish and / or configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and establish and / or configure the second MAC configuration and the second physical configuration corresponding to the second radio channel; or, 2025203604 19 May 2025 [001339] establish and / or configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and establish and / or configure the second physical configuration corresponding to the second radio channel. [001340] Optionally, the radio channel establishment and / or configuration module 212 is configured to, according to the first configuration information, establish and / or configure a first radio channel and / or a second radio channel for a first PDU session, or, establishing and / or configuring a first radio channel and / or a second radio channel for at least one QoS flow of the first PDU session, in a manner of at least one of the following: [001341] receiving first type information of the first PDU session and / or at least one QoS flow of the first PDU session of the UE, transmitted by the network; [001342] receiving second type information of the first PDU session and / or at least one QoS flow of the first PDU session of the UE, transmitted by the network; [001343] receiving a first type of the first radio channel and / or the second radio channel of the UE, transmitted by the network; or, [001344] receiving a second type of the first radio channel and / or the second radio channel of the UE, transmitted by the network; [001345] where the first type refers to a service type of unicast, broadcast or multicast; [001346] the second type refers to a transmission mode type of unicast, broadcast or multicast. [001347] Optionally, when the second radio channel and the first radio channel belong to the same cell, relevant parameters of the first PDCP layer and the second PDCP layer are the same. The relevant parameters include at least one of security context information, security key, integrity protection configuration information, header compression algorithm and header compression context information. [001348] Optionally, the relevant parameters of PDCP layers corresponding to unicast radio channels of the UE are the same as those of a first UE. The relevant 2025203604 19 May 2025 parameters include at least one of security context information, security key, integrity protection configuration information, header compression algorithm and header compression context information. The first UE and the UE are UEs corresponding to the broadcast or multicast radio channel. [001349] Optionally, bandwidth parts (BWPs) corresponding to the broadcast or multicast radio channel include a first BWP and a second BWP. [001350] The first BWP is a dedicated BWP, and the second BWP is an initial BWP; or, both the first BWP and the second BWP are initial BWPs. [001351] Configurations of the initial BWP may be: an initial downlink BWP broadcast in SIB1, and / or, an initial downlink BWP in a serving cell configuration, and / or, an initial BWP corresponding to coreset 0. [001352] Optionally, the UE further includes: a first processing module. [001353] The first processing module is configured to receive an RRC message, MAC CE and / or physical control signaling, which is transmitted by the network node and is used to activate the first radio channel or the second radio channel, and activate the first radio channel or the second radio channel; [001354] the first processing module is configured to receive an RRC message, MAC CE and / or physical control signaling, which is transmitted by the network node and is used to activate the first radio channel and the second radio channel, and activate the first radio channel and the second radio channel; [001355] the first processing module is configured to receive an RRC message, MAC CE and / or physical control signaling, which is transmitted by the network node and is used to activate the first radio channel and deactivate the second radio channel, and activate the first radio channel and deactivating the second radio channel; [001356] the first processing module is configured to receive an RRC message which is transmitted by the network node and is used to simultaneously establish and / or configure the first radio channel and / or the second radio channel of the first PDU session, and simultaneously establish and / or configure the first radio channel and / or the second radio channel of the first PDU session; 2025203604 19 May 2025 [001357] the first processing module is configured to receive an RRC message which is transmitted by the network node and is used to establish and / or configure the first radio channel or the second radio channel of the first PDU session, and establish and / or configure the first radio channel or the second radio channel of the first PDU session; [001358] the first processing module is configured to receive an RRC message which is transmitted by the network node and is used to establish and / or configure the first radio channel of the first PDU session and delete the second radio channel, and establish and / or configure the first radio channel of the first PDU session and deleting the second radio channel; [001359] the first processing module is configured to receive an RRC message which is transmitted by the network node and is used to establish and / or configure the second radio channel of the first PDU session and delete the first radio channel, and establish and / or configure the second radio channel of the first PDU session and deleting the first radio channel. [001360] Optionally, the UE further includes: [001361] a status report transmission module configured to transmit a PDCP status report of the first radio channel. [001362] The receiving the second data of the first service transmitted by the network node through the second radio channel, includes: [001363] within a preset time period of starting to receive the second data through the second radio channel, receiving a first PDCP PDU including an IR packet, where the first PDCP PDU is used to carry the second data. [001364] Optionally, the second data receiving module is configured to receive a second PDCP PDU configured to carry the second data; where a packet header of the second PDCP PDU includes information for indicating encryption with a new key; or, the second PDCP PDU is packaged using a logical channel identifier corresponding to the second radio channel; [001365] or, the UE further includes: 2025203604 19 May 2025 [001366] an end packet receiving module configured to receive an end packet transmitted by the network node, where the end packet is used to indicate that data of the first PDU session or data of at least one QoS flow of the first PDU session has been switched from the first radio channel to the second radio channel and is carried by the second radio channel. [001367] Referring to FIG. 21b, FIG. 21b shows a network node 2100 according to an embodiment of the present disclosure, which includes: [001368] a first data transmission module 2101 configured to transmit first data to a UE through a first radio channel; [001369] where the first radio channel is configured for a first PDU session; or, the first radio channel is configured for at least one QoS flow of the first PDU session. [001370] The first radio channel is one of a unicast radio channel, a broadcast or multicast radio channel. [001371] The first data represents first data of the first PDU session or first data of at least one QoS flow of the first PDU session. [001372] Optionally, the network node further includes: a configuration module configured to configure at least one of a first SDAP configuration, a first PDCP configuration, a first RLC configuration, a first MAC configuration or a first physical configuration corresponding to the first radio channel. [001373] Bandwidth parts (BWPs) corresponding to the broadcast or multicast radio channel include a first BWP and / or a second BWP. [001374] The first BWP is a dedicated BWP, and the second BWP is an initial BWP; or, both the first BWP and the second BWP are initial BWPs. [001375] Configurations of the initial BWP may be: an initial downlink BWP broadcast in SIB1, and / or, an initial downlink BWP in a serving cell configuration, and / or, an initial BWP corresponding to control resource set (coreset) 0. [001376] Optionally, the network node further includes a second processing module. [001377] The second processing module is configured to activate the first radio channel through an RRC message, MAC CE and / or physical control signaling; and / or, 2025203604 19 May 2025 [001378] the second processing module is configured to deactivate the first radio channel through an RRC message, MAC CE and / or physical control signaling; and / or, [001379] the second processing module is configured to configure the first radio channel through an RRC message; and / or, [001380] the second processing module is configured to delete the first radio channel through an RRC message. [001381] Optionally, the network node further includes: [001382] an obtaining module configured to obtain relevant information of the second radio channel; [001383] where the second radio channel and the first radio channel are corresponding to the same PDU session configuration or at least one QoS flow of the same PDU session, and the second radio channel is on another network radio node. [001384] Optionally, the obtaining module is configured to obtain data packet transmission status information of the second radio channel. [001385] Optionally, the first data transmission module is configured to transmit a first PDCP PDU, where the first PDCP PDU is used to carry the first data; where a packet header of the first PDCP PDU includes information for indicating encryption with a new key; or, the first PDCP PDU is packaged using a logical channel identifier corresponding to the first radio channel; [001386] or, the network node further includes: [001387] an end packet transmission module configured to transmit an end packet to the UE, where the end packet is used to indicate that data of the first PDU session or data of at least one QoS flow of the first PDU session has been switched from the first radio channel to the second radio channel and is carried by the second radio channel. [001388] Optionally, the network node further includes: [001389] a synchronization function entity configuration module configured to configure, at the network node, synchronization function entity. [001390] The synchronization function entity is configured for: 2025203604 19 May 2025 [001391] transmitting and / or interacting, through signaling, time information associated with data packet transmission; and / or, [001392] adding time information associated with data packet transmission into a data packet; [001393] where the time information may be absolute and / or relative time information; or information of a system frame number (SFN), a subframe, a slot, a mini-slot and / or a time symbol. [001394] Optionally, a synchronization protocol instance of the synchronization function entity is associated with a broadcast or multicast PDU session. [001395] Optionally, the synchronization function entity is used to synchronize data packet transmission between the core network and / or application layer and network nodes, and / or network nodes. [001396] The synchronization function entity is an independent protocol layer, or the synchronization function entity is located in at least one of protocol layers of SDAP, PDCP, RLC and MAC. [001397] Optionally, the time information is time information transmitted from the application layer or the core network, or is time information which is generated by the network node and used to synchronize transmission between base stations. [001398] Optionally, in case that the synchronization function entity is used to add the time information associated with data packet transmission into the data packet, the time information and data are transmitted together in one data packet; and / or, the time information is transmitted separately in a data packet. [001399] Optionally, the time information is transmitted by a centralized unit (CU) to a distributed unit (DU); and / or, [001400] the time information is information converted by the CU into SFN, subframe, slot, mini-slot and / or time symbol for scheduling. [001401] Optionally, the synchronization function entity is configured to, after receiving user data frame, parse out the time information associated with data packet transmission added in the data packet, and / or, parse out the time information associated with data packet transmission transmitted and / or interacted in the signaling; 2025203604 19 May 2025 and use the time information to schedule user data or perform scheduling in MTCH scheduling cycle. [001402] Optionally, the network node includes a base station of a first cell and a base station of a second cell. The first cell is a cell to which the first radio channel belongs, and the second cell is a cell to which the second radio channel belongs. [001403] The base station of the first cell informs, the base station of the second cell, of sequence indexes of packets that have been transmitted, and / or sequence indexes of packets successfully received by the UE, and then the base station of the second cell uses a unicast connection to transmit to the UE, packets which are out of sync between the first cell and the second cell. [001404] The base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache. [001405] The base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache, together with carrying time information corresponding to transmission of the packets. [001406] According to the received information, the base station of the first cell forwards packets which are out of sync between the first cell and the second cell. [001407] According to the received information, the base station of the first cell forwards packets which are out of sync between the first cell and the second cell and which are not stored in a cache of the second cell. [001408] The UE informs, the base station of the second cell, of sequence indexes of data packets successfully received in the first cell, and then the base station of the second cell uses a unicast connection to transmit to the UE, packets which are out of sync between the first cell and the second cell. [001409] The UE maintains connection with the first cell and the second cell at the same time, and does not interrupt the connection with the first cell until the UE has received, from the first cell, packets which are out of sync between the first cell and the second cell. 2025203604 19 May 2025 [001410] The base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache, optionally together with carrying time information corresponding to transmission of the packets; the first cell informs the UE in handover information; the UE maintains connection with the first cell and the second cell at the same time, and does not interrupt the connection with the first cell until the UE has received, from the first cell, packets which are out of sync between the first cell and the second cell. [001411] After the UE switches to the second cell, the UE continues to maintain the connection with the first cell and does not interrupt the connection with the first cell until the UE finds that packets received in the second cell are continuous or repeated with packets received from the first cell. [001412] Referring to FIG. 22, FIG. 22 is a schematic diagram of a network node according to an embodiment of the present disclosure. The network node 220 includes: [001413] a session establishment module 221 configured to establish two or more protocol data unit (PDU) sessions for a second service; [001414] where a first PDU session is used to transmit third data of the second service to a UE; [001415] a second PDU session is used to transmit fourth data of the second service to the UE. [001416] The second service is a broadcast or multicast service. [001417] The first PDU session is one of a unicast PDU session and a broadcast or multicast PDU session; and the second PDU session is the other one of the unicast PDU session and the broadcast or multicast PDU session. [001418] The unicast PDU session is separately established for all or part of UE which receive the second service. [001419] Optionally, the fourth data is the same as the third data, or [001420] the fourth data is a subset of the third data, or, [001421] the fourth data and the third data have no intersection, or, 2025203604 19 May 2025 [001422] the fourth data is partially the same as the third data. [001423] Optionally, the network node includes a core network, and the core network includes a decision module. [001424] The decision module is configured to determine a UE in a broadcast or multicast group, which uses a multicast PDU session established for broadcast or multicast services to receive data, and a UE which uses a unicast PDU session established for broadcast or multicast services to receive data; and / or, [001425] the decision module is configured to determine, in a broadcast or multicast service, data received by using the broadcast or multicast PDU session of the broadcast or multicast service, data received by using the unicast PDU session; and / or, [001426] The decision module is configured to determine some or all UEs in a broadcast or multicast group, which can not only use a broadcast or multicast PDU session established for broadcast or multicast services to receive data, but also use a unicast PDU session established for broadcast or multicast services to receive data. [001427] Optionally, the network node includes a core network, and the core network includes: [001428] a first notification module configured to inform the UE of relationship between the first PDU session and the second PDU session; [001429] a second notification module configured to inform the UE and the base station respectively of relationship between the first PDU session and the second PDU session, when the core network configures a broadcast or multicast PDU session and a unicast PDU session of the same broadcast or multicast service for the UE to receive data; or, [001430] a third notification module configured to inform a base station of relationship between the first PDU session and the second PDU session; and then, inform, by the base station, the UE of the relationship between the first PDU session and the second PDU session; or, [001431] a fourth notification module configured to inform a base station of relationship between the first PDU session and the second PDU session; or, inform, 2025203604 19 May 2025 by the core network, the UE of relationship between the first PDU session and the second PDU session. [001432] Optionally, the network node includes a core network, and the core network includes: [001433] a fifth notification module configured to inform the UE of a reception mode of the first PDU session and the second PDU session; [001434] a decision module configured to determine some or all UEs in a broadcast or multicast group, which can not only use a broadcast or multicast PDU session established for a broadcast or multicast service to receive data, but also use a unicast PDU session established for the broadcast or multicast service to receive data; [001435] where the data received by the UE from the broadcast or multicast PDU session established for the broadcast or multicast service and the data received by the UE from the unicast PDU session established for the broadcast or multicast service may be simultaneous or time-sharing. [001436] Optionally, the network node includes a core network, and the core network includes: [001437] a selection module configured to, according to quality requirements of a service, and / or arrival characteristics of the service, and / or new radio channel, select for the UE a PDU session type and / or specific time for receiving the broadcast or multicast service. [001438] The core network can obtain specific information from the UE, the base station and / or the network management side. The specific information includes at least one of the following: channel quality of air interface, hybrid automatic repeat request (HARQ) feedback for UE, automatic repeat request (ARQ) feedback for UE, timeout of PDCP discard timer of UE, or status of UE receiving data packets. The specific time is in the time form of bitmap format or absolute / relative time information. [001439] Optionally, the network node includes a core network, and the core network includes: 2025203604 19 May 2025 [001440] a sixth notification module configured to inform a base station of a PDU session type selected for the UE to receive broadcast or multicast services, so that the base station informs the UE of the PDU session type which is selected by the network node for the UE to receive broadcast or multicast service; or, [001441] a seventh notification module configured to inform a base station of specific time and a PDU session type selected for the UE to receive broadcast or multicast services, so that the base station informs the UE of the specific time and the PDU session type which is selected by the network node for the UE to receive broadcast or multicast service; or, [001442] an eighth notification module configured to inform a base station of a PDU session type selected for the UE to receive broadcast or multicast services; or, inform the UE of a PDU session type selected for the UE to receive broadcast or multicast services; or, [001443] a ninth notification module configured to inform a base station of specific time and a PDU session type selected for the UE to receive broadcast or multicast services; or, inform the UE of specific time and a PDU session type selected for the UE to receive broadcast or multicast services. [001444] Optionally, the network node includes: [001445] an establishment module configured to establish a broadcast or multicast PDU session and a unicast PDU session for the same broadcast or multicast service, for a UE to receive data; and use signaling or a special data packet to activate a to-be-used broadcast or multicast PDU session and / or unicast PDU session established for the same broadcast or multicast service; [001446] and / or, [001447] a deactivation module configured to use signaling or a special data packet to deactivate the broadcast or multicast PDU session and / or unicast PDU session established for the same broadcast or multicast service; [001448] where the network node may be a node on core network side and / or radio access network side. [001449] Optionally, the network node includes: 2025203604 19 May 2025 [001450] a transmission module configured to transmit the broadcast or multicast PDU session established for the broadcast or multicast service at the network node on the radio access network side, to the UE by using a point-to-point (PTP) and / or point-to-multipoint (PTM) transmission mode; or, [001451] a receiving module configured to receive a PDU session type reported by the UE, where the PDU session type is determined by the UE itself for receiving the multicast service according to quality requirements of a service, and / or arrival characteristics of the service, and / or new radio channel. [001452] Referring to FIG. 23, FIG. 23 is a schematic diagram of a UE according to an embodiment of the present disclosure. The UE 230 includes: [001453] a second configuration information receiving module 231 configured to receive second configuration information transmitted by a network node; [001454] a session establishment module 232 configured to establish two or more PDU sessions for a second service according to the second configuration information. [001455] The first PDU session is used to transmit third data of the second service to the UE. [001456] The second PDU session is used to transmit fourth data of the second service to the UE. [001457] The second service is a broadcast or multicast service. [001458] The first PDU session is one of a unicast PDU session and a broadcast or multicast PDU session; and the second PDU session is the other one of the unicast PDU session and the broadcast or multicast PDU session. [001459] The unicast PDU session is separately established for all or part of UE which receive the second service. [001460] Optionally, the fourth data is the same as the third data, or [001461] the fourth data is a subset of the third data, or, [001462] the fourth data and the third data have no intersection, or, [001463] the fourth data is partially the same as the third data. 2025203604 19 May 2025 [001464] Referring to FIG. 24, FIG. 24 is a schematic diagram of a network node according to an embodiment of the present disclosure. The network node 240 includes: [001465] a simultaneous transmission module 241 configured to transmit PDSCH to a UE; where the PDSCH includes a first transport block and a second transport block, the first transport block is used to transmit data of a unicast service, and the second transport block is used to transmit data of a broadcast or multicast service data. [001466] Optionally, the network node further includes: [001467] a first information transmission module configured to transmit first information to the UE, where the first information is used to determine a first HARQ feedback resource and a second HARQ feedback resource; and / or, [001468] a second information transmission module configured to transmit second information to the UE, where the second information is used to determine a first slot interval and a second slot interval; [001469] where the first slot interval is a time domain interval between the first HARQ feedback resource and the PDSCH, and the second slot interval is a time domain interval between the second HARQ feedback resource and the PDSCH. [001470] The first HARQ feedback resource is used to transmit HARQ feedback information for the first transport block, and the second HARQ feedback resource is used to transmit HARQ feedback information for the second transport block. [001471] Optionally, the first information includes information of the first PUCCH set and information of the second PUCCH set; or, [001472] the first information includes information of the first PUCCH set and offset information between the first PUCCH set and the second PUCCH set; [001473] where the first HARQ feedback resource is a resource in the first PUCCH set, and the second HARQ feedback resource is a resource in the second PUCCH set. 2025203604 19 May 2025 [001474] Optionally, the information of the first PUCCH set and / or the information of the second PUCCH set are pre-specified identification information of the PUCCH set. [001475] Referring to FIG. 25, FIG. 25 is a schematic diagram of a UE according to an embodiment of the present disclosure. The UE 250 includes: [001476] a simultaneous reception module 251 configured to receive PDSCH transmitted by a network node, where the PDSCH includes a first transport block and a second transport block, the first transport block is used to transmit data of a unicast service, and the second transport block is used to transmit data of a broadcast or multicast service. [001477] Optionally, the network node further includes: [001478] a first information reception module configured to receive first information transmitted by the network node, where the first information is used to determine a first HARQ feedback resource and a second HARQ feedback resource; and / or, [001479] a second information reception module configured to receive second information transmitted by the network node, where the second information is used to determine a first slot interval and a second slot interval; [001480] where the first slot interval is a time domain interval between the first HARQ feedback resource and the PDSCH, and the second slot interval is a time domain interval between the second HARQ feedback resource and the PDSCH. [001481] The first HARQ feedback resource is used to transmit HARQ feedback information for the first transport block, and the second HARQ feedback resource is used to transmit HARQ feedback information for the second transport block. [001482] Optionally, the first information includes information of the first PUCCH set and information of the second PUCCH set; or, [001483] the first information includes information of the first PUCCH set and offset information between the first PUCCH set and the second PUCCH set; 2025203604 19 May 2025 [001484] where the first HARQ feedback resource is a resource in the first PUCCH set, and the second HARQ feedback resource is a resource in the second PUCCH set. [001485] Optionally, the information of the first PUCCH set and / or the information of the second PUCCH set are pre-specified identification information of the PUCCH set. [001486] Referring to FIG. 26, FIG. 26 is a schematic diagram of a network node according to an embodiment of the present disclosure. The network node 260 includes: [001487] a frequency division transmission module 261 configured to transmit data of a unicast service to a UE through a first BWP, and transmit data of a broadcast or multicast service to the UE through a second BWP. [001488] Optionally, the first BWP is one or more dedicated activation BWPs. [001489] The second BWP is an initial BWP, or the second BWP is a BWP that is associated with an initial BWP. [001490] Configurations of the initial BWP may be: an initial downlink BWP broadcast in SIB1, and / or, an initial downlink BWP in a serving cell configuration, and / or, an initial BWP corresponding to coreset 0. [001491] Optionally, the network node further includes: [001492] a third information transmission module configured to, in case that the second BWP is a BWP that has an association relationship with the initial BWP, transmit a system message including third information; [001493] where the third information is used to indicate the association relationship between the second BWP and the initial BWP. [001494] Referring to FIG. 27, FIG. 27 is a schematic diagram of a UE according to an embodiment of the present disclosure. The UE 270 includes: [001495] a frequency division reception module 271 configured to receive data of a unicast service transmitted by a network node through a first BWP, and data of a broadcast or multicast service transmitted through a second BWP. [001496] Optionally, the first BWP is one or more dedicated activation BWPs. 2025203604 19 May 2025 [001497] The second BWP is an initial BWP, or the second BWP is a BWP that is associated with an initial BWP [001498] Configurations of the initial BWP may be: an initial downlink BWP broadcast in SIB1, and / or, an initial downlink BWP in a serving cell configuration, and / or, an initial BWP corresponding to coreset 0. [001499] Optionally, the network node further includes: [001500] a third information reception module configured to receive a system message including third information; [001501] where the third information is used to indicate an association relationship between the second BWP and the initial BWP [001502] Referring to FIG. 28, FIG. 28 is a schematic diagram of a network node according to an embodiment of the present disclosure. The network node 280 includes: a transceiver 281 and a processor 282. [001503] The transceiver 281 is configured to configure a first radio channel and / or a second radio channel for a first PDU session, or configure a first radio channel and / or a second radio channel for at least one same QoS flow of a first PDU session. [001504] The first radio channel is configured to transmit first data to the UE. [001505] The second radio channel is configured to transmit second data to the UE. [001506] The first radio channel is one of a unicast radio channel, a broadcast or multicast radio channel, and the second radio channel is the other one of the unicast radio channel and the broadcast or multicast radio channel. [001507] The first data represents first data of the first PDU session or first data of at least one QoS flow of the first PDU session. [001508] The second data represents second data of the first PDU session or second data of at least one QoS flow of the first PDU session. [001509] Optionally, the second data is the same as the first data, or [001510] the second data is a subset of the first data, or, [001511] the second data and the first data have no intersection, or, 2025203604 19 May 2025 [001512] the second data is partially the same as the first data. [001513] Optionally, the transceiver is configured to configure at least one of a first SDAP configuration, a first PDCP configuration, a first RLC configuration, a first MAC configuration or a first physical configuration corresponding to the first radio channel; configure at least one of a second SDAP configuration, a second PDCP configuration, a second RLC configuration, a second MAC configuration or a second physical configuration corresponding to the second radio channel; [001514] where at least the first physical configuration is different from the second physical configuration. [001515] The first radio channel and the second radio channel share one radio bearer or two independent radio bearers. [001516] Optionally, the transceiver is configured to configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and configure the second PDCP configuration, the second RLC configuration, the second MAC configuration and the second physical configuration corresponding to the second radio channel; or, [001517] configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and configure the second PDCP configuration, the second RLC configuration and the second physical configuration corresponding to the second radio channel; or, [001518] configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and configure the second RLC configuration, the second MAC configuration and the second physical configuration corresponding to the second radio channel; or, [001519] configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and configure the second RLC 2025203604 19 May 2025 configuration and the second physical configuration corresponding to the second radio channel; or, [001520] configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and configure the second MAC configuration and the second physical configuration corresponding to the second radio channel; or, [001521] configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and configure the second physical configuration corresponding to the second radio channel. [001522] Optionally, the transceiver 281 is configured to configure a first radio channel and / or a second radio channel for a first PDU session, or configure a first radio channel and / or a second radio channel for at least one same QoS flow of a first PDU session, in a manner of at least one of the following: [001523] indicating first type information of the first PDU session and / or at least one QoS flow of the first PDU session of the UE; [001524] indicating second type information of the first PDU session and / or at least one QoS flow of the first PDU session of the UE; [001525] indicating a first type of the first radio channel and / or the second radio channel of the UE; or, [001526] indicating a second type of the first radio channel and / or the second radio channel of the UE; [001527] where the first type refers to a service type of unicast, broadcast or multicast; [001528] the second type refers to a transmission mode type of unicast, broadcast or multicast. [001529] Optionally, when the second radio channel and the first radio channel belong to the same cell and / or different cells of the same network node, relevant parameters of the first PDCP layer and the second PDCP layer are the same. The 2025203604 19 May 2025 relevant parameters include at least one of security context information, security key, integrity protection configuration information, header compression algorithm and header compression context information. [001530] Optionally, the relevant parameters of PDCP layers corresponding to unicast radio channels of multiple first UEs are the same. The relevant parameters include at least one of security context information, security key, integrity protection configuration information, header compression algorithm and header compression context information. The first UE is a UE that receives data of the broadcast or multicast radio channel. [001531] Optionally, bandwidth parts (BWPs) corresponding to the broadcast or multicast radio channel include a first BWP and a second BWP. [001532] The first BWP is a dedicated BWP, and the second BWP is an initial BWP; or, both the first BWP and the second BWP are initial BWPs. [001533] Configurations of the initial BWP may be: an initial downlink BWP broadcast in SIB1, and / or, an initial downlink BWP in a serving cell configuration, and / or, an initial BWP corresponding to control resource set (coreset) 0. [001534] Optionally, the transceiver is configured to perform at least one of the following: [001535] activating the first radio channel or the second radio channel through an RRC message, MAC CE and / or physical control signaling; [001536] activating the first radio channel and the second radio channel through an RRC message, MAC CE and / or physical control signaling; [001537] activating the first radio channel and deactivating the second radio channel through an RRC message, MAC CE and / or physical control signaling; [001538] simultaneously configuring the first radio channel and / or the second radio channel of the first PDU session or the first radio channel and the second radio channel of at least one QoS flow of the first PDU session, through an RRC message; [001539] configuring the first radio channel and / or the second radio channel of the first PDU session, or the first radio channel or the second radio channel of at least one QoS flow of the first PDU session, through an RRC message; 2025203604 19 May 2025 [001540] using an RRC message to configure the first radio channel and / or the second radio channel of the first PDU session, or the first radio channel of at least one QoS flow of the first PDU session, and delete the second radio channel of at least one QoS flow of the first PDU session; or, [001541] using an RRC message to configure the first radio channel and / or the second radio channel of the first PDU session, or the second radio channel of at least one QoS flow of the first PDU session, and delete the first radio channel of at least one QoS flow of the first PDU session. [001542] Optionally, the transceiver is configured to obtain a PDCP transmission status report of the first radio channel. [001543] Optionally, the transceiver is configured to, within a preset time period of starting to transmit the second data through the second radio channel, transmit a first PDCP PDU including an IR packet, where the first PDCP PDU is used to carry the second data. [001544] Optionally, the transceiver is configured to transmit a second PDCP PDU configured to carry the second data; where a packet header of the second PDCP PDU includes information for indicating encryption with a new key; or, the second PDCP PDU is packaged using a logical channel identifier corresponding to the second radio channel; [001545] or, [001546] the transceiver is configured to transmit an end packet to the UE, where the end packet is used to indicate that data of the first PDU session or data of at least one QoS flow of the first PDU session has been switched from the first radio channel to the second radio channel and is carried by the second radio channel. [001547] Optionally, the transceiver is configured to configure, at the network node, synchronization function entity. [001548] The synchronization function entity is configured for: [001549] transmitting and / or interacting, through signaling, time information associated with data packet transmission; and / or, 2025203604 19 May 2025 [001550] adding time information associated with data packet transmission into a data packet; [001551] where the time information may be absolute and / or relative time information; or information of a system frame number (SFN), a subframe, a slot, a mini-slot and / or a time symbol. [001552] Optionally, a synchronization protocol instance of the synchronization function entity is associated with a broadcast or multicast PDU session. [001553] Optionally, the synchronization function entity is used to synchronize data packet transmission between the core network and / or application layer and network nodes, and / or network nodes. [001554] The synchronization function entity is an independent protocol layer, or the synchronization function entity is located in at least one of protocol layers of SDAP, PDCP, RLC and MAC. [001555] Optionally, the time information is time information transmitted from the application layer or the core network, or is time information which is generated by the network node and used to synchronize transmission between base stations. [001556] Optionally, in case that the synchronization function entity is used to add the time information associated with data packet transmission into the data packet, the time information and data are transmitted together in one data packet; and / or, the time information is transmitted separately in a data packet. [001557] Optionally, the time information is transmitted by a centralized unit (CU) to a distributed unit (DU); and / or, [001558] the time information is information converted by the CU into SFN, subframe, slot, mini-slot and / or time symbol for scheduling. [001559] Optionally, the synchronization function entity is configured to, after receiving user data frame, parse out the time information associated with data packet transmission added in the data packet, and / or, parse out the time information associated with data packet transmission transmitted and / or interacted in the signaling; and use the time information to schedule user data or perform scheduling in MTCH scheduling cycle. 2025203604 19 May 2025 [001560] Optionally, the network node includes a base station of a first cell and a base station of a second cell. The first cell is a cell to which the first radio channel belongs, and the second cell is a cell to which the second radio channel belongs. The transceiver is configured to perform at least one of the following: [001561] the base station of the first cell informs, the base station of the second cell, of sequence indexes of packets that have been transmitted, and / or sequence indexes of packets successfully received by the UE, and then the base station of the second cell uses a unicast connection to transmit to the UE, packets which are out of sync between the first cell and the second cell; [001562] the base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache; [001563] the base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache, together with carrying time information corresponding to transmission of the packets; [001564] according to the received information, the base station of the first cell forwards packets which are out of sync between the first cell and the second cell; [001565] according to the received information, the base station of the first cell forwards packets which are out of sync between the first cell and the second cell and which are not stored in a cache of the second cell; [001566] the UE informs, the base station of the second cell, of sequence indexes of data packets successfully received in the first cell, and then the base station of the second cell uses a unicast connection to transmit to the UE, packets which are out of sync between the first cell and the second cell; [001567] the UE maintains connection with the first cell and the second cell at the same time, and does not interrupt the connection with the first cell until the UE has received, from the first cell, packets which are out of sync between the first cell and the second cell; 2025203604 19 May 2025 [001568] the base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache, optionally together with carrying time information corresponding to transmission of the packets; the first cell informs the UE in handover information; the UE maintains connection with the first cell and the second cell at the same time, and does not interrupt the connection with the first cell until the UE has received, from the first cell, packets which are out of sync between the first cell and the second cell; [001569] after the UE switches to the second cell, the UE continues to maintain the connection with the first cell and does not interrupt the connection with the first cell until the UE finds that packets received in the second cell are continuous or repeated with packets received from the first cell. [001570] Optionally, the transceiver is configured to transmit first indication information and / or second indication information to the UE; where the first indication information is used to indicate the broadcast or multicast service which is being transmitted by the network node, and the second indication information is used to instruct the UE to report concurrent demand information, and the concurrent demand information includes first concurrent demand information for unicast service and broadcast or multicast service and / or second concurrent demand information for multiple broadcast or multicast services; [001571] receive the concurrent demand information transmitted by the UE according to the first indication information and / or the second indication information; and [001572] allocate resources to the UE according to the concurrent demand information. [001573] Optionally, the concurrent demand information includes at least one of the following: demand information of a unicast service being transmitted, demand information of a broadcast or multicast service being transmitted, demand information of a unicast service to be transmitted in the future, or demand information of a broadcast or multicast service to be transmitted in the future. 2025203604 19 May 2025 [001574] Optionally, the processor is configured to determine whether there is a condition or factor for switching between the first radio channel and the second radio channel, where the condition or factor includes at least one of the following: [001575] the number of participating UEs, quality of service (QoS) information, quality of experience (QoE), channel quality information, a status of UE receiving data packets, or transmission mode information selected by UE, a big data analysis node, a core network, an artificial intelligence analysis node and / or a network management node; [001576] in case that most of participating UEs of a multicast or broadcast are concentrated in a first beam and a second beam, if one or more UEs cannot receive information on the first beam and the second beam, a unicast radio channel is used for these UEs which cannot receive information on the first beam and the second beam; [001577] the number of data packets that the UE fails to receive is greater than or equal to a certain threshold or the number of data packets that the UE successfully receives is less than or equal to the certain threshold, multicast transmission is switched to unicast transmission; or, [001578] if the number of data packets that the UE fails to receive is less than or equal to a certain threshold or the number of data packets that the UE successfully receives is greater than or equal to the certain threshold, unicast transmission is switched to multicast transmission. [001579] Optionally, at least one of the following information is notified to the core network by the radio access network side, the UE, the big data analysis node, the artificial intelligence analysis node and / or a network management node: [001580] the number of participating UEs, channel quality information, status of UE receiving data packets, and selected transmission mode information. [001581] Referring to FIG. 29, FIG. 29 is a schematic diagram of a UE according to an embodiment of the present disclosure. The UE 290 includes a transceiver 291 and a processor 292. [001582] The transceiver is configured to receive first configuration information transmitted by a network node. 2025203604 19 May 2025 [001583] The transceiver is configured to, according to the first configuration information, establish and / or configure a first radio channel and / or a second radio channel for a first PDU session, or, establish and / or configure a first radio channel and / or a second radio channel for at least one QoS flow of the first PDU session. [001584] The first radio channel is configured to receive first data transmitted by the network node through the first radio channel. [001585] The second radio channel is configured to receive second data transmitted by the network node through the second radio channel. [001586] The first radio channel is one of a unicast radio channel, a broadcast or multicast radio channel, and the second radio channel is the other one of the unicast radio channel and the broadcast or multicast radio channel. [001587] The first data represents first data of the first PDU session or first data of at least one QoS flow of the first PDU session. [001588] The second data represents second data of the first PDU session or second data of at least one QoS flow of the first PDU session. [001589] Optionally, the second data is the same as the first data, or [001590] the second data is a subset of the first data, or, [001591] the second data and the first data have no intersection, or, [001592] the second data is partially the same as the first data. [001593] Optionally, the processor is configured to establish and / or configure at least one of a first SDAP entity, a first PDCP configuration, a first RLC entity, a first MAC entity or a first physical layer, to be corresponding to the first radio channel; establish and / or configure at least one of a second SDAP entity, a second PDCP entity, a second RLC entity, a second MAC entity or a second physical layer, to be corresponding to the second radio channel; [001594] where at least the first physical configuration is different from the second physical configuration. [001595] The first radio channel and the second radio channel share one radio bearer or two independent radio bearers. 2025203604 19 May 2025 [001596] Optionally, the processor is configured to establish and / or configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and establish and / or configure the second PDCP configuration, the second RLC configuration, the second MAC configuration and the second physical configuration corresponding to the second radio channel; or, [001597] establish and / or configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and establish and / or configure the second PDCP configuration, the second RLC configuration and the second physical configuration corresponding to the second radio channel; or, [001598] establish and / or configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and establish and / or configure the second RLC configuration, the second MAC configuration and the second physical configuration corresponding to the second radio channel; or, [001599] establish and / or configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and establish and / or configure the second RLC configuration and the second physical configuration corresponding to the second radio channel; or, [001600] establish and / or configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and establish and / or configure the second MAC configuration and the second physical configuration corresponding to the second radio channel; or, [001601] establish and / or configure the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and establish and / or 2025203604 19 May 2025 configure the second physical configuration corresponding to the second radio channel. [001602] Optionally, the transceiver is configured to, according to the first configuration information, establishing and / or configuring a first radio channel and / or a second radio channel for a first PDU session, or, establishing and / or configuring a first radio channel and / or a second radio channel for at least one QoS flow of the first PDU session, in a manner of at least one of the following: [001603] receiving first type information of the first PDU session and / or at least one QoS flow of the first PDU session of the UE, transmitted by the network; [001604] receiving second type information of the first PDU session and / or at least one QoS flow of the first PDU session of the UE, transmitted by the network; [001605] receiving a first type of the first radio channel and / or the second radio channel of the UE, transmitted by the network; or, [001606] receiving a second type of the first radio channel and / or the second radio channel of the UE, transmitted by the network; [001607] where the first type refers to a service type of unicast, broadcast or multicast; [001608] the second type refers to a transmission mode type of unicast, broadcast or multicast. [001609] Optionally, when the second radio channel and the first radio channel belong to the same cell, relevant parameters of the first PDCP layer and the second PDCP layer are the same. The relevant parameters include at least one of security context information, security key, integrity protection configuration information, header compression algorithm and header compression context information. [001610] Optionally, the relevant parameters of PDCP layers corresponding to unicast radio channels of the UE are the same as those of a first UE. The relevant parameters include at least one of security context information, security key, integrity protection configuration information, header compression algorithm and header compression context information. The first UE and the UE are UEs corresponding to the broadcast or multicast radio channel. 2025203604 19 May 2025 [001611] Optionally, bandwidth parts (BWPs) corresponding to the broadcast or multicast radio channel include a first BWP and a second BWP [001612] The first BWP is a dedicated BWP, and the second BWP is an initial BWP; or, both the first BWP and the second BWP are initial BWPs. [001613] Configurations of the initial BWP may be: an initial downlink BWP broadcast in SIB1, and / or, an initial downlink BWP in a serving cell configuration, and / or, an initial BWP corresponding to control resource set (coreset) 0. [001614] Optionally, the transceiver is configured to receive an RRC message, MAC CE and / or physical control signaling, which is transmitted by the network node and is used to activate the first radio channel or the second radio channel, and activate the first radio channel or the second radio channel; or, [001615] receive an RRC message, MAC CE and / or physical control signaling, which is transmitted by the network node and is used to activate the first radio channel and the second radio channel, and activate the first radio channel and the second radio channel; [001616] receive an RRC message, MAC CE and / or physical control signaling, which is transmitted by the network node and is used to activate the first radio channel and deactivate the second radio channel, and activate the first radio channel and deactivate the second radio channel; [001617] receive an RRC message which is transmitted by the network node and is used to simultaneously establish and / or configure the first radio channel and / or the second radio channel of the first PDU session, and simultaneously establish and / or configure the first radio channel and / or the second radio channel of the first PDU session; [001618] receive an RRC message which is transmitted by the network node and is used to establish and / or configure the first radio channel or the second radio channel of the first PDU session, and establish and / or configure the first radio channel or the second radio channel of the first PDU session; [001619] receive an RRC message which is transmitted by the network node and is used to establish and / or configure the first radio channel of the first PDU session 2025203604 19 May 2025 and delete the second radio channel, and establish and / or configure the first radio channel of the first PDU session and delete the second radio channel; [001620] receive an RRC message which is transmitted by the network node and is used to establish and / or configure the second radio channel of the first PDU session and delete the first radio channel, and establish and / or configure the second radio channel of the first PDU session and delete the first radio channel. [001621] Optionally, the transceiver is configured to transmit a PDCP status report of the first radio channel. [001622] Optionally, the transceiver is configured to, within a preset time period of starting to receive the second data through the second radio channel, receive a first PDCP PDU including an IR packet, where the first PDCP PDU is used to carry the second data. [001623] Optionally, the transceiver is configured to receive a second PDCP PDU configured to carry the second data; where a packet header of the second PDCP PDU includes information for indicating encryption with a new key; or, the second PDCP PDU is packaged using a logical channel identifier corresponding to the second radio channel; [001624] or, [001625] when the second radio channel and the first radio channel belong to different cells, before receiving the second data transmitted by the network node to the UE through the second radio channel, the transceiver is further configured to: [001626] receive an end packet transmitted by the network node, where the end packet is used to indicate that data of the first PDU session or data of at least one QoS flow of the first PDU session has been switched from the first radio channel to the second radio channel and is carried by the second radio channel. [001627] Referring to FIG. 29a, FIG. 29a is a schematic diagram of a network node according to an embodiment of the present disclosure. The network node 2900 includes a transceiver 2901 and a processor 2902. [001628] The transceiver is configured to transmit first data to a UE through a first radio channel; 2025203604 19 May 2025 [001629] where the first radio channel is configured for a first PDU session; or, the first radio channel is configured for at least one QoS flow of the first PDU session. [001630] The first radio channel is one of a unicast radio channel, a broadcast or multicast radio channel. [001631] The first data represents first data of the first PDU session or first data of at least one QoS flow of the first PDU session. [001632] Optionally, the transceiver is configured to configure at least one of a first SDAP configuration, a first PDCP configuration, a first RLC configuration, a first MAC configuration or a first physical configuration corresponding to the first radio channel. [001633] Optionally, bandwidth parts (BWPs) corresponding to the broadcast or multicast radio channel include a first BWP and / or a second BWP. [001634] The first BWP is a dedicated BWP, and the second BWP is an initial BWP; or, both the first BWP and the second BWP are initial BWPs. [001635] Configurations of the initial BWP may be: an initial downlink BWP broadcast in SIB1, and / or, an initial downlink BWP in a serving cell configuration, and / or, an initial BWP corresponding to control resource set (coreset) 0. [001636] Optionally, the transceiver is configured to activate the first radio channel through an RRC message, MAC CE and / or physical control signaling; and / or, [001637] deactivate the first radio channel through an RRC message, MAC CE and / or physical control signaling; and / or, [001638] configure the first radio channel through an RRC message; or, [001639] delete the first radio channel through an RRC message. [001640] Optionally, the transceiver is configured to obtain relevant information of the second radio channel; [001641] where the second radio channel and the first radio channel are corresponding to the same PDU session configuration or at least one QoS flow of the same PDU session, and the second radio channel is on another network radio node. [001642] Optionally, the transceiver is configured to obtain data packet transmission status information of the second radio channel. 2025203604 19 May 2025 [001643] Optionally, the transceiver is configured to transmit a first PDCP PDU, where the first PDCP PDU is used to carry the first data; where a packet header of the first PDCP PDU includes information for indicating encryption with a new key; or, the first PDCP PDU is packaged using a logical channel identifier corresponding to the first radio channel; [001644] or, [001645] the transceiver is configured to transmit an end packet to the UE, where the end packet is used to indicate that data of the first PDU session or data of at least one QoS flow of the first PDU session has been switched from the first radio channel to the second radio channel and is carried by the second radio channel. [001646] Optionally, the transceiver is configured to configure, at the network node, synchronization function entity. [001647] The synchronization function entity is configured for: [001648] transmitting and / or interacting, through signaling, time information associated with data packet transmission; and / or, [001649] adding time information associated with data packet transmission into a data packet; [001650] where the time information may be absolute and / or relative time information; or information of a system frame number (SFN), a subframe, a slot, a mini-slot and / or a time symbol. [001651] Optionally, a synchronization protocol instance of the synchronization function entity is associated with a broadcast or multicast PDU session. [001652] Optionally, the synchronization function entity is used to synchronize data packet transmission between the core network and / or application layer and network nodes, and / or network nodes. [001653] The synchronization function entity is an independent protocol layer, or the synchronization function entity is located in at least one of protocol layers of SDAP, PDCP, REC and MAC. 2025203604 19 May 2025 [001654] Optionally, the time information is time information transmitted from the application layer or the core network, or is time information which is generated by the network node and used to synchronize transmission between base stations. [001655] Optionally, in case that the synchronization function entity is used to add the time information associated with data packet transmission into the data packet, the time information and data are transmitted together in one data packet; and / or, the time information is transmitted separately in a data packet. [001656] Optionally, the time information is transmitted by a centralized unit (CU) to a distributed unit (DU); and / or, [001657] the time information is information converted by the CU into SFN, subframe, slot, mini-slot and / or time symbol for scheduling. [001658] Optionally, the synchronization function entity is configured to, after receiving user data frame, parse out the time information associated with data packet transmission added in the data packet, and / or, parse out the time information associated with data packet transmission transmitted and / or interacted in the signaling; and use the time information to schedule user data or perform scheduling in MTCH scheduling cycle. [001659] Optionally, the network node includes a base station of a first cell and a base station of a second cell. The first cell is a cell to which the first radio channel belongs, and the second cell is a cell to which the second radio channel belongs. The network node further performs at least one of the following: [001660] the base station of the first cell informs, the base station of the second cell, of sequence indexes of packets that have been transmitted, and / or sequence indexes of packets successfully received by the UE, and then the base station of the second cell uses a unicast connection to transmit to the UE, packets which are out of sync between the first cell and the second cell; [001661] the base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache; 2025203604 19 May 2025 [001662] the base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache, together with carrying time information corresponding to transmission of the packets; [001663] according to the received information, the base station of the first cell forwards packets which are out of sync between the first cell and the second cell; [001664] according to the received information, the base station of the first cell forwards packets which are out of sync between the first cell and the second cell and which are not stored in a cache of the second cell; [001665] the UE informs, the base station of the second cell, of sequence indexes of data packets successfully received in the first cell, and then the base station of the second cell uses a unicast connection to transmit to the UE, packets which are out of sync between the first cell and the second cell; [001666] the UE maintains connection with the first cell and the second cell at the same time, and does not interrupt the connection with the first cell until the UE has received, from the first cell, packets which are out of sync between the first cell and the second cell; [001667] the base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache, optionally together with carrying time information corresponding to transmission of the packets; the first cell informs the UE in handover information; the UE maintains connection with the first cell and the second cell at the same time, and does not interrupt the connection with the first cell until the UE has received, from the first cell, packets which are out of sync between the first cell and the second cell; [001668] after the UE switches to the second cell, the UE continues to maintain the connection with the first cell and does not interrupt the connection with the first cell until the UE finds that packets received in the second cell are continuous or repeated with packets received from the first cell. 2025203604 19 May 2025 [001669] Referring to FIG. 30, FIG. 30 is a schematic diagram of a network node according to an embodiment of the present disclosure. The network node 300 includes: a transceiver 301 and a processor 302. [001670] The transceiver 301 is configured to establish two or more protocol data unit (PDU) sessions for a second service; [001671] where a first PDU session is used to transmit third data of the second service to a UE; [001672] a second PDU session is used to transmit fourth data of the second service to the UE. [001673] The second service is a broadcast or multicast service. [001674] The first PDU session is one of a unicast PDU session and a broadcast or multicast PDU session; and the second PDU session is the other one of the unicast PDU session and the broadcast or multicast PDU session. [001675] The unicast PDU session is separately established for all or part of UE which receive the second service. [001676] Optionally, the fourth data is the same as the third data, or [001677] the fourth data is a subset of the third data, or, [001678] the fourth data and the third data have no intersection, or, [001679] the fourth data is partially the same as the third data. [001680] Optionally, the network node includes a core network; and the processor is configured to determine a UE in a broadcast or multicast group, which uses a multicast PDU session established for broadcast or multicast services to receive data, and a UE which uses a unicast PDU session established for broadcast or multicast services to receive data; and / or, [001681] determine, in a broadcast or multicast service, data received by using the broadcast or multicast PDU session of the broadcast or multicast service, data received by using the unicast PDU session; and / or, [001682] determine, some or all UEs in a broadcast or multicast group, which can not only use a broadcast or multicast PDU session established for broadcast or 2025203604 19 May 2025 multicast services to receive data, but also use a unicast PDU session established for broadcast or multicast services to receive data. [001683] Optionally, the network node includes a core network; and the transceiver is configured to inform the UE of relationship between the first PDU session and the second PDU session; [001684] inform the UE and the base station respectively of relationship between the first PDU session and the second PDU session, when the core network configures a broadcast or multicast PDU session and a unicast PDU session of the same broadcast or multicast service for the UE to receive data; or, [001685] inform a base station of relationship between the first PDU session and the second PDU session, so that the base station informs the UE of the relationship between the first PDU session and the second PDU session; or, [001686] inform a base station of relationship between the first PDU session and the second PDU session; or, inform the UE of relationship between the first PDU session and the second PDU session. [001687] Optionally, the network node includes a core network, and the transceiver is configured to inform the UE of a reception mode of the first PDU session and the second PDU session. [001688] The processor is configured to determine some or all UEs in a broadcast or multicast group, which can not only use a broadcast or multicast PDU session established for a broadcast or multicast service to receive data, but also use a unicast PDU session established for the broadcast or multicast service to receive data; [001689] where the data received by the UE from the broadcast or multicast PDU session established for the broadcast or multicast service and the data received by the UE from the unicast PDU session established for the broadcast or multicast service may be simultaneous or time-sharing. [001690] Optionally, the network node includes a core network; and the processor is configured to, according to quality requirements of a service, and / or arrival characteristics of the service, and / or new radio channel, select for the UE, a PDU session type and / or specific time for receiving the broadcast or multicast service. 2025203604 19 May 2025 [001691] The core network can obtain specific information from the UE, the base station and / or the network management side. The specific information includes at least one of the following: channel quality of air interface, hybrid automatic repeat request (HARQ) feedback for UE, automatic repeat request (ARQ) feedback for UE, timeout of PDCP discard timer of UE, or status of UE receiving data packets. The specific time is in the time form of bitmap format or absolute / relative time information. [001692] Optionally, the network node includes a core network; and the transceiver is configured to inform a base station of a PDU session type selected for the UE to receive broadcast or multicast services, so that the base station informs the UE of the PDU session type which is selected by the network node for the UE to receive broadcast or multicast service; or, [001693] inform a base station of specific time and a PDU session type selected for the UE to receive broadcast or multicast services, so that the base station informs the UE of the specific time and the PDU session type which is selected by the network node for the UE to receive broadcast or multicast service; or, [001694] inform a base station of a PDU session type selected for the UE to receive broadcast or multicast services; or, inform the UE of a PDU session type selected for the UE to receive broadcast or multicast services; or, [001695] inform a base station of specific time and a PDU session type selected for the UE to receive broadcast or multicast services; or, inform the UE of specific time and a PDU session type selected for the UE to receive broadcast or multicast services. [001696] Optionally, the transceiver is configured to establish a broadcast or multicast PDU session and a unicast PDU session for the same broadcast or multicast service, for a UE to receive data; and use signaling or a special data packet to activate a to-be-used broadcast or multicast PDU session and / or unicast PDU session established for the same broadcast or multicast service; [001697] and / or, 2025203604 19 May 2025 [001698] the transceiver is configured to use signaling or a special data packet to deactivate the broadcast or multicast PDU session and / or unicast PDU session established for the same broadcast or multicast service; [001699] where the network node may be a node on core network side and / or radio access network side. [001700] Optionally, the transceiver is configured to transmit the broadcast or multicast PDU session established for the broadcast or multicast service at the network node on the radio access network side, to the UE by using a point-to-point (PTP) and / or point-to-multipoint (PTM) transmission mode; or, [001701] receive a PDU session type reported by the UE, where the PDU session type is determined by the UE itself for receiving the multicast service according to quality requirements of a service, and / or arrival characteristics of the service, and / or new radio channel. [001702] Referring to FIG. 31, FIG. 31 is a schematic diagram of a UE according to an embodiment of the present disclosure. The UE 310 includes a transceiver 311 and a processor 312. [001703] The transceiver is configured to receive second configuration information transmitted by a network node. [001704] The transceiver is configured to establish two or more PDU sessions for the second service according to the second configuration information. [001705] The first PDU session is used to transmit third data of the second service to the UE. [001706] The second PDU session is used to transmit fourth data of the second service to the UE. [001707] The second service is a broadcast or multicast service. [001708] The first PDU session is one of a unicast PDU session and a broadcast or multicast PDU session; and the second PDU session is the other one of the unicast PDU session and the broadcast or multicast PDU session. [001709] The unicast PDU session is separately established for all or part of UE which receive the second service. 2025203604 19 May 2025 [001710] Optionally, the fourth data is the same as the third data, or [001711] the fourth data is a subset of the third data, or, [001712] the fourth data and the third data have no intersection, or, [001713] the fourth data is partially the same as the third data. [001714] Referring to FIG. 32, FIG. 32 is a schematic diagram of a network node according to an embodiment of the present disclosure. The network node 320 includes: a transceiver 321 and a processor 322. [001715] The transceiver is configured to transmit PDSCH to a UE; where the PDSCH includes a first transport block and a second transport block, the first transport block is used to transmit data of a unicast service, and the second transport block is used to transmit data of a broadcast or multicast service data. [001716] Optionally, the transceiver is configured to transmit first information to the UE, where the first information is used to determine a first HARQ feedback resource and a second HARQ feedback resource; and / or, [001717] transmit second information to the UE, where the second information is used to determine a first slot interval and a second slot interval; [001718] where the first slot interval is a time domain interval between the first HARQ feedback resource and the PDSCH, and the second slot interval is a time domain interval between the second HARQ feedback resource and the PDSCH. [001719] The first HARQ feedback resource is used to transmit HARQ feedback information for the first transport block, and the second HARQ feedback resource is used to transmit HARQ feedback information for the second transport block. [001720] Optionally, the first information includes information of the first PUCCH set and information of the second PUCCH set; or, [001721] the first information includes information of the first PUCCH set and offset information between the first PUCCH set and the second PUCCH set; [001722] where the first HARQ feedback resource is a resource in the first PUCCH set, and the second HARQ feedback resource is a resource in the second PUCCH set. 2025203604 19 May 2025 [001723] Optionally, the information of the first PUCCH set and / or the information of the second PUCCH set are pre-specified identification information of the PUCCH set. [001724] Referring to FIG. 33, FIG. 33 is a schematic diagram of a UE according to an embodiment of the present disclosure. The UE 330 includes a transceiver 331 and a processor 332. [001725] The transceiver 331 is configured to receive PDSCH transmitted by a network node, where the PDSCH includes a first transport block and a second transport block, the first transport block is used to transmit data of a unicast service, and the second transport block is used to transmit data of a broadcast or multicast service. [001726] Optionally, the transceiver is configured to receive first information transmitted by the network node, where the first information is used to determine a first HARQ feedback resource and a second HARQ feedback resource; and / or, [001727] receive second information transmitted by the network node, where the second information is used to determine a first slot interval and a second slot interval; [001728] where the first slot interval is a time domain interval between the first HARQ feedback resource and the PDSCH, and the second slot interval is a time domain interval between the second HARQ feedback resource and the PDSCH. [001729] The first HARQ feedback resource is used to transmit HARQ feedback information for the first transport block, and the second HARQ feedback resource is used to transmit HARQ feedback information for the second transport block. [001730] Optionally, the first information includes information of the first PUCCH set and information of the second PUCCH set; or, [001731] the first information includes information of the first PUCCH set and offset information between the first PUCCH set and the second PUCCH set; [001732] where the first HARQ feedback resource is a resource in the first PUCCH set, and the second HARQ feedback resource is a resource in the second PUCCH set. 2025203604 19 May 2025 [001733] Optionally, the information of the first PUCCH set and / or the information of the second PUCCH set are pre-specified identification information of the PUCCH set. [001734] Referring to FIG. 34, FIG. 34 is a schematic diagram of a network node according to an embodiment of the present disclosure. The network node 340 includes a transceiver 341 and a processor 342. [001735] The transceiver is configured to transmit data of a unicast service to a UE through a first BWP, and transmit data of a broadcast or multicast service to the UE through a second BWP. [001736] Optionally, the first BWP is one or more dedicated activation BWPs. [001737] The second BWP is an initial BWP, or the second BWP is a BWP that is associated with an initial BWP. [001738] Configurations of the initial BWP may be: an initial downlink BWP broadcast in SIB1, and / or, an initial downlink BWP in a serving cell configuration, and / or, an initial BWP corresponding to coreset 0. [001739] Optionally, the transceiver is configured to, in case that the second BWP is a BWP that has an association relationship with the initial BWP, transmit a system message including third information; [001740] where the third information is used to indicate the association relationship between the second BWP and the initial BWP. [001741] Referring to FIG. 35, FIG. 35 is a schematic diagram of a UE according to an embodiment of the present disclosure. The UE 350 includes a transceiver 351 and a processor 352. [001742] The transceiver is configured to receive data of a unicast service transmitted by a network node through a first BWP, and data of a broadcast or multicast service transmitted through a second BWP. [001743] Optionally, the first BWP is one or more dedicated activation BWPs. [001744] The second BWP is an initial BWP, or the second BWP is a BWP that is associated with an initial BWP. 2025203604 19 May 2025 [001745] Configurations of the initial BWP may be: an initial downlink BWP broadcast in SIB1, and / or, an initial downlink BWP in a serving cell configuration, and / or, an initial BWP corresponding to coreset 0. [001746] Optionally, the transceiver is configured to receive a system message including the third information; [001747] where the third information is used to indicate an association relationship between the second BWP and the initial BWP [001748] Referring to FIG. 36, FIG. 36 is a schematic diagram of a network node according to an embodiment of the present disclosure. The network node 360 includes a processor 361, a memory 362, and a program stored on the memory 362 and executable on the processor 361. The processor 361 executes the program to implement the following steps: [001749] configuring a first radio channel and / or a second radio channel for a first PDU session, or configuring a first radio channel and / or a second radio channel for at least one same QoS flow of a first PDU session. [001750] The first radio channel is configured to transmit first data to the UE. [001751] The second radio channel is configured to transmit second data to the UE. [001752] The first radio channel is one of a unicast radio channel, a broadcast or multicast radio channel, and the second radio channel is the other one of the unicast radio channel and the broadcast or multicast radio channel. [001753] The first data represents first data of the first PDU session or first data of at least one QoS flow of the first PDU session. [001754] The second data represents second data of the first PDU session or second data of at least one QoS flow of the first PDU session. [001755] Optionally, the second data is the same as the first data, or [001756] the second data is a subset of the first data, or, [001757] the second data and the first data have no intersection, or, [001758] the second data is partially the same as the first data. 2025203604 19 May 2025 [001759] Optionally, the processor 361 executes the program to further implement the following steps: [001760] configuring a first radio channel and / or a second radio channel for a first PDU session, or configuring a first radio channel and / or a second radio channel for at least one same QoS flow of a first PDU session, in a way including: [001761] configuring at least one of a first SDAP configuration, a first PDCP configuration, a first RLC configuration, a first MAC configuration or a first physical configuration corresponding to the first radio channel; configuring at least one of a second SDAP configuration, a second PDCP configuration, a second RLC configuration, a second MAC configuration or a second physical configuration corresponding to the second radio channel; [001762] where at least the first physical configuration is different from the second physical configuration. [001763] The first radio channel and the second radio channel share one radio bearer or two independent radio bearers. [001764] Optionally, the processor 361 executes the program to further implement the following steps: [001765] configuring the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and configuring the second PDCP configuration, the second RLC configuration, the second MAC configuration and the second physical configuration corresponding to the second radio channel; or, [001766] configuring the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and configuring the second PDCP configuration, the second RLC configuration and the second physical configuration corresponding to the second radio channel; or, [001767] configuring the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and configuring the second 2025203604 19 May 2025 RLC configuration, the second MAC configuration and the second physical configuration corresponding to the second radio channel; or, [001768] configuring the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and configuring the second RLC configuration and the second physical configuration corresponding to the second radio channel; or, [001769] configuring the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and configuring the second MAC configuration and the second physical configuration corresponding to the second radio channel; or, [001770] configuring the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and configuring the second physical configuration corresponding to the second radio channel. [001771] Optionally, the processor 361 executes the program to further implement the following steps: configuring a first radio channel and / or a second radio channel for a first PDU session, or configuring a first radio channel and / or a second radio channel for at least one same QoS flow of a first PDU session, in a way including at least one of the following: [001772] indicating first type information of the first PDU session and / or at least one QoS flow of the first PDU session of the UE; [001773] indicating second type information of the first PDU session and / or at least one QoS flow of the first PDU session of the UE; [001774] indicating a first type of the first radio channel and / or the second radio channel of the UE; or, [001775] indicating a second type of the first radio channel and / or the second radio channel of the UE; 2025203604 19 May 2025 [001776] where the first type refers to a service type of unicast, broadcast or multicast; [001777] the second type refers to a transmission mode type of unicast, broadcast or multicast. [001778] Optionally, when the second radio channel and the first radio channel belong to the same cell and / or different cells of the same network node, relevant parameters of the first PDCP layer and the second PDCP layer are the same. The relevant parameters include at least one of security context information, security key, integrity protection configuration information, header compression algorithm and header compression context information. [001779] Optionally, the relevant parameters of PDCP layers corresponding to unicast radio channels of multiple first UEs are the same. The relevant parameters include at least one of security context information, security key, integrity protection configuration information, header compression algorithm and header compression context information. The first UE is a UE that receives data of the broadcast or multicast radio channel. [001780] Optionally, bandwidth parts (BWPs) corresponding to the broadcast or multicast radio channel include a first BWP and a second BWP. [001781] The first BWP is a dedicated BWP, and the second BWP is an initial BWP; or, both the first BWP and the second BWP are initial BWPs. [001782] Configurations of the initial BWP may be: an initial downlink BWP broadcast in SIB1, and / or, an initial downlink BWP in a serving cell configuration, and / or, an initial BWP corresponding to control resource set (coreset) 0. [001783] Optionally, the processor 361 executes the program to further implement at least one of the following steps: [001784] activating the first radio channel or the second radio channel through an RRC message, MAC CE and / or physical control signaling; [001785] activating the first radio channel and the second radio channel through an RRC message, MAC CE and / or physical control signaling; 2025203604 19 May 2025 [001786] activating the first radio channel and deactivating the second radio channel through an RRC message, MAC CE and / or physical control signaling; [001787] simultaneously configuring the first radio channel and / or the second radio channel of the first PDU session or the first radio channel and the second radio channel of at least one QoS flow of the first PDU session, through an RRC message; [001788] configuring the first radio channel and / or the second radio channel of the first PDU session, or the first radio channel or the second radio channel of at least one QoS flow of the first PDU session, through an RRC message; [001789] using an RRC message to configure the first radio channel and / or the second radio channel of the first PDU session, or the first radio channel of at least one QoS flow of the first PDU session, and delete the second radio channel of at least one QoS flow of the first PDU session; or, [001790] using an RRC message to configure the first radio channel and / or the second radio channel of the first PDU session, or the second radio channel of at least one QoS flow of the first PDU session, and delete the first radio channel of at least one QoS flow of the first PDU session. [001791] Optionally, the processor 361 executes the program to further implement the following steps: [001792] before transmitting the second data to the UE through the second radio channel, obtaining a PDCP transmission status report of the first radio channel. [001793] Optionally, the processor 361 executes the program to further implement the following steps: [001794] transmitting the second data to the UE through the second radio channel, in a way including: within a preset time period of starting to transmit the second data through the second radio channel, transmitting a first PDCP PDU including an IR packet, where the first PDCP PDU is used to carry the second data. [001795] Optionally, the processor 361 executes the program to further implement the following steps: [001796] transmitting the second data to the UE through the second radio channel, in a way including: 2025203604 19 May 2025 [001797] transmitting a second PDCP PDU configured to carry the second data; where a packet header of the second PDCP PDU includes information for indicating encryption with a new key; or, the second PDCP PDU is packaged using a logical channel identifier corresponding to the second radio channel; [001798] or, [001799] when the second radio channel and the first radio channel belong to different cells, before transmitting the second data to the UE through the second radio channel, transmitting an end packet to the UE, where the end packet is used to indicate that data of the first PDU session or data of at least one QoS flow of the first PDU session has been switched from the first radio channel to the second radio channel and is carried by the second radio channel. [001800] Optionally, the processor 361 executes the program to further implement the following steps: configuring, at the network node, synchronization function entity. [001801] The synchronization function entity is configured for: [001802] transmitting and / or interacting, through signaling, time information associated with data packet transmission; and / or, [001803] adding time information associated with data packet transmission into a data packet; [001804] where the time information may be absolute and / or relative time information; or information of a system frame number (SFN), a subframe, a slot, a mini-slot and / or a time symbol. [001805] Optionally, a synchronization protocol instance of the synchronization function entity is associated with a broadcast or multicast PDU session. [001806] Optionally, the synchronization function entity is used to synchronize data packet transmission between the core network and / or application layer and network nodes, and / or network nodes. [001807] The synchronization function entity is an independent protocol layer, or the synchronization function entity is located in at least one of protocol layers of SDAP, PDCP, RLC and MAC. 2025203604 19 May 2025 [001808] Optionally, the time information is time information transmitted from the application layer or the core network, or is time information which is generated by the network node and used to synchronize transmission between base stations. [001809] Optionally, in case that the synchronization function entity is used to add the time information associated with data packet transmission into the data packet, the time information and data are transmitted together in one data packet; and / or, the time information is transmitted separately in a data packet. [001810] Optionally, the time information is transmitted by a centralized unit (CU) to a distributed unit (DU); and / or, [001811] the time information is information converted by the CU into SFN, subframe, slot, mini-slot and / or time symbol for scheduling. [001812] Optionally, the synchronization function entity is configured to, after receiving user data frame, parse out the time information associated with data packet transmission added in the data packet, and / or, parse out the time information associated with data packet transmission transmitted and / or interacted in the signaling; and use the time information to schedule user data or perform scheduling in MTCH scheduling cycle. [001813] Optionally, the network node includes a base station of a first cell and a base station of a second cell. The first cell is a cell to which the first radio channel belongs, and the second cell is a cell to which the second radio channel belongs. The processor 361 executes the program to further implement at least one of the following steps: [001814] the base station of the first cell informs, the base station of the second cell, of sequence indexes of packets that have been transmitted, and / or sequence indexes of packets successfully received by the UE, and then the base station of the second cell uses a unicast connection to transmit to the UE, packets which are out of sync between the first cell and the second cell; [001815] the base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache; 2025203604 19 May 2025 [001816] the base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache, together with carrying time information corresponding to transmission of the packets; [001817] according to the received information, the base station of the first cell forwards packets which are out of sync between the first cell and the second cell; [001818] according to the received information, the base station of the first cell forwards packets which are out of sync between the first cell and the second cell and which are not stored in a cache of the second cell; [001819] the UE informs, the base station of the second cell, of sequence indexes of data packets successfully received in the first cell, and then the base station of the second cell uses a unicast connection to transmit to the UE, packets which are out of sync between the first cell and the second cell; [001820] the UE maintains connection with the first cell and the second cell at the same time, and does not interrupt the connection with the first cell until the UE has received, from the first cell, packets which are out of sync between the first cell and the second cell; [001821] the base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache, optionally together with carrying time information corresponding to transmission of the packets; the first cell informs the UE in handover information; the UE maintains connection with the first cell and the second cell at the same time, and does not interrupt the connection with the first cell until the UE has received, from the first cell, packets which are out of sync between the first cell and the second cell; [001822] after the UE switches to the second cell, the UE continues to maintain the connection with the first cell and does not interrupt the connection with the first cell until the UE finds that packets received in the second cell are continuous or repeated with packets received from the first cell. 2025203604 19 May 2025 [001823] Optionally, the processor 361 executes the program to further implement the following steps: [001824] transmitting first indication information and / or second indication information to the UE; where the first indication information is used to indicate the broadcast or multicast service which is being transmitted by the network node, and the second indication information is used to instruct the UE to report concurrent demand information, and the concurrent demand information includes first concurrent demand information for unicast service and broadcast or multicast service and / or second concurrent demand information for multiple broadcast or multicast services; [001825] receiving the concurrent demand information transmitted by the UE according to the first indication information and / or the second indication information; and [001826] allocating resources to the UE according to the concurrent demand information. [001827] Optionally, the concurrent demand information includes at least one of the following: demand information of a unicast service being transmitted, demand information of a broadcast or multicast service being transmitted, demand information of a unicast service to be transmitted in the future, or demand information of a broadcast or multicast service to be transmitted in the future. [001828] Optionally, the processor 361 executes the program to further implement the following steps: [001829] before transmitting the second data to the UE through the second radio channel, performing at least one of the following: [001830] determining whether there is a condition or factor for switching between the first radio channel and the second radio channel, where the condition or factor includes at least one of the following: [001831] the number of participating UEs, quality of service (QoS) information, quality of experience (QoE), channel quality information, a status of UE receiving data packets, or transmission mode information selected by UE, a big data analysis node, a core network, an artificial intelligence analysis node and / or a network 2025203604 19 May 2025 management node; where the condition or factor for switching may further include location of the UE; [001832] in case that most of participating UEs of a multicast or broadcast are concentrated in a first beam and a second beam, if one or more UEs cannot receive information on the first beam and the second beam, a unicast radio channel is used for these UEs which cannot receive information on the first beam and the second beam; [001833] the number of data packets that the UE fails to receive is greater than or equal to a certain threshold or the number of data packets that the UE successfully receives is less than or equal to the certain threshold, multicast transmission is switched to unicast transmission; or, [001834] if the number of data packets that the UE fails to receive is less than or equal to a certain threshold or the number of data packets that the UE successfully receives is greater than or equal to the certain threshold, unicast transmission is switched to multicast transmission. [001835] Optionally, at least one of the following information is notified to the core network by the radio access network side, the UE, the big data analysis node, the artificial intelligence analysis node and / or a network management node: [001836] the number of participating UEs, channel quality information, status of UE receiving data packets, and selected transmission mode information. [001837] Referring to FIG. 37, FIG. 37 is a schematic diagram of a UE according to an embodiment of the present disclosure. The UE 370 includes a processor 371, a memory 372, and a program stored in the memory 372 and executable on the processor 371. The processor 371 executes the program to implement the following steps: [001838] receiving first configuration information transmitted by a network node; [001839] according to the first configuration information, establishing and / or configuring a first radio channel and / or a second radio channel for a first PDU session, or, establishing and / or configuring a first radio channel and / or a second radio channel for at least one QoS flow of the first PDU session. 2025203604 19 May 2025 [001840] The first radio channel is configured to receive first data transmitted by the network node through the first radio channel. [001841] The second radio channel is configured to receive second data transmitted by the network node through the second radio channel. [001842] The first radio channel is one of a unicast radio channel, a broadcast or multicast radio channel, and the second radio channel is the other one of the unicast radio channel and the broadcast or multicast radio channel. [001843] The first data represents first data of the first PDU session or first data of at least one QoS flow of the first PDU session. [001844] The second data represents second data of the first PDU session or second data of at least one QoS flow of the first PDU session. [001845] Optionally, the second data is the same as the first data, or [001846] the second data is a subset of the first data, or, [001847] the second data and the first data have no intersection, or, [001848] the second data is partially the same as the first data. [001849] Optionally, the processor 371 executes the program to further implement the following steps: [001850] establishing and / or configuring at least one of a first SDAP entity, a first PDCP configuration, a first RUC entity, a first MAC entity or a first physical layer, to be corresponding to the first radio channel; establishing and / or configuring at least one of a second SDAP entity, a second PDCP entity, a second RLC entity, a second MAC entity or a second physical layer, to be corresponding to the second radio channel; [001851] where at least the first physical configuration is different from the second physical configuration. [001852] The first radio channel and the second radio channel share one radio bearer or two independent radio bearers. [001853] Optionally, the processor 371 executes the program to further implement the following steps: 2025203604 19 May 2025 [001854] establishing and / or configuring at least one of a first SDAP entity, a first PDCP configuration, a first RLC entity, a first MAC entity or a first physical layer, to be corresponding to the first radio channel; establishing and / or configuring at least one of a second SDAP entity, a second PDCP entity, a second RLC entity, a second MAC entity or a second physical layer, to be corresponding to the second radio channel, in a way including: [001855] establishing and / or configuring the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and establishing and / or configuring the second PDCP configuration, the second RLC configuration, the second MAC configuration and the second physical configuration corresponding to the second radio channel; or, [001856] establishing and / or configuring the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and establishing and / or configuring the second PDCP configuration, the second RLC configuration and the second physical configuration corresponding to the second radio channel; or, [001857] establishing and / or configuring the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and establishing and / or configuring the second RLC configuration, the second MAC configuration and the second physical configuration corresponding to the second radio channel; or, [001858] establishing and / or configuring the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and establishing and / or configuring the second RLC configuration and the second physical configuration corresponding to the second radio channel; or, [001859] establishing and / or configuring the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and establishing 2025203604 19 May 2025 and / or configuring the second MAC configuration and the second physical configuration corresponding to the second radio channel; or, [001860] establishing and / or configuring the first SDAP configuration, the first PDCP configuration, the first RLC configuration, the first MAC configuration and the first physical configuration corresponding to the first radio channel, and establishing and / or configuring the second physical configuration corresponding to the second radio channel. [001861] Optionally, the processor 371 executes the program to further implement the following steps: according to the first configuration information, establishing and / or configuring a first radio channel and / or a second radio channel for a first PDU session, or, establishing and / or configuring a first radio channel and / or a second radio channel for at least one QoS flow of the first PDU session, in a way including at least one of the following: [001862] receiving first type information of the first PDU session and / or at least one QoS flow of the first PDU session of the UE, transmitted by the network; [001863] receiving second type information of the first PDU session and / or at least one QoS flow of the first PDU session of the UE, transmitted by the network; [001864] receiving a first type of the first radio channel and / or the second radio channel of the UE, transmitted by the network; or, [001865] receiving a second type of the first radio channel and / or the second radio channel of the UE, transmitted by the network; [001866] where the first type refers to a service type of unicast, broadcast or multicast; the second type refers to a transmission mode type of unicast, broadcast or multicast. [001867] Optionally, when the second radio channel and the first radio channel belong to the same cell, relevant parameters of the first PDCP layer and the second PDCP layer are the same. The relevant parameters include at least one of security context information, security key, integrity protection configuration information, header compression algorithm and header compression context information. 2025203604 19 May 2025 [001868] Optionally, the relevant parameters of PDCP layers corresponding to unicast radio channels of the UE are the same as those of a first UE. The relevant parameters include at least one of security context information, security key, integrity protection configuration information, header compression algorithm and header compression context information. The first UE and the UE are UEs corresponding to the broadcast or multicast radio channel. [001869] Optionally, bandwidth parts (BWPs) corresponding to the broadcast or multicast radio channel include a first BWP and a second BWP. [001870] The first BWP is a dedicated BWP, and the second BWP is an initial BWP; or, both the first BWP and the second BWP are initial BWPs. [001871] Configurations of the initial BWP may be: an initial downlink BWP broadcast in SIB1, and / or, an initial downlink BWP in a serving cell configuration, and / or, an initial BWP corresponding to control resource set (coreset) 0. [001872] Optionally, the processor 371 executes the program to further implement at least one of the following steps: [001873] receiving an RRC message, MAC CE and / or physical control signaling, which is transmitted by the network node and is used to activate the first radio channel or the second radio channel, and activating the first radio channel or the second radio channel; [001874] receiving an RRC message, MAC CE and / or physical control signaling, which is transmitted by the network node and is used to activate the first radio channel and the second radio channel, and activating the first radio channel and the second radio channel; [001875] receiving an RRC message, MAC CE and / or physical control signaling, which is transmitted by the network node and is used to activate the first radio channel and deactivate the second radio channel, and activating the first radio channel and deactivating the second radio channel; [001876] receiving an RRC message which is transmitted by the network node and is used to simultaneously establish and / or configure the first radio channel and / or the second radio channel of the first PDU session, and simultaneously establishing 2025203604 19 May 2025 and / or configuring the first radio channel and / or the second radio channel of the first PDU session; [001877] receiving an RRC message which is transmitted by the network node and is used to establish and / or configure the first radio channel or the second radio channel of the first PDU session, and establishing and / or configuring the first radio channel or the second radio channel of the first PDU session; [001878] receiving an RRC message which is transmitted by the network node and is used to establish and / or configure the first radio channel of the first PDU session and delete the second radio channel, and establishing and / or configuring the first radio channel of the first PDU session and deleting the second radio channel; [001879] receiving an RRC message which is transmitted by the network node and is used to establish and / or configure the second radio channel of the first PDU session and delete the first radio channel, and establishing and / or configuring the second radio channel of the first PDU session and deleting the first radio channel. [001880] Optionally, the processor 371 executes the program to further implement the following steps: [001881] before receiving the second data of the first service transmitted by the network node through the second radio channel, transmitting a PDCP status report of the first radio channel. [001882] Optionally, the processor 371 executes the program to further implement the following steps: [001883] receiving the second data of the first service transmitted by the network node through the second radio channel, in a way including: [001884] within a preset time period of starting to receive the second data through the second radio channel, receiving a first PDCP PDU including an IR packet, where the first PDCP PDU is used to carry the second data. [001885] Optionally, the processor 371 executes the program to further implement the following steps: 2025203604 19 May 2025 [001886] in case that the second radio channel and the first radio channel belong to different cells, receiving the second data of the first service transmitted by the network node to the UE through the second radio channel, in a way including: [001887] receiving a second PDCP PDU configured to carry the second data; where a packet header of the second PDCP PDU includes information for indicating encryption with a new key; or, the second PDCP PDU is packaged using a logical channel identifier corresponding to the second radio channel; [001888] or, [001889] when the second radio channel and the first radio channel belong to different cells, before receiving the second data of the first service transmitted by the network node to the UE through the second radio channel, receiving an end packet transmitted by the network node, where the end packet is used to indicate that data of the first PDU session or data of at least one QoS flow of the first PDU session has been switched from the first radio channel to the second radio channel and is carried by the second radio channel. [001890] Referring to FIG. 38, FIG. 38 is a schematic diagram of a network node according to an embodiment of the present disclosure. The network node 380 includes a processor 381, a memory 382, and a program stored on the memory 382 and executable on the processor 381. The processor 381 executes the program to implement the following steps: [001891] transmitting first data to a UE through a first radio channel; [001892] where the first radio channel is configured for a first PDU session; or, the first radio channel is configured for at least one QoS flow of the first PDU session. [001893] The first radio channel is one of a unicast radio channel, a broadcast or multicast radio channel. [001894] The first data represents first data of the first PDU session or first data of at least one QoS flow of the first PDU session. [001895] Optionally, the processor 381 executes the program to further implement the following steps: 2025203604 19 May 2025 [001896] transmitting the first data to the UE through the first radio channel, in a way including: [001897] configuring at least one of a first SDAP configuration, a first PDCP configuration, a first RLC configuration, a first MAC configuration or a first physical configuration corresponding to the first radio channel. [001898] Optionally, bandwidth parts (BWPs) corresponding to the broadcast or multicast radio channel include a first BWP and / or a second BWP. [001899] The first BWP is a dedicated BWP, and the second BWP is an initial BWP; or, both the first BWP and the second BWP are initial BWPs. [001900] Configurations of the initial BWP may be: an initial downlink BWP broadcast in SIB1, and / or, an initial downlink BWP in a serving cell configuration, and / or, an initial BWP corresponding to control resource set (coreset) 0. [001901] Optionally, the processor 381 executes the program to further implement at least one of the following steps: [001902] activating the first radio channel through an RRC message, MAC CE and / or physical control signaling; [001903] deactivating the first radio channel through an RRC message, MAC CE and / or physical control signaling; [001904] configuring the first radio channel through an RRC message; or, [001905] deleting the first radio channel through an RRC message. [001906] Optionally, the processor 381 executes the program to further implement at least one of the following steps: [001907] before transmitting the first data of the first service to the UE through the first radio channel, obtaining relevant information of the second radio channel; [001908] where the second radio channel and the first radio channel are corresponding to the same PDU session configuration or at least one QoS flow of the same PDU session, and the second radio channel is on another network radio node. [001909] Optionally, the processor 381 executes the program to further implement the following steps: 2025203604 19 May 2025 [001910] obtaining relevant information of the second radio channel, in a way including: obtaining data packet transmission status information of the second radio channel. [001911] Optionally, the processor 381 executes the program to further implement the following steps: [001912] transmitting the first data of the first service to the UE through the first radio channel, in a way including: transmitting a first PDCP PDU, where the first PDCP PDU is used to carry the first data; where a packet header of the first PDCP PDU includes information for indicating encryption with a new key; or, the first PDCP PDU is packaged using a logical channel identifier corresponding to the first radio channel; [001913] or, [001914] before transmitting the first data of the first service to the UE through the first radio channel, transmitting an end packet to the UE, where the end packet is used to indicate that data of the first PDU session or data of at least one QoS flow of the first PDU session has been switched from the first radio channel to the second radio channel and is carried by the second radio channel. [001915] Optionally, the processor 381 executes the program to further implement the following steps: [001916] configuring, at the network node, synchronization function entity. [001917] The synchronization function entity is configured for: [001918] transmitting and / or interacting, through signaling, time information associated with data packet transmission; and / or, [001919] adding time information associated with data packet transmission into a data packet; [001920] where the time information may be absolute and / or relative time information; or information of a system frame number (SFN), a subframe, a slot, a mini-slot and / or a time symbol. [001921] Optionally, a synchronization protocol instance of the synchronization function entity is associated with a broadcast or multicast PDU session. 2025203604 19 May 2025 [001922] Optionally, the synchronization function entity is used to synchronize data packet transmission between the core network and / or application layer and network nodes, and / or network nodes. [001923] The synchronization function entity is an independent protocol layer, or the synchronization function entity is located in at least one of protocol layers of SDAP, PDCP, RLC and MAC. [001924] Optionally, the time information is time information transmitted from the application layer or the core network, or is time information which is generated by the network node and used to synchronize transmission between base stations. [001925] Optionally, in case that the synchronization function entity is used to add the time information associated with data packet transmission into the data packet, the time information and data are transmitted together in one data packet; and / or, the time information is transmitted separately in a data packet. [001926] Optionally, the time information is transmitted by a centralized unit (CU) to a distributed unit (DU); and / or, [001927] the time information is information converted by the CU into SFN, subframe, slot, mini-slot and / or time symbol for scheduling. [001928] Optionally, the synchronization function entity is configured to, after receiving user data frame, parse out the time information associated with data packet transmission added in the data packet, and / or, parse out the time information associated with data packet transmission transmitted and / or interacted in the signaling; and use the time information to schedule user data or perform scheduling in MTCH scheduling cycle. [001929] Optionally, the network node includes a base station of a first cell and a base station of a second cell. The first cell is a cell to which the first radio channel belongs, and the second cell is a cell to which the second radio channel belongs. The processor 381 executes the program to further implement at least one of the following steps: [001930] the base station of the first cell informs, the base station of the second cell, of sequence indexes of packets that have been transmitted, and / or sequence 2025203604 19 May 2025 indexes of packets successfully received by the UE, and then the base station of the second cell uses a unicast connection to transmit to the UE, packets which are out of sync between the first cell and the second cell; [001931] the base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache; [001932] the base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache, together with carrying time information corresponding to transmission of the packets; [001933] according to the received information, the base station of the first cell forwards packets which are out of sync between the first cell and the second cell; [001934] according to the received information, the base station of the first cell forwards packets which are out of sync between the first cell and the second cell and which are not stored in a cache of the second cell; [001935] the UE informs, the base station of the second cell, of sequence indexes of data packets successfully received in the first cell, and then the base station of the second cell uses a unicast connection to transmit to the UE, packets which are out of sync between the first cell and the second cell; [001936] the UE maintains connection with the first cell and the second cell at the same time, and does not interrupt the connection with the first cell until the UE has received, from the first cell, packets which are out of sync between the first cell and the second cell; [001937] the base station of the second cell informs, the base station of the first cell, of sequence indexes of the next one or more packets to be transmitted and / or sequence indexes of packets still stored in an cache, optionally together with carrying time information corresponding to transmission of the packets; the first cell informs the UE in handover information; the UE maintains connection with the first cell and the second cell at the same time, and does not interrupt the connection with the first 2025203604 19 May 2025 cell until the UE has received, from the first cell, packets which are out of sync between the first cell and the second cell; [001938] after the UE switches to the second cell, the UE continues to maintain the connection with the first cell and does not interrupt the connection with the first cell until the UE finds that packets received in the second cell are continuous or repeated with packets received from the first cell. [001939] Referring to FIG. 39, FIG. 39 is a schematic diagram of a network node according to an embodiment of the present disclosure. The network node 390 includes a processor 391, a memory 392, and a program stored on the memory 392 and executable on the processor 391. The processor 391 executes the program to implement the following steps: [001940] establishing two or more protocol data unit (PDU) sessions for a second service; [001941] where a first PDU session is used to transmit third data of the second service to a UE; [001942] a second PDU session is used to transmit fourth data of the second service to the UE. [001943] The second service is a broadcast or multicast service. [001944] The first PDU session is one of a unicast PDU session and a broadcast or multicast PDU session; and the second PDU session is the other one of the unicast PDU session and the broadcast or multicast PDU session. [001945] The unicast PDU session is separately established for all or part of UE which receive the second service. [001946] Optionally, the fourth data is the same as the third data, or [001947] the fourth data is a subset of the third data, or, [001948] the fourth data and the third data have no intersection, or, [001949] the fourth data is partially the same as the third data. [001950] Optionally, the network node includes a core network; the processor 391 executes the program to implement the following steps: 2025203604 19 May 2025 [001951] transmitting the third data of the second service to the UE through the first PDU session and transmitting the fourth data of the second service to the UE through the second PDU session, in a way including: [001952] determining, by the core network, a UE in a broadcast or multicast group, which uses a multicast PDU session established for broadcast or multicast services to receive data, and a UE which uses a unicast PDU session established for broadcast or multicast services to receive data; and / or, [001953] determining, by the core network, in a broadcast or multicast service, data received by using the broadcast or multicast PDU session of the broadcast or multicast service, data received by using the unicast PDU session; and / or, [001954] determining, by the core network, some or all UEs in a broadcast or multicast group, which can not only use a broadcast or multicast PDU session established for broadcast or multicast services to receive data, but also use a unicast PDU session established for broadcast or multicast services to receive data. [001955] Optionally, the network node includes a core network; the processor 391 executes the program to implement the following steps: [001956] transmitting the third data of the second service to the UE through the first PDU session and transmitting the fourth data of the second service to the UE through the second PDU session, in a way including: [001957] informing, by the core network, the UE of relationship between the first PDU session and the second PDU session; [001958] informing, by the core network, the UE and the base station respectively of relationship between the first PDU session and the second PDU session, when the core network configures a broadcast or multicast PDU session and a unicast PDU session of the same broadcast or multicast service for the UE to receive data; or, [001959] informing, by the core network, a base station of relationship between the first PDU session and the second PDU session; and then, informing, by the base station, the UE of the relationship between the first PDU session and the second PDU session; or, 2025203604 19 May 2025 [001960] informing, by the core network, a base station of relationship between the first PDU session and the second PDU session; or, informing, by the core network, the UE of relationship between the first PDU session and the second PDU session. [001961] Optionally, the network node includes a core network; the processor 391 executes the program to implement the following steps: [001962] transmitting the third data of the second service to the UE through the first PDU session and transmitting the fourth data of the second service to the UE through the second PDU session, in a way including: [001963] informing, by the core network, the UE of a reception mode of the first PDU session and the second PDU session; [001964] determining, by the core network, some or all UEs in a broadcast or multicast group, which can not only use a broadcast or multicast PDU session established for a broadcast or multicast service to receive data, but also use a unicast PDU session established for the broadcast or multicast service to receive data; [001965] where the data received by the UE from the broadcast or multicast PDU session established for the broadcast or multicast service and the data received by the UE from the unicast PDU session established for the broadcast or multicast service may be simultaneous or time-sharing. [001966] Optionally, the network node includes a core network; the processor 391 executes the program to implement the following steps: [001967] transmitting the third data of the second service to the UE through the first PDU session and transmitting the fourth data of the second service to the UE through the second PDU session, in a way including: [001968] according to quality requirements of a service, and / or arrival characteristics of the service, and / or new radio channel, selecting for the UE, by the core network, a PDU session type and / or specific time for receiving the broadcast or multicast service. [001969] The core network can obtain specific information from the UE, the base station and / or the network management side. The specific information includes at least one of the following: channel quality of air interface, hybrid automatic repeat 2025203604 19 May 2025 request (HARQ) feedback for UE, automatic repeat request (ARQ) feedback for UE, timeout of PDCP discard timer of UE, or status of UE receiving data packets. The specific time is in the time form of bitmap format or absolute / relative time information. [001970] Optionally, the network node includes a core network; the processor 391 executes the program to implement the following steps: [001971] transmitting the third data of the second service to the UE through the first PDU session and transmitting the fourth data of the second service to the UE through the second PDU session, in a way including: [001972] informing, by the core network, a base station of a PDU session type selected for the UE to receive broadcast or multicast services; then, informing, by the base station, the UE of the PDU session type which is selected by the network node for the UE to receive broadcast or multicast service; or, [001973] informing, by the core network, a base station of specific time and a PDU session type selected for the UE to receive broadcast or multicast services; then, informing, by the base station, the UE of the specific time and the PDU session type which is selected by the network node for the UE to receive broadcast or multicast service; or, [001974] informing, by the core network, a base station of a PDU session type selected for the UE to receive broadcast or multicast services; or, informing, by the core network, the UE of a PDU session type selected for the UE to receive broadcast or multicast services; or, [001975] informing, by the core network, a base station of specific time and a PDU session type selected for the UE to receive broadcast or multicast services; or, informing, by the core network, the UE of specific time and a PDU session type selected for the UE to receive broadcast or multicast services. [001976] Optionally, the network node includes a core network; the processor 391 executes the program to implement the following steps: 2025203604 19 May 2025 [001977] transmitting the third data of the second service to the UE through the first PDU session and transmitting the fourth data of the second service to the UE through the second PDU session, in a way including: [001978] establishing, by the network node, a broadcast or multicast PDU session and a unicast PDU session for the same broadcast or multicast service, for a UE to receive data; and using signaling or a special data packet to activate a to-be-used broadcast or multicast PDU session and / or unicast PDU session established for the same broadcast or multicast service; [001979] and / or, [001980] using, by the network node, signaling or a special data packet to deactivate the broadcast or multicast PDU session and / or unicast PDU session established for the same broadcast or multicast service; [001981] where the network node may be a node on core network side and / or radio access network side. [001982] Optionally, the processor 391 executes the program to implement the following steps: [001983] transmitting the third data of the second service to the UE through the first PDU session and transmitting the fourth data of the second service to the UE through the second PDU session, in a way including: [001984] transmitting the broadcast or multicast PDU session established for the broadcast or multicast service at the network node on the radio access network side, to the UE by using a point-to-point (PTP) and / or point-to-multipoint (PTM) transmission mode; or, [001985] receiving a PDU session type reported by the UE, where the PDU session type is determined by the UE itself for receiving the multicast service according to quality requirements of a service, and / or arrival characteristics of the service, and / or new radio channel. [001986] Referring to FIG. 40, FIG. 40 is a schematic diagram of a UE according to an embodiment of the present disclosure. The UE 400 includes a processor 401, a memory 402, and a program stored in the memory 402 and executable on the 2025203604 19 May 2025 processor 401. The processor 401 executes the program to implement the following steps: [001987] receiving second configuration information transmitted by a network node; [001988] establishing two or more PDU sessions for the second service according to the second configuration information. [001989] The first PDU session is used to transmit third data of the second service to the UE. [001990] The second PDU session is used to transmit fourth data of the second service to the UE. [001991] The second service is a broadcast or multicast service. [001992] The first PDU session is one of a unicast PDU session and a broadcast or multicast PDU session; and the second PDU session is the other one of the unicast PDU session and the broadcast or multicast PDU session. [001993] The unicast PDU session is separately established for all or part of UE which receive the second service. [001994] Optionally, the fourth data is the same as the third data, or [001995] the fourth data is a subset of the third data, or, [001996] the fourth data and the third data have no intersection, or, [001997] the fourth data is partially the same as the third data. [001998] Referring to FIG. 41, FIG. 41 is a schematic diagram of a network node according to an embodiment of the present disclosure. The network node 410 includes a processor 411, a memory 412, and a program stored in the memory 412 and executable on the processor 411. The processor 411 executes the program to implement the following steps: [001999] transmitting PDSCH to a UE; where the PDSCH includes a first transport block and a second transport block, the first transport block is used to transmit data of a unicast service, and the second transport block is used to transmit data of a broadcast or multicast service data. 2025203604 19 May 2025 [002000] Optionally, the processor 411 executes the program to further implement the following steps: before transmitting the PDSCH to the UE, [002001] transmitting first information to the UE, where the first information is used to determine a first HARQ feedback resource and a second HARQ feedback resource; and / or, [002002] transmitting second information to the UE, where the second information is used to determine a first slot interval and a second slot interval; [002003] where the first slot interval is a time domain interval between the first HARQ feedback resource and the PDSCH, and the second slot interval is a time domain interval between the second HARQ feedback resource and the PDSCH. [002004] The first HARQ feedback resource is used to transmit HARQ feedback information for the first transport block, and the second HARQ feedback resource is used to transmit HARQ feedback information for the second transport block. [002005] Optionally, the first information includes information of the first PUCCH set and information of the second PUCCH set; or, [002006] the first information includes information of the first PUCCH set and offset information between the first PUCCH set and the second PUCCH set; [002007] where the first HARQ feedback resource is a resource in the first PUCCH set, and the second HARQ feedback resource is a resource in the second PUCCH set. [002008] Optionally, the information of the first PUCCH set and / or the information of the second PUCCH set are pre-specified identification information of the PUCCH set. [002009] Referring to FIG. 42, FIG. 42 is a schematic diagram of a UE according to an embodiment of the present disclosure. The UE 420 includes a processor 421, a memory 422, and a program stored in the memory 422 and executable on the processor 421. The processor 421 executes the program to implement the following steps: [002010] receiving PDSCH transmitted by a network node, where the PDSCH includes a first transport block and a second transport block, the first transport block 2025203604 19 May 2025 is used to transmit data of a unicast service, and the second transport block is used to transmit data of a broadcast or multicast service. [002011] Optionally, the processor 421 executes the program to further implement the following steps: before receiving the PDSCH transmitted by the network node, [002012] receiving first information transmitted by the network node, where the first information is used to determine a first HARQ feedback resource and a second HARQ feedback resource; and / or, [002013] receiving second information transmitted by the network node, where the second information is used to determine a first slot interval and a second slot interval; [002014] where the first slot interval is a time domain interval between the first HARQ feedback resource and the PDSCH, and the second slot interval is a time domain interval between the second HARQ feedback resource and the PDSCH. [002015] The first HARQ feedback resource is used to transmit HARQ feedback information for the first transport block, and the second HARQ feedback resource is used to transmit HARQ feedback information for the second transport block. [002016] Optionally, the first information includes information of the first PUCCH set and information of the second PUCCH set; or, [002017] the first information includes information of the first PUCCH set and offset information between the first PUCCH set and the second PUCCH set; [002018] where the first HARQ feedback resource is a resource in the first PUCCH set, and the second HARQ feedback resource is a resource in the second PUCCH set. [002019] Optionally, the information of the first PUCCH set and / or the information of the second PUCCH set are pre-specified identification information of the PUCCH set. [002020] Referring to FIG. 43, FIG. 43 is a schematic diagram of a network node according to an embodiment of the present disclosure. The network node 430 includes a processor 431, a memory 432, and a program stored in the memory 432 and 2025203604 19 May 2025 executable on the processor 431. The processor 431 executes the program to implement the following steps: [002021] transmitting data of a unicast service to a UE through a first BWP, and transmitting data of a broadcast or multicast service to the UE through a second BWP. [002022] Optionally, the first BWP is one or more dedicated activation BWPs. [002023] The second BWP is an initial BWP, or the second BWP is a BWP that is associated with an initial BWP. [002024] Configurations of the initial BWP may be: an initial downlink BWP broadcast in SIB1, and / or, an initial downlink BWP in a serving cell configuration, and / or, an initial BWP corresponding to coreset 0. [002025] Optionally, the processor 431 executes the program to further implement the following steps: [002026] before transmitting data of a unicast service to a UE through a first BWP, and transmitting data of a broadcast or multicast service to the UE through a second BWP, in case that the second BWP is a BWP that has an association relationship with the initial BWP, transmitting a system message including third information; [002027] where the third information is used to indicate the association relationship between the second BWP and the initial BWP. [002028] Referring to FIG. 44, FIG. 44 is a schematic diagram of a UE according to an embodiment of the present disclosure. The UE 440 includes a processor 441, a memory 442, and a program stored in the memory 442 and executable on the processor 441. The processor 441 executes the program to implement the following steps: [002029] receiving data of a unicast service transmitted by a network node through a first BWP, and data of a broadcast or multicast service transmitted through a second BWP. [002030] Optionally, the first BWP is one or more dedicated activation BWPs. [002031] The second BWP is an initial BWP, or the second BWP is a BWP that is associated with an initial BWP. 2025203604 19 May 2025 [002032] Configurations of the initial BWP may be: an initial downlink BWP broadcast in SIB1, and / or, an initial downlink BWP in a serving cell configuration, and / or, an initial BWP corresponding to coreset 0. [002033] Optionally, the processor 441 executes the program to further implement the following steps: before receiving data of a unicast service transmitted by a network node through a first BWP, and data of a broadcast or multicast service transmitted through a second BWP, [002034] receiving a system message including third information; [002035] where the third information is used to indicate an association relationship between the second BWP and the initial BWP [002036] One embodiment of the present disclosure provides a readable storage medium including a program stored thereon. The program is executed by a processor to implement the steps in any of the foregoing data transmission methods, which can refer to the description of the method steps in the above corresponding embodiments. [002037] The base station in the embodiment of the present disclosure may be a base transceiver station (BTS) in global system of mobile communication (GSM) or code division multiple access (CDMA), or a NodeB (NB) in wideband code division multiple access (WCDMA), or an evolutional Node B (eNB or eNodeB) in LTE, or a relay station or an access point, or a base station in the future 5G network, etc., which is not limited here. [002038] The UE in the embodiment of the present disclosure may be a wireless terminal or a wired terminal, and the wireless terminal may be a device that provides voice and / or other service data connectivity to a user, a handheld device with a wireless connection function, or other processing devices connected to a wireless modem. The wireless terminal may communicate with one or more core networks via a radio access network (RAN), and the wireless terminal may be a mobile terminal, such as a mobile phone (or “cellular” phone) and a computer with a mobile terminal, for example, a portable, pocket-sized, hand-held, computer-built-in or vehicle-mounted mobile device that exchanges language and / or data with the radio access network, such as a personal communication service (PCS) phone, a cordless 2025203604 19 May 2025 phone, a session initiation protocol (SIP) phone, a wireless local loop (WLL) station, a personal digital assistant (PDS) and other devices. The wireless terminal may also be referred to as a system, a subscriber unit, a subscriber station, a mobile station, a mobile, a remote station, a remote terminal, an access terminal, a user terminal, a user agent, and a user device or user equipment (UE), which are not limited here. [002039] The foregoing readable storage medium includes a computer-readable storage medium. The computer-readable storage media includes persistent and non-permanent, movable and non-removable media, which can store information by mean of any method or technology. The information may be computer readable instructions, data structures, modules of programs, or other data. Examples of the storage media include, but are not limited to, a phase-change memory (PRAM), a static random access memory (SRAM), a dynamic random access memory (DRAM), other types of random access memory (RAM), a read only memory (ROM), an electrically erasable programmable read only memory (EEPROM), a flash memory or other memory technology, a compact disk read only memory (CD-ROM), digital versatile disc (DVD) or other optical storage, magnetic cartridge, magnetic tape, magnetic tape storage or other magnetic storage device or any other non-transmission medium that can be used to store information which can be accessed by a computing device. [002040] The above are optional embodiments of the present disclosure. It is to be pointed out that for those skilled in the art, without departing from the principles of the present disclosure, several improvements and modifications can be made and these improvements and modifications should also be considered as falling within the protection scope of the present disclosure.
Claims
2025203604 19 May 2025THE CLAIMS1. A data transmission method, performed by a UE, comprising:receiving PDSCH transmitted by a network node, wherein the PDSCH includes a first transport block and a second transport block, the first transport block is used to transmit data of a unicast service, and the second transport block is used to transmit data of a broadcast or multicast service.
2. The method according to claim 1, wherein before receiving the PDSCH transmitted by the network node, the method further includes:receiving first information transmitted by the network node, wherein the first information is used to determine a first HARQ feedback resource and a second HARQ feedback resource; and / or,receiving second information transmitted by the network node, where the second information is used to determine a first slot interval and a second slot interval;wherein the first slot interval is a time domain interval between the first HARQ feedback resource and the PDSCH, and the second slot interval is a time domain interval between the second HARQ feedback resource and the PDSCH;the first HARQ feedback resource is used to transmit HARQ feedback information for the first transport block, and the second HARQ feedback resource is used to transmit HARQ feedback information for the second transport block.
3. The method according to claim 2, wherein the first information includes information of the first PUCCH set and information of the second PUCCH set; or,the first information includes information of the first PUCCH set and offset information between the first PUCCH set and the second PUCCH set;wherein the first HARQ feedback resource is a resource in the first PUCCH set, and the second HARQ feedback resource is a resource in the second PUCCH set.
4. The method according to claim 3, wherein the information of the first PUCCH set and / or the information of the second PUCCH set are pre-specified identification information of the PUCCH set.
5. The method according to claim 1, further comprising:2025203604 19 May 2025receiving data of a unicast service transmitted by the network node through a first BWP, and data of a broadcast or multicast service transmitted through a second BWP.
6. The method according to claim 5, wherein the first BWP is one or more dedicated activation BWPs;the second BWP is an initial BWP, or the second BWP is a BWP that is associated with an initial BWP7. The method according to claim 6, wherein before receiving data of a unicast service transmitted by a network node through a first BWP, and data of a broadcast or multicast service transmitted through a second BWP, the method further includes:receiving a system message including third information;wherein the third information is used to indicate an association relationship between the second BWP and the initial BWP8. A data transmission method, performed by a network node, comprising:transmitting PDSCH to a UE; wherein the PDSCH includes a first transport block and a second transport block, the first transport block is configured to transmit data of a unicast service, and the second transport block is configured to transmit data of a broadcast or multicast service data.
9. The method according to claim 8, wherein before transmitting the PDSCH to the UE, the method further includes:transmitting first information to the UE, wherein the first information is used to determine a first HARQ feedback resource and a second HARQ feedback resource; and / or,transmitting second information to the UE, wherein the second information is used to determine a first slot interval and a second slot interval;wherein the first slot interval is a time domain interval between the first HARQ feedback resource and the PDSCH, and the second slot interval is a time domain interval between the second HARQ feedback resource and the PDSCH;2025203604 19 May 2025the first HARQ feedback resource is used to transmit HARQ feedback information for the first transport block, and the second HARQ feedback resource is used to transmit HARQ feedback information for the second transport block.
10. The method according to claim 9, wherein the first information includes information of the first PUCCH set and information of the second PUCCH set; or,the first information includes information of the first PUCCH set and offset information between the first PUCCH set and the second PUCCH set;wherein the first HARQ feedback resource is a resource in the first PUCCH set, and the second HARQ feedback resource is a resource in the second PUCCH set.
11. The method according to claim 10, wherein the information of the first PUCCH set and / or the information of the second PUCCH set are pre-specified identification information of the PUCCH set.
12. The method according to claim 8, further comprising:transmitting data of a unicast service to the UE through a first BWP, and transmitting data of a broadcast or multicast service to the UE through a second BWP.
13. The method according to claim 12, wherein the first BWP is one or more dedicated activation BWPs;the second BWP is an initial BWP, or the second BWP is a BWP that is associated with an initial BWP.
14. The method according to claim 13, wherein before transmitting data of a unicast service to a UE through a first BWP, and transmitting data of a broadcast or multicast service to the UE through a second BWP, the method further includes:in case that the second BWP is a BWP that has an association relationship with the initial BWP, transmitting a system message including third information;wherein the third information is used to indicate the association relationship between the second BWP and the initial BWP.
15. A UE, comprising: a processor, a memory, and a program stored on the memory and executable on the processor; wherein the processor executes the program to implement steps of the data transmission method according to any one of claims 1 to 7.2025203604 19 May 202516. A network node, comprising: a processor, a memory, and a program stored on the memory and executable on the processor; wherein the processor executes the program to implement steps of the data transmission method according to any one of claims 8 to 14.
17. A computer readable storage medium, comprising a program is stored thereon; wherein the program is executed by a processor of a UE to implements the steps of the data transmission method according to any one of claims 1 to 7.
18. A computer readable storage medium, comprising a program is stored thereon; wherein the program is executed by a processor a network node to implements the steps of the data transmission method according to any one of claims 8 to 14.
19. A computer program product, comprising a program is stored thereon; wherein the program is executed by a processor of a UE to implements the steps of the data transmission method according to any one of claims 1 to 7.
20. A computer program product, comprising a program is stored thereon; wherein the program is executed by a processor a network node to implements the steps of the data transmission method according to any one of claims 8 to 14.
Citation Information
Patent Citations
Coordination between multicast / broadcast communication and unicast communication
WO2021076879A1