WO2006105738A1 - Procede de commande d’allocation de ressource de communication et systeme d’allocation de ressource - Google Patents

Procede de commande d’allocation de ressource de communication et systeme d’allocation de ressource Download PDF

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Publication number
WO2006105738A1
WO2006105738A1 PCT/CN2006/000614 CN2006000614W WO2006105738A1 WO 2006105738 A1 WO2006105738 A1 WO 2006105738A1 CN 2006000614 W CN2006000614 W CN 2006000614W WO 2006105738 A1 WO2006105738 A1 WO 2006105738A1
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WO
WIPO (PCT)
Prior art keywords
resource allocation
allocation policy
policy
control module
user
Prior art date
Application number
PCT/CN2006/000614
Other languages
English (en)
French (fr)
Inventor
Long Luo
Original Assignee
Huawei Technologies Co., Ltd.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Huawei Technologies Co., Ltd. filed Critical Huawei Technologies Co., Ltd.
Publication of WO2006105738A1 publication Critical patent/WO2006105738A1/zh
Priority to US11/867,258 priority Critical patent/US7840229B2/en

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L47/00Traffic control in data switching networks
    • H04L47/70Admission control; Resource allocation
    • H04L47/78Architectures of resource allocation
    • H04L47/781Centralised allocation of resources
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/02Details
    • H04L12/16Arrangements for providing special services to substations
    • H04L12/18Arrangements for providing special services to substations for broadcast or conference, e.g. multicast
    • H04L12/1813Arrangements for providing special services to substations for broadcast or conference, e.g. multicast for computer conferences, e.g. chat rooms
    • H04L12/1818Conference organisation arrangements, e.g. handling schedules, setting up parameters needed by nodes to attend a conference, booking network resources, notifying involved parties
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L47/00Traffic control in data switching networks
    • H04L47/10Flow control; Congestion control
    • H04L47/15Flow control; Congestion control in relation to multipoint traffic
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L47/00Traffic control in data switching networks
    • H04L47/70Admission control; Resource allocation
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L47/00Traffic control in data switching networks
    • H04L47/70Admission control; Resource allocation
    • H04L47/80Actions related to the user profile or the type of traffic
    • H04L47/806Broadcast or multicast traffic
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L47/00Traffic control in data switching networks
    • H04L47/70Admission control; Resource allocation
    • H04L47/82Miscellaneous aspects
    • H04L47/824Applicable to portable or mobile terminals

Definitions

  • the present invention relates to a communication resource allocation technique for a communication system, and more particularly to a method for controlling communication resource allocation and a resource allocation policy system. Background of the invention
  • the general communication service is mainly for individual users. Usually only one or two user terminals communicate. At this time, the communication system adopts full-duplex mode, and all users participating in the communication share communication resources, such as: during voice communication, the call There are two users, the two users can speak at the same time, the communication system will mix the voices of the two users, because the number of call users is small, so the mix has little effect on the call quality.
  • the communication system In a communication service in which a group user participates, usually one or more groups of users simultaneously communicate, so that the number of user equipments (UEs) participating in the communication is quite large.
  • the communication system It is necessary to control the communication resource allocation of each user.
  • PoC push-to-talk
  • the system performs floor control on multiple users of a group session, and implements a communication resource allocation strategy in which each user preempts the floor. Applying the floor to the system before the speech, the system assigns the communication resource to the user who first applies for the floor in the user who is currently participating in the session, and grants the floor to the next user. . Therefore, the PoC service system only transmits the voice stream of the user who has the floor, and the user who participates in the voice cannot hear the voice of other users who do not have the floor.
  • the control of the communication resource allocation by the existing communication system is not flexible enough.
  • the communication resource allocation strategy of the PoC service is limited to Preempting the right to speak, but in many cases, preempting the right to speak does not give the user an ideal business experience.
  • the communication resources are allocated according to the user's required policy, the entire group session will be more orderly and satisfy the user.
  • the group session in the scenario is required.
  • the policy for allocating communication resources may be: assigning a floor to different users every five minutes in order, so that each user can make a speech one by one in order and each person speaks for five minutes.
  • similar communication problems exist with other group users.
  • a communication resource for video transmission when a communication resource for video transmission is allocated, a manual manner is usually used to complete the switching of the video image from one site to another, and the communication cannot be flexibly controlled according to the user's needs.
  • the allocation of resources when a communication resource for video transmission is allocated, a manual manner is usually used to complete the switching of the video image from one site to another, and the communication cannot be flexibly controlled according to the user's needs.
  • the main object of the present invention is to provide a method for controlling communication resource allocation and a resource allocation policy system, which can provide a communication resource allocation policy according to current service needs, and implement flexible control over the allocation of communication resources.
  • the invention discloses a method for controlling communication resource allocation.
  • the method comprises:
  • step A the method for determining a resource allocation policy is: ⁇ according to the user's instruction A resource allocation strategy.
  • the indication of the user carries a resource allocation policy requested by the user
  • step A the method for determining a resource allocation policy according to an indication of a user is: directly extracting a resource allocation policy from an indication of the user.
  • the method for determining a resource allocation policy according to the indication of the user is: pre-storing various resource allocation policies and their respective unique policy indexes, where the user's indication carries the policy index:
  • the policy carried in the indication is indexed from the saved resource allocation policies to obtain a resource allocation policy corresponding to the policy index.
  • the indication of the user further includes: a parameter of the resource allocation policy; in step B, the parameter of the resource allocation policy is further used to allocate the communication resource according to the determined resource allocation policy.
  • the method for determining a resource allocation policy is as follows: In step A, the method for determining a resource allocation policy is: > according to the set multi-party communication service group and resource allocation policy The correspondence between the two determines the resource allocation policy corresponding to the group of the current multi-party communication service.
  • the method further includes: determining whether the resource allocation policy determined in step A can be accepted, and if yes, performing step B; otherwise, refusing to establish the current multi-party communication service, and ending the current processing flow.
  • the method further includes: determining whether the resource allocation policy determined in step A can be accepted, and if yes, performing step B; otherwise, negotiating with the user to obtain a resource allocation policy, or determining that the currently established multi-party communication service corresponds to Default default resource allocation policy, execution steps
  • the indication of the user is carried by a session establishment request. .
  • the method further includes: notifying the information about the determined resource allocation policy to the currently established Participating users of multi-party communication services.
  • the method further comprises:
  • the step C is: modifying the resource allocation policy corresponding to the current multi-party communication service during the current multi-party communication service process; the step D is: in the current multi-party communication service process, according to the modified resource allocation policy Re-allocating the communication resources of the current multi-party communication service participating user; or, when the multi-party communication service group in step C establishes a new multi-party communication service, assigning the new multi-party communication service participating user according to the modified resource allocation policy Communication resources.
  • the method for modifying the resource allocation policy is: modifying the resource allocation policy according to the user's instruction.
  • the method of the user in the step C carries a new resource allocation policy.
  • the method for modifying the resource allocation policy according to the user's instruction is: directly extracting a new resource allocation policy from the user's indication, and The resource allocation policy corresponding to the multi-party communication service is modified to the new resource allocation policy.
  • the modified resource allocation policy is the new resource allocation policy described in step C.
  • the resource allocation policy and its respective unique policy index are saved in advance on the network side, and the user's indication carries the new policy index in step C.
  • the method for modifying the resource allocation policy according to the user's instruction For: new in the instructions of the user
  • the policy index is indexed from the saved resource allocation policies to obtain a new resource allocation policy corresponding to the new policy index, and the resource allocation policy corresponding to the current multi-party communication service is modified into the new resource allocation policy.
  • the modified resource allocation policy is the new resource allocation policy described in step C.
  • the indication of the user in step C further includes: a parameter of the resource allocation policy; in step D, the parameter of the resource allocation policy is further used to allocate the communication resource according to the resource allocation policy.
  • the instruction of the user in the step C carries the new parameter of the current resource allocation policy.
  • the modified resource allocation policy is: the resource allocation policy of the new parameter described in step C.
  • the indication of the user in step C is carried by the session modification request.
  • the method further includes: determining whether the resource allocation policy obtained in step C can be accepted, and if yes, performing step D; otherwise, rejecting the modification, and ending the current processing flow.
  • the method further includes: determining whether the resource allocation policy obtained in step C can be accepted, and if yes, executing step D; otherwise, negotiating with the user to obtain the modified resource allocation policy, and performing step D.
  • the method further includes: notifying the information about the modified resource allocation policy to each participating user of the current multi-party communication service.
  • the notified participating users are users who subscribe to the resource allocation policy in advance.
  • the method is implemented in a server of the execution control function CF of the multi-party communication service.
  • the resource allocation policy system includes a resource allocation policy providing system and a resource allocation policy executing system in the communication system; and the step A includes: Al, the session centralized control unit in the communication system sends a resource allocation policy extraction request to the resource allocation policy providing system when establishing the multi-party communication service;
  • the resource allocation policy providing system extracts the resource allocation policy from the resource allocation policy saved by the resource allocation policy, and delivers the extracted resource allocation policy to the resource allocation policy execution system;
  • the step B includes: the resource allocation policy execution system controls the media processing unit in the communication system to allocate communication resources by sending a resource allocation command according to the received resource allocation policy.
  • the resource allocation policy providing system includes: a resource allocation policy control system and a resource allocation policy database system; the resource allocation policy control system is composed of one or more control modules, and the resource allocation policy database system is used by more than one for saving
  • the resource allocation policy execution system is composed of one or more execution modules; in step A1, the session centralized control unit sends a resource allocation policy extraction request to the control module; in step A2, step A1 is described in step A1.
  • the control module is configured to query the database connected to the resource according to the resource allocation policy, and extract the resource allocation policy, and then send the extracted resource allocation policy to the execution module corresponding to the current multi-party communication service.
  • the execution module is performed in step A2. Sending a resource allocation command to the media processing unit according to the received resource allocation policy.
  • the resource allocation policy control system further has more than one proxy control module; in step A1, the session centralized control unit sends the resource allocation policy extraction request to the proxy control module that is connected to itself, and the proxy control module Sending the resource allocation policy extraction request to the corresponding control module; in step A2, the control module sends the extracted resource allocation policy to the proxy control module in step A1, and the proxy control module sends the resource allocation policy again.
  • the proxy control module sends a resource allocation policy extraction request to the control
  • the method of the module is: sending the resource allocation policy extraction request to the corresponding control module according to the control module address carried in the resource allocation policy extraction request; or extracting the session information carried in the request according to the resource allocation policy Determining an address of the control module, and then sending the resource allocation policy extraction request to the control module according to the address of the control module.
  • the session centralized control unit is bound to the unique control module.
  • the session centralized control unit sends the resource allocation policy extraction request to the control module bound by itself.
  • the resource allocation policy corresponds to a unique policy index.
  • the session centralized control unit sends the policy index to the control module in the resource allocation policy extraction request.
  • the control module is configured according to The resource index carried in the resource allocation policy extraction request obtains a corresponding resource allocation policy.
  • the method further includes: the user sending a session establishment request carrying a policy index or service information to the session centralized control unit; in step A1, the session centralized control unit sets the session establishment request The policy index is included in the resource allocation policy extraction request; or, the policy index corresponding to the current multi-party communication service is determined according to the service information in the session establishment request, and the policy index is included in the resource allocation policy extraction request.
  • the relationship between the resource allocation policy and the applicable service information of the multi-party communication service is set in the control module.
  • the session centralized control unit includes the service information of the current multi-party communication service in the resource allocation.
  • the policy extraction request is sent to the control module.
  • the control module obtains a corresponding resource allocation policy according to the service information carried in the resource allocation policy extraction request.
  • the method for the control module to send the resource allocation policy to the execution module corresponding to the current multi-party communication service is: the control module extracts the address of the execution module corresponding to the current multi-party communication service carried in the request according to the resource allocation policy , send resources directly And assigning a policy to the execution module; or, the control module first sends a resource allocation policy to the session centralized control unit, and the session centralized control unit sends the resource allocation policy to the execution module according to the received session establishment request.
  • step B the execution module further sends a resource allocation notification to the user currently participating in the session while transmitting the resource allocation command.
  • the method further includes: updating, by the control module, the resource allocation policy saved in the database connected to the control module by the user and/or the communication system; and/or interworking with the communication system
  • the external communication system interacts with the resource allocation policy through a database in which the control module is connected to the control module.
  • the multi-party communication service is a key, that is, a PoC service, a message message service, or a conference conference service in a cellular system.
  • the present invention also discloses a resource allocation policy system, which is disposed in a communication system including a session centralized control unit and a media processing unit, the system comprising:
  • a resource allocation policy providing system configured to save a resource allocation policy, receive a resource allocation policy extraction request from the session centralized control unit, and extract a resource allocation policy and deliver the resource allocation policy to the resource allocation policy execution system;
  • a resource allocation policy execution system configured to send a resource allocation command to the media processing unit according to the received resource allocation policy.
  • the resource allocation policy providing system further connects the user equipment UE, and/or the operation and maintenance system of the communication system, and/or an external communication system interworking with the communication system.
  • the resource allocation policy providing system includes:
  • the resource allocation policy control system receives the resource allocation policy extraction request from the session centralized control unit, extracts the resource allocation policy from the resource allocation policy database system, and delivers the resource allocation policy directly or through the session centralized control unit Resource allocation policy Executing the system; connecting the UE, and/or the operation and maintenance system, and/or the external communication system, updating the resource allocation policy saved by the resource allocation policy database system;
  • the resource allocation policy database system saves the resource allocation policy and interacts with the resource allocation policy control system to allocate resource allocation policies.
  • the resource allocation policy control system is composed of one or more control modules;
  • the resource allocation policy database system is composed of one or more databases for storing resource allocation policies;
  • the resource allocation policy execution system is composed of one or more execution modules;
  • the control module receives a resource allocation policy extraction request from the session centralized control unit, extracts a resource allocation policy from a database connected to itself, sends the resource allocation policy to a corresponding execution module, or sends the resource allocation policy to the session centralized control unit Corresponding execution module; interacting with the UE, and/or the operation and maintenance system, and/or the external communication system, a resource allocation policy, and updating a resource allocation policy saved by the database connected to itself;
  • the execution module sends a resource allocation command to the corresponding media processing unit according to the received resource allocation policy.
  • the proxy control module further sends one or more proxy control modules in the resource allocation policy control system, and sends the resource allocation policy extraction request from the session centralized control unit to the corresponding control module, and the The resource allocation policy of the control module is directly or sent to the corresponding execution module by the session centralized control unit, and the UE, and/or the operation and maintenance system, and/or the external communication system and the control module are forwarded. Resource allocation policy information for interaction.
  • the session centralized control unit is bound to a unique control module, and the control module is bound to one or more session centralized control units, and the session centralized control unit that sends a resource allocation policy extraction request to the control module is The session centralized control unit bound to the control module.
  • control modules are further connected, and each connected control Modules are further used to interact with resource allocation policies.
  • the control module is implemented by an extended markup language XML file management server XDMS.
  • the resource allocation policy providing system is implemented by an XDMS.
  • the execution module is further configured to send a resource allocation notification to the UE.
  • the communication system is a PoC service communication system, and the session centralized control unit and its corresponding media processing unit are integrated in a control PoC server of the current PoC service; or the communication system is a Conference service communication system,
  • the media processing unit is integrated in the media resource function entity MRF, and the session centralized control unit is integrated in the conference server.
  • the method for controlling communication resource allocation and the resource allocation policy system provided by the present invention enable the communication system to select a resource allocation policy according to the needs of current service establishment, and control the communication resource allocation of the current service.
  • the resource allocation policy system provided by the present invention and the UE, the operation and maintenance system, and the external communication system may enable the user or the operator to dynamically create/modify the resource allocation policy by using an interaction resource allocation policy, and the resource allocation policy system It can be synchronized with the resource allocation strategy of the external communication system. In this way, not only the resource allocation strategy can be diversified, but also a solid foundation for the expansion of future communication service functions and the realization of intercommunication of various communication systems.
  • FIG. 1 is a schematic diagram of a processing flow of a first preferred embodiment of the method of the present invention
  • FIG. 2 is a schematic diagram of a processing flow of a second preferred embodiment of the method of the present invention.
  • FIG. 3 is a schematic diagram of a processing flow of a third preferred embodiment of the method of the present invention.
  • FIG. 4 is a schematic diagram of a processing flow of a first preferred embodiment of a modified resource allocation policy in the method of the present invention
  • FIG. 5 is a schematic diagram of a process flow of a second preferred embodiment of a modified resource allocation policy in the method of the present invention
  • FIG. 6 is a schematic diagram of a processing flow of a third preferred embodiment of a modified resource allocation strategy in the method of the present invention.
  • FIG. 7 is a schematic structural diagram of a resource allocation policy system of the present invention.
  • FIG. 8 is a schematic structural diagram of a networking of a preferred embodiment of the system of the present invention.
  • FIG. 9 is a schematic diagram showing a processing flow of a preferred embodiment of the method of the present invention based on the networking structure shown in FIG. 8;
  • FIG. 10 is a schematic structural diagram of a networking of another preferred embodiment of the system of the present invention.
  • FIG. 11 is a schematic diagram showing the processing flow of a preferred embodiment of the method of the present invention based on the networking structure shown in FIG. Mode for carrying out the invention
  • the invention discloses a method for controlling communication resource allocation, and the main processing idea is as follows: In the process of establishing a multi-party communication service, firstly determining a resource allocation policy corresponding to the currently established multi-party communication service, and then determining the resource allocation strategy according to the determined resource allocation strategy Allocating communication resources for each participating user of the current multi-party communication service.
  • the multi-party communication service may be: a PoC service, a message service, or a Conference service.
  • the user who initiates the current multi-party communication service establishment process sends an indication to the network side, and then the network side determines according to the user's instruction.
  • the resource allocation policy wherein the indication of the user may be carried by the user to the session establishment request sent by the network side, which is not limited by the present invention.
  • the multi-party communication service group and the resource allocation policy are set in advance on the network side. Corresponding relationship between the two, and then determining the resource allocation policy corresponding to the currently established multi-party communication service when establishing the multi-party communication service.
  • the method of the present invention is mainly implemented in a server of an execution control function (CF) of a current multi-party communication service on the network side, for example, a PoC server that performs CF of a PoC service (also referred to as a control PoC server:), and an execution CF of a Conference service.
  • CF execution control function
  • the Conference Server also known as the Control Conference Server.
  • FIG. 1 to 3 are three preferred embodiments of the method of the present invention.
  • the flow shown in FIG. 1 and FIG. 2 adopts the above method for determining a resource allocation strategy, and the flow shown in FIG. 3 uses the second determination described above.
  • the method of resource allocation strategy uses the three embodiments described in detail below.
  • FIG. 1 is a schematic diagram of a process flow of a first preferred embodiment of the method of the present invention.
  • the user directly carries the resource allocation policy required by the user in the session establishment request.
  • the specific processing steps include:
  • Step 101 The calling UE sends a session establishment request carrying a resource allocation policy to the server that executes the CF.
  • the session establishment request can be carried by an SIP INVITE message.
  • Step 102 The server executing the CF extracts the resource allocation policy from the received session establishment request and determines it as the resource allocation policy of the currently established multi-party communication service.
  • Step 103 The server executing the CF establishes a session with each called UE of the current multi-party communication service, and returns a session establishment response to the calling UE, and the session establishment response can be carried by the SIP 200 OK message.
  • Step 104 After the multi-party communication service is established, the server performing the CF allocates communication resources to the calling UE and each called UE according to the resource allocation policy determined in step 102.
  • the calling UE may carry the resource allocation policy parameter while carrying the resource allocation policy, so that the server executing the CF will use the received resource.
  • the parameters of the allocation policy are allocated communication resources according to the resource allocation policy.
  • the resource allocation policy may be configured as follows: a participating user of the current PoC service has one user speaking at a specified time in order, and the server executing the CF may send a UE media transmission chain at a specified time according to the logic.
  • the command of the road and the command to close a media transmission link of the UE that is, the allocation of the communication resource is updated every specified time; and the parameter of the resource allocation policy may be the specified time, for example: the parameter is set to five In minutes, the server that executes the CF will update the communication resource allocation every five minutes.
  • the server performing the CF may notify the master/called UE of the currently determined resource allocation policy after determining the resource allocation policy, for example, notifying the resource allocation policy used by each user for the current service; Notifying an operation method for each user to request a floor based on the resource allocation policy; or notifying the UE that allows the floor that has allocated communication resources for it and allowing it to speak, sending a communication resource to the UE that needs to stop speaking, and having allocated the communication resource to other users and needs to stop it Speak and so on.
  • FIG. 2 is a schematic diagram of a process flow of a second preferred embodiment of the method of the present invention.
  • the user carries the policy index corresponding to the resource allocation policy required by the user in the session establishment request.
  • the specific processing steps include:
  • Step 201 Pre-set and save the correspondence between the resource allocation policy and the policy index in the server that executes the CF.
  • Step 202 The calling UE sends a session establishment request carrying a policy index to a server that executes the CF.
  • Step 203 The server executing the CF extracts the policy request from the received session establishment request. According to the policy index index, the corresponding resource allocation policy is obtained and determined as the resource allocation policy of the currently established multi-party communication service.
  • Step 204 The server executing the CF establishes a session with each called UE of the current multi-party communication service, and returns a session establishment response to the calling UE.
  • Step 205 After the multi-party communication service is established, the server performing the CF allocates communication resources to the calling UE and each called UE according to the resource allocation policy determined in step 203.
  • the calling UE may carry the parameter of the resource allocation policy while carrying the policy index, so that the server executing the CF will use the parameters of the received resource allocation policy according to the determined resource allocation policy. Allocate communication resources.
  • the server executing the CF may notify the calling/called UE of the currently determined resource allocation policy after determining the resource allocation policy.
  • the server performing the CF determines the resource allocation policy according to the indication from the user, but considering that in some cases, the network side may not be able to support all resource allocation policies indicated by the user, so Figure 1 above
  • the method further includes: determining whether the determined resource allocation policy can be accepted, and if yes, using the resource allocation policy to allocate Communication resources; otherwise, the current multi-party communication service is refused to be established, and the current processing flow is terminated.
  • the user will re-initiate the multi-party communication service establishment process and re-instruct the resource allocation policy until the server performing CF can accept the resource allocation policy indicated by the user to establish multi-party communication. business.
  • the network side may not directly refuse to establish the current multi-party communication service, and the network side may directly use the preset default resource allocation policy, or may negotiate with the user to obtain both sides.
  • the resource allocation policy is supported, for example, the server that performs the CF carries the resource allocation policy suggested by the UE in the temporary response to the returning UE, and the calling UE determines whether to accept the resource allocation policy according to the temporary response, so as to finally obtain the resource through negotiation. Assignment strategy.
  • the method for obtaining the resource allocation policy is not the problem to be solved by the present invention, and may be implemented by using the existing negotiation process.
  • the present invention is not limited thereto, and is not described in detail herein, but is within the protection scope of the present invention.
  • FIG. 3 is a schematic diagram of a process flow of a third preferred embodiment of the method of the present invention.
  • the server that executes the CF presets the correspondence between the resource allocation policy and the multi-party communication service group, and the user does not need to carry any information related to the resource allocation policy in the session establishment request.
  • the specific processing steps include:
  • Step 301 The correspondence between the resource allocation policy and the multi-party communication service group is preset and saved in the server that executes the CF.
  • Step 302 The calling UE sends a session establishment request to the server that executes the CF, and the session establishment request carries at least the service information of the current multi-party communication service, including: a user identifier, a group identifier, and the like.
  • Step 303 The server performing the CF determines a group of the current multi-party communication service according to the received session establishment request, determines a resource allocation policy corresponding to the group, and determines the resource allocation policy of the currently established multi-party communication service.
  • Step 304 The server executing the CF establishes a session with each called UE of the current multi-party communication service, and returns a session establishment response to the calling UE.
  • Step 305 After the multi-party communication service is established, the server performing the CF allocates communication resources to the calling UE and each called UE according to the resource allocation policy determined in step 303.
  • the calling UE may carry the parameter of the resource allocation policy in the session establishment request, so that the server executing the CF allocates the communication according to the determined resource allocation policy using the parameters of the received resource allocation policy. Resources.
  • the server executing the CF may also notify the master/called UE of the currently determined resource allocation policy after determining the resource allocation policy.
  • the server executing the CF notifies the individual users.
  • the notification may be performed according to the user's pre-subscription status. If the user subscribes to the resource allocation policy information, the user is notified; if the user does not subscribe to the resource allocation policy information, the user may not be notified.
  • the user may further dynamically modify the resource allocation policy of the current multi-party communication service, and the user who initiates the current multi-party communication service session modification process sends an indication to the network side, and then the network side according to the user's instruction. Modifying the resource allocation policy; wherein the indication of the user may be carried by the user to the session modification request sent by the network side, which is not limited by the present invention.
  • FIG. 4 is a schematic diagram of a processing flow of a first preferred embodiment of a modified resource allocation policy in the method of the present invention.
  • the user carries the new resource allocation policy requested by himself in the session modification request.
  • the specific processing steps include:
  • Step 401 Establish a multi-party communication service between the calling UE, the server executing the CF, and each called UE.
  • Step 402 The calling UE sends a session modification request carrying a new resource allocation policy to the server executing the CF.
  • the session modification request may be carried by a SIP UPDATE message or a REINVITE message.
  • the calling UE is the UE that initiates the session modification process.
  • Step 403 The server executing the CF extracts a new resource allocation policy from the received session modification request, and determines it as a new resource allocation policy modified by the current multi-party communication service.
  • Step 404 The server performing CF performs session modification processing with each called UE of the current multi-party communication service, and returns a session establishment response to the calling UE.
  • Step 405 After the multi-party communication service session is modified, the server performing the CF re-allocates the communication resource to the calling UE and each called UE according to the modified new resource allocation policy determined in step 403.
  • the calling UE may carry the parameter of the resource allocation policy while carrying the new resource allocation policy, so that the server executing the CF will use the parameter of the received resource allocation policy according to the modified resource. Assign policies to redistribute communication resources.
  • the server executing the CF may also notify the master/called UE of the modified resource allocation policy after modifying the resource allocation policy.
  • FIG. 5 is a schematic diagram of a processing flow of a second preferred embodiment of a modified resource allocation policy in the method of the present invention.
  • the user carries a new policy index that he/she requires in the session modification request.
  • the specific processing steps include:
  • Step 501 A multi-party communication service is established between the calling UE, the server that performs the CF, and each of the called UEs, and the correspondence between the resource allocation policy and the policy index is preset and saved in the server that executes the CF.
  • Step 502 The calling UE sends a session modification request carrying a new policy index to the server executing the CF.
  • Step 503 The server executing the CF extracts a new policy index from the received session modification request, determines a resource allocation policy corresponding to the policy index, and determines the new resource allocation policy after the current multi-party communication service is modified.
  • Step 504 The server performing CF performs session modification processing with each called UE of the current multi-party communication service, and returns a session establishment response to the calling UE.
  • Step 505 After the multi-party communication service session is modified, the server performing the CF re-allocates the communication resource to the calling UE and each called UE according to the modified new resource allocation policy determined in step 503.
  • the calling party may carry the parameter of the resource allocation policy while carrying the new policy index, so that the server executing the CF will use the parameter of the received resource allocation policy according to the modified resource allocation policy.
  • the server executing the CF can also modify the resource allocation policy after modifying the resource allocation policy. The slight information is notified to the calling/called UE.
  • the server executing the CF modifies the resource allocation policy according to the instruction from the user, but considering that in some cases, the network side may not be able to support all resource allocation policies indicated by the user, so the above figure 4 and the flow of FIG. 5, after the server executing the CF determines the new resource allocation policy indicated by the session modification request, further includes
  • the network side may not negotiate to modify the current multi-party communication service, and the network side may negotiate with the user to obtain a resource allocation policy supported by both parties.
  • FIG. 6 is a schematic diagram of a process flow of a third preferred embodiment of a modified resource allocation strategy in the method of the present invention.
  • the user carries the parameters of the new resource allocation policy requested by the user in the session modification request.
  • the specific processing steps include:
  • Step 601 Establish a multi-party communication service between the calling UE, the server executing the CF, and each called UE.
  • Step 602 The calling UE sends a session modification request carrying a parameter of the new resource allocation policy to the server that executes the CF.
  • Step 603 The server executing the CF extracts a parameter of the new resource allocation policy from the received session modification request, modifies the parameter used by the current resource allocation policy to a parameter of the new resource allocation policy, and uses the new parameter.
  • the current resource allocation policy of the parameters of the resource allocation policy is determined as the modified resource allocation policy.
  • Step 604 The server that executes the CF performs session modification processing with each called UE of the current multi-party communication service, and returns a session establishment response to the calling UE.
  • Step 605 After the multi-party communication service session is modified, the server performing the CF re-allocates the communication resource to the calling UE and each called UE according to the modified resource allocation policy determined in step 603.
  • the server performing the CF modifies the resource allocation policy according to the instruction from the user, but considering that in some cases, the network side may not support all resource allocation policies indicated by the user, so FIG. 4 above.
  • the server executing the CF determines the new resource allocation policy indicated by the session modification request, further includes...
  • the network side may not negotiate to modify the current multi-party communication service, and the network side may negotiate with the user to obtain a resource allocation policy supported by both parties.
  • the server when the server performing the CF notifies the user of the modified resource allocation policy information, the server may perform the notification according to the user's pre-subscription status. If the user subscribes to the resource allocation policy information, The user is notified; if the user does not subscribe to the resource allocation policy information, the user may not be notified.
  • the server executing the CF uses the modified resource allocation policy to allocate the communication resources of the currently performed multi-party communication service after modifying the resource allocation policy; the server executing the CF may also not use the modified Resource allocation
  • the policy allocates the communication resources of the current multi-party communication service, and saves the correspondence between the modified resource allocation policy and the current multi-party communication service group, and then uses the modification when the group establishes a new multi-party communication service next time.
  • the resource allocation policy of the group may be modified after the current multi-party communication service ends (ie, the non-service period), specifically
  • the processing method is similar to that shown in FIG. 4 to FIG. 6, except that the UE does not carry the new resource allocation policy or the policy index through the session modification request, and the UE can log in to the server executing the CF to modify the resource allocation policy by browsing the web page.
  • the correspondence between the multi-party communication service group and the resource allocation policy may not be saved on the server that executes the CF, but is stored in another server that is dedicated to the resource allocation policy that is connected to the server that executes the CF.
  • the user can modify and set the resource allocation policy by logging in to the XDMS.
  • the server executing the CF may notify all users in the corresponding group or users who subscribe to the resource allocation policy information of the currently modified resource allocation policy.
  • the invention also proposes a resource allocation strategy system and a method for controlling communication resource allocation based on the system, and the main design idea is as follows: a resource allocation policy system is set in the communication system, and the system is responsible for preserving various resource allocation strategies. The resource allocation policy is extracted according to the needs of the current multi-party communication service establishment, and the communication resource allocation of the media processing unit in the communication system is controlled according to the resource allocation policy.
  • the resource allocation system at least includes: a resource allocation policy providing system and a resource allocation policy execution system; the resource allocation policy providing system is configured to save a resource allocation policy, and according to the communication system a resource allocation policy extraction request output resource allocation policy of the middle session centralized control unit to the resource allocation execution system; the resource allocation policy execution system sends a resource allocation command to a media processing list of the communication system according to the received resource allocation policy Element, thereby implementing control over the communication resource allocation of the current multi-party communication service.
  • the interface between the resource allocation policy providing system and the operation and maintenance system of the communication system may be further increased for the interaction resource allocation policy data, and the operator may operate
  • the maintenance system creates, modifies, deletes, and so on the resource allocation policy saved in the resource allocation policy.
  • the user also needs to use the UE to create, modify, delete, etc. the resource allocation policy saved in the resource allocation policy providing system. Therefore, the resource allocation policy providing system and the UE for interacting resource allocation policy data may be further increased. interface. Again, the external communication system interworking with the communication system needs to synchronize with the communication system to implement the resource allocation policy.
  • the resource allocation policy providing system may further interact with the external communication system to allocate a resource allocation policy, and update the resource allocation policy saved by itself according to the received resource allocation policy.
  • the resource allocation policy control system may further interact with the operation and maintenance system, and/or the UE, and/or the external communication system, and update the resource saved by the resource allocation policy database system according to the received resource allocation policy. Assignment strategy.
  • the communication system described herein refers to the communication system in which the resource allocation policy system of the present invention is located, wherein the operation and maintenance system refers to the operation and maintenance system of the communication system, and the external communication system refers to interworking with the communication system. External communication system.
  • the resource allocation policy providing system can usually be implemented in two parts, including: a resource allocation strategy database system mainly for saving resource allocation policies, and mainly used for A resource allocation policy control system for resource allocation policy extraction request and interaction resource allocation strategy.
  • the present invention mainly solves the problem of communication resource allocation in a multi-party communication service in which a group user participates, and the current PoC service is a typical multi-party communication service. Therefore, the system and method of the present invention are described in detail below by taking a PoC service communication system as an example. .
  • FIG. 7 is a schematic structural diagram of a resource allocation strategy system according to the present invention.
  • the resource allocation policy system is disposed in a PoC service communication system, and the system includes: a resource allocation policy providing system 701 and a resource allocation policy executing system 702; and the resource allocation policy providing system 701 includes: a resource allocation policy control system
  • the 701A and the resource allocation policy database system 701Bo include, in addition to the resource allocation policy system, a user equipment (UE) and a control PoC server in the PoC service communication system.
  • UE user equipment
  • the PoC server For a session of the PoC service, there is one and only one PoC server, that is, the PoC server to which the group administrator of the current PoC service belongs, and the media processing unit and the session centralized control unit are integrated in the control PoC server.
  • the UE that initiates the PoC service sends a session establishment request to the session centralized control unit in the control PoC server, and the session centralized control unit initiates a call to the other called UEs, and the PoC service is controlled by the PoC.
  • the media processing unit in the server is responsible for copying and distributing the current PoC service media stream. Since the session centralized control unit and the media processing unit are both integrated in the control PoC server, in FIG.
  • control PoC server is used to represent the session centralized control unit and the media processing unit, and the media processing unit and the session set are not shown.
  • the connection relationship between the control units is a well-known technique because the connection relationship between the media processing unit and the session centralized control unit is not described herein.
  • the control PoC server described in this document refers to the server that performs the control function (CF) in the PoC service.
  • the session centralized control unit in the PoC server controls the sending of the resource allocation policy extraction request to the resource allocation policy control system 701A when establishing the current PoC service (for example, receiving the session establishment request from the UE); the resource allocation policy control system 701 A, root Extracting a corresponding resource allocation policy from the resource allocation policy database system 701B according to the received resource allocation policy extraction request, and then transmitting the resource allocation policy to the resource allocation policy execution system 702 through the session centralized control unit, with the UE, and operating Maintaining a system and an external communication system interaction resource allocation policy, and updating a resource allocation policy saved by the resource allocation policy database system 701B according to a resource allocation policy from the UE, the operation and maintenance system, or the external communication system; the resource allocation policy execution system 102, according to The received resource allocation command sends a resource allocation policy to the media processing unit in the control PoC server to implement control over the communication resource allocation of the media processing unit.
  • the resource allocation policy control system 101 A returns the received resource allocation policy to the session centralized control unit first, and then The session centralized control unit sends the resource allocation policy execution system 702; 2.
  • the resource allocation policy control system 101A directly transmits the received resource allocation policy to the resource allocation policy execution system 702.
  • the resource allocation policy system can not only dynamically control the allocation of communication resources according to the user's needs in the process of establishing a multi-party communication service session; the user and the operator can also operate and maintain The system creates a new resource allocation policy, and modifies and deletes the originally saved resource allocation policy. Moreover, the PoC service communication system can also synchronize with the resource allocation policy of the external communication system.
  • Figure 7 shows only the basic system structure division of the system of the present invention.
  • the resource allocation policy control system is composed of more than one (ie one or more) control modules
  • the resource allocation policy database The system consists of more than one database
  • the resource allocation policy execution system is composed of more than one execution module.
  • each database is connected to more than one control module
  • each control module is connected to more than one session centralized control unit in the PoC server
  • each execution module is connected to more than one media processing list in the control PoC server.
  • the operation and maintenance system and the external communication system are connected to the control module.
  • the session centralized control unit sends a resource allocation policy extraction request to the self-connected control module, and the control module obtains a resource allocation policy according to the resource allocation policy extraction request querying the database connected to itself, and then passes the resource allocation policy through the session.
  • Centralized control unit sends to current
  • the resource allocation policy system of the present invention has multiple networking modes, for example: each control module is connected to all session centralized control units in the PoC service communication system to ensure that all session centralized control units can Various resource allocation policy extraction requests are sent to corresponding control modules and the like.
  • Add one or more agent control modules in the resource allocation policy control system, and each agent control module connects more than one session centralized control unit and more than one control module.
  • each control module exchanges information with an entity other than the resource allocation policy control system through the proxy control module.
  • each control module in the resource allocation policy control system is invisible, and the proxy control module determines the routing of the control module, thereby facilitating the stability of the system.
  • Each session centralized control unit is bound to a unique control module, and each control module can be bound to more than one session centralized control unit, and the session centralized control unit directly interacts with the control module bound by itself.
  • Each control module is also coupled to the UE, and/or the operational maintenance system, and/or the external communication system for interfacing resource allocation policies.
  • the network structure is relatively simple and suitable for a small-scale communication system. The following is the use of the above two methods after the hair The networking structure of the system and the processing flow of the method of the present invention are described in detail.
  • FIG. 8 is a schematic diagram of a network structure of a preferred embodiment of the system according to the present invention.
  • the first networking mode is adopted. Since more than one agent control module can be set, the number of session centralized control units and control modules connected by each agent control module is usually more than one. Therefore, only one agent control is used to connect two control modules and two session sets.
  • the control unit is an example to illustrate the network structure.
  • the databases connected to the control modules may be the same or different, and the execution modules connected to the media processing units may be the same or different.
  • the two control modules are respectively connected to different databases, and the two session centralized control units are The execution modules connected to the corresponding two media processing units are also different.
  • the session centralized control unit and its corresponding media processing unit that processes the session voice are integrated in the control PoC server of the current PoC service, and therefore, the two session centralized control units And its corresponding two media processing units are respectively integrated in two control PoC servers.
  • the two session centralized control units and the two media processing units are not shown in Fig. 8, but only the two control PoC servers to which they are integrated are shown.
  • the resource allocation policy control system includes: a proxy control module, a control module 1 and a control module 2
  • the resource allocation policy database system includes: respectively connecting the control module 1 and the control module 2 Database 1 and database 2
  • the resource allocation policy execution system includes: an execution module 1 and an execution module 2.
  • UE1 and UE2 and their respective connected control PoC servers 1 and control PoC servers 2 an operation and maintenance system, and an external communication system are included.
  • the session centralized control unit in the control PoC server 1 and the control PoC server 2 respectively receives the session establishment request from the UE1 and the UE2, and sends a resource allocation policy extraction request to the proxy control module; the proxy control module will receive the resource allocation policy.
  • the extraction request is sent to the control module 1 and the control module 2 respectively; the control module 1 and the control module 2 are The received resource allocation policy extraction request respectively extracts the resource allocation policy from the database 1 and the database 2 connected to itself and then returns to the agent control module; the agent control module returns the received resource allocation policy to the control PoC server 1 and the control PoC server respectively.
  • the proxy control module also interacts with the UE1, UE2 operation and maintenance system and the external communication system to allocate resource allocation policy data.
  • the user can use the UE1 or UE2, the operator can use the operation and maintenance system, and then use the agent control module to create, modify, delete, etc. to update the resource allocation policy.
  • the external communication system can exchange resource allocation policies through the database connected by the proxy control module and the control module to complete the resource allocation policy synchronization between itself and the current PoC service communication system.
  • the specific processing of the UE1, the UE2, and the operation and maintenance system updating the resource allocation policy saved in the database connected to the control module by the proxy control module includes: UE1, UE2, or the operation and maintenance system creates a new resource allocation policy and
  • the input agent control module indicates the address of the control module corresponding to the new resource allocation policy, and then the agent control module can send a new resource allocation policy to the control module, and the control module copies the received resource allocation policy.
  • the UE1, UE2, or the operation and maintenance system may also send a configuration command to instruct the proxy control module to extract a resource allocation policy from the specified control module, and then modify the resource allocation policy, and then process the The resource allocation policy is returned to the designated control module by the proxy control module, and the designated control module updates the database connected to itself according to the received resource allocation policy, thereby modifying the policy.
  • There is a resource allocation policy in the database; the UE1, UE2, or the operation and maintenance system may also instruct the proxy control module to delete the specified resource allocation policy from the specified control module by sending a configuration command, and then the proxy control module sends a delete command to the designated control module, The control module deletes the resource allocation policy specified in the self-connection database according to the delete command.
  • the specific processing of the database interaction resource allocation policy of the external communication system connected to the control module by the proxy control module includes: the external communication system can transmit its own resource allocation policy to the proxy control module and indicate which control module corresponds to it, and then proxy control The module then sends the received resource allocation policy to the corresponding control module, and the control module copies the resource allocation policy to the database connected to itself; the external communication system may also request the current PoC service communication system through the proxy control module. Copying the resource allocation policy and indicating which control modules are copied, and then the agent control module may instruct the control modules to extract the resource allocation policy from the database connected to the control module, and the control module outputs the resource allocation policy to the external communication system through the proxy control module. Thereby achieving synchronization of resource allocation strategies.
  • the session centralized control unit in the control PoC server may temporarily control the allocation of communication resources as needed, such as: terminating the current PoC service, or temporarily granting a user a floor, etc.
  • the session centralized control unit should have a communication interface with the execution module to control the operation of the execution module, such as: suspending, or continuing to execute the resource allocation policy. Therefore, the resource allocation strategy sending process shown in FIG. 8 utilizes the communication interface that should exist in the session centralized control unit and the execution module, and implements the resource allocation policy from the agent control module, through the session centralized control unit, and then to the execution module. .
  • the proxy control module can also directly send the resource allocation policy to the execution module corresponding to the current PoC service, so that the communication interface between the execution module and the proxy control module needs to be increased, and the session centralized control unit in the PoC server is controlled to be sent.
  • the resource allocation policy extraction request should carry the address of the execution module corresponding to the current PoC service to the proxy control module, and the proxy control module can send the resource allocation policy to the execution module. Piece. Therefore, the interface between the proxy control module and the execution module 1 and the execution module 2 may be added in FIG. 8 to implement the resource allocation policy.
  • the execution module sends a resource allocation command to the media processing unit in the control PoC server, and may further send a corresponding resource allocation notification to the UE, for example: Whether the user can speak now, or when can speak. Therefore, in the networking structure shown in FIG. 8, the communication interface between the execution module 1 and the UE1, and the execution module 2 and the UE2 may be added to implement the delivery of the resource allocation notification.
  • FIG. 8 illustrates the networking structure of the system of the present invention by taking two UEs and their corresponding two control PoC servers, two execution modules, a proxy control module, two control modules, and two databases as examples.
  • a PoC session establishment process it corresponds to a control PoC server, an execution module, a proxy control module, a control module, and a database, and each session establishment process of each UE is independent of each other, so the following one
  • a process of establishing a PoC session of a UE is taken as an example to illustrate the processing of the method of the present invention.
  • FIG. 9 is a schematic diagram showing the processing flow of a preferred embodiment of the method of the present invention based on the network structure shown in FIG. As shown in Figure 9, the specific processing includes:
  • Step 901 The UE sends a session establishment request to the session centralized control unit in the control PoC server of the currently established session, where the session establishment request includes: service information such as a group identifier and a user identifier.
  • the session establishment request can be carried by the SIP invite INVITE message.
  • Step 902 to step 903 Step 901: The session centralized control unit sends a resource allocation policy extraction request to the corresponding control module by using the proxy control module according to the received session establishment request.
  • the resource allocation policy extraction request is routed to the control module according to the address of the control module included in the resource allocation policy extraction request, and the address of the control module is usually the domain name of the control module.
  • the UE may include the address of the control module in the session establishment request, and control the session centralized control unit in the PoC server to include the control module address included in the session establishment request in the resource allocation policy extraction request, and send it to the proxy control module;
  • the session centralized control unit in the control PoC server determines the address of the control module corresponding to the current PoC service according to the service information such as the group identifier in the received session establishment request, and then includes the determined control module address in the resource allocation policy.
  • the extraction request is sent to the agent control module.
  • the control module address preset in the group information may be queried according to the service information such as the group identifier, or the current PoC service group may be determined according to its pre-configuration.
  • the method of identifying the corresponding control module address in short, determining the address of the control module corresponding to the current Poc service, is not limited in the present invention. 2.
  • Determine the address of the control module corresponding to the current PoC service according to the service information included in the resource allocation policy extraction request for example, determine the control module address corresponding to the service information such as the group identifier according to its pre-configuration, and then press the control module according to the control module.
  • the address routes the resource allocation policy extraction request to the control module.
  • Step 904 Step 903: The control module obtains a resource allocation policy corresponding to the current PoC service according to the received resource allocation policy extraction request querying the database connected to itself.
  • control module obtains a resource allocation policy according to the resource allocation policy extraction request:
  • the corresponding relationship between the policy index and the resource allocation policy is set in the database, and the control module obtains the resource allocation policy according to the policy index query database in the resource allocation policy extraction request.
  • the UE may carry the policy index in the session establishment request, and then the session centralized control unit sends the policy index to the control module in the resource allocation policy extraction request; the session centralized control unit may also determine the service information in the session establishment request.
  • the policy index corresponding to the current PoC service for example: 3 ⁇ 41
  • the service information such as the group identifier, the policy index pre-configured in the group information is obtained, or the policy index corresponding to the current group identifier is determined according to its own pre-configuration, and the specific determination method is The invention is not limited.
  • the database has a correspondence between the resource allocation policy and the service information, where the service information is the service information of the multi-party communication service to which the resource allocation policy applies.
  • the control module queries the database in the request according to the resource allocation policy to obtain a resource allocation policy.
  • the database also needs to maintain the attributes of each resource allocation policy, such as: scope of application, editability, publicity, user identification that can be modified, etc. It mainly describes the group ⁇ "i tongue, which is applicable to the current resource allocation policy, that is, the correspondence between the resource allocation policy and the group identifier. Therefore, the resource allocation strategy applicable to the current service can be obtained through the business information query ⁇ t database. . when However, there may be multiple resource allocation policies applicable to the same service, and the control module may select one of the resource allocation policies according to preset selection logic, such as selecting according to the priority of the resource allocation policy, and how to select a unique resource. The allocation strategy is not a problem solved by the present invention and will not be described in detail herein.
  • Step 905 The control module sends the resource allocation policy obtained in step 904 to the session centralized control unit in the control PoC server through the proxy control module, and the session centralized control unit sends the resource allocation policy to the execution module corresponding to the current PoC service.
  • the execution module is an execution module connected to the media processing unit that processes the current PoC service, and the session centralized control unit pre-configures an address of the media processing unit and an address of an execution module connected to the media processing unit.
  • a resource allocation policy can be sent to the execution module.
  • the resource allocation policy may be directly sent by the control module to the execution module through the proxy control module, so that the resource allocation policy extraction request in step 902 should carry the address of the execution module, thereby proxying
  • the control module may send the resource allocation policy to the execution module according to the execution module address.
  • the step 905 is correspondingly changed to the step 905, the control module sends the resource allocation policy to the proxy control module, and the proxy control module directly delivers the resource allocation policy according to the execution module address in the resource allocation policy extraction request in step 902. To the execution module.
  • Step 906 The execution module sends a resource allocation command to the media processing unit in the control PoC server according to the received resource allocation policy according to the logic described by the resource allocation policy, so that the media processing unit allocates resources according to the execution module.
  • the command allocates communication resources for the current PoC service media transmission.
  • the execution module sends a resource allocation notification to the UE participating in the current PoC service, and informs the UE whether the current communication resource is occupied, whether the user is allocated communication resources, whether it has the right to speak, and the like.
  • the resource allocation policy may be configured as: a participating user of the current PoC service has one user speaking every 5 minutes in order, and the execution module may press this logic every 5 minutes. Sending a command to open a UE media transmission link and a command to close a UE media transmission link, that is, updating the allocation of communication resources in the media processing unit every 5 minutes, and at the same time, the execution module may send an indication to the UE that is allowed to speak.
  • a resource allocation notification for which a communication resource is allocated and allowed to speak, a resource allocation notification indicating that the communication resource has been allocated to other users and needs to stop its speech is sent to the UE that needs to stop speaking, and a resource indicating which user starts speaking is sent to other UEs Assign notifications and more.
  • the resource allocation notification sent by the execution module, and how the media processing unit allocates the communication resources according to the resource allocation command of the execution module are not solved by the present invention, and those skilled in the art
  • the above functions can be implemented in a variety of ways using currently known techniques, and thus the specific implementation of these functions will not be described in detail herein.
  • FIG. 10 is a schematic structural diagram of a networking of another preferred embodiment of the system of the present invention.
  • Figure 10 illustrates the second networking method described above.
  • Each control module is bound to more than one session centralized control unit.
  • each control module is connected to a different database, and the execution of the connection of two media processing units corresponding to each session centralized control unit is performed.
  • the modules are also different. Because, in the PoC service communication system, the session centralized control unit and its corresponding media processing unit are integrated in the control of the current session: the PoC server.
  • the session centralized control unit and the media processing unit are not shown in Fig. 10, but only the control PoC servers to which they are integrated are shown.
  • the resource allocation policy control system includes: a control module 1 and a control module 2
  • the resource allocation policy database system includes: a database 1 connected to the control module 1 and the control module 2, respectively
  • the database 2 resource allocation policy execution system includes: an execution module 1 and an execution module 2.
  • UE1 and UE2 and their respective connected control PoC servers 1 and control PoC servers 2, operation and maintenance systems, and external communication systems are included.
  • the control PoC server 1 and the control PoC server 2 are bound to the control module 1 and the control module 2, respectively.
  • the control centralization control unit in the control PoC server 1 and the control PoC server 2 respectively receives the session establishment request from the UE1 and the UE2, and respectively sends the resource allocation policy extraction request to the control module 1 and the control module 2 bound by itself;
  • the module 1 and the control module 2 respectively extract resource allocation policies from the database 1 and the database 2 connected to each other according to the received resource allocation policy extraction request, and then respectively return to the session centralized control unit in the control PoC server 1 and the control PoC server 2;
  • the session centralized control unit in the control PoC server 1 and the control PoC server 2 respectively transmits the received resource allocation policy to the respective connected execution module 1 and execution module 2; the execution module 1 and the execution module 2 allocate according to the received resources.
  • the policy transmits a resource allocation command to the respective connected control PoC server 1 and the media processing unit in the control PoC server 2, thereby controlling the communication resource allocation during the session.
  • the UE1 and the UE2 are also respectively connected to the control module 1 and the control module 2 for interacting with the resource allocation policy data; the control module 1 and the control module 2 also interact with the operation and maintenance system and the external communication system to allocate resource allocation policy data.
  • the user can use UE1 or UE2, and the operator can use the operation and maintenance system to create, modify, delete, etc. the resource allocation policy saved in the database 1 or the database 2 through the control module 1 or the control module 2 connected thereto, the external communication system.
  • the resource allocation policy synchronization with the current PoC service communication system can be completed by the control module 1 or the control module 2.
  • the specific processing of updating the resource allocation policy saved in the database 1 or the database 2 by the UE1, UE2, or the operation and maintenance system connected by the UE1, the UE2, or the control module 2 includes: UE1, UE2, or the operation and maintenance system creates a new Resource allocation policy and input it into the control module 1 or control module 2 connected to itself, the control module 1 or the control module 2 then copies the received resource allocation policy into the database 1 or the database 2; UE1, UE2, or operation and maintenance
  • the system may also send a configuration command to the control module 1 or the control module 2 connected to itself, instructing the control module 1 or the control module 2 to extract a resource allocation policy, and then dividing the resource into The matching policy is modified, and the processed resource allocation policy is returned to the control module 1 or the control module 2.
  • the control module 1 or the control module 2 updates the database 1 or the database according to the received resource allocation policy, thereby modifying and saving.
  • the resource allocation policy in the database 1 or the database 2; the UE1, the UE2, or the operation and maintenance system may also delete the specified resource allocation policy by transmitting the configuration command to indicate that the control module 1 or the control module 2 connected thereto, and then the control module 1 or the control module 2 Delete the resource allocation policy specified by the configuration command in Database 1 or Database 2.
  • the specific processing of the external communication system interacting with the database 1 or the database 2 through the control module 1 or the control module 2 connected to the external communication system includes: the external communication system can transmit its own resource allocation policy to the control module 1 or the control module 2 Then, the control module 1 or the control module 2 copies the resource allocation policy into the database 1 or the database 2; the external communication system may also request the copying resource allocation policy from the control module 1 or the control module 2, and then control the module 1 or the control module. 2 Extracting the resource allocation policy from the database 1 or the database 2 and outputting it to the external communication system, thereby realizing the synchronization of the resource allocation policy.
  • the resource allocation policy sending process of FIG. 10 utilizes a communication interface that should exist in the session centralized control unit and the execution module to implement the resource allocation policy from the control module and control the session concentration in the PoC server. Control unit, then to the execution of the module. Similarly, the control module can also directly send the resource allocation policy to the execution module corresponding to the current PoC service, so that the communication interface between the execution module and the control module needs to be increased, and the resource allocation sent by the session centralized control unit in the PoC server is controlled.
  • the policy extraction request should carry the address of the execution module corresponding to the current PoC service, so that the control module can deliver the resource allocation policy to the execution module corresponding to the current PoC service according to the address. Therefore, the interface between the control module 1 and the execution module 1 and the control module 2 and the execution module 2 can be separately added in FIG. 10 to implement the resource allocation policy.
  • the execution module sends a resource allocation command to the media processing unit in the control PoC server, and further sends a corresponding resource allocation notification to the UE. Therefore, in the networking structure shown in FIG. 10, the communication interface between the execution module 1 and the UE1, and the execution module 2 and the UE2 may be added to implement the delivery of the resource allocation notification.
  • communication interfaces are also required between the control modules to exchange respective resource allocation policies to synchronize the resource allocation policies.
  • the control module 1 can extract its own resource allocation policy from the database 1 connected to itself and send it to the control module 2, and then control the module. 2 can update the database 2 connected to itself according to the received resource allocation policy, and copy the resource allocation policy in the database 1 to the database 2, and similarly, the resource allocation policy replication in the database 2 corresponding to the control module 2 can be realized. Go to the database 1 corresponding to the control module 1, thereby expanding the application scope of the resource allocation policy in the entire communication system, so that more PoC service sessions can share the resource allocation policy.
  • FIG. 10 illustrates the networking structure of the system of the present invention with only two UEs and their corresponding two control PoC servers and their two control modules, two execution modules, and two databases.
  • a PoC service session establishment process it corresponds to one control PoC server, one execution module, one control module, and one database, and each session establishment process of each UE is independent of each other, so the following is a UE
  • a session establishment process is taken as an example to illustrate the processing of the method of the present invention.
  • Figure 11 is a flow chart showing the processing of another preferred embodiment of the method of the present invention based on the network structure shown in Figure 10. As shown in Figure 11, the specific processing includes:
  • Step 1101 The UE sends a session establishment request to the session centralized control unit in the control PoC server of the currently established session, where the session establishment request includes: service information such as a group identifier and a user identifier.
  • Step 1102 Step 1101: The session centralized control unit sends a resource allocation policy. Take the request to the control module bound by itself.
  • the address of the control module bound by itself is pre-configured in the session centralized control unit.
  • Step 1103 Step 1102: The control module extracts a request to query a database connected to itself according to the received resource allocation policy to obtain a resource allocation policy corresponding to the current session.
  • the method for obtaining the resource allocation policy according to the resource allocation policy extraction request is the same as that described in step 904, and therefore will not be described.
  • Step 1104 The control module sends the resource allocation policy obtained in step 1103 to the session centralized control unit in the control PoC server, and the session centralized control unit sends the resource allocation policy to the execution module corresponding to the current session.
  • the resource allocation policy can also be directly sent by the control module to the execution module.
  • the resource allocation policy extraction request described in step 1102 should carry the address of the execution module, so that the control module can press the address.
  • the resource allocation policy is sent to the execution module.
  • the step 1104 is changed to the step 1104.
  • the control module directly delivers the resource allocation policy to the execution module according to the execution module address in the resource allocation policy extraction request.
  • Step 1105 The execution module sends a resource allocation command to the media processing unit in the control PoC server according to the received resource allocation policy according to the logic described by the resource allocation policy, so that the media processing unit allocates resources according to the execution module.
  • the command allocates communication resources for the current PoC service media transmission.
  • the execution module also sends a resource allocation notification to the UE participating in the current PoC service.
  • the process of the execution module issuing the resource allocation command and the resource allocation notification according to the resource allocation policy is the same as that described in step 906, and therefore will not be described.
  • the method of the present invention can provide a resource allocation policy for the current PoC service in the session establishment process as shown in FIG. 9 and FIG. 11, and can also provide a function for updating the resource allocation policy for the user and/or the operator, and can also enable the communication system.
  • Resource allocation strategy with external communication system The method of the present invention may further include: the UE and/or the operation and maintenance system perform an update operation of creating, modifying, deleting, etc., the resource allocation policy saved in the database connected to the control module by the control module; and/or The external communication system interacts with the resource allocation policy through the database connected to the control module to implement synchronization of the resource allocation policy.
  • the resource allocation policy can be selected according to the needs of the current PoC service session, and the communication resource allocation of the current PoC service is performed according to the resource allocation policy.
  • the user wants to change the communication resource allocation policy, he only needs to input a new policy index, or modify the original resource allocation policy through the UE or the operation and maintenance system, so that the user and the operator can dynamically control the communication resource allocation according to the service demand. .
  • FIG. 7 to FIG. 11 are all described by taking the PoC service communication system as an example.
  • the networking structure of the resource allocation policy system and the processing flow for controlling the communication resource allocation are shown in FIG. 7 and FIG. 11 .
  • the information is basically the same, the difference is: the entity integrated by the media processing unit and the session centralized control unit is different.
  • the media processing unit is integrated in the media resource functional entity (MRF), and the session centralized control unit It is integrated into the Conference server.
  • MRF media resource functional entity
  • the resource allocation policy providing system of the present invention can be implemented by an XDMS, that is, the resource allocation policy providing system of FIG. 7, and the control modules in the resource allocation policy control system shown in FIG. 8, FIG. 9, FIG. 10 and FIG. Implemented by XDMS.
  • the communication system no longer allocates communication resources according to a policy solidified in the session centralized control unit, but can uniformly manage all required resource allocation policies in the resource allocation policy system.
  • the resource allocation policy system extracts the resource allocation policy according to the needs of the current multi-party service establishment in real time, and controls the communication resource allocation of the media processing unit according to the resource allocation policy.
  • the system and method proposed by the present invention truly realize the breakthrough of the communication system in the communication resource allocation technology.

Description

一种控制通信资源分配的方法以及资源分配策略系统 技术领域
本发明涉及通信系统的通信资源分配技术, 特别涉及一种控制通信 资源分配的方法以及资源分配策略系统。 发明背景
目前, 在通信系统中已实现了各种个人用户、 或集体用户参与的业 务, 具体通信方式包括: 文本、 语音、 视频、 以及多种多媒体组合等。
一般的通信业务主要面向个人用户, 通常仅有一个或两个用户终端 进行通信, 此时, 通信系统采用全双工的方式, 所有参与通信的用户共 享通信资源, 比如: 在语音通信时, 通话用户有两个, 该两个用户可以 同时发言, 通信系统会将双方用户的声音混合, 由于通话用户少, 因此 这种混音对通话质量的影响并不大。
然而, 在集体用户参与的通信业务中, 通常有一个或多个群组的用 户同时进行通信, 这样参与通信的用户设备(UE )数量就相当多了, 此 时,为保证通信质量,通信系统需要对各用户的通信资源分配进行控制。 比如: 在蜂窝系统中按键即说(PoC )业务通信系统中, 系统要对群组 会话的多个用户进行发言权控制 (Floor Control ), 并实行各用户抢占发 言权的通信资源分配策略, 用户在发言前向系统申请发言权, 系统为当 前参与会话的用户中首先申请发言权的用户分配通信资源即授予其发 言权, 并拒绝后续其它用户发来的发言权申请即不为其分配通信资源。 因此, PoC业务系统只传输享有发言权用户的语音流, 而参与^的用 户无法听到其它未享有发言权用户的语音。
对于集体用户参与的通信业务来说, 现有通信系统对通信资源分配 的控制还不够灵活。 如前面所述, PoC业务的通信资源分配策略仅限于 抢占发言权这一种, 但是很多情况下抢占发言权并不能带给用户理想的 业务体验, 如果按用户所需的策略分配通信资源, 则会使整个群组会话 更有秩序性, 满足用户不同场景下的群組会话需要。 比如所述分配通信 资源的策略可以为: 按次序每五分钟为不同用户分配发言权, 则可以使 各用户按次序逐个进行发言且每人发言时间为五分钟。除了 PoC业务以 外, 其它集体用户参与的通信业务目前也存在类似问题。 比如: 多方集 体用户参与的会议 ( Conference )业务中, 在分配视频传输的通信资源 时, 通常采用手动方式来完成视频图像从一方会场向另一方会场的切 换, 也不能按用户所需灵活控制通信资源的分配。
综上所述, 现有集体用户参与的通信业务中, 用户和运营商不能根 据自身需要动态配置通信资源分配策略, 系统也不能对通信资源的分配 实施灵活控制, 使这些业务的实现效果不够理想, 此种资源分配机制也 将严重限制此类业务功能的进一步发展。 发明内容
有鉴于此, 本发明的主要目的在于提供一种控制通信资源分配的方 法以及资源分配策略系统, 能够根据当前业务需要提供通信资源的分配 策略, 对通信资源的分配实施灵活控制。
根据上述目的, 本发明的技术方案是这样实现的:
本发明公开了一种控制通信资源分配的方法, 在建立多方通信业务 时, 该方法包括:
A、 确定当前建立的多方通信业务对应的资源分配策略;
B、 按所确定的资源分配策略为当前建立的多方通信业务的参与用 户分配通信资源。
步骤 A中, 所述确定资源分配策略的方法为: ^^据用户的指示来确 定资源分配策略。
其中, 所述用户的指示中携带用户要求的资源分配策略;
步骤 A中, 所述根据用户的指示确定资源分配策略的方法为: 直接 从用户的指示中提取资源分配策略。
其中, 预先保存各种资源分配策略及其各自唯一的策略索引, 所述 用户的指示中携带策略索引; 步骤 A中, 所述根据用户的指示确定资源 分配策略的方法为: 根据所述用户的指示中携带的策略索弓 1从所保存的 各种资源分配策略中索引得到该策略索引对应的资源分配策略。
其中, 所述用户的指示中进一步包括: 资源分配策略的参数; 步骤 B中, 进一步使用该资源分配策略的参数来按所确定的资源分配策略分 配通信资源。
其中, 预先设置各个多方通信业务群组与资源分配策略之间的对应 关系; 步驟 A中, 所述确定资源分配策略的方法为: >据所设置的各个 多方通信业务群组与资源分配策略之间的对应关系确定当前多方通信 业务的群组对应的资源分配策略。
其中, 在所述步驟 A之后, 进一步包括: 判断是否能接受步骤 A确 定的资源分配策略, 如果是, 则执行步驟 B; 否则拒绝建立当前多方通 信业务, 结束当前处理流程。
其中, 在所述步骤 A之后, 进一步包括: 判断是否能接受步驟 A确 定的资源分配策略, 如果是, 则执行步骤 B; 否则与用户协商得到资源 分配策略、 或者确定当前建立的多方通信业务对应预设的缺省资源分配 策略, 执行步驟
其中, 所述用户的指示由会话建立请求来承载。 .
步骤 A中, 所述确定当前建立的多方通信业务对应的资源分配策略 之后, 进一步包括: 将所确定的资源分配策略的信息通知给当前建立的 多方通信业务的各个参与用户。
其中, 该方法进一步包括:
C> 修改当前多方通信业务对应的资源分配策略;
D、 按修改后的资源分配策略分配当前多方通信业务参与用户的通 信资源。
其中, 所述步骤 C为: 在当前多方通信业务进行过程中, 修改当前 多方通信业务对应的资源分配策略; 所述步骤 D为: 在当前多方通信业 务进行过程中, 按修改后的资源分配策略来重新分配当前多方通信业务 参与用户的通信资源; 或者, 当步骤 C所述多方通信业务群组建立新的 多方通信业务时, 按修改后的资源分配策略分配该新的多方通信业务参 与用户的通信资源。
其中, 所述步驟 C为: 在当前多方通信业务群组未进行多方通信业 务时, 修改该多方通信业务群組对应的资源分配策略; 所述步骤 D为: 当步骤 C所述多方通信业务群组建立多方通信业务时,按修改后的资源 分配策略分配该多方通信业务参与用户的通信资源。
步骤 C中, 所述修改资源分配策略的方法为: 根据用户的指示来修 改资源分配策略。
其中,步骤 C所述用户的指示中携带新的资源分配策略;步骤 C中, 所述根据用户的指示修改资源分配策略的方法为: 直接从用户的指示中 提取新的资源分配策略, 将当前多方通信业务对应的资源分配策略修改 为该新的资源分配策略; 步骤 D中, 所述修改后的资源分配策略为步驟 C所述新的资源分配策略。
其中, 预先在网络侧保存各种资源分配策略及其各自唯一的策略索 引, 步驟 C所述用户的指示中携带新的策略索引; 步骤 C中, 所述根据 用户的指示修改资源分配策略的方法为: 所迷用户的指示中携带的新的 策略索引从所保存的各种资源分配策略中索引得到该新的策略索引对 应的新的资源分配策略, 将当前多方通信业务对应的资源分配策略修改 为该新的资源分配策略; 步骤 D中, 所述修改后的资源分配策略为步骤 C所述新的资源分配策略。
其中,步骤 C所述用户的指示中进一步包括: 资源分配策略的参数; 步骤 D中,进一步使用该资源分配策略的参数来按资源分配策略分配通 信资源。
其中,步骤 C所述用户的指示中携带当前资源分配策略的新的参数; 步骤 D中,所述修改后的资源分配策略为:使用步驟 C所述新的参数的 资源分配策略。
其中, 步骤 C所述用户的指示由会话修改请求来承载。
其中, 在所述步驟 C之后, 进一步包括: 判断是否能接受步骤 C修 改得到的资源分配策略, 如果是, 则执行步驟 D; 否则拒绝修改, 结束 当前处理流程。
其中, 在所述步驟 C之后, 进一步包括: 判断是否能接受步驟 C修 改得到的资源分配策略, 如果是, 则执行步骤 D; 否则与用户协商得到 修改后的资源分配策略, 执行步骤 D。
其中, 在步驟 C所述修改资源分配策略之后, 该方法进一步包括: 将修改后的资源分配策略的信息通知给当前多方通信业务的各个参与 用户。
其中, 所通知的各个参与用户为预先订阅资源分配策略的用户。 其中, 该方法实现于多方通信业务的执行控制功能 CF的服务器之 中。
其中, 在通信系统中设置包括资源分配策略提供系统和资源分配策 略执行系统的资源分配策略系统; 所述步骤 A包括: Al、通信系统中的会话集中控制单元在建立多方通信业务时发送资 源分配策略提取请求至所述资源分配策略提供系统;
A2、所述资源分配策略提供系统根据接收到的资源分配策略提取请 求从自身保存的资源分配策略中提取资源分配策略, 并将所提取的资源 分配策略下发至所述资源分配策略执行系统;
所述步驟 B包括: 所述资源分配策略执行系统按接收到的资源分配 策略, 通过发送资源分配命令来控制通信系统中媒体处理单元分配通信 资源。
其中, 所述资源分配策略提供系统包括: 资源分配策略控制系统和 资源分配策略数据库系统; 所述资源分配策略控制系统由一个以上控制 模块组成, 所述资源分配策略数据库系统由一个以上用于保存资源分配 策略的数据库组成; 所述资源分配策略执行系统由一个以上执行模块组 成; 步骤 A1 中, 所述会话集中控制单元发送资源分配策略提取清求至 控制模块; 步骤 A2中,步骤 A1所述控制模块根据所述资源分配策略提 取请求查询自身连接的数据库并提取资源分配策略, 再将提取到的资源 分配策略发送至当前多方通信业务对应的执行模块; 步骤 B 中, 步骤 A2 所述执行模块根据接收到的资源分配策略发送资源分配命令给所述 媒体处理单元。
其中, 所述资源分配策略控制系统中进一步设置有一个以上的代理 控制模块; 步骤 A1 中, 所述会话集中控制单元将资源分配策略提取请 求发送至自身连接的代理控制模块, 该代理控制模块再将该资源分配策 略提取请求发送至对应的控制模块; 步驟 A2中, 所述控制模块将提取 到的资源分配策略发送至步骤 A1所述代理控制模块, 该代理控制模块 再将该资源分配策略发送至当前会话对应的执行模块。
步骤 A1 中, 所述代理控制模块将资源分配策略提取请求发送至控 制模块的方法为: 根据所述资源分配策略提取请求中携带的控制模块地 址将所述资源分配策略提取请求发送至对应的控制模块; 或者, 根据所 述资源分配策略提取请求中携带的会话信息确定控制模块的地址, 再按 该控制模块的地址将所述资源分配策略提取请求发送至该控制模块。
其中, 所述会话集中控制单元与唯一的控制模块绑定; 步驟 A1中, 所述会话集中控制单元将资源分配策略提取请求发送至自身绑定的控 制模块。
其中, 所述资源分配策略对应唯一的策略索引; 步驟 A1 中, 所述 会话集中控制单元将策略索引包含在资源分配策略提取请求中发送至 所述控制模块; 步骤 A2中, 所述控制模块根据所述资源分配策略提取 请求中携带的策略索引得到对应的资源分配策略。
其中, 在所述步骤 A1之前, 该方法进一步包括: 用户发送携带策 略索引或业务信息的会话建立请求至所述会话集中控制单元; 步骤 A1 中, 所述会话集中控制单元将所述会话建立请求中的策略索引包含在所 述资源分配策略提取请求中; 或者, 根据会话建立请求中的业务信息确 定当前多方通信业务对应的策略索引, 再将该策略索引包含在所述资源 分配策略提取请求中。
其中, 在所述控制模块中设置资源分配策略与所适用的多方通信业 务的业务信息之间的对应关系; 步骤 A1 中, 所述会话集中控制单元将 当前多方通信业务的业务信息包含在资源分配策略提取请求中发送至 所述控制模块; 步骤 A2中, 所述控制模块根据所述资源分配策略提取 请求中携带的业务信息得到对应的资源分配策略。
步骤 A2中, 所述控制模块发送资源分配策略至当前多方通信业务 对应的执行模块的方法为: 所述控制模块根据所述资源分配策略提取请 求中携带的当前多方通信业务对应的执行模块的地址, 直接发送资源分 配策略至该执行模块; 或者, 所述控制模块首先发送资源分配策略至所 述会话集中控制单元, 该会话集中控制单元根据接收到的会话建立请求 将该资源分配策略发送至该执行模块。
步骤 B中, 所述执行模块在发送资源分配命令的同时, 进一步发送 资源分配通知给当前参与会话的用户。
其中,该方法进一步包括: 用户和 /或所述通信系统中的操作维护系 统通过控制模块对该控制模块连接的数据库中保存的资源分配策略进 行更新; 和 /或, 与所述通信系统互通的外部通信系统通过控制模块与该 控制模块连接的数据库交互资源分配策略。
其中, 所述多方通信业务为蜂窝系统中按键即说 PoC 业务、 消息 Message业务或会议 Conference业务。
本发明还公开了一种资源分配策略系统, 设置于包括会话集中控制 单元和媒体处理单元的通信系统中, 该系统包括:
资源分配策略提供系统, 用于保存资源分配策略, 从所述会话集中 控制单元接收资源分配策略提取请求, 提取资源分配策略并下发至资源 分配策略执行系统;
资源分配策略执行系统, 用于按接收到的资源分配策略发送资源分 配命令至所述媒体处理单元。
其中, 所述资源分配策略提供系统进一步连接用户设备 UE、 和 /或 所述通信系统的操作维护系统、和 /或与所述通信系统互通的外部通信系 统。
其中, 所述资源分配策略提供系统包括:
资源分配策略控制系统, 从所述会话集中控制单元接收所述资源分 配策略提取请求, 从资源分配策略数据库系统提取资源分配策略, 将资 源分配策略直接或通过所述会话集中控制单元下发至所述资源分配策 略执行系统; 连接 UE、 和 /或所述操作维护系统、 和 /或所述外部通信系 统, 更新资源分配策略数据库系统保存的资源分配策略;
资源分配策略数据库系统, 保存资源分配策略, 与所述资源分配策 略控制系统交互资源分配策略。
其中, 所述资源分配策略控制系统由一个以上控制模块组成; 所述 资源分配策略数据库系统由一个以上用于保存资源分配策略的数据库 组成; 所述资源分配策略执行系统由一个以上执行模块组成;
所述控制模块, 从所述会话集中控制单元接收资源分配策略提取请 求, 从自身连接的数据库提取资源分配策略, 将资源分配策略发送至对 应的执行模块、 或者通过所述会话集中控制单元发送至对应的执行模 块; 与 UE、 和 /或所述操作维护系统、 和 /或所述外部通信系统交互资源 分配策略, 更新自身连接的数据库所保存的资源分配策略;
所述执行模块, 根据接收到的资源分配策略发送资源分配命令至对 应的媒体处理单元。
其中, 在所述资源分配策略控制系统中进一步设置一个以上的代理 控制模块; 所述代理控制模块, 将来自所述会话集中控制单元的资源分 配策略提取请求发送至对应的控制模块, 将来自所述控制模块的资源分 配策略直接、 或通过所述会话集中控制单元发送给对应的执行模块, 转 发 UE、 和 /或所述操作维护系统、 和 /或所述外部通信系统与所述控制模 块之间交互的资源分配策略信息。
其中, 所述会话集中控制单元与唯一的控制模块绑定, 且所述控制 模块与一个以上会话集中控制单元绑定, 所述向控制模块发送资源分配 策略提取请求的会话集中控制单元为与该控制模块绑定的会话集中控 制单元。
其中, 所述一个以上的控制模块之间进一步相连, 各个相连的控制 模块之间进一步用于交互资源分配策略。
其中 , 所述控制模块由扩展标记语言 XML文件管理服务器 XDMS 来实现。
其中, 所述资源分配策略提供系统由 XDMS来实现。
其中, 所述执行模块进一步用于发送资源分配通知至 UE。
其中, 所述通信系统为 PoC业务通信系统, 所述会话集中控制单元 与其对应的媒体处理单元均集成于当前 PoC业务的控制 PoC服务器中; 或者, 所述通信系统为 Conference业务通信系统, 所述媒体处理单元集 成于媒体资源功能实体 MRF 中, 所述会话集中控制单元集成于 Conference月^务器。
因此, 本发明所提供的控制通信资源分配的方法以及资源分配策略 系统, 能够使通信系统根据当前业务建立的需要来选择资源分配策略, 并对当前业务的通信资源分配进行控制。 此外, 本发明所提供的资源分 配策略系统与 UE、 操作维护系统以及外部通信系统之间可通过交互资 源分配策略, 来使用户或运营商动态创建 /修改资源分配策略, 并且该 资源分配策略系统能与外部通信系统的资源分配策略实现同步。 这样 , 不仅资源分配策略得以多样化, 也为未来通信业务功能的扩展以及实现 各通信系统的互通打下了坚实基础。 附图简要说明
图 1为本发明方法第一较佳实施例处理流程示意图;
图 2为本发明方法第二较佳实施例处理流程示意图;
图 3为本发明方法第三较佳实施例处理流程示意图;
图 4为本发明方法中修改资源分配策略第一较佳实施例处理流程示 意图; 图 5为本发明方法中修改资源分配策略第二较佳实施例处理流程示 意图; '
图 6为本发明方法中修改资源分配策略第三较佳实施例处理流程示 意图;
图 7为本发明资源分配策略系统组成结构示意图;
图 8为本发明系统一较佳实施例组网结构示意图;
图 9为基于图 8所示组网结构本发明方法一较佳实施例处理流程示 意图;
图 10为本发明系统另一较佳实施例组网结构示意图;
图 11为基于图 10所示组网结构本发明方法一较佳实施例处理流程 示意图。 实施本发明的方式
为了使本发明的目的、 技术方案和优点更加清楚明白, 以下举实施 例并参照附图, 对本发明进行进一步详细的说明。
本发明公开了一种控制通信资源分配的方法, 其主要处理思想为: 在多方通信业务建立的过程中, 首先确定当前建立的多方通信业务对应 的资源分配策略, 然后按所确定的资源分配策略为当前多方通信业务的 各个参与用户分配通信资源。 所述多方通信业务可以为: PoC业务、 消 息 ( Message )业务、 或 Conference业务。
其中, 确定当前建立的多方通信业务对应的资源分配策略的方法基 本有两种: 一、 由发起当前多方通信业务建立过程的用户发送指示给网 絡侧, 然后由网络侧根据该用户的指示来确定资源分配策略; 其中, 所 述用户的指示可由用户发往网络侧的会话建立请求来承载, 本发明对此 并不限定; 二、 预先在网络侧设置各个多方通信业务群组与资源分配策 略之间的对应关系, 然后在建立多方通信业务时确定当前建立的多方通 信业务对应的资源分配策略。 本发明方法主要实现于网络侧当前多方通 信业务的执行控制功能 (CF ) 的服务器之中, 比如: PoC 业务的执行 CF的 PoC服务器(又被称为控制 PoC服务器:)、 Conference业务的执行 CF的 Conference服务器(又被称为控制 Conference服务器)。
图 1至图 3为本发明方法的三个较佳实施例, 图 1和图 2所示流程 采用上述笫一种确定资源分配策略的方法, 而图 3所示流程釆用上述第 二种确定资源分配策略的方法。 下面逐一对这三个实施例作详细说明。
图 1为本发明方法第一较佳实施例处理流程示意图。在本实施例中, 用户直接在会话建立请求中携带自身要求的资源分配策略。如图 1所示, 具体处理步驟包括:
步骤 101: 主叫 UE发送携带资源分配策略的会话建立请求至执行 CF的服务器。 这里, 该会话建立请求可由 SIP的邀请(INVITE ) 消息 来承载。
步骤 102:执行 CF的服务器从接收到的会话建立请求中提取资源分 配策略并将其确定为当前建立的多方通信业务的资源分配策略。
步骤 103:执行 CF的服务器与当前多方通信业务的各个被叫 UE建 立起会话, 并向主叫 UE返回会话建立应答, 该会话建立应答可由 SIP 的 200 OK消息来承载。
步骤 104: 该执行 CF的服务器在建立起多方通信业务之后,按步骤 102所确定的资源分配策略为主叫 UE和各个被叫 UE分配通信资源。
这里,具体如何按资源分配策略分配通信资源非本发明解决的问题, 且可采用现有技术来实现, 所以本文对此不作进一步详述。
图 1所述实施例中, 主叫 UE可以在携带资源分配策略的同时携带 该资源分配策略的参数, 这样, 执行 CF的服务器将使用接收到的资源 分配策略的参数按该资源分配策略来分配通信资源。 这里, 所述资源分 配策略可配置为: 当前 PoC业务的参与用户按次序每隔指定时间有一个 用户进行发言, 则执行 CF的服务器可按此逻辑每隔指定时间发送钉开 某 UE媒体传输链路的命令以及关闭某 UE媒体传输链路的命令, 即每 隔指定时间更新一次通信资源的分配情况; 而该资源分配策略的参数就 可以为所述指定时间, 比如: 该参数设定为五分钟, 执行 CF的服务器 就会每隔五分钟更新一次通信资源分配情况。 此外, 执行 CF的服务器 还可在确定了资源分配策略之后, 将当前确定的资源分配策略的信息通 知给主 /被叫 UE, 比如: 通知各个用户当前业务所使用的资源分配策略; 进一步地, 通知基于该资源分配策略各个用户请求发言权的操作方法; 或者通知允许发言的 UE已为其分配通信资源并允许其发言、 向需要停 止发言的 UE发送通信资源已分配给其它用户并需要停止其发言等等。 这里, 关于资源分配策略具体配置为何种逻辑、 通知何种资源分配策略 的信息、 以及如何实现通信资源的重新分配, 均非本发明解决的问题, 并且本领域技术人员使用现有技术能以多种方式实现上述功能, 因此本 文不再详述这些功能的具体实现过程。
图 2为本发明方法第二较佳实施例处理流程示意图。在本实施例中, 用户在会话建立请求中携带自身要求的资源分配策略对应的策略索引。 如图 2所示, 具体处理步驟包括:
步骤 201:执行 CF的服务器中预先设置并保存资源分配策略与策略 索引之间的对应关系。
步骤 202: 主叫 UE发送携带策略索引的会话建立请求至执行 CF的 服务器。
步骤 203:执行 CF的服务器从接收到的会话建立请求中提取策略索 引, 根据该策略索引索引得到对应的资源分配策略并将其确定为当前建 立的多方通信业务的资源分配策略。
步骤 204: 该执行 CF的服务器与当前多方通信业务的各个被叫 UE 建立起会话, 并向主叫 UE返回会话建立应答。
步骤 205: 该执行 CF的服务器在建立起多方通信业务之后,按步骤 203所确定的资源分配策略为主叫 UE和各个被叫 UE分配通信资源。
图 2所述实施例中, 主叫 UE可以在携带策略索引的同时携带该资 源分配策略的参数, 这样, 执行 CF的服务器将使用接收到的资源分配 策略的参数按所确定的资源分配策略来分配通信资源。 此外, 执行 CF 的服务器还可在确定了资源分配策略之后, 将当前确定的资源分配策略 的信息通知给主 /被叫 UE。
在图 1和图 2的实施例中, 执行 CF的服务器根据来自用户的指示 来确定资源分配策略, 但考虑某些情况下网络侧不一定能支持用户指示 的所有资源分配策略, 所以上述图 1和图 2的流程中, 执行 CF的服务 器在确定了会话建立请求所指示的资源分配策略之后, 进一步包括: 判断是否能接受所确定的资源分配策略, 如果是, 则使用该资源分 配策略来分配通信资源; 否则拒绝建立当前多方通信业务, 结束当前处 理流程, 用户将重新发起多方通信业务建立过程并重新指示资源分配策 略, 直到执行 CF的服务器能接受用户指示的资源分配策略才能建立其 多方通信业务。 其中, 当执行 CF的服务器不能接受所确定的资源分配 策略时, 还可不必拒绝建立当前多方通信业务, 网络侧可以直接使用预 设的缺省资源分配策略, 或者可与用户进行协商得到双方都支持的资源 分配策略, 比如: 执行 CF的服务器在返回主叫 UE的临时响应中携带 自身建议的资源分配策略, 主叫 UE根据该临时响应确定是否接受该资 源分配策略, 如此往复最终协商得到资源分配策略。 关于用户与网络侧 协商得到资源分配策略的方法非本发明解决的问题, 且可采用现有协商 流程实现, 本发明对此不作限定, 本文也不再详述, 但均在本发明的保 护范围之内。
图 3为本发明方法第三较佳实施例处理流程示意图。在本实施例中, 执行 CF的服务器中预设了资源分配策略与多方通信业务群组之间的对 应关系, 用户在会话建立请求中不必携带任何与资源分配策略相关的信 息。 如图 3所示, 具体处理步骤包括:
步骤 301 :执行 CF的服务器中预先设置并保存资源分配策略与多方 通信业务群组之间的对应关系。
步骤 302: 主叫 UE发送会话建立请求至执行 CF的服务器, 该会话 建立请求中至少携带当前多方通信业务的业务信息, 包括: 用户标识、 群组标识等等。
步骤 303:执行 CF的服务器根据接收到的会话建立请求确定当前多 方通信业务的群组, 确定该群組对应的资源分配策略并将其确定为当前 建立的多方通信业务的资源分配策略。
步骤 304: 该执行 CF的服务器与当前多方通信业务的各个被叫 UE 建立起会话, 并向主叫 UE返回会话建立应答。
步驟 305: 该执行 CF的服务器在建立起多方通信业务之后,按步骤 303所确定的资源分配策略为主叫 UE和各个被叫 UE分配通信资源。
图 3所述实施例中, 主叫 UE可以在会话建立请求中携带资源分配 策略的参数, 这样, 执行 CF的服务器将使用接收到的资源分配策略的 参数按所确定的资源分配策略来分配通信资源。 此外, 执行 CF的服务 器还可在确定了资源分配策略之后, 将当前确定的资源分配策略的信息 通知给主 /被叫 UE。
上述图 1至图 3的流程中, 执行 CF的服务器在向各个用户通知资 源分配策略信息时, 可以根据用户预先的订阅情况来进行通知, 如果用 户订阅了该资源分配策略信息, 则通知该用户; 如果用户未订阅该资源 分配策略信息, 则可以不通知该用户。
在多方通信业务建立起来之后 , 用户还可进一步动态修改当前多方 通信业务的资源分配策略, 由发起当前多方通信业务会话修改过程的用 户发送指示给网络侧, 然后由网络侧根据该用户的指示来修改资源分配 策略; 其中, 所述用户的指示可由用户发往网络侧的会话修改请求来承 载, 本发明对此并不限定。
图 4为本发明方法中修改资源分配策略第一较佳实施例处理流程示 意图。 在本实施例中, 用户在会话修改请求中携带自身要求的新的资源 分配策略。 如图 4所示, 具体处理步骤包括:
步骤 401: 主叫 UE、 执行 CF的服务器和各个被叫 UE之间建立起 多方通信业务。
步骤 402:主叫 UE发送携带新的资源分配策略的会话修改请求至执 行 CF的服务器。 该会话修改请求可由 SIP的更新 ( UPDATE ) 消息或 重新邀请 ( REINVITE )消息来承载。 在会话修改过程中, 所述主叫 UE 就是发起会话修改过程的 UE。
步骤 403:执行 CF的服务器从接收到的会话修改请求中提取新的资 源分配策略, 并将其确定为当前多方通信业务修改后的新的资源分配策 略。
步骤 404: 该执行 CF的服务器与当前多方通信业务的各个被叫 UE 会话修改处理, 并向主叫 UE返回会话建立应答。
步驟 405: 该执行 CF的服务器在多方通信业务会话修改之后,按步 骤 403所确定的修改后的新的资源分配策略为主叫 UE和各个被叫 UE 重新分配通信资源。 图 4所述实施例中, 主叫 UE可以在携带新的资源分配策略的同时 携带该资源分配策略的参数, 这样, 执行 CF的服务器将使用接收到的 资源分配策略的参数按修改后的资源分配策略来重新分配通信资源。 此 外, 执行 CF的服务器还可在修改资源分配策略之后, 将修改后的资源 分配策略的信息通知给主 /被叫 UE。
图 5为本发明方法中修改资源分配策略第二较佳实施例处理流程示 意图。 在本实施例中, 用户在会话修改请求中携带自身要求的新的策略 索引。 如图 5所示, 具体处理步驟包括:
步骤 501: 主叫 UE、 执行 CF的服务器和各个被叫 UE之间建立起 多方通信业务, 并且执行 CF的服务器中预先设置并保存资源分配策略 与策略索引之间的对应关系。
步骤 502: 主叫 UE发送携带新的策略索引的会话修改请求至执行 CF的服务器。
步骤 503:执行 CF的服务器从接收到的会话修改请求中提取新的策 略索引 , 确定该策略索引对应的资源分配策略并将其确定为当前多方通 信业务修改后的新的资源分配策略。
步骤 504: 该执行 CF的服务器与当前多方通信业务的各个被叫 UE 会话修改处理, 并向主叫 UE返回会话建立应答。
步驟 505: 该执行 CF的服务器在多方通信业务会话修改之后 ,按步 骤 503所确定的修改后的新的资源分配策略为主叫 UE和各个被叫 UE 重新分配通信资源。
图 5所述实施例中, 主叫 ΌΕ可以在携带新的策略索引的同时携带 资源分配策略的参数, 这样, 执行 CF的服务器将使用接收到的资源分 配策略的参数按修改后的资源分配策略来重新分配通信资源。 此外, 执 行 CF的服务器还可在修改资源分配策略之后, 将修改后的资源分配策 略的信息通知给主 /被叫 UE。
在图 4和图 5的实施例中, 执行 CF的服务器才 据来自用户的指示 来修改资源分配策略, 但考虑某些情况下网络侧不一定能支持用户指示 的所有资源分配策略, 所以上述图 4和图 5的流程中, 执行 CF的服务 器在确定了会话修改请求所指示的新的资源分配策略之后, 进一步包 括 ··
判断是否能接受所确定的新的资源分配策略(即修改得到的资源分 配策略), 如果是, 则将该新的资源分配策略作为修改后的资源分配策 略, 并使用其来分配通信资源; 否则拒绝修改当前多方通信业务, 结束 当前处理流程, 用户将重新发起多方通信业务的会话修改过程并重新指 示新的资源分配策略, 直到执行 CF的服务器能接受用户指示的新的资 源分配策略才能修改该多方通信业务。 其中, 当执行 CF的服务器不能 接受所确定的新的资源分配策略时, 还可不必拒绝修改当前多方通信业 务, 网络侧可以与用户进行协商得到双方都支持的资源分配策略。
图 6为本发明方法中修改资源分配策略第三较佳实施例处理流程示 意图。 在本实施例中, 用户在会话修改请求中携带自身要求的新的资源 分配策略的参数。 如图 6所示, 具体处理步骤包括:
步骤 601: 主叫 UE、 执行 CF的服务器和各个被叫 UE之间建立起 多方通信业务。
步骤 602:主叫 UE发送携带新的资源分配策略的参数的会话修改请 求至执行 CF的服务器。
步骤 603:执行 CF的服务器从接收到的会话修改请求中提取新的资 源分配策略的参数, 将当前资源分配策略所使用的参数修改为该新的资 源分配策略的参数, 并将使用该新的资源分配策略的参数的当前资源分 配策略确定为修改后的资源分配策略。 步骤 604: 该执行 CF的服务器与当前多方通信业务的各个被叫 UE 会话修改处理, 并向主叫 UE返回会话建立应答。
步骤 605: 该执行 CF的服务器在多方通信业务会话修改之后,按步 骤 603所确定的修改后的资源分配策略为主叫 UE和各个被叫 UE重新 分配通信资源。
在图 4至图 6的实施例中 , 执行 CF的服务器根据来自用户的指示 来修改资源分配策略, 但考虑某些情况下网络侧不一定能支持用户指示 的所有资源分配策略, 所以上述图 4至图 6的流程中, 执行 CF的服务 器在确定了会话修改请求所指示的新的资源分配策略之后, 进一步包 括 ··
判断是否能接受所确定的新的资源分配策略(即修改得到的资源分 配策略), 如果是, 则将该新的资源分配策略作为修改后的资源分配策 略, 并使用其来分配通信资源; 否则拒绝修改当前多方通信业务, 结束 当前处理流程, 用户将重新发起多方通信业务的会话修改过程并重新指 示新的资源分配策略, 直到执行 CF的服务器能接受用户指示的新的资 源分配策略才能修改该多方通信业务。 其中, 当执行 CF的服务器不能 接受所确定的新的资源分配策略时, 还可不必拒绝修改当前多方通信业 务, 网络侧可以与用户进行协商得到双方都支持的资源分配策略。
上述图 4至图 6的流程中, 执行 CF的服务器在向各个用户通知修 改后的资源分配策略的信息时, 可以根据用户预先的订阅情况来进行通 知, 如果用户订阅了该资源分配策略信息, 则通知该用户; 如果用户未 订阅该资源分配策略信息, 则可以不通知该用户。
上述修改资源分配策略的流程中, 执行 CF的服务器在修改了资源 分配策略之后使用修改后的资源分配策略来分配当前进行的多方通信 业务的通信资源; 该执行 CF的服务器也可不使用该修改后的资源分配 策略分配当前多方通信业务的通信资源 , 而是保存该修改后的资源分配 策略与当前多方通信业务群组之间的对应关系, 在该群组下一次建立新 的多方通信业务时再使用该修改后的资源分配策略来分配通信资源。 此 外, 如果执行 CF的服务器中预设了多方通信业务群组与资源分配策略 的对应关系, 则在当前多方通信业务结束之后 (即非业务时期)也可修 改该群组的资源分配策略, 具体处理方法与图 4至图 6所示类似, 只不 过 UE 不通过会话修改请求来携带新的资源分配策略或策略索引, UE 可登录执行 CF 的服务器通过浏览 Web 页面等方式来修改资源分配策 略。 另外, 所述多方通信业务群组与资源分配策略之间的对应关系也可 能不保存在执行 CF的服务器上,而保存在该执行 CF的服务器所连接的 另一专门保存资源分配策略的服务器之中, 比如:扩展标记语言(XML ) 文件管理服务器( XDMS , XML Document Management Server ), 则用户 可以通过登陆该 XDMS来修改和设置资源分配策略。并且在修改了资源 分配策略之后, 执行 CF的服务器可向对应群组中所有用户或者订阅了 资源分配策略信息的用户通知当前修改得到的资源分配策略。
本发明还提出了一种资源分配策略系统以及基于该系统的控制通信 资源分配的方法, 其主要设计思想为: 在通信系统中设置资源分配策略 系统, 由该系统负责保存各种资源分配策略, 根据当前多方通信业务建 立的需要提取资源分配策略, 并按此资源分配策略对通信系统中媒体处 理单元的通信资源分配实施控制。 为了实现上述资源分配策略系统的各 项功能, 该资源分配系统至少包括: 资源分配策略提供系统和资源分配 策略执行系统; 所述资源分配策略提供系统用于保存资源分配策略, 并 根据来自通信系统中会话集中控制单元的资源分配策略提取请求输出 资源分配策略至所述资源分配执行系统; 所述资源分配策略执行系统按 所接收的资源分配策略, 发送资源分配命令至通信系统的媒体处理单 元, 从而对当前多方通信业务的通信资源分配实施控制。
首先, 为了实现用户及运营商对资源分配策略的灵活配置, 还可进 一步增加资源分配策略提供系统与通信系统的操作维护系统之间的接 口, 用于交互资源分配策略数据, 运营商可通过操作维护系统对资源分 配策略提供系统中保存的资源分配策略进行创建、 修改、 删除等操作。 其次, 用户也需要使用 UE对资源分配策略提供系统中保存的资源分配 策略进行创建、 修改、 删除等操作, 因此也可进一步增加资源分配策略 提供系统与 UE之间用于交互资源分配策略数据的接口。 再次, 与本通 信系统互通的外部通信系统需要与本通信系统实现资源分配策略同步, 比如:如果本 PoC业务通信系统中某群组的用户要使用外部通信系统的 业务网络进行群组会话,此时必须将本 PoC业务通信系统中与该群组相 关的资源分配策略复制到外部通信系统, 以实现资源分配策略的同步。 考虑到此种资源分配策略同步的需求, 所述资源分配策略提供系统也可 进一步与所述外部通信系统交互资源分配策略, 并根据接收到的资源分 配策略更新自身保存的资源分配策略。 总之, 所述资源分配策略控制系 统可进一步与操作维护系统、 和 /或 UE、 和 /或外部通信系统交互资源分 配策略, 并根据接收到的资源分配策略更新资源分配策略数据库系统所 保存的资源分配策略。 本文所述本通信系统均指本发明资源分配策略系 统所在的通信系统, 所述操作维护系统均指所述本通信系统的操作维护 系统 , 所述外部通信系统均指与所述本通信系统互通的外部通信系统。
对于整个通信系统来说,其所处理的资源分配策略的数量相当可观, 并且所述资源分配策略提供系统的功能不仅限于保存资源分配策略, 它 还需要处理接收到的各个资源分配策略提取请求、接收 /发送大量资源分 配策略等, 因此,通常可将资源分配策略提供系统实现为两部分, 包括: 主要用于保存资源分配策略的资源分配策略数据库系统, 和主要用于处 理资源分配策略提取请求、 交互资源分配策略的资源分配策略控制系 统。
由于, 本发明主要解决集体用户参与的多方通信业务中通信资源分 配的问题, 而目前 PoC 业务又是典型的多方通信业务, 因此, 下面以 PoC业务通信系统为例对本发明系统及方法加以详细说明。
图 7为本发明资源分配策略系统组成结构示意图。 如图 7所示, 资 源分配策略系统设置于 PoC业务通信系统中, 该系统包括: 资源分配策 略提供系统 701和资源分配策略执行系统 702; 资源分配策略提供系统 701 中包括: 资源分配策略控制系统 701A和资源分配策略数据库系统 701Bo在 PoC业务通信系统中除所述资源分配策略系统外还包括: 用户 设备(UE )和控制 PoC服务器。 对于 PoC业务的一次会话来说, 其控 制 PoC服务器有且仅有一个, 即为当前 PoC业务的群组管理员所属的 PoC服务器, 其媒体处理单元与会话集中控制单元均集成于该控制 PoC 服务器中, 当前发起 PoC业务的 UE将会话建立请求发往该控制 PoC服 务器中的会话集中控制单元, 由该会话集中控制单元向其它各被叫 UE 发起呼叫,并在 PoC业务建立后由该控制 PoC服务器中的媒体处理单元 负责当前 PoC业务媒体流的复制和分发。由于会话集中控制单元与媒体 处理单元均集成于控制 PoC服务器, 因此, 图 7中, 仅以控制 PoC服务 器来代表所述会话集中控制单元和媒体处理单元, 并未示出媒体处理单 元与会话集中控制单元之间的连接关系, 由于媒体处理单元与会话集中 控制单元之间的连接关系属公知技术, 本文也不再描述。 本文所述控制 PoC服务器就是指 PoC业务中执行控制功能(CF ) 的服务器。
其中,控制 PoC服务器中的会话集中控制单元,在建立当前 PoC业 务时(比如: 接收来自 UE的会话建立请求时), 发送资源分配策略提取 请求至资源分配策略控制系统 701A; 资源分配策略控制系统 701 A, 根 据接收到的资源分配策略提取请求从资源分配策略数据库系统 701B 中 提取对应的资源分配策略, 然后将该资源分配策略通过所述会话集中控 制单元发送给资源分配策略执行系统 702, 与 UE、 操作维护系统、 及外 部通信系统交互资源分配策略, 并根据来自 UE、 操作维护系统、 或外 部通信系统的资源分配策略更新资源分配策略数据库系统 701B保存的 资源分配策略; 资源分配策略执行系统 102, 根据接收到的资源分配命 令发送资源分配策略给控制 PoC服务器中的媒体处理单元,从而对媒体 处理单元的通信资源分配实施控制。
需要补充的是, 所述资源分配策略的下发方式有两种: 一、 如前面 所述资源分配策略控制系统 101 A将接收到的资源分配策略首先返回给 所述会话集中控制单元, 再由会话集中控制单元发送至资源分配策略执 行系统 702; 二、 资源分配策略控制系统 101A将接收到的资源分配策 略直接发送至资源分配策略执行系统 702。
可见, 采用上述资源分配策略系统, 不仅可在用户建立多方通信业 务会话的过程中动态的根据用户所需提取适当的资源分配策略对通信 资源的分配进行控制; 用户和运营商还可通过操作维护系统创建新的资 源分配策略, 对原来保存的资源分配策略进行修改、 删除等; 而且, PoC 业务通信系统还可与外部通信系统的资源分配策略实现同步。
图 7所示仅是本发明系统基本的系统结构划分。在实际实现过程中, 将会有大量 ΌΈ和控制 PoC服务器同时建立会话, 因此通常, 所述资源 分配策略控制系统由一个以上(即一个或多个)的控制模块组成, 所述 资源分配策略数据库系统由一个以上的数据库组成, 所述资源分配策略 执行系统由一个以上的执行模块组成。 并且, 每个数据库连接一个以上 的控制模块,每个控制模块连接一个以上控制 PoC服务器中的会话集中 控制单元,每个执行模块连接一个以上控制 PoC服务器中的媒体处理单 元, 操作维护系统和外部通信系统则与控制模块相连。 这样, 所述会话 集中控制单元将发送资源分配策略提取请求至自身连接的控制模块, 该 控制模块根据该资源分配策略提取请求查询自身连接的数据库得到资 源分配策略, 然后将资源分配策略通过该会话集中控制单元发送给当前
PoC业务对应的执行模块、或直接发送给当前 PoC业务对应的执行模块; 外部通信系统在与 PoC业务通信系统同步资源分配策略时,与控制模块 交互资源分配策略; 操作维护系统在创建、修改、删除资源分配策略时, 也与控制模块交互资源分配策略, 控制模块则根据接收到的资源分配策 略对自身连接的数据库所保存的资源分配策略进行更新。
此种情况下, 本发明资源分配策略系统的组网方式有多种, 比如: 每个控制模块均与 PoC业务通信系统中所有的会话集中控制单元相连, 以保证所有会话集中控制单元均可将各种资源分配策略提取请求发送 至对应的控制模块等等。 其中, 实现效果较佳的组网方式基本有两种: 一、 在资源分配策略控制系统中增设一个以上的代理控制模块, 每个代 理控制模块连接一个以上会话集中控制单元以及一个以上的控制模块, 并与 UE、 和 /或操作维护系统、 和 /或外部通信系统连接, 各控制模块通 过代理控制模块与资源分配策略控制系统之外的实体进行信息交互。 这 样, 对于资源分配策略控制系统的外部实体来说, 资源分配策略控制系 统内部各控制模块的地址是不可见的, 而由代理控制模块来确定控制模 块的路由, 从而有利于保证系统稳定性。 二、 每个会话集中控制单元与 唯一的控制模块绑定, 并且每个控制模块可以与一个以上的会话集中控 制单元绑定, 则会话集中控制单元直接与自身绑定的控制模块进行信息 交互, 每个控制模块还与 UE、 和 /或所述操作维护系统、 和 /或所述外部 通信系统连接, 用于交互资源分配策略。 此种组网方式下, 网络结构相 对简单, 适合于规模较小的通信系统。 下面对采用上述两种方式后本发 明系统的组网结构以及本发明方法的处理流程加以详细描述。
图 8为本发明系统一较佳实施例组网结构示意图, 所采用的是上述 第一种组网方式。 由于, 可设置一个以上的代理控制模块, 每个代理控 制模块连接的会话集中控制单元和控制模块的数量通常为一个以上, 因 此, 这里仅以一个代理控制连接两个控制模块和两个会话集中控制单元 为例对网络结构加以说明。 另外, 各控制模块连接的数据库可以相同或 不同, 各媒体处理单元连接的执行模块也可以相同或不同, 本实施例中 两个控制模块各自连接不同的数据库, 并且所述两个会话集中控制单元 对应的两个媒体处理单元连接的执行模块也不同。在 PoC业务通信系统 中, 对于一次会话来说, 会话集中控制单元及其对应的处理该会话语音 的媒体处理单元均集成于当前 PoC业务的控制 PoC服务器中, 因此,上 述两个会话集中控制单元及其对应的两个媒体处理单元分別集成于两 个控制 PoC服务器中。 为筒化描述, 图 8中并未示出两个会话集中控制 单元和两个媒体处理单元, 而仅示出它们所集成的两个控制 PoC服务 器。
如图 8所示, 本发明资源分配策略系统中, 资源分配策略控制系统 包括: 代理控制模块、 控制模块 1和控制模块 2, 资源分配策略数据库 系统包括:分别与控制模块 1和控制模块 2连接的数据库 1和数据库 2, 资源分配策略执行系统包括: 执行模块 1和执行模块 2。 在本发明资源 分配策略系统之外包括: UE1和 UE2及其各自连接的控制 PoC服务器 1 和控制 PoC服务器 2、 操作维护系统、 以及外部通信系统。
其中,控制 PoC服务器 1和控制 PoC服务器 2中的会话集中控制单 元分别接收到来自 UE1和 UE2的会话建立请求, 发送资源分配策略提 取请求至代理控制模块; 代理控制模块将接收到的资源分配策略提取请 求分别发送至控制模块 1和控制模块 2; 控制模块 1和控制模块 2根据 接收到的资源分配策略提取请求分别从自身连接的数据库 1和数据库 2 提取资源分配策略然后返回给代理控制模块; 代理控制模块将接收到的 资源分配策略分别返回给控制 PoC服务器 1和控制 PoC服务器 2中的会 话集中控制单元;控制 PoC服务器 1和控制 PoC服务器 2中的会话集中 控制单元再分别将接收到的资源分配策略发送给各自连接的执行模块 1 和执行模块 2; 执行模块 1和执行模块 2根据所接收的资源分配策略发 送资源分配命令至各自连接的控制 PoC服务器 1和控制 PoC服务器 2 中的媒体处理单元,对当前 PoC业务会话过程中的通信资源分配实施控 制。
所述代理控制模块还与 UE1、 UE2 操作维护系统和外部通信系统 交互资源分配策略数据。用户可使用 UE1或 UE2、运营商可使用操作维 护系统, 再通过代理控制模块进行创建、 修改、 删除等更新资源分配策 略的操作。 外部通信系统则可通过代理控制模块与控制模块连接的数据 库交互资源分配策略,以完成自身与当前 PoC业务通信系统之间的资源 分配策略同步。
所述 UE1、 UE2、 以及操作维护系统通过代理控制模块对该控制模 块连接的数据库中保存的资源分配策略进行更新的具体处理包括: UE1、 UE2、或操作维护系统创建新的资源分配策略并将其输入代理控制模块, 同时指明该新的资源分配策略对应的控制模块的地址, 然后代理控制模 块可将新的资源分配策略发送至该控制模块, 该控制模块再将接收到的 资源分配策略复制到自身连接的数据库中; UE1、 UE2、 或操作维护系 统还可通过发送配置命令指示代理控制模块从指定的控制模块提取资 源分配策略, 然后对该资源分配策略进行修改等处理, 再将处理后的资 源分配策略通过代理控制模块返回给该指定控制模块, 该指定控制模块 根据所接收的资源分配策略对自身连接的数据库进行更新, 从而修改保 存在数据库中的资源分配策略; UE1、 UE2、 或操作维护系统也可通过 发送配置命令指示代理控制模块从指定的控制模块删除指定资源分配 策略, 然后代理控制模块发送删除命令给指定控制模块, 该控制模块根 据该删除命令删除自身连接数据库中指定的资源分配策略。
所述外部通信系统通过代理控制模块与控制模块连接的数据库交互 资源分配策略的具体处理包括: 外部通信系统可将自身的资源分配策略 传送至代理控制模块并指明其对应哪些控制模块, 然后代理控制模块再 将接收到的资源分配策略发送至该对应的控制模块, 该控制模块再将该 资源分配策略复制到自身连接的数据库中; 外部通信系统也可以通过代 理控制模块请求从当前 PoC业务通信系统复制资源分配策略,并指明从 哪些控制模块复制, 然后代理控制模块可指示这些控制模块从自身连接 的数据库中提取资源分配策略, 该控制模块再通过代理控制模块输出资 源分配策略至外部通信系统, 从而实现资源分配策略的同步。
由于, 控制 PoC服务器中的会话集中控制单元对会话控制具有最高 的优先级, 其可能随时根据需要来临时控制通信资源的分配, 比如: 终 止当前 PoC业务、 或临时授予某用户发言权等, 因此, 通常实现时会话 集中控制单元应与执行模块之间存在通信接口来控制执行模块的操作, 比如: 暂停、 或继续执行资源分配策略等。 所以图 8所示资源分配策略 发送流程中利用了会话集中控制单元与执行模块中应存在的通信接口, 实现了资源分配策略从代理控制模块开始、 经由会话集中控制单元、 再 到执行模块的传递。 当然, 代理控制模块也可将资源分配策略直接下发 给当前 PoC业务对应的执行模块,这样需要增加执行模块与代理控制模 块之间的通信接口,并且控制 PoC服务器中的会话集中控制单元在发送 资源分配策略提取请求时应携带当前 PoC 业务对应的执行模块的地址 给代理控制模块, 代理控制模块才能将资源分配策略下发给该执行模 块。 因此, 图 8中还可增加代理控制模块与执行模块 1和执行模块 2之 间的接口, 来实现资源分配策略的下发。
另夕 I、,为实现良好的通信资源分配控制效果,在执行模块向控制 PoC 服务器中的媒体处理单元下发资源分配命令的同时, 还可以进一步给 UE发送相应的资源分配通知, 比如: 告知用户现在是否可以发言、 或 何时可以发言等。 因此, 图 8所示組网结构中, 也可增加执行模块 1与 UE1、 以及执行模块 2与 UE2之间的通信接口, 用于实现资源分配通知 的下发。
此外, 考虑到各控制模块之间存在同步资源分配策略的需求, 则各 控制模块之间也需要通信接口来交互各自的资源分配策略。如图 8所示, 控制模块 1与控制模块 2之间也可以存在连接, 这样, 控制模块 1可以 从自身连接的数据库 1中提取资源分配策略并发送至控制模块 2, 然后 控制模块 2可根据接收到的资源分配策略对自身连接的数据库 2进行更 新, 将数据库 1中的资源分配策略复制到数据库 2中, 以实现资源分配 策略的同步, 同理也可实现控制模块 2连接的数据库 2中的资源分配策 略向控制模块 1连接的数据库 1的复制。 从而, 接入控制模块 1和控制 模块 2的会话能够使用数据库 1和数据库 2中所有的资源分配策略, 方 便资源分配策略在整个通信系统中的扩展与共享。
图 8仅以两个 UE及其对应的两个控制 PoC服务器、两个执行模块、 代理控制模块、 两个控制模块以及两个数据库为例来说明本发明系统的 组网结构, 对于一个 UE的一次 PoC会话建立过程来说, 其对应一个控 制 PoC服务器、 一个执行模块、 代理控制模块、 一个控制模块、 以及一 个数据库, 并且各个 UE的每一次会话建立过程的处理均相互独立, 因 此下面以一个 UE的一次 PoC会话建立过程为例来阐述本发明方法的处 理。 图 9为基于图 8所示组网结构本发明方法一较佳实施例处理流程示 意图。 如图 9所示, 具体处理包括:
步骤 901 : UE将会话建立请求发送至当前建立的会话的控制 PoC 服务器中的会话集中控制单元, 该会话建立请求中包含: 群組标识、 用 户标识等业务信息。 该会话建立请求可由 SIP的邀请 INVITE消息来承 载。
步骤 902 ~步骤 903:步骤 901所述会话集中控制单元根据接收到的 会话建立请求通过代理控制模块发送资源分配策略提取请求至对应的 控制模块。
其中 , 所述代理控制模块发送资源分配策略提取请求至控制模块的 方法基本有两种:
一、 根据资源分配策略提取请求中包含的控制模块的地址将该资源 分配策略提取请求路由至该控制模块, 所述控制模块的地址通常为控制 模块的域名。
这里, UE可在会话建立请求中包含控制模块的地址, 控制 PoC服 务器中的会话集中控制单元将会话建立请求中包含的控制模块地址包 含在资源分配策略提取请求中发送至代理控制模块;也可由控制 PoC服 务器中的会话集中控制单元根据接收到的会话建立请求中的群组标识 等业务信息, 确定当前 PoC业务对应的控制模块的地址, 然后将所确定 的控制模块的地址包含在资源分配策略提取请求中发送至代理控制模 块。 所述会话集中控制单元根据业务信息确定控制模块地址时, 可根据 群组标识等业务信息查询到预先设置在群组信息中的控制模块地址, 或 按自身的预先配置确定当前 PoC业务的群組标识对应的控制模块地址, 总之确定当前 Poc业务对应的控制模块地址的方式有很多, 本发明不进 行限定。 二、根据资源分配策略提取请求中包含的业务信息确定当前 PoC业 务对应的控制模块的地址, 比如: 按自身的预先配置确定群组标识等业 务信息对应的控制模块地址, 然后按此控制模块的地址将该资源分配策 略提取请求路由至该控制模块。
步驟 904: 步骤 903所述控制模块根据接收到的资源分配策略提取 请求查询自身连接的数据库得到当前 PoC业务对应的资源分配策略。
其中, 控制模块根据资源分配策略提取请求得到资源分配策略的方 式也基本有两种:
一、 所述数据库中设置有策略索引与资源分配策略的对应关系, 控 制模块根据资源分配策略提取请求中的策略索引查询数据库得到资源 分配策略。
这里, UE可以在会话建立请求中携带策略索引, 然后会话集中控制 单元将该策略索引包含在资源分配策略提取请求中发送至控制模块; 会 话集中控制单元也可根据会话建立请求中的业务信息确定当前 PoC 业 务对应的策略索引, 比如: ¾1据群组标识等业务信息得到预先配置在群 组信息中的策略索引, 或按自身预先配置确定当前群组标识对应的策略 索引, 具体确定方法有多种, 本发明不进行限定。 二、 所述数据库中设 置有资源分配策略与业务信息之间的对应关系, 该业务信息为资源分配 策略所适用的多方通信业务的业务信息。 控制模块根据资源分配策略提 取请求中的业务信息查询数据库得到资源分配策略。
这里, 数据库除了保存各种资源分配策略以外, 还需要维护各资源 分配策略的属性, 比如: 适用范围、 是否可编辑、 是否可公开、 可对其 进行修改的用户标识等等, 其中适用范围就主要描述了当前资源分配策 略所适用的群组^ "i舌, 即资源分配策略与群组标识之间的对应关系。 因 此, 可通过业务信息查询凄 t据库得到当前业务适用的资源分配策略。 当 然, 同一业务可适用的资源分配策略可能有多种, 控制模块可按预先设 定的选择逻辑来选择其中一个资源分配策略, 比如按资源分配策略优先 級来选择等, 具体如何选择唯一的资源分配策略非本发明解决的问题, 这里不再详述。
步骤 905: 控制模块通过代理控制模块将步骤 904所得到的资源分 配策略下发给控制 PoC服务器中的会话集中控制单元,该会话集中控制 单元再将资源分配策略发送至当前 PoC业务对应的执行模块,该执行模 块为处理当前 PoC业务的媒体处理单元所连接的执行模块,所述会话集 中控制单元预先配置了所述媒体处理单元的地址、 以及该媒体处理单元 连接的执行模块的地址, 因此,可将资源分配策略发送至所述执行模块。
另外, 由图 8所示可知, 资源分配策略也可由控制模块通过代理控 制模块直接下发至执行模块, 这样, 步骤 902所述的资源分配策略提取 请求中应携带该执行模块的地址 , 从而代理控制模块可根据该执行模块 地址将资源分配策略下发给执行模块。此时步驟 905相应变为步骤 905,: 控制模块将资源分配策略发送至代理控制模块, 该代理控制模块根据步 骤 902所述资源分配策略提取请求中的执行模块地址将该资源分配策略 直接下发至该执行模块。
步骤 906: 所述执行模块根据接收到的资源分配策略, 按该资源分 配策略所描述的逻辑发送资源分配命令给控制 PoC服务器中的媒体处 理单元, 从而该媒体处理单元根据来自执行模块的资源分配命令分配当 前 PoC 业务媒体传输的通信资源。 同时, 执行模块还向参与当前 PoC 业务的 UE发送资源分配通知,告知 UE用户当前通信资源是否被占用 , 该用户是否被分配通信资源, 是否有权进行发言等。
这里, 所述资源分配策略可配置为: 当前 PoC业务的参与用户按次 序每隔 5分钟有一个用户进行发言, 则执行模块可按此逻辑每隔 5分钟 发送打开某 UE媒体传输链路的命令以及关闭某 UE媒体传输链路的命 令, 即每 5分钟更新一次媒体处理单元中通信资源的分配情况, 同时, 执行模块可向允许发言的 UE发送指示已为其分配通信资源并允许其发 言的资源分配通知, 向需要停止发言的 UE发送指示通信资源已分配给 其它用户并需要停止其发言的资源分配通知, 向其它 UE发送指示哪个 用户开始发言的资源分配通知等等。 关于具体资源分配策略配置为何种 逻辑、 执行模块发送何种资源分配通知、 媒体处理单元按执行模块的资 源分配命令如何实现通信资源的重新分配, 均非本发明解决的问题, 并 且本领域技术人员使用目前公知的技术能以多种方式实现上述功能, 因 此本文不再详述这些功能的具体实现过程。
图 10为本发明系统另一较佳实施例组网结构示意图。 图 10釆用的 是上述第二种组网方式, 每个控制模块与一个以上的会话集中控制单元 绑定。 本实施例中, 仅以每个控制模块与一个会话集中控制单元绑定为 例来进行说明, 并且, 各控制模块连接不同的数据库, 各会话集中控制 单元对应的两个媒体处理单元连接的执行模块也不同。 由于, PoC业务 通信系统中, 会话集中控制单元及其对应的媒体处理单元均集成于当前 会话的控制: PoC服务器中。 为筒化描述, 图 10中并未示出会话集中控 制单元和媒体处理单元, 而仅示出它们所集成的控制 PoC服务器。
如图 10所示,本发明资源分配策略系统中, 资源分配策略控制系统 包括: 控制模块 1和控制模块 2, 资源分配策略数据库系统包括: 分别 与控制模块 1和控制模块 2连接的数据库 1和数据库 2, 资源分配策略 执行系统包括: 执行模块 1和执行模块 2。 在本发明资源分配策略系统 之外包括: UE1和 UE2及其各自连接的控制 PoC服务器 1和控制 PoC 服务器 2、 操作维护系统、 以及外部通信系统。 该控制 PoC服务器 1和 控制 PoC服务器 2分別与控制模块 1和控制模块 2绑定。 其中,控制 PoC服务器 1和控制 PoC服务器 2中的^舌集中控制单 元分别接收来自 UE1和 UE2的会话建立请求, 分别发送资源分配策略 提取请求至自身绑定的控制模块 1和控制模块 2; 控制模块 1和控制模 块 2根据接收到的资源分配策略提取请求分别从自身连接的数据库 1和 数据库 2提取资源分配策略,然后分别返回给控制 PoC服务器 1和控制 PoC服务器 2中的会话集中控制单元;控制 PoC服务器 1和控制 PoC服 务器 2中的会话集中控制单元再分别将接收到的资源分配策略发送给各 自连接的执行模块 1和执行模块 2; 执行模块 1和执行模块 2根据所接 收的资源分配策略发送资源分配命令至各自连接的控制 PoC服务器 1和 控制 PoC服务器 2中的媒体处理单元,从而控制会话过程中的通信资源 分配。
所述 UE1和 UE2还分別连接控制模块 1和控制模块 2,用于交互资 源分配策略数据; 所述控制模块 1和控制模块 2还与操作维护系统和外 部通信系统交互资源分配策略数据。用户可使用 UE1或 UE2、运营商可 使用操作维护系统通过自身连接的控制模块 1或控制模块 2对数据库 1 或数据库 2中保存的资源分配策略进行创建、 修改、 删除等更新操作, 外部通信系统则可通过控制模块 1或控制模块 2完成与当前 PoC业务通 信系统之间的资源分配策略同步。
所述 UE1、 UE2、 或操作维护系统通过自身连接的控制模块 1或控 制模块 2对数据库 1或数据库 2中保存的资源分配策略进行更新的具体 处理包括: UE1、 UE2、 或操作维护系统创建新的资源分配策略并将其 输入自身连接的控制模块 1或控制模块 2, 控制模块 1或控制模块 2再 将接收到的资源分配策略复制到数据库 1或数据库 2中; UE1、 UE2、 或操作维护系统还可发送配置命令给自身连接的控制模块 1或控制模块 2, 指示控制模块 1或控制模块 2提取资源分配策略, 然后对该资源分 配策略进行修改等处理, 再将处理后的资源分配策略返回给控制模块 1 或控制模块 2, 控制模块 1或控制模块 2根据所接收的资源分配策略对 数据库 1或数据库 进行更新, 从而修改保存在数据库 1或数据库 2中 的资源分配策略; UE1、 UE2、 或操作维护系统也可通过发送配置命令 指示自身连接的控制模块 1或控制模块 2删除指定资源分配策略, 然后 控制模块 1或控制模块 2删除数据库 1或数据库 2中该配置命令指定的 资源分配策略。
所述外部通信系统通过自身连接的控制模块 1或控制模块 2与数据 库 1或数据库 2交互资源分配策略的具体处理包括: 外部通信系统可将 自身的资源分配策略传送至控制模块 1或控制模块 2, 然后控制模块 1 或控制模块 2再将该资源分配策略复制到数据库 1或数据库 2中; 外部 通信系统也可以向控制模块 1或控制模块 2请求复制资源分配策略, 然 后控制模块 1或控制模块 2从数据库 1或数据库 2中提取资源分配策略 并输出至外部通信系统, 从而实现资源分配策略的同步。
与图 8所述同理,上述图 10的资源分配策略发送流程利用了会话集 中控制单元与执行模块中应存在的通信接口, 来实现资源分配策略从控 制模块开始、 经由控制 PoC服务器中会话集中控制单元、 再到执行模块 的传递。 同样, 控制模块也可将资源分配策略直接下发给当前 PoC业务 对应的执行模块, 这样需要增加执行模块与控制模块之间的通信接口, 并且控制 PoC服务器中的会话集中控制单元发送的资源分配策略提取 请求中应携带当前 PoC业务对应的执行模块的地址,从而控制模块才能 按此地址将资源分配策略下发给当前 PoC业务对应的执行模块。 因此, 图 10中还可分别增加控制模块 1与执行模块 1、以及控制模块 2与执行 模块 2之间的接口, 来实现资源分配策略的下发。
同样, 为达到良好的通信资源分配控制效果,给用户使用带来方便, 在执行模块向控制 PoC服务器中的媒体处理单元下发资源分配命令的 同时, 还可以进一步给 UE发送相应的资源分配通知。 因此, 图 10所示 组网结构中,也可增加执行模块 1与 UE1、以及执行模块 2与 UE2之间 的通信接口, 用于实现资源分配通知的下发。
另外,各控制模块之间也需要通信接口来交互各自的资源分配策略, 以实现资源分配策略的同步。 如图 10所示, 控制模块 1 与控制模块 2 之间也可以存在连接, 这样, 控制模块 1可以从自身连接的数据库 1中 提取自身对应的资源分配策略并发送至控制模块 2, 然后控制模块 2可 根据接收到的资源分配策略对自身连接的数据库 2进行更新, 将数据库 1中的资源分配策略复制到数据库 2中, 同理也可实现控制模块 2对应 的数据库 2中的资源分配策略复制到控制模块 1对应的数据库 1中, 从 而扩大资源分配策略在整个通信系统的应用范围,使更多 PoC业务会话 得以共享资源分配策略。
图 10仅以两个 UE及其对应的两个控制 PoC服务器及其绑定的两个 控制模块、 两个执行模块、 以及两个数据库为例来说明本发明系统的组 网结构, 对于一个 UE的一次 PoC业务会话建立过程来说, 其对应一个 控制 PoC服务器、 一个执行模块、 一个控制模块、 以及一个数据库, 并 且各个 UE的每一次会话建立过程的处理均相互独立, 因此下面以一个 UE的一次会话建立过程为例来阐述本发明方法的处理。
图 11为基于图 10所示组网结构本发明方法另一较佳实施例处理流 程示意图。 如图 11所示, 具体处理包括:
步骤 1101: UE将会话建立请求发送至当前建立的会话的控制 PoC 服务器中的会话集中控制单元, 该会话建立请求中包含: 群组标识、 用 户标识等业务信息。
步骤 1102: 步骤 1101所述会话集中控制单元发送资源分配策略提 取请求至自身绑定的控制模块。 这里, 会话集中控制单元中预先配置了 自身绑定的控制模块的地址。
步骤 1103: 步驟 1102所述控制模块根据接收到的资源分配策略提 取请求查询自身连接的数据库得到当前会话对应的资源分配策略。 这 里, 所述根据资源分配策略提取请求得到资源分配策略的方法与步骤 904所述相同, 因此不再描述。
步骤 1104: 控制模块将步驟 1103所得到的资源分配策略下发给控 制 PoC服务器中的会话集中控制单元,该会话集中控制单元再将资源分 配策略发送至当前会话对应的执行模块。
由图 10所示可知,资源分配策略也可由控制模块直接下发至执行模 块, 这样, 在步骤 1102所述的资源分配策略提取请求中应携带该执行 模块的地址, 从而控制模块可按此地址将资源分配策略下发给执行模 块。 此时步骤 1104相应变为步骤 1104,: 控制模块按步骤 1102所述资 源分配策略提取请求中的执行模块地址将该资源分配策略直接下发至 该执行模块。
步驟 1105: 所述执行模块根据接收到的资源分配策略, 按该资源分 配策略所描述的逻辑发送资源分配命令给控制 PoC服务器中的媒体处 理单元, 从而该媒体处理单元根据来自执行模块的资源分配命令分配当 前 PoC 业务媒体传输的通信资源。 同时, 执行模块还向参与当前 PoC 业务的 UE发送资源分配通知。 这里, 所述执行模块根据资源分配策略 下发资源分配命令、 以及资源分配通知的过程与步骤 906所述相同, 因 此不再描述。
本发明方法除了可以如图 9和图 11所述在会话建立过程中为当前 PoC业务提供资源分配策略,还可以为用户和 /或运营商提供更新资源分 配策略的功能, 也可以使本通信系统与外部通信系统的资源分配策略实 现同步, 也就是说本发明方法还可以进一步包括: UE和 /或操作维护系 统通过控制模块对该控制模块连接的数据库中保存的资源分配策略进 行创建、 修改、 删除等更新操作; 和 /或, 外部通信系统通过控制模块与 该控制模块连接的数据库交互资源分配策略, 以实现资源分配策略的同 步。 这里所述处理的具体细节在前面图 8和图 10的组网结构的描述中 有具体阐述, 因此不再详述。
根据上述图 8至图 11的描述可知,无论本发明系统采用哪种组网方 式, 均能根据当前 PoC业务会话的需要选择资源分配策略, 并按此资源 分配策略对当前 PoC业务的通信资源分配实施控制,用户如果想改变通 信资源分配的策略, 只需要输入新的策略索引, 或者通过 UE或操作维 护系统修改原有的资源分配策略, 使用户及运营商真正根据业务需求动 态控制通信资源分配。
上述图 7至图 11均以 PoC业务通信系统为例进行说明, 当本发明 应用于其它通信系统时, 资源分配策略系统的组网结构及其控制通信资 源分配的处理流程与图 7和图 11所述基本相同, 所不同的是: 媒体处 理单元和会话集中控制单元所集成的实体不同, 比如: Conference业务 通信系统中, 媒体处理单元集成于媒体资源功能实体(MRF ) 中, 会话 集中控制单元则集成于 Conference服务器中。 虽然, 媒体处理单元与会 话集中控制单元所集成的实体发生了变化, 但整个资源分配策略系统的 结构、 以及所述控制通信资源分配的方法的总体流程并未发生实质性改 变, 因此, 对于本发明应用于其它通信系统时的具体实施方式本文不再 阐述, 但均在本发明的保护范围内。 本发明所述资源分配策略提供系统 可由 XDMS来实现, 即: 图 7的资源分配策略提供系统, 以及图 8、 图 9、图 10和图 11所示资源分配策略控制系统中的控制模块都可由 XDMS 来实现。 综上所述, 应用本发明系统及方法, 通信系统不再按某一固化在会 话集中控制单元中的策略分配通信资源, 而可以将所有所需的资源分配 策略统一管理在资源分配策略系统中, 由该资源分配策略系统实时根据 当前多方通业务建立的需要提取资源分配策略, 并按此资源分配策略控 制媒体处理单元的通信资源分配。 这样, 不仅可以灵活控制通信资源的 分配, 还可实现此类通信业务提供的功能的多样化。 用户和运营商可以 通过操作维护系统修改现存的资源分配策略、 配置全新的资源分配策略 等, 从而资源分配策略可以随意扩展, 也就使通信业务功能的多样扩展 为可能。 因此, 本发明提出的系统及方法真正实现了通信系统在通信资 源分配技术上的突破。
以上所述仅为本发明的较佳实施例而已, 并不用以限制本发明, 凡 在本发明的精神和原则之内所做的任何修改、 等同替换和改进等, 均应 包含在本发明的保护范围之内。

Claims

权利要求书
1、 一种控制通信资源分配的方法, 其特征在于, 在建立多方通信业 务时, 该方法包括:
A、 确定当前建立的多方通信业务对应的资源分配策略;
B、 按所确定的资源分配策略为当前建立的多方通信业务的参与用 户分配通信资源。
2、 根据权利要求 1所述的方法, 其特征在于, 步骤 A中, 所述确 定资源分配策略的方法为: 根据用户的指示来确定资源分配策略。
3、根据权利要求 2所述的方法, 其特征在于, 所述用户的指示中携 带用户要求的资源分配策略;
步據 A中, 所述根据用户的指示确定资源分配策略的方法为: 直接 从用户的指示中提取资源分配策略。
4、根据权利要求 2所述的方法, 其特征在于, 预先保存各种资源分 配策略及其各自唯一的策略索引, 所述用户的指示中携带策略索引; 步骤 A中, 所述才艮据用户的指示确定资源分配策略的方法为: 居 所述用户的指示中携带的策略索引从所保存的各种资源分配策略中索
? I得到该策略索 I对应的资源分配策略。
5、根据权利要求 3或 4所述的方法, 其特征在于, 所述用户的指示 中进一步包括: 资源分配策略的参数;
步骤 B中, 进一步使用该资源分配策略的参数来按所确定的资源分 配策略分配通信资源。
6、根据权利要求 1所述的方法, 其特征在于, 预先设置各个多方通 信业务群组与资源分配策略之间的对应关系;
步驟 A中, 所述确定资源分配策略的方法为: 根据所设置的各个多 方通信业务群组与资源分配策略之间的对应关系确定当前多方通信业 务的群组对应的资源分配策略。
7、根据权利要求 2至 4任一项所述的方法, 其特征在于, 在所述步 驟 A之后, 进一步包括:
判断是否能接受步骤 A确定的资源分配策略, 如果是, 则执行步驟 B; 否则拒绝建立当前多方通信业务, 结束当前处理流程。
8、根据权利要求 2至 4任一项所述的方法, 其特征在于, 在所述步 骤 A之后, 进一步包括:
判断是否能接受步骤 A确定的资源分配策略, 如果是, 则执行步驟 B; 否则与用户协商得到资源分配策略、 或者确定当前建立的多方通信 业务对应预设的缺省资源分配策略, 执行步驟^
9、才 据权利要求 2至 5任一项所述的方法, 其特征在于, 所述用户 的指示由会话建立请求来承载。
10、 据权利要求 1所述的方法, 其特征在于, 步據 A中, 所述确 定当前建立的多方通信业务对应的资源分配策略之后 , 进一步包括: 将所确定的资源分配策略的信息通知给当前建立的多方通信业务的 各个参与用户。
11、根据权利要求 1所述的方法, 其特征在于, 该方法进一步包括: c、 修改当前多方通信业务对应的资源分配策略;
D、 按修改后的资源分配策略分配当前多方通信业务参与用户的通 信资源。
12、 据权利要求 11所述的方法, 其特征在于,
所述步骤 C为: 在当前多方通信业务进行过程中, 修改当前多方通 信业务对应的资源分配策略;
所述步骤 D为: 在当前多方通信业务进行过程中, 按修改后的资源 分配策略来重新分配当前多方通信业务参与用户的通信资源; 或者, 当步骤 C所述多方通信业务群组建立新的多方通信业务时, 按修改 后的资源分配策略分配该新的多方通信业务参与用户的通信资源。
13、 根据权利要求 11所述的方法, 其特征在于,
所述步骤 C为: 在当前多方通信业务群组未进行多方通信业务时, 修改该多方通信业务群組对应的资源分配策略;
所述步驟 D为: 当步骤 C所述多方通信业务群组建立多方通信业务 时, 按修改后的资源分配策略分配该多方通信业务参与用户的通信资 源。
14、 根据权利要求 11至 13任一项所述的方法, 其特征在于, 步驟 C中, 所述修改资源分配策略的方法为: 根据用户的指示来修改资源分 配策略。
15、 才艮据权利要求 14所述的方法, 其特征在于, 步骤 C所述用户 的指示中携带新的资源分配策略;
步骤 C中, 所述根据用户的指示修改资源分配策略的方法为: 直接 从用户的指示中提取新的资源分配策略, 将当前多方通信业务对应的资 源分配策略修改为该新的资源分配策略;
步骤 D中 ,所述修改后的资源分配策略为步骤 C所述新的资源分配 策略。
16、根据权利要求 14所述的方法, 其特征在于,预先在网络侧保存 各种资源分配策略及其各自唯一的策略索引,步驟 C所述用户的指示中 携带新的策略索引;
步骤 C中, 所述根据用户的指示 ^ί'爹改资源分配策略的方法为: 所述 用户的指示中携带的新的策略索引从所保存的各种资源分配策略中索 引得到该新的策略索引对应的新的资源分配策略, 将当前多方通信业务 对应的资源分配策略修改为该新的资源分配策略; 步骤 D中 ,所述修改后的资源分配策略为步骤 C所述新的资源分配 策略。
17、 根据权利要求 14所述的方法, 其特征在于, 步骤 C所述用户 的指示中进一步包括: 资源分配策略的参数;
步骤 D中 , 进一步使用该资源分配策略的参数来按资源分配策略分 配通信资源。
18、 根据权利要求 14所述的方法, 其特征在于, 步骤 C所述用户 的指示中携带当前资源分配策略的新的参数;
步骤 D中, 所述修改后的资源分配策略为: 使用步骤 C所述新的参 数的资源分配策略。
19、 根据权利要求 14所迷的方法, 其特征在于, 步骤 C所述用户 的指示由会话修改请求来承载。
20、 根据权利要求 11至 13任一项所述的方法, 其特征在于, 在所 述步骤 C之后, 进一步包括:
判断是否能接受步骤 C修改得到的资源分配策略, 如果是, 则执行 步骤 D; 否则拒绝修改, 结束当前处理流程。
21、 根据权利要求 11至 13任一项所述的方法, 其特征在于, 在所 述步骤 C之后, 进一步包括:
判断是否能接受步骤 C修改得到的资源分配策略, 如果是, 则执行 步驟 D; 否则与用户协商得到修改后的资源分配策略, 执行步骤0。
22、 根据权利要求 11所述的方法, 其特征在于, 在步骤 C所述修 改资源分配策略之后, 该方法进一步包括:
将修改后的资源分配策略的信息通知给当前多方通信业务的各个参 与用户。
23、 根据权利要求 10或 22所述的方法, 其特征在于, 所通知的各 个参与用户为预先订阅资源分配策略的用户。
24、 根据权利要求 1、 2、 3、 4、 11、 12或 13所述的方法, 其特征 在于, 该方法实现于多方通信业务的执行控制功能 CF的服务器之中。
25、 根据权利要求 1所述的方法, 其特征在于, 在通信系统中设置 包括资源分配策略提供系统和资源分配策略执行系统的资源分配策略 系统;
所述步骤 A包括:
A1、通信系统中的会话集中控制单元在建立多方通信业务时发送资 源分配策略提取请求至所述资源分配策略提供系统;
A2、所述资源分配策略提供系统根据接收到的资源分配策略提取请 求从自身保存的资源分配策略中提取资源分配策略, 并将所提取的资源 分配策略下发至所述资源分配策略执行系统;
所述步骤 B包括: 所述资源分配策略执行系统按接收到的资源分配 策略, 通过发送资源分配命令来控制通信系统中媒体处理单元分配通信 资源。
26、 根据权利要求 25 所述的方法, 其特征在于, 所述资源分配策 略提供系统包括: 资源分配策略控制系统和资源分配策略数据库系统; 所述资源分配策略控制系统由一个以上控制模块组成, 所述资源分配策 略数据库系统由一个以上用于保存资源分配策略的数据库组成; 所述资 源分配策略执行系统由一个以上执行模块组成;
步驟 A1 中, 所述会话集中控制单元发送资源分配策略提取请求至 控制模块;
步骤 A2中,步驟 A1所述控制模块根据所述资源分配策略提取请求 查询自身连接的数据库并提取资源分配策略, 再将提取到的资源分配策 略发送至当前多方通信业务对应的执行模块; 步骤 B中, 步骤 Α2所述执行模块根据接收到的资源分配策略发送 资源分配命令给所述媒体处理单元。
27、 根据权利要求 26所述的方法, 其特征在于, 所述资源分配策 略控制系统中进一步设置有一个以上的代理控制模块;
步骤 A1 中, 所述会话集中控制单元将资源分配策略提取请求发送 至自身连接的代理控制模块, 该代理控制模块再将该资源分配策略提取 请求发送至对应的控制模块;
步骤 Α2中,所述控制模块将提取到的资源分配策略发送至步骤 A1 所述代理控制模块, 该代理控制模块再将该资源分配策略发送至当前会 话对应的执行模块。
28、 根据权利要求 27所述的方法, 其特征在于, 步骤 Al t , 所述 代理控制模块将资源分配策略提取请求发送至控制模块的方法为:
根据所述资源分配策略提取请求中携带的控制模块地址将所述资 源分配策略提取请求发送至对应的控制模块; 或者,
根据所述资源分配策略提取请求中携带的会话信息确定控制模块 的地址, 再按该控制模块的地址将所述资源分配策略提取请求发送至该 控制模块。
29、 根据权利要求 26所述的方法, 其特征在于, 所述会话集中控 制单元与唯一的控制模块绑定;
步骤 A1 中, 所述会话集中控制单元将资源分配策略提取请求发送 至自身绑定的控制模块。
30、 根据权利要求 26至 29任一项所述的方法, 其特征在于, 所述 资源分配策略对应唯一的策略索引;
步骤 A1 中, 所述会话集中控制单元将策略索引包含在资源分配策 略提取请求中发送至所述控制模块; 步驟 A2中, 所述控制模块根据所述资源分配策略提取请求中携带 的策略索引得到对应的资源分配策略。
31、 根据权利要求 30所述的方法, 其特征在于, 在所述步骤 A1之 前, 该方法进一步包括: 用户发送携带策略索引或业务信息的会话建立 请求至所述会话集中控制单元;
步骤 A1 中, 所述会话集中控制单元将所述会话建立请求中的策略 索引包含在所述资源分配策略提取请求中; 或者, 根据会话建立请求中 的业务信息确定当前多方通信业务对应的策略索引, 再将该策略索引包 含在所述资源分配策略提取请求中。
32、 根据权利要求 26至 29任一项所述的方法, 其特征在于, 在所 述控制模块中设置资源分配策略与所适用的多方通信业务的业务信息 之间的对应关系;
步驟 A1 中, 所述会话集中控制单元将当前多方通信业务的业务信 息包含在资源分配策略提取请求中发送至所述控制模块;
步骤 A2中, 所述控制模块根据所述资源分配策略提取请求中携带 的业务信息得到对应的资源分配策略。
33、 根据权利要求 26至 29任一项所述的方法, 其特征在于, 步骤 A2 中, 所述控制模块发送资源分配策略至当前多方通信业务对应的执 行模块的方法为:
所述控制模块根据所述资源分配策略提取请求中携带的当前多方 通信业务对应的执行模块的地址, 直接发送资源分配策略至该执行模 块; 或者,
所述控制模块首先发送资源分配策略至所述会话集中控制单元, 该 会话集中控制单元根据接收到的会话建立请求将该资源分配策略发送 至该执行模块。
34、 根据权利要求 26至 29任一项所述的方法, 其特征在于, 步驟 B中, 所述执行模块在发送资源分配命令的同时, 进一步发送资源分配 通知给当前参与会话的用户。
35、 根据权利要求 26所述的方法, 其特征在于, 该方法进一步包 括:用户和 /或所述通信系统中的操作维护系统通过控制模块对该控制模 块连接的数据库中保存的资源分配策略进行更新; 和 /或,
与所述通信系统互通的外部通信系统通过控制模块与该控制模块连 接的数据库交互资源分配策略。
36、 根据权利要求 1、 11或 25所述的方法, 其特征在于, 所述多方 通信业务为蜂窝系统中按键即说 PoC业务、 消息 Message业务或会议 Conference业务。
37、 一种资源分配策略系统, 设置于包括会话集中控制单元和媒体 处理单元的通信系统中, 其特征在于, 该系统包括:
资源分配策略提供系统, 用于保存资源分配策略, 从所述会话集中 控制单元接收资源分配策略提取请求, 提取资源分配策略并下发至资源 分配策略执行系统;
资源分配策略执行系统, 用于按接收到的资源分配策略发送资源分 配命令至所述媒体处理单元。
38、 根据权利要求 37所述的系统, 其特征在于, 所述资源分配策 略提供系统进一步连接用户设备 UE、 和 /或所述通信系统的操作维护系 统、 和 /或与所述通信系统互通的外部通信系统。
39、 根据权利要求 38 所述的系统, 其特征在于, 所述资源分配策 略提供系统包括:
资源分配策略控制系统, 从所述会话集中控制单元接收所述资源分 配策略提取清求, 从资源分配策略数据库系统提取资源分配策略, 将资 源分配策略直接或通过所述会话集中控制单元下发至所述资源分配策 略执行系统; 连接 UE、 和 /或所述操作维护系统、 和 /或所述外部通信系 统, 更新资源分配策略数据库系统保存的资源分配策略;
资源分配策略数据库系统, 保存资源分配策略, 与所述资源分配策 略控制系统交互资源分配策略。
40、 根据权利要求 39所述的系统, 其特征在于, 所述资源分配策 略控制系统由一个以上控制模块组成; 所述资源分配策略数据库系统由 一个以上用于保存资源分配策略的数据库组成; 所述资源分配策略执行 系统由一个以上执行模块组成;
所述控制模块, 从所述会话集中控制单元接收资源分配策略提取请 求, 从自身连接的数据库提取资源分配策略, 将资源分配策略发送至对 应的执行模块、 或者通过所述会话集中控制单元发送至对应的执行模 块; 与 UE、 和 /或所述操作维护系统、 和 /或所述外部通信系统交互资源 分配策略, 更新自身连接的数据库所保存的资源分配策略;
所述执行模块, 根据接收到的资源分配策略发送资源分配命令至对 应的媒体处理单元。
41、 根据权利要求 40所述的系统, 其特征在于, 在所述资源分配 策略控制系统中进一步设置一个以上的代理控制模块;
所述代理控制模块, 将来自所述会话集中控制单元的资源分配策略 提取请求发送至对应的控制模块, 将来自所述控制模块的资源分配策略 直接、 或通过所述会话集中控制单元发送给对应的执行模块, 转发 UE、 和 /或所述操作维护系统、 和 /或所述外部通信系统与所述控制模块之间 交互的资源分配策略信息。
42、 根据权利要求 40所述的系统, 其特征在于, 所述会话集中控 制单元与唯一的控制模块绑定, 且所述控制模块与一个以上会话集中控 制单元绑定, 所述向控制模块发送资源分配策略提取请求的会话集中控 制单元为与该控制模块绑定的会话集中控制单元。
43、 根据权利要求 40至 42任一项所述的系统, 其特征在于, 所述 一个以上的控制模块之间进一步相连, 各个相连的控制模块之间进一步 用于交互资源分配策略。
44、 根据权利要求 40至 42任一项所述的系统, 其特征在于, 所述 控制模块由扩展标记语言 XML文件管理服务器 XDMS来实现。
45、 根据权利要求 37至 39任一项所述的系统, 其特征在于, 所述 资源分配策略提供系统由 DMS来实现。
46、 根据权利要求 40至 42任一项所述的系统, 其特征在于, 所述 执行模块进一步用于发送资源分配通知至 UE。
47、 根据权利要求 37至 40任一项所述的系统, 其特征在于, 所述 通信系统为 PoC业务通信系统,所述会话集中控制单元与其对应的媒体 处理单元均集成于当前 PoC业务的控制 PoC服务器中; 或者,
所述通信系统为 Conference业务通信系统, 所述媒体处理单元集成 于媒体资源功能实体 MRF中,所述会话集中控制单元集成于 Conference 服务器。
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