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WO2013000300A1 - Système numérique de grappes à large bande basé sur la technologie td-lte et procédé de transmission de données associé - Google Patents

Système numérique de grappes à large bande basé sur la technologie td-lte et procédé de transmission de données associé Download PDF

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Publication number
WO2013000300A1
WO2013000300A1 PCT/CN2012/073059 CN2012073059W WO2013000300A1 WO 2013000300 A1 WO2013000300 A1 WO 2013000300A1 CN 2012073059 W CN2012073059 W CN 2012073059W WO 2013000300 A1 WO2013000300 A1 WO 2013000300A1
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WIPO (PCT)
Prior art keywords
data
session
mbms
multicast address
core network
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PCT/CN2012/073059
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English (en)
Chinese (zh)
Inventor
杜高鹏
马子江
张现周
朱永升
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ZTE Corp
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ZTE Corp
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/40Connection management for selective distribution or broadcast
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/18Processing of user or subscriber data, e.g. subscribed services, user preferences or user profiles; Transfer of user or subscriber data
    • H04W8/186Processing of subscriber group data

Definitions

  • the present invention relates to the field of communications, and in particular to a broadband digital based on Time Division-Long Term Evolution (TD-LTE).
  • Cluster system and its data transmission method BACKGROUND OF THE INVENTION
  • trunking communication systems are widely used in the fields of government departments, public safety, emergency telecommunications, electric power, civil aviation, petrochemicals, and military facilities.
  • the cluster system plays an increasingly important role as an efficient emergency command and dispatch system.
  • the development of the cluster system has experienced the stage of the analog cluster system and the narrowband digital trunk system. Among them, the cluster system of the two development stages has many drawbacks.
  • the analog cluster system has the disadvantages of large interference, many blind spots and limited frequency; narrow band
  • the digital trunking system has improved communication quality and capacity relative to the analog clustering system, it is still weak in terms of data transmission capability and multimedia service support capability, and the narrowband digital trunking system is based on Long Term Evolution (Long Term Evolution,
  • LTE Long Term Evolution
  • the broadband digital trunking system referred to as LTE has certain difficulties in the evolution process. How to use the existing LTE network to implement cluster services, and no effective solution has been given in the related technologies.
  • Embodiments of the present invention provide a broadband digital trunking system based on TD-LTE and a cluster service transmission method thereof to solve at least the above problems.
  • a TD-LTE-based broadband digital trunking system including: one or more cluster application servers, configured to schedule cluster services, and schedule and manage end-to-end sessions of user terminals, which will come from
  • the data of the user terminal is sent to the LTE core network
  • the LTE core network is configured to receive the data, and allocate an IP multicast address to the session according to the group identifier of the target terminal group of the data, and Sending the IP multicast address to the radio access subsystem, and then sending the data to the evolved base station that joins the IP multicast corresponding to the IP multicast address
  • the radio access subsystem includes: one or more The evolved base station is configured to add IP multicast corresponding to the IP multicast address according to the IP multicast address, receive the data sent by the LTE core network, and send the data to the target Each target terminal in the terminal group.
  • the radio access subsystem further includes: an MCE;
  • the LTE core network includes: a P-GW, a BM-SC, an MBMS-GW, and an MME; wherein the P-GW is configured to receive the data And determining, when the received data is the data of the cluster service in the multicast mode, forwarding the data to the BM-SC;
  • the BM-SC configured to send a session open request message to the MBMS-GW, Instructing the MBMS service transmission to start;
  • the MBMS-GW is configured to create an MBMS bearer context for the session, and send a session open request message to the MME;
  • the MME is configured to receive the session open request message, The session creates an MBMS bearer context, and sends a session open request to the MCE in its jurisdiction, where the session open request carries an IP multicast address of the session;
  • the MCE is set to be Assigning a time-frequency resource to the session, establishing a service bearer, and transmitting
  • the MBMS-GW is further configured to allocate the IP multicast address to the session according to a list of downlink data stream nodes that it saves, and carry the IP multicast address in a location sent to the MME In the session open request message.
  • the MME is further configured to allocate the IP multicast address according to the evolved information to which each target terminal in the target terminal group belongs.
  • the LTE core network further includes: an HSS, configured to store subscription information of the cluster user terminal; the MME is further configured to acquire, from the HSS, subscription information of each target terminal corresponding to the group identifier Determining information of the evolved base station to which each of the target terminals belongs according to the subscription information acquired from the HSS.
  • the MME is further configured to obtain, from the subscription information reported by the cluster user terminal, information about an evolved base station to which each target terminal belongs.
  • the system further comprises: an IMS subsystem configured to forward data between the one or more cluster application servers and the LTE core network.
  • the system further includes: an operation and maintenance subsystem, configured to manage the cluster user terminal, and configure parameters of the wireless access subsystem and devices in the LTE core network.
  • the one or more cluster application servers comprise: an application server based on a push-to-talk over PoC, and an application server based on a global open cluster structure Gota.
  • a data transmission method for a broadband digital trunking system based on TD-LTE including: after an end-to-end session establishment of a user terminal, the cluster application server will data from the user terminal Sending to the LTE core network; the LTE core network receives the data, assigns an IP multicast address to the session according to the group identifier of the target terminal group of the data, and sends the IP multicast address to the wireless connection An evolved base station that enters the subsystem; the evolved base station adds an IP multicast corresponding to the IP multicast address according to the IP multicast address; the LTE core network sends the data to join the IP The evolved base station of the IP multicast corresponding to the multicast address; the evolved base station receives the data sent by the LTE core network, and sends the data to each target terminal in the target terminal group.
  • the LTE core network receives the data, allocates an IP multicast address to the session according to the group identifier of the target terminal group of the data, and sends the IP multicast address to the wireless access subsystem, including
  • the P-GW of the LTE core network receives the data, and when determining that the received data is data of a cluster service, forwarding the data to a BM-SC of the LTE core network; the BM-SC direction
  • the MBMS-GW of the LTE core network sends a session open request message, indicating that the MBMS service transmission is about to start; the MBMS-GW creates an MBMS bearer context for the session for transmitting the MBMS service, and sends the MBMS bearer context to the MME of the LTE core network.
  • the MME receives the session open request message, creates an MBMS bearer context for the session for transmitting the MBMS service, and sends a session open to an MCE of the radio access subsystem within its jurisdiction
  • the request where the session open request carries the IP multicast address of the session.
  • the MCE allocates a time-frequency resource to the session, establishes a service bearer, and sends a session open request message to the one or more evolved base stations in its jurisdiction; the one or more evolved base stations Establishing a radio resource for the MBMS service transmission, and configuring a radio bearer transmitted by the MBSFN.
  • the method further includes: the MBMS-GW assigning the IP multicast to the session according to the saved downlink data flow node list An address, and the IP multicast address is carried in the session open request message sent to the MME.
  • the method further includes: the MME according to the evolution of each target terminal in the target terminal group Type information is assigned to the IP multicast address.
  • the MME obtains the evolved information to which each target terminal belongs according to the following manner: the MME obtains subscription information of each target terminal corresponding to the group identifier from the LTE core network HSS, according to the The subscription information acquired by the HSS determines an evolved base station to which each of the target terminals belongs Or the MME obtains information about the evolved base station to which the target terminal belongs from the subscription information reported by the cluster user terminal.
  • the cluster application server and the LTE system are combined to implement the cluster service, and the existing digital network device can be realized by using the existing LTE network without adding a new network element device, thereby reducing the cost and improving the LTE. Network utilization.
  • FIG. 1 is a schematic structural diagram of a TD-LTE-based broadband digital trunking system according to Embodiment 1 of the present invention
  • FIG. 2 is a schematic structural diagram of a TD-LTE-based broadband digital trunking system according to Embodiment 2 of the present invention
  • 3 is a schematic structural diagram of a TD-LTE-based broadband digital trunking system according to Embodiment 3 of the present invention
  • FIG. 1 is a schematic structural diagram of a TD-LTE-based broadband digital trunking system according to Embodiment 1 of the present invention
  • FIG. 2 is a schematic structural diagram of a TD-LTE-based broadband digital trunking system according to Embodiment 2 of the present invention
  • 3 is a schematic structural diagram of a TD-LTE-based broadband digital trunking system according to Embodiment 3 of the present invention
  • FIG. 1 is a schematic structural diagram of a TD-LTE-based broadband digital trunking system according to an embodiment of the present invention. As shown in FIG.
  • the TD-LTE-based broadband digital trunking system of the embodiment of the present invention mainly includes three parts: one or more cluster application servers 10, an LTE core network 20, and a wireless access subsystem 30.
  • One or more cluster application servers 10 are configured to schedule cluster services, establish an end-to-end session with the user terminal, and send data from the user terminal to the LTE core network 20;
  • the LTE core network 20 is configured to receive The data, according to the group identifier of the target terminal group of the data, assign an IP multicast address to the session, and send the IP multicast address to the wireless access subsystem 30, and then send the data to the joining office.
  • the IP multicast address may be allocated by a Multimedia Broadcast Multicast Service-Gateway (MBMS-GW) of the LTE core network, or may be a Mobility Management Entity of the LTE core network. Referred to as MME).
  • MME Mobility Management Entity
  • FIG. 2 is a schematic structural diagram of a TD-LTE-based broadband digital trunking system according to Embodiment 2 of the present invention.
  • the wireless access subsystem 30 further includes: a primary communication device.
  • LTE core network 20 includes: P-GW (Packet Data Network Gateway) 200, BM-SC (Broadcast Multicast Service Center) 202, MBMS-GW 204 and MME 206.
  • the P-GW 200 is configured to receive data from the cluster application server 10, and when determining that the received data is data of the cluster mode in the multicast mode, forward the data to the BM-SC 202; BM-SC 202, configured to send a session open request message to the MBMS-GW 204, indicating that the MBMS service transmission is about to start;
  • the MBMS-GW 204 configured to create an MBMS bearer context for the session for transmitting the MBMS service, and send the MBMS bearer context to the MME 206 a session open request message;
  • the MME 206 configured to receive the session open request message, create an MBMS bearer context for the session for transmitting the MBMS service, and send a session open request to the MCE 302
  • one or more evolved base stations 300 are configured to establish a radio resource for the MBMS service transmission, and configure no MBSFN transmission Bearer.
  • the P-GW 200 determines that the received data is data of a unicast cluster service, the data is forwarded to the S-GW for processing, and the specific processing flow is in the existing LTE system. The processing flow of the non-clustered service data is the same and will not be described here.
  • the MBMS-GW 204 is further configured to allocate the IP multicast address to the session according to a list of downlink data stream nodes (ie, a distribution tree) that it holds, and The IP multicast address is carried in the session open request message sent to the MME.
  • the MME 206 is further configured to allocate the IP multicast address according to the evolved information to which each target terminal in the target terminal group belongs.
  • the LTE core network 20 further includes: a Home Subscriber Server (HSS) 208, configured to store subscription information of the cluster user terminal, and the MME 206 is further configured to The subscription information of each of the target terminals corresponding to the group identifier is obtained from the HSS 208, and the information of the evolved base station to which each of the target terminals belongs is determined according to the subscription information acquired from the HSS.
  • the MME 206 is further configured to obtain, from the subscription information reported by the cluster user terminal, information about the evolved base station to which each of the target terminals belongs. For example, the cluster user terminal can report its subscription information through NAS messages.
  • the foregoing system provided by the embodiment of the present invention may further include: an IP Multimedia Subsystem (IMS), configured to be in the one or more cluster application servers and the Data is forwarded between LTE core networks.
  • IMS IP Multimedia Subsystem
  • the system provided by the embodiment of the present invention may further include: an operation and maintenance subsystem, configured to manage the cluster user terminal, and configure the wireless access subsystem and the LTE core network. The parameters of the device in .
  • one or more cluster application servers 10 include, but are not limited to: a PTT Over Cellular (PoC)-based application server, based on a global open cluster architecture (Global open Trunking) Architecture, referred to as Gota) application server.
  • PoC PTT Over Cellular
  • HiC Global open Trunking
  • Gota global open cluster architecture
  • FIG. 3 is a schematic structural diagram of a TD-LTE-based broadband digital trunking system according to Embodiment 3 of the present invention.
  • a TD-LTE-based broadband digital trunking system mainly includes : Terminal, Broadband Wireless Access Subsystem, Network Subsystem, IMS, Application Subsystem, and Operation and Maintenance Subsystem.
  • the terminal includes but is not limited to: a handheld terminal, a radio station, a fixed station, and a wireless dispatching station.
  • the broadband wireless access subsystem is composed of multiple eNodeBs (evolved base stations), and multiple eNodeBs can be connected through the X2 interface.
  • the eNodeB has a built-in eNodeB in order to support the cluster function.
  • the broadband wireless access subsystem may further include an MCE, which is responsible for time-frequency resource scheduling on the wireless interface.
  • the MCE and the eNodeB can be connected through the M2 interface.
  • the handheld mobile station, the radio station, the fixed station, and the wireless dispatching station can share the radio resources with the broadband wireless access subsystem through the LTE-Uu interface.
  • the network subsystem (corresponding to the LTE core network in Embodiments 1 and 2) includes but is not limited to: MME, SGW, HSS, BM-SC, MBMS-GW, and P-GW.
  • the MME processes the control node of the interaction between the terminal and the network subsystem signaling.
  • a module supporting the cluster service needs to be newly added.
  • the module completes the information about the storage cluster user terminal, and is responsible for acquiring the cluster user terminal from the HSS. Signing information and dynamically generating a distribution tree (ie IP multicast address) of the information of the cluster terminal.
  • the HSS stores the home subscription information of the terminal user.
  • a module for supporting the cluster service needs to be added.
  • the module stores the eNodeB information of the UE and the group identifier (TMGI-ID) to which the UE belongs, and stores the ⁇ group Identification, group service distribution area information, terminal list information ⁇ .
  • the S-GW is the end point of the media data interface connecting the wireless broadband access subsystem, and is mainly responsible for the routing and forwarding of data packets.
  • the P-GW is responsible for the terminal IP address allocation and the QoS guarantee, and the traffic-based charging according to the rules.
  • a module supporting the cluster service needs to be added.
  • the module can be based on a single call (general bearer) or a group call. (Each cluster service group is assigned a TMGI identifier), and whether downlink data is distributed to the S-GW or BM-SC, whether unicast mode or multicast mode is selected.
  • the BM-SC is responsible for the joining of terminal requests, scheduling of sessions, and the like.
  • the parameters related to the cluster service are configured when creating the MBMS context, and the parameters that are not related to the cluster are not concerned.
  • the MBMS-GW is an entry for broadcast/multicast services, broadcasts packets to eNodeBs in all service areas, and is responsible for MBMS sessions.
  • the MME can be connected to the SGW through the S11 interface, connected to the HSS through the S6a interface, and connected to the BM-SC through the Sm interface; and the SGW can be connected to the P-GW through the S5 interface, the BM-SC It can be connected to the P-GW through the SGi interface, and the BM-SC can be connected to the MBMS-GW through the SGmb and SGimb interfaces.
  • the eNodeB is connected to the MBMS-GW through the M1 interface, and the MCE is connected to the MME through the M3 interface.
  • the application subsystem mainly includes a cluster application server, completes the scheduling function of the cluster service, and is connected to the P-GW.
  • the cluster application server includes but is not limited to: a PoC-based application server, a Gota-based cluster application server, and other types of cluster application servers.
  • the architecture uses the PoC server to cooperate to complete the utterance control function in the cluster. If the other application server can perform the extended session control function, the IMS does not need to go through the IMS. Otherwise, the IMS needs to be arranged in this embodiment. .
  • the operation and maintenance subsystem includes a main function of managing user data, and can perform operations such as opening an account of a cluster user, canceling a customer, and changing a user's service authority, and simultaneously accessing a broadband wireless access subsystem and a network subsystem.
  • the parameter configuration, performance and security of the device are managed.
  • FIG. 4 is a flowchart of a data transmission method of a TD-LTE-based broadband digital trunking system according to an embodiment of the present invention. The method is used for transmitting a cluster service, and may adopt the system of Embodiment 1 or 2 or the foregoing system. achieve. As shown in FIG.
  • Step S402 The cluster application server establishes an end-to-end session with the user terminal, and sends data from the user terminal to the LTE core network.
  • Step S404 The LTE core network receives the data, allocates an IP multicast address to the session according to the group identifier of the target terminal group of the data, and sends the IP multicast address to the wireless access subsystem.
  • Step S406 The evolved base station adds IP multicast corresponding to the IP multicast address according to the IP multicast address.
  • Step S408 The LTE core network sends the data to an evolved base station that joins the IP multicast corresponding to the IP multicast address.
  • Step S410 The evolved base station receives the data sent by the LTE core network, and sends the data to each target terminal in the target terminal group.
  • the above method provided by the embodiment of the present invention can implement the transmission of the broadband cluster service through the existing LTE network, improve the utilization rate of the LTE network, and reduce the cost.
  • the P-GW of the LTE core network receives the data, and when determining that the received data is data of the cluster service, forwarding the data to the LTE core network.
  • the BM-SC sends a session open request message to the MBMS-GW of the LTE core network, indicating that the MBMS service transmission is about to start; after the MBMS-GW receives the session open request message, it is a session for transmitting the MBMS service.
  • An MBMS bearer context is created to save the session attribute, and a session open request message is sent to the MME of the LTE core network.
  • the MME After receiving the session open request message, the MME creates an MBMS bearer context for the session for transmitting the MBMS service, to save the session attribute. And sending a session open request to the MCE of the wireless access subsystem in the jurisdiction thereof, where the session open request carries the IP multicast address of the session.
  • the MCE after receiving the IP multicast address from the LTE core network, allocates a time-frequency resource for the session, establishes a service bearer, and provides one or more of its jurisdictions.
  • the evolved base station sends a session open request message, and the one or more evolved base stations establish a radio resource for the MBMS service transmission, and configure the radio bearer transmitted by the MBSFN.
  • the IP multicast address may be allocated by the MBMS-GW. For example, the MBMS-GW may allocate the IP multicast address to the session according to the saved downlink data node list. And carrying the IP multicast address in the session open request message sent to the MME.
  • the IP multicast address may be allocated by the MME.
  • the MME may allocate the IP multicast address according to the evolved information to which each target terminal in the target terminal group belongs.
  • the MME may obtain, according to one of the following manners, the evolved information to which each target terminal belongs: (1) the MME obtains subscription information of each target terminal corresponding to the group identifier from the LTE core network HSS, according to The information about the evolved base station to which the target terminal belongs is determined by the subscription information obtained by the HSS; (2) the MME obtains information about the evolved base station to which each target terminal belongs from the subscription information reported by the cluster user terminal. .
  • the fifth embodiment of the present invention uses the terminal A to call the terminal group B as an example to describe the cluster service transmission method of the TD-LTE based broadband digital trunking system provided by the embodiment of the present invention.
  • the terminal A and the terminal group B may mainly include the following steps: Step 1.
  • the terminal A is in an idle state
  • the terminal group B (including multiple terminals) is in an idle state
  • the terminal A is in the idle state.
  • the group call is initiated to the terminal group B, and the terminal A and the eNodeB perform the interaction between the random access and the RRC connection establishment.
  • Step 2 The UE initial message (including the service request) sent by the terminal A is transparently transmitted to the MME through the eNodeB, and the service request type is identified by the TMGI, and is represented as a group call request.
  • Step 3 Terminal A interacts with the Serving Call Session Control Function (SCSCF) and the HSS to complete the security authentication of the terminal A and the IMS domain.
  • SCSCF Serving Call Session Control Function
  • HSS Home Subscriber Control Function
  • the terminal A interacts with the MME to complete the negotiation of the NAS security mechanism.
  • Step 5 After receiving the UE initial message (including the service request) sent by the terminal A and transparently transmitted by the eNodeB, the MME completes the establishment of the initialization context by interacting with the eNodeB, and the eNodeB interacts with the terminal A to complete the establishment of the air interface radio resource.
  • Step 6 The MME interacts with the S-GW, and the S-GW interacts with the P-GW to complete the update of the related bearer, where the P-GW saves the bearer as a group call request type.
  • Step 7 The terminal A performs the SIP application layer signaling interaction with the Poc server to complete the establishment of the end-to-end SIP session.
  • Step 8 The PoC server initiates a message of the right of the right to the terminal A, and simultaneously sends a message of the right of the right to the terminal group B, and then the terminal A sends the data to the PoC server.
  • Step 9 After receiving the data of the terminal A, the PoC server sends data to the P-GW, and the P-GW determines that the bearer of the data is a group call request type, and considers that the multicast mode is sent, and then sends the data. To BM-SC.
  • Step 10 After receiving the data, the BM-SC sends a Session Start Request message (Session Start Request message) 3 ⁇ MBMS-GW, indicating that the MBMS transmission is about to start, and providing the session parameter to the MBMS-GW.
  • the MBMS gateway sends a Session Start Response message to the BM-SC, and the MBMS-GW creates an MBMS Bearer Context to save the session attribute, and sends a session open request message to the MME, if it is a static multicast.
  • the MBMS-GW allocates an IP multicast address to the session. If it is a dynamic MBSFN area, the MME allocates an IP multicast address to the session.
  • MBSFN Broadcast Single Frequency Network
  • the current protocol supports one TMGI corresponding to one MBMS service area, and one MBMS service area may have multiple TMGIs. For multiple different cluster services, it can be sent on the same MBMS service area.
  • the MBMS-GW stores TL information (ie, "List of downstream nodes"), that is, the eNB information included in the area.
  • the BM-SC learns from the P-GW that a certain cluster service starts, and then sends it to the MBMS-GW through the Session Start (the message carries the TMGI and the MBMS service area), the MBMS-GW sends the message to the MME through the Session Start (the message carries The TMGI/MBMS service area), along with TNL information (ie, "List of downstream nodes"), is carried to the MME, and the "TNL information" overwrites the "TNL information" generated by the MME itself.
  • TNL information ie, "List of downstream nodes
  • the MBMS-GW does not store TNL information (ie, "List of downstream nodes"), that is, the eNB information contained in the area.
  • TNL information ie, "List of downstream nodes"
  • the BM-SC knows a cluster service start (TMGI) from the PDN GW, and then sends it to the MBMS GW through the Session Start (the message carries the TMGI and the MBMS service area)
  • the MBMS GW sends the message to the MME through the Session Start (the message carries The TMGI/MBMS service area) does not carry the information to the MME because the MBMS GW does not have TNL information.
  • the MME automatically generates the TNL information according to the eNB information to which the cluster terminal belongs.
  • Step 11 After receiving the session open request, the MME creates an MBMS bearer context to save the session attribute, and sends a session open request to the MCE in its own jurisdiction. Contains an IP multicast address.
  • Step 12 After receiving the session open request, the MCE establishes a service bearer if the radio resource is sufficient, and responds to the session start response message to the MME, and simultaneously sends a session open request message to the eNodeB under the jurisdiction of the MCE.
  • Step 13 The eNodeB in the MCE jurisdiction receives the session start request message, prepares to receive the MBMS service, and responds to the MCE response session start response message, and joins the IP multicast corresponding to the service.
  • Step 14 The eNodeB establishes a radio resource for the MBMS data transmission, and completes the radio bearer configuration of the MBSFN transmission.
  • the BM-SC starts transmitting data to the MBMS-GW.
  • the MBMS-GW sends the data to the eNodeB that has joined the IP multicast.
  • the eNodeB sends the data to all terminals in the terminal group B at a specified time.

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Abstract

La présente invention se rapporte à un système numérique de grappes à large bande basé sur la technologie TD-LTE et à un procédé de transmission de données associé. Le système comprend : un ou plusieurs serveurs d'application en grappes destinés à planifier un service en grappes, à planifier et à gérer une session de bout en bout d'un terminal d'utilisateur et à envoyer des données depuis le terminal d'utilisateur à un réseau fédérateur LTE ; le réseau fédérateur LTE destiné à recevoir des données, à allouer une adresse IP de multidiffusion pour la session selon un identifiant de groupe d'un groupe de terminaux cible, à envoyer l'adresse IP de multidiffusion à un sous-système d'accès radio, et à envoyer les données à un nœud B évolué destiné à adhérer à un groupe de multidiffusion IP qui correspond à l'adresse IP de multidiffusion ; et le sous-système d'accès radio qui comprend : un ou plusieurs nœuds B évolués destinés à adhérer à un groupe de multidiffusion IP qui correspond à l'adresse IP de multidiffusion selon l'adresse IP de multidiffusion, à recevoir des données et à envoyer les données à chaque terminal cible du groupe de terminaux cible. Au moyen de la présente invention, le réseau fédérateur LTE existant peut être étendu afin de mettre en œuvre le service en grappes.
PCT/CN2012/073059 2011-06-30 2012-03-26 Système numérique de grappes à large bande basé sur la technologie td-lte et procédé de transmission de données associé Ceased WO2013000300A1 (fr)

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CN201110182353.4A CN102857873B (zh) 2011-06-30 2011-06-30 基于td‑lte的宽带数字集群系统及其数据传输方法
CN201110182353.4 2011-06-30

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CN113055812A (zh) * 2019-12-27 2021-06-29 中国移动通信有限公司研究院 一种数据传输方法、基站及核心网网元

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Publication number Priority date Publication date Assignee Title
CN104254054B (zh) * 2013-06-25 2018-05-15 电信科学技术研究院 一种集群通信方法及装置和系统
CN104640079B (zh) * 2013-11-11 2018-05-04 成都鼎桥通信技术有限公司 一种集群系统中的群组资源建立方法
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WO2016115729A1 (fr) * 2015-01-23 2016-07-28 华为技术有限公司 Procédé, appareil et système de communication de groupe
CN106856595B (zh) * 2015-12-09 2019-12-17 北京信威通信技术股份有限公司 基于B-TrunC组呼的IP组播广播业务传输方法
CN106993276B (zh) * 2016-01-21 2020-06-05 普天信息技术有限公司 应用层数据的发送方法及装置
WO2017132972A1 (fr) * 2016-02-05 2017-08-10 海能达通信股份有限公司 Procédé, système et dispositif de transmission de paquet de données de liaison descendante d'appel de groupe
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WO2017132971A1 (fr) * 2016-02-05 2017-08-10 海能达通信股份有限公司 Procédé et système de traitement de service d'appel de groupe, et dispositif de réseau central
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WO2018028497A1 (fr) * 2016-08-12 2018-02-15 中兴通讯股份有限公司 Procédé et dispositif de transmission pour service de multidiffusion
CN108307325B (zh) * 2016-10-10 2021-05-25 普天信息技术有限公司 一种基于td-lte宽带集群系统的多选组呼叫方法及装置
CN107257550B (zh) * 2017-07-13 2020-06-23 京信通信系统(中国)有限公司 一种信号处理方法、基站及计算机存储介质
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CN108111983A (zh) * 2017-12-22 2018-06-01 天津七二通信广播股份有限公司 采用模块化在lte系统中实现gis多媒体调度台
CN109982266B (zh) 2017-12-28 2021-05-11 华为技术有限公司 一种通信方法、及相关产品
CN112640491A (zh) 2018-08-29 2021-04-09 Oppo广东移动通信有限公司 通信方法和设备
CN110958649B (zh) * 2018-09-26 2021-12-21 成都鼎桥通信技术有限公司 重选方法、终端和存储介质
CN110809244B (zh) * 2019-11-07 2023-04-18 腾讯科技(深圳)有限公司 一种数据传输方法及相关设备
CN113709680B (zh) * 2020-05-20 2023-10-24 海能达通信股份有限公司 组呼方法和集群服务器
CN114189853B (zh) * 2020-08-24 2023-12-12 海能达通信股份有限公司 一种终端的通信控制方法、装置及epc

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101110996A (zh) * 2007-08-16 2008-01-23 中兴通讯股份有限公司 基于mbms会话建立mbms承载面数据传输通道的方法
CN101340355A (zh) * 2007-07-03 2009-01-07 华为技术有限公司 一种多媒体广播/组播业务的实现方法、系统及装置
CN101370173A (zh) * 2007-08-13 2009-02-18 中兴通讯股份有限公司 长期演进架构下的多媒体广播多播业务接入方法
CN101370174A (zh) * 2007-08-13 2009-02-18 中兴通讯股份有限公司 长期演进架构下的多媒体广播多播业务接入方法
WO2011017821A1 (fr) * 2009-08-11 2011-02-17 上海贝尔股份有限公司 Système de service de diffusion/diffusion groupée multimédia évolué et procédé d'exécution de multiplexage statistique pour des services ayant différents identifiants de classe de qualité de service

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101340355A (zh) * 2007-07-03 2009-01-07 华为技术有限公司 一种多媒体广播/组播业务的实现方法、系统及装置
CN101370173A (zh) * 2007-08-13 2009-02-18 中兴通讯股份有限公司 长期演进架构下的多媒体广播多播业务接入方法
CN101370174A (zh) * 2007-08-13 2009-02-18 中兴通讯股份有限公司 长期演进架构下的多媒体广播多播业务接入方法
CN101110996A (zh) * 2007-08-16 2008-01-23 中兴通讯股份有限公司 基于mbms会话建立mbms承载面数据传输通道的方法
WO2011017821A1 (fr) * 2009-08-11 2011-02-17 上海贝尔股份有限公司 Système de service de diffusion/diffusion groupée multimédia évolué et procédé d'exécution de multiplexage statistique pour des services ayant différents identifiants de classe de qualité de service

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
ALCATEL-LUCENT SHANGHAI BELL: "Add description of eMBMS statistical multiplexing", 3GPP TSG SA WG2 MEETING #76, S2-096798, 20 November 2009 (2009-11-20) *

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113055812A (zh) * 2019-12-27 2021-06-29 中国移动通信有限公司研究院 一种数据传输方法、基站及核心网网元
CN113055812B (zh) * 2019-12-27 2022-10-21 中国移动通信有限公司研究院 一种数据传输方法、基站及核心网网元

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