WO2014067357A1 - 基于lte的宽带集群系统的话权抢占实现方法 - Google Patents

基于lte的宽带集群系统的话权抢占实现方法 Download PDF

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Publication number
WO2014067357A1
WO2014067357A1 PCT/CN2013/083679 CN2013083679W WO2014067357A1 WO 2014067357 A1 WO2014067357 A1 WO 2014067357A1 CN 2013083679 W CN2013083679 W CN 2013083679W WO 2014067357 A1 WO2014067357 A1 WO 2014067357A1
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Prior art keywords
cluster
call
terminal
subsystem
wireless access
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PCT/CN2013/083679
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English (en)
French (fr)
Inventor
杜高鹏
李群
马子江
张寿勇
丁鼎
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中兴通讯股份有限公司
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Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Priority to JP2015540028A priority Critical patent/JP6091635B2/ja
Priority to EP13851032.6A priority patent/EP2903308B1/en
Priority to US14/440,339 priority patent/US9794952B2/en
Publication of WO2014067357A1 publication Critical patent/WO2014067357A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/06Selective distribution of broadcast services, e.g. multimedia broadcast multicast service [MBMS]; Services to user groups; One-way selective calling services
    • H04W4/10Push-to-Talk [PTT] or Push-On-Call services
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/06Selective distribution of broadcast services, e.g. multimedia broadcast multicast service [MBMS]; Services to user groups; One-way selective calling services
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/50Allocation or scheduling criteria for wireless resources
    • H04W72/56Allocation or scheduling criteria for wireless resources based on priority criteria
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W74/00Wireless channel access, e.g. scheduled or random access
    • H04W74/04Scheduled or contention-free access

Definitions

  • the present invention relates to the field of broadband digital trunking systems, and in particular, to a method for implementing a right preemption of a broadband cluster system based on Long Term Evolution (LTE), a Mobile Management Entity (MME), a network subsystem, and a broadband wireless system.
  • LTE Long Term Evolution
  • MME Mobile Management Entity
  • a network subsystem a broadband wireless system.
  • Access subsystem and LTE-based broadband trunking system Access subsystem and LTE-based broadband trunking system.
  • cluster systems play an increasingly important role as an efficient emergency command and dispatch system.
  • the trunking communication system is widely used in government departments, public safety, emergency telecommunications, electric power, civil aviation, petrochemicals, and military.
  • the development of cluster system has experienced the stage of analog cluster system and narrow-band digital cluster system.
  • the simulated cluster system has the disadvantages of large interference, many blind spots and limited frequency, while the narrow-band digital cluster system has Compared with the analog cluster system, the communication quality and capacity are improved, but the data transmission capability and the multimedia service support capability are still weak, and the narrowband digital trunking system has certain difficulties in the evolution of the LTE-based broadband digital trunking system.
  • the LTE-based broadband digital trunking system has become the development direction of the next-generation cluster system.
  • relevant standards are being studied in China, and operators and enterprises hope to be as existing as possible.
  • the LTE network and technology are modified or expanded to complete the deployment of the LTE-based broadband digital trunking system, which can make good use of the existing LTE network and technology, and also maximize the operators and enterprises. Reduce the input cost. Therefore, how to use the existing LTE network and technology to deploy the architecture based on the LTE broadband digital trunking system, and realize the right to seize the trunking service becomes an urgent problem to be solved.
  • Embodiments of the present invention provide a method for implementing a right preemption of an LTE-based broadband cluster system, an MME, a network subsystem, a broadband wireless access subsystem, and an LTE-based broadband cluster system. To solve the problem of how to use the existing LTE network and technology to deploy the architecture based on the LTE broadband digital trunking system and realize the right to seize the trunking service.
  • the embodiment of the present invention provides a method for implementing a rights preemption in a broadband cluster system based on Long Term Evolution (LTE), where the LTE-based broadband trunking system includes a right-right terminal and a rights preemption terminal and a broadband wireless access sub-group in the same group.
  • LTE Long Term Evolution
  • System, network subsystem, and cluster scheduling management center the method includes:
  • the broadband wireless access subsystem sends a cluster call right update request to the network subsystem, receives a cluster call right update accept message returned by the network subsystem, and sends the cluster call right update accept to the call preemption terminal.
  • the broadband wireless access subsystem, the network subsystem, and the voice right terminal interact to complete the tampering of the cluster voice context;
  • the right terminal and the call preemption terminal send a cluster call right occupation prompt message and update configuration information.
  • eMBMS enhanced multimedia broadcast multicast service
  • the method further includes: before the broadband wireless access subsystem sends a cluster call rights update request to the network subsystem,
  • the broadband wireless access subsystem interacts with the call preemption terminal, the network subsystem, and the cluster scheduling management center to complete establishment of a default bearer;
  • the broadband wireless access subsystem transparently transmits the cluster-specific call request sent by the call preemption terminal to the network subsystem, so that the network subsystem completes the establishment of the cluster-specific bearer.
  • the broadband wireless access subsystem performs interaction with the call preemption terminal, the network subsystem, and the cluster scheduling management center to complete establishment of a default bearer, including: the broadband wireless access Receiving, by the subsystem, the cluster call request request sent by the terminal to the terminal, and sending, by the network subsystem, the cluster call request request to the cluster scheduling management center;
  • the cluster context establishment request is sent after the cluster scheduling management center receives the cluster call request request, performs authentication, authentication, and policy determination on the preempted terminal.
  • the broadband wireless access subsystem sends a cluster voice right update request to the network subsystem, and receives a cluster voice rights update accept message returned by the network subsystem, including:
  • the broadband wireless access subsystem sends a cluster call right update request to the network subsystem, and the network subsystem receives the cluster call right information update according to the cluster call right update request and the cluster scheduling management center. And the cluster voice rights update accept message returned by the cluster scheduling management center, where the broadband wireless access subsystem receives the cluster voice rights update accept message returned by the network subsystem.
  • the broadband wireless access subsystem, the network subsystem, and the voice right terminal mutually complete the modification of the cluster call context, including:
  • the broadband wireless access subsystem, the network subsystem, and the voice right terminal mutually exchange bearer and air interface resource release of the voice right terminal;
  • the broadband wireless access subsystem sends a cluster call context modification completion message to the network subsystem.
  • the embodiment of the present invention further provides a method for implementing a right preemption of a broadband cluster system based on Long Term Evolution (LTE), wherein the LTE-based broadband trunking system includes a rights terminal and a right preemption terminal located in the same group, and broadband wireless access.
  • LTE Long Term Evolution
  • Subsystem, network subsystem, and cluster scheduling management center, the method includes:
  • the network subsystem and the cluster scheduling management center perform information update of the cluster call rights, and send the cluster voice rights update acceptance message to the right preemption terminal by using the broadband wireless access subsystem;
  • the network subsystem, the broadband wireless access subsystem, and the voice right terminal mutually interact to complete tampering of the cluster call context;
  • the network subsystem sends a rights occupation prompt message to the broadband wireless access subsystem, so that the broadband wireless access subsystem performs multicast control over the enhanced multimedia broadcast multicast service eMBMS
  • the channel sends a cluster call right occupation prompt message to the right preemption terminal and the call right terminal, and updates configuration information.
  • the method further includes: before the network subsystem and the cluster scheduling management center perform information update of the cluster call rights, the network subsystem passes the preemption terminal with the right, and the broadband wireless access sub The system interacts with the cluster scheduling management center to complete establishment of a default bearer between the broadband wireless access subsystem and the call preemption terminal;
  • the network subsystem performs interaction with the broadband wireless access subsystem and the voice right preemption by interacting with the right preemption terminal, the broadband wireless access subsystem, and the cluster scheduling management center.
  • the establishment of default bearers between terminals including:
  • the cluster scheduling management center Receiving, by the network subsystem, a cluster context establishment request sent by the cluster scheduling management center, and performing interaction with the broadband wireless access subsystem and the voice preemption terminal to complete establishment of a default bearer; wherein the cluster context establishment request After receiving the cluster call request request, the cluster scheduling management center sends the call preemption terminal after authentication, authentication, and policy determination.
  • the network subsystem sends the cluster voice rights update accept message to the right preemption terminal by using the broadband wireless access subsystem, including:
  • the network subsystem receives the cluster call rights update acceptance message sent by the cluster scheduling management center, and sends the cluster call rights update accept message to the right preemption terminal by using the broadband wireless access subsystem.
  • the network subsystem, the broadband wireless access subsystem, and the voice right terminal mutually complete the modification of the cluster call context, including:
  • the network subsystem Sending, by the network subsystem, a cluster call context modification request to the broadband wireless access subsystem;
  • the network subsystem, the broadband wireless access subsystem, and the voice right terminal mutually exchange the bearer and air interface resource release of the voice right terminal;
  • the network subsystem receives a cluster call context modification completion message sent by the broadband wireless access subsystem.
  • An embodiment of the present invention further provides a mobility management entity MME, which is applied to long-term evolution based on
  • the MME includes:
  • the first establishing module is configured to: perform interaction with the first base station and the cluster scheduling management center to which the right preemption terminal belongs, and complete a default bearer between the first base station and the right preempting terminal Establishment
  • the second establishing module is configured to: pass through a Service Gateway (SGW) and a Packet Data Network Gateway (PDN-GW or P-) with the first base station, the same network subsystem as the MME GW) interacts to complete the establishment of a cluster-specific call preemption bearer;
  • SGW Service Gateway
  • PDN-GW Packet Data Network Gateway
  • the update module is configured to: perform a cluster call right update by interacting with the Multimedia Broadcast Multicast Service-Gateway (MBMS-GW), the SGW, and the cluster scheduling management center, and The first base station sends a cluster call request accept message to the right preemption terminal;
  • MBMS-GW Multimedia Broadcast Multicast Service-Gateway
  • the modifying module is configured to: complete the cluster voice context tampering by interacting with the right terminal and the second base station to which the right terminal belongs;
  • the occupancy module is configured to: send a cluster voice usage prompt to the first base station and the second base station, so that the first base station and the second base station pass a multicast broadcast single frequency network (Multicast Broadcast Single Frequency Network)
  • the control channel of the MBSFN area notifies all terminals in the cluster area to occupy the right and update the configuration information.
  • the first establishing module is configured to perform interaction with the first base station and the first base station and the cluster scheduling management center by the right preemption terminal, the right preemption terminal, and the clustering management center.
  • the call right preempts the establishment of a default bearer between terminals:
  • the request contains the cluster session identifier
  • the second establishing module is configured to perform the cluster-specific right preemptive bearer by interacting with the SGW and the P-GW that are in the same network subsystem as the first base station and the MME. set up:
  • the update module is configured to pass the MBMS-GW, as described in the following manner
  • the SGW interacts with the cluster scheduling management center to complete the cluster call rights update, and sends a cluster call request acceptance message to the right preemption terminal by using the first base station:
  • the modifying module is configured to complete the cluster voice context modification by interacting with the right terminal and the second base station to which the rights terminal belongs:
  • the embodiment of the present invention further provides a network subsystem, including a mobility management entity MME, a serving gateway SGW connected to the MME, a Broadcast Multicast Service Center (BM-SC), and a home subscriber server (Home Subscriber) Server, HSS), a multimedia broadcast multicast service gateway MBMS-GW connected to the BM-SC, and a packet data network gateway P-GW connected to the BM-SC and the SGW, where:
  • the MME is the foregoing MME
  • the MBMS-GW is configured to: be responsible for multicast address storage, data distribution, and processing cluster service session control commands;
  • the P-GW is configured to: receive a cluster service bearer setup request sent by the cluster scheduling management center, and forward the cluster service request information sent by the user equipment (User Equipment, UE) processed by the MME to the cluster scheduling management
  • the HSS is configured to: store base station information to which the terminal belongs and an identifier of the belonging group.
  • the embodiment of the present invention further provides a broadband wireless access subsystem, including a multi-cell or Multicast Cooperation Entity (MCE) and multiple base stations, where:
  • MCE Multicast Cooperation Entity
  • the base station is configured to: establish a radio bearer for the trunking service session, and notify the configured radio bearer information to the terminal served by the base station;
  • the MCE is set to: responsible for the allocation of radio resources of the cluster service session in which the base station performs MBSFN transmission in the MBSFN area of the multicast broadcast single frequency network.
  • the MCE is further configured to: receive a cluster service session start request from the mobility management entity MME, generate scheduling control information of the radio resource according to the quality of service, and send the scheduling control information to the base station.
  • the base station is further configured to:
  • the call preemption terminal receives a cluster-specific call preemption bearer setup request sent by the MME, and the base station service
  • the call preemption terminal performs establishment of RRC connection reconfiguration, and returns a cluster-specific call preemption bearer setup completion message to the MME.
  • the embodiment of the present invention further provides a broadband cluster system based on Long Term Evolution (LTE), including a terminal connected in sequence, a broadband wireless access subsystem, a network subsystem, and a cluster scheduling management center, and the broadband wireless access subsystem.
  • LTE Long Term Evolution
  • An operation and maintenance subsystem connected to the network subsystem, wherein:
  • the broadband wireless access subsystem is the broadband wireless access subsystem described above;
  • the network subsystem is the above network subsystem
  • the cluster scheduling management center is configured to: be responsible for completing cluster service call management and scheduling, cluster single call or group call authorization management, cluster service service type assignment, and cluster service quality of service configuration;
  • the operation and maintenance subsystem is configured to: perform various operations of an account opening, a customer, and a user service authority of the cluster user, and perform parameter configuration and performance on the broadband wireless access subsystem and the network subsystem device. And security management.
  • system further includes: an internet protocol multimedia subsystem (Internet Protocol
  • IMS Multimedia Subsystem
  • the above-mentioned LTE-based broadband cluster system is deployed in combination with eMBMS technology and network elements.
  • the point-to-multipoint characteristics of the cluster system can be satisfied by fully utilizing the multicast technology of the eMBMS downlink without adding new network element equipment.
  • the LTE-based broadband digital trunking system can be deployed only after the functions of some network elements are modified or expanded. The subsequent convergence with the public network can also be achieved.
  • the call rights preemption based on the LTE broadband cluster service can be realized. Process.
  • FIG. 1 is a schematic structural diagram of an LTE-based broadband digital trunking system according to an embodiment of the present invention
  • FIG. 2 is a flowchart 1 of a method for implementing a voice preemption in a LTE-based broadband digital trunking system according to an embodiment of the present invention
  • FIG. 3 is a second flowchart of a method for implementing a right preemption in a LTE-based broadband digital trunking system according to an embodiment of the present invention
  • FIG. 4 is an overall signaling flowchart of a call preemption process of a LTE-based broadband digital trunking system according to an embodiment of the present invention
  • FIG. 5 is a signaling flowchart of a rights preemption of a LTE-based broadband digital trunking system according to an embodiment of the present invention
  • FIG. 6 is a schematic structural diagram of an MME according to an embodiment of the present invention.
  • FIG. 1 is a schematic structural diagram of an LTE-based broadband digital trunking system according to an embodiment of the present invention, where the system includes a terminal 101, a broadband wireless access subsystem 102, a network subsystem 103, and an IMS 104, and cluster scheduling management.
  • the terminal 101 includes a rights terminal and a right preemption terminal in the same group, and the terminal may be a handheld terminal, a mobile station, a fixed station or a wireless dispatching station.
  • the broadband wireless access subsystem 102 includes a plurality of evolved base stations (eNodeBs) and a multi-cell or MCE.
  • the eNodeB establishes a radio bearer for the cluster service session, and notifies the configuration of the radio bearer information to the terminal 101.
  • the MCE is responsible for allocating the radio resources of the group service session for the MBSFN transmission in the MBSFN area, including the time domain resource allocation and the coding modulation scheme.
  • the MCE is also responsible for transmitting the cluster service session control signaling sent by the MME.
  • the MCE receives the cluster service session start request from the M3 interface, generates scheduling control information of the radio resource according to the Quality of Service (Qos), and sends the scheduling control information to the eNodeB through the M2 interface.
  • Qos Quality of Service
  • the MCE and eNodeB are connected through the M2 interface.
  • the handheld mobile station, the radio station, the fixed station, and the wireless dispatch station share wireless resources with the broadband wireless access subsystem 102 via the LTE-Uu interface.
  • the above network subsystem 103 includes MME, SGW, HSS, BM-SC, MBMS-GW, and P-GW.
  • the P-GWs are respectively connected to support different cluster service play characteristic gateways.
  • the P-GW requests the SGW or the BM-SC to establish a radio access bearer of the cluster service according to the play characteristics of the cluster request service request.
  • BM-SC provides aggregation and transmission of cluster services, authorization of cluster services, initiation of bearer establishment, and session control.
  • the MBMS-GW is responsible for multicast address preservation, data distribution, and processing of cluster service session control commands.
  • the MME is a cluster service session control node that caches established group call information and is responsible for establishing, maintaining, and releasing various cluster services.
  • the MME receives the cluster service request from the SGW or the MBMS-GW, configures the service quality and the transport bearer information of the cluster service, and establishes the cluster service radio access bearer through the S1 interface or the M3 interface. Meanwhile, the MME also receives the UE.
  • the cluster service request is forwarded to the PDN-GW.
  • 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 to which the UE belongs (for example, the temporary mobile group identifier (Temporary Mobile) Group Identity, TMGI ) ), that is, storage ⁇ group identification, group service distribution area information, terminal list information ⁇ .
  • the SGW is the end point of the media data interface connecting the broadband wireless access sub-system 102, and is mainly responsible for routing and forwarding of data packets.
  • the MME is connected to the SGW through the S11 interface, the MME is connected to the HSS through the S6a interface, the MME is connected to the BM-SC through the Sm interface, the SGW is connected to the P-GW through the S5 interface, and the BM-SC is connected to the P-GW through the SGi interface, BM- The SC is 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 cluster scheduling management center 105 is connected to the PDN-GW, and is responsible for completing cluster service call management and scheduling, cluster single call/group call authorization management, cluster service service type assignment, and cluster service quality of service configuration, and, in addition, user terminals and wireless The console's authentication, which is the entry point to the P-GW.
  • the cluster application server includes a Push-to-Talk over Cellular (PoC)-based application server, a Global Open Trunking Architecture (GOTA)-based cluster application server, and other types of cluster application servers. If other types of cluster application servers can perform subsequent expansion to complete the session control function, the IMS 104 does not need to be deployed, and the Session Initial Protocol (SIP) signaling is not used, and private signaling can be used.
  • PoC Push-to-Talk over Cellular
  • GOTA Global Open Trunking Architecture
  • the cluster scheduling management center 105 notifies the PDN-GW cluster service bearer establishment request;
  • the PDN-GW forwards the cluster service request information sent by the UE processed by the MME to the cluster scheduling management center 105.
  • the foregoing operation and maintenance subsystem 106 mainly performs the user data management function, and can perform operations such as opening an account of the cluster user, canceling the account, and changing the user service authority, and simultaneously accessing the broadband wireless access subsystem 102 and the network subsystem 103.
  • the parameter configuration, performance and security of the device are managed.
  • an embodiment of the present invention provides a method for implementing voice preemption.
  • the method is described from the perspective of a broadband wireless access subsystem. As shown in FIG. 2, the method includes the following steps:
  • Step 201 The broadband wireless access subsystem sends a cluster voice right update request to the network subsystem, receives a cluster voice right update accept message returned by the network subsystem, and sends the cluster voice right update to the voice right preempting terminal. Accept the message.
  • the cluster voice rights update accept message is returned by the network cluster subsystem according to the cluster voice right update request and the cluster scheduling management center performing cluster call right information update after the cluster scheduling management center returns;
  • the method further includes: the broadband wireless access subsystem interacting with the call preemption terminal, the network subsystem, and the cluster scheduling management center to complete establishment of a default bearer;
  • the broadband wireless access subsystem transparently transmits the cluster-specific call request sent by the call preemption terminal to the network subsystem, so that the network subsystem completes establishment of a cluster-specific bearer.
  • Step 202 The broadband wireless access subsystem, the network subsystem, and the voice right terminal interact to complete the tampering of the cluster voice context.
  • Step 203 The broadband wireless access subsystem receives the call rights occupation prompt message sent by the network subsystem, and sends a cluster call rights occupation prompt message to the right-right terminal and the right-right preemption terminal by using the multicast control channel of the eMBMS. And update the configuration information.
  • the embodiment of the present invention further provides a message.
  • the method for realizing the preemption the method is described from the perspective of the network subsystem, as shown in FIG. 3, including the following steps:
  • Step 301 The network subsystem performs interaction with the voice preemption terminal, the broadband wireless access subsystem, and the cluster scheduling management center, and completes a default between the broadband wireless access subsystem and the call preemption terminal. The establishment of the bearer.
  • the step 301 may include: the network subsystem receiving a cluster call request request sent by the right preemption terminal through the broadband wireless access subsystem, and sending the cluster call request request to the cluster scheduling management center And receiving, by the network subsystem, a cluster context establishment request sent by the cluster scheduling management center, and interacting with the broadband wireless access subsystem and the right preemption terminal to complete establishment of a default bearer; wherein, the cluster The context establishment request is sent after the cluster scheduling management center receives the cluster call request request, performs authentication, authentication, and policy determination on the call preemption terminal.
  • Step 302 The network subsystem receives a cluster-specific call request transparently transmitted by the call preemption terminal through the broadband wireless access subsystem, and the broadband wireless access subsystem and the right preemption terminal The interaction completes the establishment of the cluster dedicated bearer.
  • steps 301 and 302 are optional steps.
  • Step 303 The network subsystem and the cluster scheduling management center perform information update of the cluster call rights, and send the cluster call right update accept message to the right preemption terminal by using the broadband wireless access subsystem.
  • the step 303 includes: receiving, by the network subsystem, a cluster voice rights update accept message sent by the cluster scheduling management center, and sending, by the broadband wireless access subsystem, the cluster voice right update accepting to the voice right preempting terminal. Message.
  • Step 304 The network subsystem, the broadband wireless access subsystem, and the voice right terminal interact to complete the modification of the cluster voice rights context.
  • the step 304 may include: the network subsystem sending a cluster voice rights context modification request to the broadband wireless access subsystem; the network subsystem, the broadband wireless access subsystem, and the voice right terminal interacting with each other The bearer terminal of the voice right terminal and the air interface resource release; and, the network subsystem receives the cluster voice rights context modification completion message sent by the broadband wireless access subsystem.
  • Step 305 The network subsystem sends a rights occupation prompt message to the broadband wireless access subsystem, so that the broadband wireless access subsystem sends the rights preemption terminal and the right terminal through the multicast control channel of the eMBMS.
  • the cluster voice occupies the prompt message and updates the configuration information.
  • the call preemption process based on the LTE broadband cluster system includes the following steps: Step 401: The terminal user presses a Push to Talk (PTT) button to interact with the broadband wireless access subsystem to complete the air interface resource. set up.
  • PTT Push to Talk
  • Step 402 The terminal sends a cluster call request request, and the request message is sent to the cluster scheduling management center through the network subsystem to apply for the right to call.
  • Step 403 After receiving the call right application, the cluster scheduling management center authenticates and authenticates the terminal, and determines, according to certain policy rules, the priority of the current preemptive call right terminal and the occupying right authority terminal, to determine whether to accept the preemption. Terminal request.
  • Step 404 The cluster scheduling management center sends a cluster context establishment request to the network subsystem according to the authentication and authentication result and the judgment policy. If not, the cluster context establishment rejection is sent to the terminal through the network subsystem.
  • Step 405 After receiving the cluster context establishment request, the network subsystem interacts with the broadband wireless access subsystem and the terminal to complete the establishment of the default load.
  • Step 406 The terminal and the cluster scheduling management center negotiate, through the SIP message, or the private protocol message, information about the configuration of the data to be subsequently transmitted.
  • Step 407 The terminal transparently transmits the cluster-specific call request to the network subsystem through the broadband wireless access subsystem.
  • Step 408 After receiving the cluster-specific call request, the network subsystem interacts with the broadband wireless access subsystem and the terminal to complete the establishment of the cluster-specific bearer.
  • Step 409 The network subsystem and the cluster scheduling management center perform information update of the cluster call rights.
  • the network subsystem forwards the cluster call right acceptance message to the broadband wireless access subsystem, and the broadband wireless access subsystem sends a cluster call request acceptance message to the terminal.
  • Step 411 After receiving the cluster call rights update acceptance message of the cluster scheduling management center, the network subsystem sends a cluster call rights context modification request to the broadband wireless access subsystem, requesting release of the terminal resource that is occupying the call right.
  • Step 412 The network subsystem, the broadband wireless access subsystem, and the terminal interaction completion group are occupying the bearer of the voice terminal and releasing the air interface resource.
  • Step 413 The broadband wireless access subsystem returns a cluster call context modification completion message to the network subsystem.
  • Step 414 The network subsystem sends a voice usage prompt message to the broadband wireless access subsystem.
  • Step 415 The broadband wireless access subsystem sends a cluster call rights occupation prompt message and update configuration information to the terminal of the cluster group by using the multicast control channel of the eMBMS.
  • cluster terminal A is under eNodeB1
  • cluster terminal B is under eNodeB2
  • cluster terminal A and terminal group B belong to one MBSFN area and cluster group.
  • Cluster terminal B currently occupies voice, based on the LTE broadband cluster system.
  • the preemption process includes the following steps:
  • Step 501 Terminal A is in an idle state, and terminal B is in the right of the call. If the terminal A preempts the cluster call right, when the user presses the PTT button, the terminal A and the eNodeB1 perform the interaction between the random access and the RRC connection establishment.
  • Step 502 The terminal A sends a cluster call request to the cluster scheduling management center by using the MME, where the call request message is encapsulated by a non-access stratum (NAS) message, and includes a cluster session identifier.
  • NAS non-access stratum
  • Step 503 After receiving the cluster call request of the terminal A, the cluster scheduling management center performs authentication on the terminal A and the information in the cluster user group, and performs policy granting according to the priority of the call rights of the terminal A and the terminal B. The cluster scheduling management center grants the approval.
  • Step 504 The cluster scheduling management center sends a cluster context establishment request to the MME.
  • Step 505 The MME completes the establishment of a default bearer with the eNodeB1 and the cluster terminal A.
  • Step 506 The terminal A and the cluster scheduling management center negotiate the information such as the QoS, the IP address, and the port number of the data to be subsequently transmitted through the SIP message.
  • Step 507 The cluster terminal A transparently transmits the cluster-specific call preemption request message to the MME through the eNode1.
  • Step 508 The MME interacts with the SGW and the P-GW to perform bearer establishment of the user.
  • Step 509 The MME sends a cluster-specific right preemption bearer setup request to the eNodeB1.
  • the reconfiguration mainly configures the uplink shared channel, and the downlink uses the multicast downlink channel.
  • Step 511 After the eNodeB1 is configured, return the cluster-specific right preemption bearer setup complete message to the MME.
  • Step 512 The MME sends a cluster call right update request to the SGW, and the SGW returns a cluster call right update response message to the MME.
  • Step 513 The MME sends a cluster call right update request to the cluster scheduling management center by using the MBMS-GW, and the cluster scheduling management center returns a cluster call right update accept request to the MME, indicating that the call right application of the group terminal A is accepted.
  • Step 514 The MME sends a cluster call request acceptance message to the cluster terminal A through the eNodeB1, and the cluster terminal A considers that the call right is applied.
  • Step 515 The MME sends a cluster right context modification request to the eNodeB2 to release the bearer context of the terminal B.
  • Step 516 The MME and the eNodeB2 release the bearer context of the terminal B.
  • Step 517 The eNodeB2 performs an RRC connection release to the terminal B.
  • Step 518 After the release of the eNodeB2 is completed, return a cluster voice rights context modification response message to the MME.
  • Step 519 The MME sends a cluster call right occupation prompt to the eNodeB 1 and the eNodeB 2 respectively.
  • the above-mentioned cluster system architecture is combined with the eMBMS technology and the network element to deploy. If the new network element device is not needed, the eMBMS downlink multicast technology can be fully utilized to meet the point-to-multipoint characteristics of the cluster system.
  • the function of some network elements can be modified or expanded to deploy a broadband digital trunking system based on LTE. The subsequent convergence with the public network can also be achieved. At the same time, the call preemption process can be implemented.
  • the embodiment of the present invention further provides an MME, which is applied to an LTE-based broadband cluster system.
  • the MME includes:
  • a first establishing module 61 configured to perform interaction with the first base station and the cluster scheduling management center to which the right preemption terminal belongs, and complete the default between the first base station and the right preemption terminal Establishment of bearers;
  • a second establishing module 62 configured to perform establishment of a cluster-specific right preemptive bearer by interacting with the first base station, the SGW and the P-GW that are in the same network subsystem as the MME, and the updating module 63, And performing the cluster call right update by interacting with the MBMS-GW, the SGW, and the cluster scheduling management center, and sending a cluster call request acceptance message to the right preemption terminal by using the first base station;
  • a modifying module 64 configured to complete the cluster voice context tampering by interacting with the right terminal and the second base station to which the right terminal belongs;
  • the occupant module 65 is configured to send a cluster voice usage cues to the first base station and the second base station, so that the first base station and the second base station notify all the cluster areas through the control channel of the MBSFN area. Terminal usage rights and update configuration information.
  • the first establishing module 61 is configured to perform interaction with the first base station and the clustering management center by the right preemption terminal, the first base station and the cluster scheduling management center to which the right preemption terminal belongs, in the following manner.
  • the right to speak preempts the establishment of the default bearer between terminals:
  • the cluster context establishment request is sent after the cluster scheduling management center receives the cluster call request request, and performs authentication, authentication, and policy determination on the call preemption terminal.
  • the second establishing module 62 is configured to perform the establishment of the cluster-specific right preemptive bearer by interacting with the SGW and the P-GW that are in the same network subsystem as the first base station and the MME in the following manner:
  • the update module 63 is configured to perform cluster voice rights update by interacting with the MBMS-GW, the SGW, and the cluster scheduling management center, and preempting the terminal by using the first base station to the right Send a cluster call request acceptance message:
  • the modifying module 64 is configured to complete the cluster voice context modification by interacting with the right terminal and the second base station to which the right terminal belongs.
  • the embodiment of the present invention further provides a network subsystem, including the MME shown in FIG. 6, the SGW, the BM-SC, and the HSS connected to the MME, the MBMS-GW connected to the BM-SC, and the foregoing A P-GW in which both the BM-SC and the SGW are connected, wherein:
  • the MBMS-GW is responsible for multicast address storage, data distribution, and processing of cluster service session control commands;
  • the P-GW is configured to receive a cluster service bearer setup request sent by the cluster scheduling management center, and forward the cluster service request information sent by the MME to the cluster scheduling management center; and the HSS is used to save the terminal.
  • an embodiment of the present invention further provides a broadband wireless access subsystem, including a multi-cell or an MCE and multiple base stations, where:
  • the base station is configured to establish a radio bearer for the cluster service session, and notify the terminal that is served by the base station by configuring the radio bearer information;
  • the MCE is configured to be responsible for the radio of the cluster service session for performing MBSFN transmission on the base station in the MBSFN area. The allocation of resources.
  • the MCE is further configured to: receive a cluster service session start request from the MME, generate scheduling control information of the radio resource according to the quality of service, and send the scheduling control information to the base station.
  • the base station is further configured to: receive a cluster right context modification request sent by the MME, release a bearer context of the voice terminal with the MME, perform RRC connection release on the right terminal served by the base station, and return to the MME
  • the cluster voice right context modification request response is received; or, the cluster-specific voice preemption bearer setup request sent by the MME is received, the RRC connection reconfiguration is established with the call preemption terminal served by the base station, and the cluster specific message is returned to the MME.
  • connection relationship between the above network subsystem and the broadband wireless access subsystem is shown in Figure 1.
  • the two systems and the cluster scheduling management center cooperate to realize the broadband digital trunking system and realize the right to seize the voice.
  • the LTE-based broadband cluster system and the LTE broadband cluster system-based call rights preemption process can be implemented without adding a new network element device.

Abstract

一种基于LTE的宽带集群系统的话权抢占实现方法、MME、网络子系统、宽带无线接入子系统和基于LTE的宽带集群系统。该方法包括:宽带无线接入子系统向网络子系统发送集群话权更新请求,接收网络子系统返回的集群话权更新接受消息,并向话权抢占终端发送集群话权更新接受消息;宽带无线接入子系统、网络子系统和话权终端交互完成集群话权上下文的修改;以及,宽带无线接入子系统接收网络子系统发送的话权占用提示消息,并通过eMBMS的组播控制信道向话权终端和话权抢占终端发送集群话权占用提示消息以及更新配置信息。

Description

基于 LTE的宽带集群系统的话权抢占实现方法
技术领域
本发明涉及宽带数字集群系统领域, 尤其涉及一种基于长期演进(Long Term Evolution, LTE )的宽带集群系统的话权抢占实现方法、 移动管理实体 ( Mobile Management Entity, MME )、 网络子系统、 宽带无线接入子系统和 基于 LTE的宽带集群系统。
背景技术
随着通信技术的发展以及人们对集群系统认识的不断加深, 集群系统作 为一种高效应急指挥调度系统发挥的作用也越来越大。 集群通信系统广泛应 用于政府部门、公共安全、应急通信、 电力、 民航、石油化工和军队等领域。 集群系统发展经历了模拟集群系统和窄带数字集群系统阶段, 其中两个阶段 的集群系统都存在着很多的弊端, 模拟集群系统存在干扰大、 盲区多、 频率 有限等缺点, 而窄带数字集群系统虽然在通信质量和容量上相对于模拟集群 系统有所提高,但是在数据传输能力和多媒体业务的支持能力方面还比较弱, 并且窄带数字集群系统向基于 LTE 的宽带数字集群系统演进具有一定的困 难。
目前,基于 LTE的宽带数字集群系统已经成为下一代集群系统的发展方 向, 对于基于 LTE的宽带数字集群系统国内均正在进行相关的标准的研究, 并且运营商和企业希望尽可能在目前现有的 LTE 网络和技术的基础上进行 相应的修改或扩充来完成基于 LTE的宽带数字集群系统的部署,这样既可以 很好地利用现有的 LTE网络和技术,同时也为运营商和企业最大限度地降低 投入成本, 因此, 如何利用现有的 LTE网络和技术来部署基于 LTE宽带数 字集群系统的架构,并且实现集群业务的话权抢占成为一个亟待解决的问题。
发明内容
本发明实施例提供了一种基于 LTE 的宽带集群系统的话权抢占实现方 法、 MME、 网络子系统、宽带无线接入子系统和基于 LTE的宽带集群系统, 以解决如何利用现有的 LTE网络和技术来部署基于 LTE宽带数字集群系统 的架构和实现集群业务的话权抢占的问题。
本发明实施例提供了一种基于长期演进 LTE 的宽带集群系统的话权抢 占实现方法, 其中, 该基于 LTE的宽带集群系统包括位于同一群组的话权终 端和话权抢占终端、宽带无线接入子系统、网络子系统和集群调度管理中心, 该方法包括:
所述宽带无线接入子系统向所述网络子系统发送集群话权更新请求, 接 收所述网络子系统返回的集群话权更新接受消息, 并向话权抢占终端发送所 述集群话权更新接受消息;
所述宽带无线接入子系统、 所述网络子系统和所述话权终端交互完成集 群话权上下文的爹改; 以及
所述宽带无线接入子系统接收所述网络子系统发送的话权占用提示消息 , 并通过增强的多媒体广播多播月良务 ( enhanced Multimedia Broadcast Multicast Service, eMBMS )的组播控制信道向所述话权终端和所述话权抢占终端发送 集群话权占用提示消息以及更新配置信息。
可选地, 该方法还包括: 所述宽带无线接入子系统向所述网络子系统发 送集群话权更新请求之前,
所述宽带无线接入子系统通过与所述话权抢占终端、 所述网络子系统和 所述集群调度管理中心进行交互, 完成默认承载的建立; 以及
所述宽带无线接入子系统将所述话权抢占终端发送的集群专用话权请求 透传给所述网络子系统, 以便所述网络子系统完成集群专用承载的建立。
可选地, 所述宽带无线接入子系统通过与所述话权抢占终端、 所述网络 子系统和所述集群调度管理中心进行交互, 完成默认承载的建立, 包括: 所述宽带无线接入子系统接收所述话权抢占终端发送的集群话权申请请 求,通过所述网络子系统向所述集群调度管理中心发送该集群话权申请请求; 以及
所述网络子系统接收所述集群调度管理中心发送的集群上下文建立请求, 并与所述宽带无线接入子系统和所述抢占终端交互完成默认承载的建立; 其 中, 该集群上下文建立请求为所述集群调度管理中心接收到该集群话权申请 请求后, 对所述抢占终端进行鉴权、 认证和策略判定后发送的。
可选地, 所述宽带无线接入子系统向所述网络子系统发送集群话权更新 请求, 接收所述网络子系统返回的集群话权更新接受消息, 包括:
所述宽带无线接入子系统向所述网络子系统发送集群话权更新请求, 所 述网络子系统根据所述集群话权更新请求与所述集群调度管理中心进行集群 话权的信息更新后接收所述集群调度管理中心返回的所述集群话权更新接受 消息, 所述宽带无线接入子系统接收所述网络子系统返回的所述集群话权更 新接受消息。
可选地, 所述宽带无线接入子系统、 所述网络子系统和所述话权终端交 互完成集群话权上下文的修改, 包括:
所述宽带无线接入子系统接收所述网络子系统发送的集群话权上下文修 改请求;
所述宽带无线接入子系统、 所述网络子系统和所述话权终端交互完成所 述话权终端的承载和空口资源释放; 以及
所述宽带无线接入子系统向所述网络子系统发送集群话权上下文修改完 成消息。
本发明实施例还提供了一种基于长期演进 LTE 的宽带集群系统的话权 抢占实现方法, 其中, 该基于 LTE的宽带集群系统包括位于同一群组的话权 终端和话权抢占终端、 宽带无线接入子系统、 网络子系统和集群调度管理中 心, 该方法包括:
所述网络子系统和所述集群调度管理中心进行集群话权的信息更新, 并 通过所述宽带无线接入子系统向所述话权抢占终端发送所述集群话权更新接 受消息;
所述网络子系统、 所述宽带无线接入子系统和所述话权终端交互完成集 群话权上下文的爹改; 以及
所述网络子系统向宽带无线接入子系统发送话权占用提示消息, 以便所 述宽带无线接入子系统通过增强的多媒体广播多播服务 eMBMS的组播控制 信道向所述话权抢占终端和所述话权终端发送集群话权占用提示消息以及更 新配置信息。
可选地, 所述方法还包括: 所述网络子系统和所述集群调度管理中心进 行集群话权的信息更新之前, 所述网络子系统通过与话权抢占终端、 所述宽 带无线接入子系统和所述集群调度管理中心进行交互, 完成与所述宽带无线 接入子系统和所述话权抢占终端间默认承载的建立; 以及
所述网络子系统接收所述话权抢占终端通过所述宽带无线接入子系统透 传的集群专用话权请求, 并与所述宽带无线接入子系统和所述话权抢占终端 交互完成集群专用承载的建立。
可选地, 所述网络子系统通过与话权抢占终端、 所述宽带无线接入子系 统和所述集群调度管理中心进行交互, 完成与所述宽带无线接入子系统和所 述话权抢占终端间默认承载的建立, 包括:
所述网络子系统接收所述话权抢占终端通过所述宽带无线接入子系统发 送的集群话权申请请求, 并向所述集群调度管理中心发送该集群话权申请请 求; 以及
所述网络子系统接收所述集群调度管理中心发送的集群上下文建立请求, 并与所述宽带无线接入子系统和所述话权抢占终端交互完成默认承载的建立; 其中, 该集群上下文建立请求为所述集群调度管理中心接收到该集群话权申 请请求后, 对所述话权抢占终端进行鉴权、 认证和策略判定后发送的。
可选地, 所述网络子系统通过所述宽带无线接入子系统向所述话权抢占 终端发送所述集群话权更新接受消息, 包括:
所述网络子系统接收所述集群调度管理中心发送的集群话权更新接受消 息, 通过所述宽带无线接入子系统向所述话权抢占终端发送所述集群话权更 新接受消息。
可选地, 所述网络子系统、 所述宽带无线接入子系统和所述话权终端交 互完成集群话权上下文的修改, 包括:
所述网络子系统向所述宽带无线接入子系统发送集群话权上下文修改请 求; 所述网络子系统、 所述宽带无线接入子系统和所述话权终端交互完成所 述话权终端的承载和空口资源释放; 以及
所述网络子系统接收所述宽带无线接入子系统发送的集群话权上下文修 改完成消息。
本发明实施例还提供了一种移动管理实体 MME, 应用于基于长期演进
LTE的宽带集群系统中, 该 MME包括:
第一建立模块其设置成: 通过与话权抢占终端、 该话权抢占终端所属的 第一基站和集群调度管理中心进行交互, 完成与所述第一基站和所述话权抢 占终端间默认承载的建立;
第二建立模块其设置成: 通过与所述第一基站、 与该 MME位于同一网 络子系统的服务网关( Service Gateway, SGW )和分组数据网络网关( Packet Data Network Gateway, PDN-GW或 P-GW )进行交互, 完成集群专用话权抢 占承载的建立;
更新模块其设置成: 通过与多媒体广播多播服务网关 (Multimedia Broadcast Multicast Service-Gateway, MBMS-GW ) 、 所述 SGW和所述集群 调度管理中心进行交互, 完成集群话权更新, 并通过所述第一基站向所述话 权抢占终端发送集群话权请求接受消息;
修改模块其设置成: 通过与话权终端及该话权终端所属的第二基站进行 交互, 完成集群话权上下文爹改; 以及
占用模块其设置成: 向所述第一基站和所述第二基站发送集群话权占用 提示, 以便所述第一基站和所述第二基站通过多播广播单频网 (Multicast Broadcast Single Frequency Network, MBSFN )区域的控制信道通知集群区域 内的所有终端话权占用以及更新配置信息。
可选地, 所述第一建立模块是设置成以如下方式通过与话权抢占终端、 所述话权抢占终端所属的第一基站和集群调度管理中心进行交互, 完成与所 述第一基站和所述话权抢占终端间默认承载的建立:
接收话权抢占终端通过所述第一基站发送的集群话权申请请求, 并向所 述集群调度管理中心发送该集群话权申请请求, 其中, 所述集群话权申请请 求中包含集群会话标识; 以及
接收所述集群调度管理中心发送的集群上下文建立请求, 并与所述第一 基站和所述话权抢占终端交互完成默认承载的建立; 其中, 该集群上下文建 立请求为所述集群调度管理中心接收到该集群话权申请请求后, 对所述话权 抢占终端进行鉴权、 认证和策略判定后发送的。
可选地, 所述第二建立模块是设置成以如下方式通过与所述第一基站、 与所述 MME位于同一网络子系统的 SGW和 P-GW进行交互, 完成集群专 用话权抢占承载的建立:
接收所述话权抢占终端通过所述第一基站透传的集群专用话权抢占请求 消息;
与所述 SGW和所述 P-GW交互进行话权用户的承载建立;
向所述第一基站发送集群专用话权抢占承载建立请求; 以及
接收所述第一基站根据所述集群专用话权抢占承载建立请求完成配置后 发送的集群专用话权抢占承载建立完成消息。
可选地, 所述更新模块是设置成以如下方式通过与 MBMS-GW、 所述
SGW和所述集群调度管理中心进行交互,完成集群话权更新,并通过所述第 一基站向所述话权抢占终端发送集群话权请求接受消息:
向所述 SGW发送集群话权更新请求,以及接收所述 SGW返回的集群话 权更新响应消息;
通过所述 MBMS-GW向所述集群调度管理中心发送集群话权更新请求, 接收所述集群调度管理中心返回的集群话权更新接受请求; 以及
通过所述第一基站向所述话权抢占终端发送集群话权请求接受消息。 可选地, 所述修改模块是设置成以如下方式通过与话权终端及所述话权 终端所属的第二基站进行交互, 完成集群话权上下文修改:
向所述第二基站发送集群话权上下文修改请求;
与所述第二基站释放该话权终端的承载上下文; 以及
接收所述第二基站释放完对该话权终端的连接后返回的集群话权上下文 爹改响应消息。
本发明实施例另提供了一种网络子系统, 包括移动管理实体 MME, 与 该 MME相连的服务网关 SGW、 广播组播业务中心 (Broadcast Multicast Service Center, BM-SC )和归属用户服务器( Home Subscriber Server, HSS ) , 与所述 BM-SC相连的多媒体广播多播服务网关 MBMS-GW, 以及与所述 BM-SC和所述 SGW均相连的分组数据网络网关 P-GW, 其中:
该 MME为上述的 MME;
所述 MBMS-GW设置成: 负责组播地址保存、数据分发和处理集群业务 会话控制命令;
所述 P-GW设置成: 接收集群调度管理中心发送的集群业务承载建立请 求, 以及, 将所述 MME处理的用户设备( User Equipment, UE )发送的集 群业务请求信息转发至所述集群调度管理中心; 以及 所述 HSS设置成: 保存终端归属的基站信息和归属的群组的标识。
本发明实施例又提供了一种宽带无线接入子系统, 包括多小区或多播协 作实体 ( Multicast Cooperation Entity, MCE )和多个基站, 其中:
所述基站设置成: 为集群业务会话建立无线承载, 并将配置的无线承载 信息通知给该基站服务的终端; 以及
所述 MCE设置成: 负责多播广播单频网络 MBSFN区域下, 对所述基 站进行 MBSFN发射的集群业务会话的无线资源的分配。
可选地, 所述 MCE还设置成: 接收来自移动管理实体 MME的集群业 务会话开始请求, 根据服务质量生成无线资源的调度控制信息, 并向所述基 站发送所述调度控制信息。
可选地, 所述基站还设置成:
接收所述 MME发送的集群话权上下文修改请求 , 与所述 MME释放话 权终端的承载上下文, 对该基站服务的话权终端进行无线资源控制 (Radio Resource Control, RRC )连接释放, 以及向所述 MME返回集群话权上下文 修改请求响应; 或者
接收所述 MME发送的集群专用话权抢占承载建立请求, 与该基站服务 的话权抢占终端进行 RRC连接重配的建立,以及向所述 MME返回集群专用 话权抢占 载建立完成消息。
本发明实施例又提供了一种基于长期演进 LTE的宽带集群系统,包括依 次相连的终端、 宽带无线接入子系统、 网络子系统和集群调度管理中心, 以 及与所述宽带无线接入子系统和所述网络子系统均相连的操作维护子系统, 其中:
所述宽带无线接入子系统为上述宽带无线接入子系统;
所述网络子系统为上述网络子系统;
所述集群调度管理中心设置成: 负责完成集群业务话权管理和调度、 集 群单呼或组呼的授权管理、 集群业务服务类型指派以及集群业务服务质量配 置; 以及
所述操作维护子系统设置成: 完成集群用户的开户、 销户和用户业务权 限的各种操作, 以及对所述宽带无线接入子系统和所述网络子系统的设备进 行参数的配置以及性能和安全管理。
可选地, 该系统还包括: 互联网协议多媒体子系统 ( Internet Protocol
Multimedia Subsystem, IMS ) , 其位于所述网络子系统和所述集群调度管理 中心之间, 其中: 所述 IMS设置成: 为集群功能提供协议和流程支持。
上述基于 LTE的宽带集群系统, 结合 eMBMS技术和网元来部署, 在不 需要增加新的网元设备情况下, 充分利用 eMBMS下行的组播技术就可以满 足集群系统的点对多点的特性, 另外只需对部分网元的功能进行修改或扩充 则可部署基于 LTE的宽带数字集群系统,后续也可以和公网进行一定的融合, 同时在此基础上可实现基于 LTE宽带集群业务的话权抢占流程。
附图概述
图 1为本发明实施例的基于 LTE的宽带数字集群系统的结构示意图; 图 2为本发明实施例的基于 LTE的宽带数字集群系统的话权抢占的实现 方法的流程图一; 图 3为本发明实施例的基于 LTE的宽带数字集群系统的话权抢占的实现 方法的流程图二;
图 4为本发明实施例的基于 LTE的宽带数字集群系统的话权抢占过程的 整体信令流程图; 图 5为本发明实施例的基于 LTE的宽带数字集群系统的话权抢占的信令 流程图;
图 6为本发明实施例的 MME的结构示意图。
本发明的较佳实施方式
下文中将结合附图对本发明的实施例进行详细说明。 需要说明的是, 在 不冲突的情况下, 本申请中的实施例及实施例中的特征可以相互任意组合。
如图 1所示,图 1为本发明实施例的基于 LTE的宽带数字集群系统的结 构示意图,该系统包括终端 101、宽带无线接入子系统 102、网络子系统 103、 IMS 104, 集群调度管理中心 105和操作维护子系统 106; 如果集群调度管理 中心 105可以完成与 IMS 104的相同功能, 则 IMS 104可以不部署。
其中, 上述终端 101包括位于同一群组的话权终端和话权抢占终端, 上 述终端可以为手持终端、 车载台、 固定台或无线调度台。
上述宽带无线接入子系统 102包括多个演进型基站( eNodeB )和多小区 或 MCE, eNodeB为集群业务会话建立无线承载, 并将配置无线承载信息通 知给终端 101。 MCE负责 MBSFN区域下对 eNodeB进行 MBSFN发射的集 群业务会话的无线资源的分配, 包括时域资源分配和编码调制方案的选择, MCE还负责传输 MME发送的集群业务会话控制信令。
MCE接收来自 M3接口的集群业务会话开始请求,根据服务质量( Quality of Service, Qos )生成无线资源的调度控制信息, 并通过 M2 接口发送至 eNodeB。 MCE和 eNodeB通过 M2接口相连。
所述手持移动台、 车载台、 固定台和无线调度台通过 LTE-Uu接口与宽 带无线接入子系统 102共享无线资源。
上述网络子系统 103包括 MME、 SGW、 HSS、 BM-SC、 MBMS-GW和 P-GW。
其中, P-GW分别连接支持不同集群业务播放特性网关; P-GW根据集 群请求业务请求的播放特性,分别请求 SGW或 BM-SC建立集群业务的无线 接入承载。 BM-SC作为集群业务数据组播的根源, 提供集群业务的汇聚和发 送、 集群业务的授权、 承载建立的发起和会话控制。 MBMS-GW负责组播地 址保存、 数据分发和处理集群业务会话控制命令。 MME是集群业务会话控 制节点,緩存已建立的组呼信息,负责建立、维护和释放各种集群业务。 MME 收到来自 SGW或 MBMS-GW的集群业务服务请求, 配置集群业务的服务质 量和传输承载信息;并通过 S1接口或 M3接口控制建立集群业务无线接入承 载; 同时, MME也将接收的 UE的集群业务请求转发至 PDN-GW。 HSS存 储终端用户的归属签约信息, 为了支持集群功能, 需要新增支持集群业务的 模块,该模块存储 UE的归属的 eNodeB信息以及该 UE所归属的群标识(如, 临时移动组标识(Temporary Mobile Group Identity, TMGI ) ), 即, 存储 {群 标识, 群业务分发区域信息, 终端列表信息 }。 SGW是连接宽带无线接入子 系统 102的媒体数据接口的终点, 主要负责数据包的路由和转发。
MME通过 S11接口与 SGW相连, MME通过 S6a接口与 HSS相连, MME通过 Sm接口与 BM-SC相连, SGW通过 S5接口与 P-GW相连, BM-SC 通过 SGi接口与 P-GW相连, BM-SC通过 SGmb和 SGimb接口与 MBMS-GW 相连。 eNodeB通过 Ml接口与 MBMS-GW相连, MCE通过 M3接口与 MME 相连。
上述集群调度管理中心 105连接 PDN-GW, 负责完成集群业务话权管理 和调度、 集群单呼 /组呼的授权管理、 集群业务服务类型指派以及集群业务服 务质量配置, 此外, 对用户终端和无线调度台的认证, 它是 P-GW 的入口。 集群应用服务器包括基于无线一键通(Push-to-Talk over Cellular, PoC )的应 用服务器、 基于全球开放式集群架构 (Global Open Trunking Architecture, GOTA ) 的集群应用服务器和其它类型的集群应用服务器。 若其它类型的集 群应用服务器能够进行后续扩充完成会话控制功能,则不需要部署 IMS104, 不用会话初始协议 ( Session Initial Protocol, SIP )信令, 可以使用私有信令。
集群调度管理中心 105 通知 PDN-GW 集群业务承载建立请求; 同时 PDN-GW将 MME处理的 UE发送的集群业务请求信息转至集群调度管理中 心 105。
另外, 上述操作维护子系统 106主要完成对用户数据管理功能, 可以进 行集群用户的开户、 销户以及用户业务权限的更改等操作, 同时可以对宽带 无线接入子系统 102和网络子系统 103的设备的参数配置、 性能和安全进行 管理。
基于图 1所示的宽带集群系统, 本发明实施例提供了一种话权抢占的实 现方法, 该方法从宽带无线接入子系统的角度进行描述, 如图 2所示, 包括 如下步骤:
步骤 201、 宽带无线接入子系统向所述网络子系统发送集群话权更新请 求, 接收所述网络子系统返回的集群话权更新接受消息, 并向话权抢占终端 发送所述集群话权更新接受消息。
其中, 所述集群话权更新接受消息为所述网络子系统根据所述集群话权 更新请求和所述集群调度管理中心进行集群话权的信息更新后所述集群调度 管理中心返回的;
在该步骤 201之前, 还可以包括: 所述宽带无线接入子系统通过与所述 话权抢占终端、 所述网络子系统和所述集群调度管理中心进行交互, 完成默 认承载的建立; 以及, 所述宽带无线接入子系统将所述话权抢占终端发送的 集群专用话权请求透传给所述网络子系统, 以便所述网络子系统完成集群专 用承载的建立。
步骤 202、 宽带无线接入子系统、 所述网络子系统和所述话权终端交互 完成集群话权上下文的爹改。
步骤 203、 宽带无线接入子系统接收所述网络子系统发送的话权占用提 示消息, 并通过 eMBMS的组播控制信道向所述话权终端和所述话权抢占终 端发送集群话权占用提示消息以及更新配置信息。
同样地, 基于图 1所示的宽带集群系统, 本发明实施例还提供了一种话 权抢占的实现方法, 该方法从网络子系统的角度进行描述, 如图 3所示, 包 括如下步骤:
步骤 301、 网络子系统通过与话权抢占终端、 所述宽带无线接入子系统 和所述集群调度管理中心进行交互, 完成与所述宽带无线接入子系统和所述 话权抢占终端间默认承载的建立。
该步骤 301可以包括: 所述网络子系统接收所述话权抢占终端通过所述 宽带无线接入子系统发送的集群话权申请请求, 并向所述集群调度管理中心 发送该集群话权申请请求; 以及, 所述网络子系统接收所述集群调度管理中 心发送的集群上下文建立请求, 并与所述宽带无线接入子系统和所述话权抢 占终端交互完成默认承载的建立; 其中, 该集群上下文建立请求为所述集群 调度管理中心接收到该集群话权申请请求后 ,对所述话权抢占终端进行鉴权、 认证和策略判定后发送的。
步骤 302、 所述网络子系统接收所述话权抢占终端通过所述宽带无线接 入子系统透传的集群专用话权请求, 并与所述宽带无线接入子系统和所述话 权抢占终端交互完成集群专用承载的建立。
上述步骤 301和步骤 302为可选步骤。
步骤 303、 所述网络子系统和所述集群调度管理中心进行集群话权的信 息更新, 并通过所述宽带无线接入子系统向所述话权抢占终端发送所述集群 话权更新接受消息。
该步骤 303包括: 所述网络子系统接收所述集群调度管理中心发送的集 群话权更新接受消息, 通过所述宽带无线接入子系统向所述话权抢占终端发 送所述集群话权更新接受消息。
步骤 304、 所述网络子系统、 所述宽带无线接入子系统和所述话权终端 交互完成集群话权上下文的修改。
该步骤 304可以包括: 所述网络子系统向所述宽带无线接入子系统发送 集群话权上下文修改请求; 所述网络子系统、 所述宽带无线接入子系统和所 述话权终端交互完成话权终端的承载和空口资源释放; 以及, 所述网络子系 统接收所述宽带无线接入子系统发送的集群话权上下文修改完成消息。 步骤 305、 网络子系统向宽带无线接入子系统发送话权占用提示消息, 以便所述宽带无线接入子系统通过 eMBMS的组播控制信道向所述话权抢占 终端和所述话权终端发送集群话权占用提示消息以及更新配置信息。
下面从终端与网络子系统、 宽带无线接入子系统和集群调度管理中心交 互的角度, 对本发明实施例的技术方案进行详细的描述。
如图 4所示, 基于 LTE宽带集群系统的话权抢占过程包括以下步骤: 步骤 401、 终端用户按下一键通(Push to Talk, PTT )键, 和宽带无线 接入子系统交互完成空口资源的建立。
步骤 402、 终端发送集群话权申请请求, 该请求消息通过网络子系统发 送到集群调度管理中心进行话权的申请。
步骤 403、集群调度管理中心收到话权申请后,对终端进行鉴权和认证, 并根据一定的策略规则判定当前抢占话权终端和正在占用话权终端的优先级 , 来判断是否接受该抢占终端的请求。
步骤 404、集群调度管理中心根据鉴权和认证结果及判断策略,若接受, 则向网络子系统发送集群上下文建立请求, 若不接受, 则通过网络子系统向 终端发送集群上下文建立拒绝。
步骤 405、 网络子系统收到集群上下文建立请求后, 与宽带无线接入子 系统、 终端交互完成默认^载的建立。 步骤 406、 终端与集群调度管理中心通过 SIP消息, 或私有协议消息协 商后续需要传递数据的配置等信息。
步骤 407、 终端通过宽带无线接入子系统透传集群专用话权请求给网络 子系统。
步骤 408、 网络子系统收到集群专用话权请求后, 与宽带无线接入子系 统、 终端交互完成集群专用承载的建立。
步骤 409、 网络子系统和集群调度管理中心进行集群话权的信息更新。 步骤 410、集群调度管理中心向网络子系统发送集群话权更新接受消息, 网络子系统向宽带无线接入子系统转发集群话权更新接受消息, 宽带无线接 入子系统向终端发送集群话权请求接受消息。
步骤 411、 网络子系统接收到集群调度管理中心的集群话权更新接受消 息后, 向宽带无线接入子系统发送集群话权上下文修改请求, 请求释放正在 占用话权的终端资源。
步骤 412、 网络子系统、 宽带无线接入子系统和终端交互完成群组正在 占用话权终端的承载和空口资源释放。
步骤 413、 宽带无线接入子系统向网络子系统返回集群话权上下文修改 完成消息。
步骤 414、 网络子系统向宽带无线接入子系统发送话权占用提示消息。 步骤 415、 宽带无线接入子系统通过 eMBMS的组播控制信道向集群组 的终端发送集群话权占用提示消息以及更新配置信息。
为便于对本发明实施例的理解, 下面给出应用实施为例对本发明实施例 的实现做详细说明。
结合图 5,集群终端 A处于 eNodeBl下,集群终端 B处于 eNodeB2下, 集群终端 A和终端组 B同属于一个 MBSFN区域和集群组,集群终端 B目前 占用话权, 基于 LTE宽带集群系统的话权抢占过程包括以下步骤:
步骤 501、 终端 A处于空闲状态, 终端 B处于话权占用中, 如果终端 A 抢占集群话权, 则当用户按下 PTT键时, 终端 A与 eNodeBl进行随机接入 和 RRC连接建立的交互。
步骤 502、 终端 A通过 MME向集群调度管理中心发送集群话权请求, 该话权申请消息通过非接入层(Non Access Stratum, NAS )消息封装, 包含 集群会话标识。
步骤 503、 集群调度管理中心收到终端 A的集群话权请求后, 对终端 A 进行鉴权和集群用户组内信息确认,并根据终端 A与终端 B的话权优先级进 行策略的话权授予, 这里集群调度管理中心授予通过。
步骤 504、 集群调度管理中心向 MME发送集群上下文建立请求。 步骤 505、 MME与 eNodeBl、 集群终端 A完成默认承载的建立。
步骤 506、 终端 A与集群调度管理中心通过 SIP消息协商后续需要传递 数据的 QoS、 IP地址和端口号等信息。
步骤 507、 集群终端 A通过 eNodel透传集群专用话权抢占请求消息给 MME。
步骤 508、 MME与 SGW、 P-GW交互进行用户的承载建立。
步骤 509、 MME向 eNodeBl发送集群专用话权抢占承载建立请求。 步骤 510、 eNodeBl收到专用话权抢占承载建立请求后, 进行 RRC连接 重配的建立, 该重配主要配置上行的共享信道, 下行使用多播下行信道。
步骤 511、 eNodeBl配置完成后, 向 MME返回集群专用话权抢占承载 建立完成消息。
步骤 512、 MME向 SGW发送集群话权更新请求, SGW向 MME回集群 话权更新响应消息。
步骤 513、 MME通过 MBMS-GW向集群调度管理中心发送集群话权更 新请求, 集群调度管理中心向 MME回集群话权更新接受请求, 表示接受集 群终端 A的话权申请。
步骤 514、 MME通过 eNodeBl向集群终端 A发送集群话权请求接受消 息, 集群终端 A则认为申请到本次话权。
步骤 515、 MME向 eNodeB2发送集群话权上下文修改请求释放终端 B 的承载上下文。
步骤 516、 MME与 eNodeB2释放终端 B的承载上下文。
步骤 517、 eNodeB2对终端 B进行 RRC连接释放。
步骤 518、 eNodeB2释放完成后向 MME返回集群话权上下文修改响应 消息。
步骤 519、 MME分别向 eNodeB 1和 eNodeB2发送集群话权占用提示。 步骤 520、 eNodeBl和 eNodeB2通过 MBSFN区域的控制信道通知该集 群组中终端组 B和其它终端话权已经被占用, 并更新配置信息。 上述集群系统架构结合 eMBMS技术和网元来部署, 在不需要增加新的 网元设备情况下, 充分利用 eMBMS下行的组播技术就可以满足集群系统的 点对多点的特性, 另外只需对部分网元的功能进行修改或扩充则可部署基于 LTE的宽带数字集群系统, 后续也可以和公网进行一定的融合, 同时在此基 础上可以实现话权抢占流程。
对应于上述方法, 本发明实施例还提供了一种 MME, 应用于基于 LTE 的宽带集群系统中, 如图 6所示, 该 MME包括:
第一建立模块 61 , 其用于通过与话权抢占终端、 该话权抢占终端所属的 第一基站和集群调度管理中心进行交互, 完成与所述第一基站和所述话权抢 占终端间默认承载的建立;
第二建立模块 62, 其用于通过与所述第一基站、 与该 MME位于同一网 络子系统的 SGW和 P-GW进行交互, 完成集群专用话权抢占承载的建立; 更新模块 63 , 其用于通过与 MBMS-GW、 所述 SGW和所述集群调度管 理中心进行交互, 完成集群话权更新, 并通过所述第一基站向所述话权抢占 终端发送集群话权请求接受消息;
修改模块 64,其用于通过与话权终端及该话权终端所属的第二基站进行 交互, 完成集群话权上下文爹改; 以及
占用模块 65 ,其用于向所述第一基站和所述第二基站发送集群话权占用 提示, 以便所述第一基站和所述第二基站通过 MBSFN区域的控制信道通知 集群区域内的所有终端话权占用以及更新配置信息。
其中,所述第一建立模块 61是用于以如下方式通过与话权抢占终端、所 述话权抢占终端所属的第一基站和集群调度管理中心进行交互, 完成与所述 第一基站和所述话权抢占终端间默认承载的建立:
接收话权抢占终端通过所述第一基站发送的集群话权申请请求, 并向所 述集群调度管理中心发送该集群话权申请请求, 其中, 所述集群话权申请请 求中包含集群会话标识; 以及, 接收所述集群调度管理中心发送的集群上下 文建立请求, 并与所述第一基站和所述话权抢占终端交互完成默认承载的建 立; 其中, 该集群上下文建立请求为所述集群调度管理中心接收到该集群话 权申请请求后, 对所述话权抢占终端进行鉴权、 认证和策略判定后发送的。
所述第二建立模块 62 是用于以如下方式通过与所述第一基站、 与所述 MME位于同一网络子系统的 SGW和 P-GW进行交互 ,完成集群专用话权抢 占承载的建立:
接收所述话权抢占终端通过所述第一基站透传的集群专用话权抢占请求 消息; 与所述 SGW和所述 P-GW交互进行话权用户的承载建立; 向所述第 一基站发送集群专用话权抢占承载建立请求; 以及, 接收所述第一基站根据 所述集群专用话权抢占承载建立请求完成配置后发送的集群专用话权抢占承 载建立完成消息。
所述更新模块 63是用于以如下方式通过与 MBMS-GW、所述 SGW和所 述集群调度管理中心进行交互, 完成集群话权更新, 并通过所述第一基站向 所述话权抢占终端发送集群话权请求接受消息:
向所述 SGW发送集群话权更新请求,以及接收所述 SGW返回的集群话 权更新响应消息;通过所述 MBMS-GW向所述集群调度管理中心发送集群话 权更新请求, 接收所述集群调度管理中心返回的集群话权更新接受请求; 以 及, 通过所述第一基站向所述话权抢占终端发送集群话权请求接受消息。
所述修改模块, 64是用于以如下方式通过与话权终端及所述话权终端所 属的第二基站进行交互, 完成集群话权上下文修改:
向所述第二基站发送集群话权上下文修改请求; 与所述第二基站释放该 话权终端的承载上下文; 以及, 接收所述第二基站释放完该话权终端的连接 后返回的集群话权上下文爹改响应消息。
该 MME的工作流程可参见图 5。
本发明实施例还提供了一种网络子系统, 包括图 6所示的 MME, 与该 MME相连的 SGW、 BM-SC和 HSS, 与所述 BM-SC相连的 MBMS-GW, 以 及与所述 BM-SC和所述 SGW均相连的 P-GW, 其中:
该 MBMS-GW用于负责组播地址保存、数据分发和处理集群业务会话控 制命令; 该 P-GW用于接收集群调度管理中心发送的集群业务承载建立请求, 以 及, 将所述 MME处理的 UE发送的集群业务请求信息转发至所述集群调度 管理中心; 以及 该 HSS用于保存终端归属的基站信息和归属的群组的标识。
另外, 本发明实施例还提供了一种宽带无线接入子系统, 包括多小区或 MCE和多个基站, 其中:
所述基站用于为集群业务会话建立无线承载, 并将配置无线承载信息通 知给该基站服务的终端; 所述 MCE用于负责 MBSFN区域下,对所述基站进行 MBSFN发射的集 群业务会话的无线资源的分配。
其中, 所述 MCE还用于: 接收来自 MME的集群业务会话开始请求, 根据服务质量生成无线资源的调度控制信息, 并向所述基站发送所述调度控 制信息。
所述基站还用于: 接收所述 MME发送的集群话权上下文修改请求, 与 所述 MME释放话权终端的承载上下文, 对该基站服务的话权终端进行 RRC 连接释放, 以及向所述 MME返回集群话权上下文修改请求响应; 或者, 接 收所述 MME发送的集群专用话权抢占承载建立请求, 与该基站服务的话权 抢占终端进行 RRC连接重配的建立,以及向所述 MME返回集群专用话权抢 占 载建立完成消息。
上述网络子系统和宽带无线接入子系统之间的连接关系参见图 1 , 两系 统和集群调度管理中心互相配合可实现宽带数字集群系统, 并可实现话权抢 占功能。
本领域普通技术人员可以理解上述方法中的全部或部分步骤可通过程序 来指令相关硬件完成, 上述程序可以存储于计算机可读存储介质中, 如, 只 读存储器、 磁盘或光盘等。 可选地, 上述实施例的全部或部分步骤也可以使 用一个或多个集成电路来实现。 相应地, 上述实施例中的各模块 /单元可以釆 用硬件的形式实现, 也可以釆用软件功能模块的形式实现。 本发明实施例不 限制于任何特定形式的硬件和软件的结合。 佳实施例对本发明进行了详细说明。 本领域的普通技术人员应当理解, 可以 对本发明实施例的技术方案进行修改或者等同替换, 而不脱离本发明技术方 案的精神和范围, 这些修改和等同替换均应涵盖在本发明的权利要求范围当 中。
工业实用性
本发明实施例中,在不需要增加新的网元设备情况下,即可实现基于 LTE 的宽带集群系统和基于 LTE宽带集群系统的话权抢占过程。

Claims

权利要求书
1、一种基于长期演进 LTE的宽带集群系统的话权抢占实现方法,其中, 所述基于 LTE 的宽带集群系统包括位于同一群组的话权终端和话权抢占终 端、宽带无线接入子系统、网络子系统和集群调度管理中心,所述方法包括: 所述宽带无线接入子系统向所述网络子系统发送集群话权更新请求, 接 收所述网络子系统返回的集群话权更新接受消息, 并向所述话权抢占终端发 送所述集群话权更新接受消息;
所述宽带无线接入子系统、 所述网络子系统和所述话权终端交互完成集 群话权上下文的爹改; 以及
所述宽带无线接入子系统接收所述网络子系统发送的话权占用提示消息 , 并通过增强的多媒体广播多播服务 eMBMS的组播控制信道向所述话权终端 和所述话权抢占终端发送集群话权占用提示消息以及更新配置信息。
2、 根据权利要求 1所述的方法, 还包括:
所述宽带无线接入子系统向所述网络子系统发送集群话权更新请求之前, 所述宽带无线接入子系统通过与所述话权抢占终端、 所述网络子系统和 所述集群调度管理中心进行交互, 完成默认承载的建立; 以及
所述宽带无线接入子系统将所述话权抢占终端发送的集群专用话权请求 透传给所述网络子系统, 以便所述网络子系统完成集群专用承载的建立。
3、 根据权利要求 2所述的方法, 其中:
所述宽带无线接入子系统通过与所述话权抢占终端、 所述网络子系统和 所述集群调度管理中心进行交互, 完成默认承载的建立, 包括:
所述宽带无线接入子系统接收所述话权抢占终端发送的集群话权申请请 求, 通过所述网络子系统向所述集群调度管理中心发送所述集群话权申请请 求; 以及
所述网络子系统接收所述集群调度管理中心发送的集群上下文建立请求, 并与所述宽带无线接入子系统和所述抢占终端交互完成默认承载的建立; 其 中, 所述集群上下文建立请求为所述集群调度管理中心接收到所述集群话权 申请请求后, 对所述抢占终端进行鉴权、 认证和策略判定后发送的。
4、 根据权利要求 1-3任一权利要求所述的方法, 其中:
所述宽带无线接入子系统向所述网络子系统发送集群话权更新请求, 接 收所述网络子系统返回的集群话权更新接受消息, 包括:
所述宽带无线接入子系统向所述网络子系统发送集群话权更新请求, 所 述网络子系统根据所述集群话权更新请求与所述集群调度管理中心进行集群 话权的信息更新后接收所述集群调度管理中心返回的所述集群话权更新接受 消息, 所述宽带无线接入子系统接收所述网络子系统返回的所述集群话权更 新接受消息。
5、 根据权利要求 1-3任一权利要求所述的方法, 其中:
所述宽带无线接入子系统、 所述网络子系统和所述话权终端交互完成集 群话权上下文的修改, 包括:
所述宽带无线接入子系统接收所述网络子系统发送的集群话权上下文修 改请求;
所述宽带无线接入子系统、 所述网络子系统和所述话权终端交互完成所 述话权终端的承载和空口资源释放; 以及
所述宽带无线接入子系统向所述网络子系统发送集群话权上下文修改完 成消息。
6、一种基于长期演进 LTE的宽带集群系统的话权抢占实现方法,其中, 所述基于 LTE 的宽带集群系统包括位于同一群组的话权终端和话权抢占终 端、宽带无线接入子系统、网络子系统和集群调度管理中心,所述方法包括: 所述网络子系统和所述集群调度管理中心进行集群话权的信息更新, 并 通过所述宽带无线接入子系统向所述话权抢占终端发送集群话权更新接受消 息;
所述网络子系统、 所述宽带无线接入子系统和所述话权终端交互完成集 群话权上下文的爹改; 以及
所述网络子系统向所述宽带无线接入子系统发送话权占用提示消息, 以 便所述宽带无线接入子系统通过增强的多媒体广播多播服务 eMBMS的组播 控制信道向所述话权抢占终端和所述话权终端发送集群话权占用提示消息以 及更新配置信息。
7、 根据权利要求 6所述的方法, 还包括:
所述网络子系统和所述集群调度管理中心进行集群话权的信息更新之前, 所述网络子系统通过与所述话权抢占终端、 所述宽带无线接入子系统和 所述集群调度管理中心进行交互, 完成与所述宽带无线接入子系统和所述话 权抢占终端间默认承载的建立; 以及
所述网络子系统接收所述话权抢占终端通过所述宽带无线接入子系统透 传的集群专用话权请求, 并与所述宽带无线接入子系统和所述话权抢占终端 交互完成集群专用承载的建立。
8、 根据权利要求 7所述的方法, 其中:
所述网络子系统通过与所述话权抢占终端、 所述宽带无线接入子系统和 所述集群调度管理中心进行交互, 完成与所述宽带无线接入子系统和所述话 权抢占终端间默认承载的建立, 包括:
所述网络子系统接收所述话权抢占终端通过所述宽带无线接入子系统发 送的集群话权申请请求, 并向所述集群调度管理中心发送所述集群话权申请 请求; 以及
所述网络子系统接收所述集群调度管理中心发送的集群上下文建立请求, 并与所述宽带无线接入子系统和所述话权抢占终端交互完成默认承载的建立; 其中, 所述集群上下文建立请求为所述集群调度管理中心接收到所述集群话 权申请请求后, 对所述话权抢占终端进行鉴权、 认证和策略判定后发送的。
9、 根据权利要求 6所述的方法, 其中:
所述网络子系统通过所述宽带无线接入子系统向所述话权抢占终端发送 所述集群话权更新接受消息, 包括:
所述网络子系统接收所述集群调度管理中心发送的集群话权更新接受消 息, 通过所述宽带无线接入子系统向所述话权抢占终端发送所述集群话权更 新接受消息。
10、 根据权利要求 6-9任一权利要求所述的方法, 其中: 所述网络子系统、 所述宽带无线接入子系统和所述话权终端交互完成集 群话权上下文的修改, 包括:
所述网络子系统向所述宽带无线接入子系统发送集群话权上下文修改请 求;
所述网络子系统、 所述宽带无线接入子系统和所述话权终端交互完成所 述话权终端的承载和空口资源释放; 以及
所述网络子系统接收所述宽带无线接入子系统发送的集群话权上下文修 改完成消息。
11、 一种移动管理实体 MME, 应用于基于长期演进 LTE的宽带集群系 统中, 所述 MME包括:
第一建立模块, 其设置成: 通过与话权抢占终端、 所述话权抢占终端所 属的第一基站和集群调度管理中心进行交互, 完成与所述第一基站和所述话 权抢占终端间默认承载的建立;
第二建立模块, 其设置成: 通过与所述第一基站、 与所述 MME位于同 一网络子系统的服务网关 SGW和分组数据网络网关 P-GW进行交互, 完成 集群专用话权抢占承载的建立;
更新模块, 其设置成: 通过与多媒体广播多播服务网关 MBMS-GW、 所 述 SGW和所述集群调度管理中心进行交互, 完成集群话权更新, 并通过所 述第一基站向所述话权抢占终端发送集群话权请求接受消息;
修改模块, 其设置成: 通过与话权终端及所述话权终端所属的第二基站 进行交互, 完成集群话权上下文爹改; 以及
占用模块, 其设置成: 向所述第一基站和所述第二基站发送集群话权占 用提示, 以便所述第一基站和所述第二基站通过多播广播单频网 MBSFN区 域的控制信道通知集群区域内的所有终端话权占用以及更新配置信息。
12、 根据权利要求 11所述的 MME, 其中:
所述第一建立模块是设置成以如下方式通过与话权抢占终端、 所述话权 抢占终端所属的第一基站和集群调度管理中心进行交互, 完成与所述第一基 站和所述话权抢占终端间默认承载的建立: 接收所述话权抢占终端通过所述第一基站发送的集群话权申请请求, 并 向所述集群调度管理中心发送所述集群话权申请请求, 其中, 所述集群话权 申请请求中包含集群会话标识; 以及
接收所述集群调度管理中心发送的集群上下文建立请求, 并与所述第一 基站和所述话权抢占终端交互完成默认承载的建立; 其中, 所述集群上下文 建立请求为所述集群调度管理中心接收到所述集群话权申请请求后, 对所述 话权抢占终端进行鉴权、 认证和策略判定后发送的。
13、 根据权利要求 11所述的 MME, 其中:
所述第二建立模块是设置成以如下方式通过与所述第一基站、 与所述 MME位于同一网络子系统的 SGW和 P-GW进行交互 ,完成集群专用话权抢 占承载的建立:
接收所述话权抢占终端通过所述第一基站透传的集群专用话权抢占请求 消息;
与所述 SGW和所述 P-GW交互进行话权用户的承载建立;
向所述第一基站发送集群专用话权抢占承载建立请求; 以及
接收所述第一基站根据所述集群专用话权抢占承载建立请求完成配置后 发送的集群专用话权抢占承载建立完成消息。
14、 根据权利要求 11所述的 MME, 其中:
所述更新模块是设置成以如下方式通过与 MBMS-GW、 所述 SGW和所 述集群调度管理中心进行交互, 完成集群话权更新, 并通过所述第一基站向 所述话权抢占终端发送集群话权请求接受消息:
向所述 SGW发送集群话权更新请求,以及接收所述 SGW返回的集群话 权更新响应消息;
通过所述 MBMS-GW向所述集群调度管理中心发送集群话权更新请求, 接收所述集群调度管理中心返回的集群话权更新接受请求; 以及
通过所述第一基站向所述话权抢占终端发送所述集群话权请求接受消息。
15、 根据权利要求 11所述的 MME, 其中: 所述修改模块是设置成以如下方式通过与话权终端及所述话权终端所属 的第二基站进行交互, 完成集群话权上下文修改:
向所述第二基站发送集群话权上下文修改请求;
与所述第二基站释放所述话权终端的承载上下文; 以及
接收所述第二基站释放完所述话权终端的连接后返回的集群话权上下文 爹改响应消息。
16、 一种网络子系统, 包括移动管理实体 MME, 与该 MME相连的服 务网关 SGW、 广播组播业务中心 BM-SC和归属用户服务器 HSS, 与所述 BM-SC相连的多媒体广播多播服务网关 MBMS-GW, 以及与所述 BM-SC和 所述 SGW均相连的分组数据网络网关 P-GW, 其中:
所述 MME为权利要求 11-15任一权利要求所述的 MME;
所述 MBMS-GW设置成: 负责组播地址保存、数据分发和处理集群业务 会话控制命令;
所述 P-GW, 设置成: 接收集群调度管理中心发送的集群业务承载建立 请求, 以及, 将所述 MME处理的用户设备 UE发送的集群业务请求信息转 发至所述集群调度管理中心; 以及
所述 HSS设置成: 保存终端归属的基站信息和归属的群组的标识。
17、 一种宽带无线接入子系统, 包括多小区或多播协作实体 MCE和多 个基站, 其中:
所述基站设置成: 为集群业务会话建立无线承载, 并将配置的无线承载 信息通知给所述基站服务的终端; 以及
所述 MCE设置成: 负责多播广播单频网络 MBSFN区域下, 对所述基 站进行 MBSFN发射的集群业务会话的无线资源的分配。
18、 根据权利要求 17所述的宽带无线接入子系统, 其中:
所述 MCE还设置成: 接收来自移动管理实体 MME的集群业务会话开 始请求, 根据服务质量生成无线资源的调度控制信息, 并向所述基站发送所 述调度控制信息。
19、 根据权利要求 17所述的宽带无线接入子系统, 其中: 所述基站还设置成:
接收所述 MME发送的集群话权上下文修改请求 , 与所述 MME释放话 权终端的承载上下文, 对所述基站服务的话权终端进行无线资源控制 RRC 连接释放, 以及向所述 MME返回集群话权上下文修改请求响应; 或者
接收所述 MME发送的集群专用话权抢占承载建立请求, 与所述基站服 务的话权抢占终端进行 RRC连接重配的建立,以及向所述 MME返回集群专 用话权抢占承载建立完成消息。
20、 一种基于长期演进 LTE的宽带集群系统, 包括依次相连的终端、 宽 带无线接入子系统、 网络子系统和集群调度管理中心, 以及与所述宽带无线 接入子系统和所述网络子系统均相连的操作维护子系统, 其中:
所述宽带无线接入子系统为权利要求 17-19任一权利要求所述的宽带无 线接入子系统;
所述网络子系统为权利要求 16所述的网络子系统;
所述集群调度管理中心设置成: 负责完成集群业务话权管理和调度、 集 群单呼或组呼的授权管理、 集群业务服务类型指派以及集群业务服务质量配 置; 以及
所述操作维护子系统设置成: 完成集群用户的开户、 销户和用户业务权 限的各种操作, 以及对所述宽带无线接入子系统和所述网络子系统的设备进 行参数的配置以及性能和安全管理。
21、根据权利要求 20所述的宽带集群系统,还包括: 互联网协议多媒体 子系统 IMS, 其位于所述网络子系统和所述集群调度管理中心之间, 其中: 所述 IMS设置成: 为集群功能提供协议和流程支持。
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