WO2010066174A1 - 非跨接彩振通信的方法、终端及*** - Google Patents

非跨接彩振通信的方法、终端及*** Download PDF

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Publication number
WO2010066174A1
WO2010066174A1 PCT/CN2009/075255 CN2009075255W WO2010066174A1 WO 2010066174 A1 WO2010066174 A1 WO 2010066174A1 CN 2009075255 W CN2009075255 W CN 2009075255W WO 2010066174 A1 WO2010066174 A1 WO 2010066174A1
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WO
WIPO (PCT)
Prior art keywords
called terminal
color vibration
color
server
message
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Application number
PCT/CN2009/075255
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English (en)
French (fr)
Inventor
杨健
陈国乔
张惠萍
Original Assignee
深圳华为通信技术有限公司
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Publication of WO2010066174A1 publication Critical patent/WO2010066174A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M3/00Automatic or semi-automatic exchanges
    • H04M3/02Calling substations, e.g. by ringing
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M3/00Automatic or semi-automatic exchanges
    • H04M3/42Systems providing special services or facilities to subscribers
    • H04M3/42017Customized ring-back tones

Definitions

  • the present invention relates to a network communication technology, and in particular, to a method, a terminal, and a system for implementing a CRT (Customized Ring Tone) service on a CS (Circuit Switch) domain.
  • CRT Customerized Ring Tone
  • CS Circuit Switch
  • the CRT service refers to the calling terminal calling the called terminal.
  • the ringing tone that the called terminal thinks is not the ringing tone stored and set by the called terminal, but the color burst customized by the calling terminal.
  • the CRBT (Customized Ring Back Tone) service applied to the CS domain is customized by the called user.
  • the system provides music to the calling terminal while the called terminal rings. Advertising, etc., to replace the ordinary ring back tone business.
  • the embodiment of the present invention provides a method, a terminal, a color vibration server and a communication system for implementing non-cross-connected color vibration communication on the CS domain.
  • a method for implementing a circuit domain non-cross-connected color burst comprising: sending a call message carrying a color vibration identifier to a called terminal;
  • a color vibration server including: a call message sending module, configured to send a call message carrying a color vibration identifier to the called terminal, and a channel module, configured to establish a communication channel between the color vibration server and the called terminal according to the response message of the called terminal;
  • the multimedia data sending module is configured to send the color burst multimedia data to the called terminal through the communication channel.
  • a communication terminal including:
  • a receiving module configured to receive a call message carrying a color vibration identifier, and configured to receive the delivered multimedia multimedia data after establishing a communication channel with the color vibration server;
  • a sending module configured to send a response message to the color vibration server after the receiving module receives the call message carrying the color vibration identifier
  • a communication module configured to establish a communication channel with the color vibration server after the sending module sends a response message to the color vibration server.
  • another color communication communication system including a calling terminal, a called terminal, a color vibration server, a switch, and a home location register.
  • the color vibration server is configured to send a call message carrying a color vibration identifier to the called terminal, establish a communication channel with the called terminal according to the response message of the called terminal, and send the communication channel to the called terminal, and send the communication channel to the called terminal.
  • Color burst multimedia data is configured to send a call message carrying a color vibration identifier to the called terminal, establish a communication channel with the called terminal according to the response message of the called terminal, and send the communication channel to the called terminal, and send the communication channel to the called terminal.
  • the color vibration realizing method, the color vibration server, the communication terminal, and the color vibration communication system of the embodiment of the present invention can implement non-cross-connected color vibration communication on the CS domain, so that the service call channel between the calling terminal and the called terminal
  • the color vibration server is not required to be docked, which saves the resource consumption of the color vibration server.
  • FIG. 1 is a schematic flow chart of an embodiment of a method for implementing color vibration provided by the present invention
  • FIG. 2 is a schematic flowchart of an embodiment of a method for implementing color vibration provided by the present invention
  • FIG. 3 is a schematic diagram of a non-cross-connected color vibration provided by the present invention.
  • FIG. 4 is a schematic flowchart diagram of an embodiment of a method for receiving non-cross-connected color vibration according to the present invention;
  • FIG. FIG. 5 is a structural block diagram of an embodiment of a color vibration server provided by the present invention;
  • FIG. 6 is a structural block diagram of an embodiment of a color vibration server provided by the present invention.
  • FIG. 7 is a structural block diagram of an embodiment of a communication terminal provided by the present invention.
  • FIG. 8 is a structural block diagram of an embodiment of a communication terminal provided by the present invention.
  • FIG. 9 is a schematic diagram of an embodiment of a color vibration communication system provided by the present invention. detailed description
  • FIG. 1 is a schematic flow chart of an embodiment of a method for implementing color vibration provided by the present invention.
  • the method for implementing the color vibration in this embodiment includes the following steps:
  • S01 Send a call message carrying the color vibration identifier to the called terminal.
  • S02 Establish a communication channel with the called terminal according to the response message of the called terminal.
  • the color vibration can be implemented on the CS domain.
  • FIG. 2 is a schematic flow chart of an embodiment of a method for implementing color vibration provided by the present invention.
  • the method for implementing the color vibration of the embodiment includes the following steps:
  • the calling user (UE A) initiates a voice call or video telephone call to switch A (MSC SEVER A) through a SETUP (Initiation Call Setup) message;
  • the switch A queries the home location register (HLR) for the color registration information of the calling user and the status of the terminal of the called user (UE B), for example, whether the called terminal is in the service area, whether the call is in the middle or the like.
  • HLR home location register
  • the home location register is a database managed by the mobile user, and each mobile user should register in its home location register;
  • the home location register queries the switch B for the status of the called terminal, such as whether it is in the service area, whether it is in a call, whether it is powered on, or the like;
  • the switch B returns the status of the called terminal, such as whether it is in the service area, whether it is in the call, whether the power is turned on, etc., to the home location register;
  • the home location register will be the status of the called terminal, such as whether in the service area, whether in the call, whether the power is turned on, and the status information, and the caller's color ring signing information is sent to the switch A;
  • switch A sends a Call_Proceeding message to the calling user's terminal
  • switch A sends an IAM (Initial Address Message) to the color vibration server. Address resolution) message, and carries the signing information identifier of the color vibration;
  • IAM Initial Address Message
  • the color vibration server sends an IAM message to the switch B, and carries the signing information of the color vibration message;
  • switch B sends Paging (paging message) to the called terminal;
  • the switch B sends the SETUP message carrying the color vibration identifier to the called terminal, and may carry the color vibration identifier in the UUI (User to User Information) field in the SETUP message, or the Facility in the SETUP message.
  • the IE (Facilities Information Element) field carries a color vibration identifier, or carries a color vibration indicator in a Facility message, indicating that the current call is a CRT call, and the called terminal is required to start the color vibration mode; Query whether the called terminal supports non-crossover communication mode;
  • the called terminal sends a CALL_CONFIRMED (call acknowledgment information) to the switch B.
  • the UUI field in the CALL_CONFIRMED may carry a response message, where the message may carry a response message to indicate whether the called terminal supports the color vibration or accepts the color vibration.
  • the response message is "CRT_YES”, indicating that the called terminal supports the color vibration and accepts the color vibration; the response message is "CRT_NO", indicating that the called terminal does not support the color vibration or does not accept the color vibration, and the called terminal performs local ringing.
  • steps S117, S118, and S119 are not performed, and the called terminal performs voice communication or video telephone communication with the calling terminal; if the carrying is empty, indicating that the called terminal does not support the color vibration, the called terminal performs local ringing. And the following steps S117, S118, and S119 are not performed, and the called terminal performs voice communication or video telephone communication with the calling terminal;
  • the called terminal sends an Alerting message to the switch B, indicating that the called terminal is currently ringing, and the message may carry a response message to indicate whether the called terminal supports the color vibration or accepts the color vibration, such as
  • the response message is "CRT_YES”, indicating that the called terminal supports the color vibration and accepts the color vibration;
  • the response message is "CRT_NO”, indicating that the called terminal does not support the color vibration or does not accept the color vibration, then the called terminal performs local ringing, and
  • the following steps S117, S118, and S119 are not performed, and the called terminal performs voice communication or video telephone communication with the calling terminal; if the carrying is empty, indicating that the called terminal does not support the color vibration, the called terminal performs local ringing, and
  • the following steps S117, S118, and S119 are not performed, and the called terminal performs voice communication or video telephone communication with the calling terminal;
  • the switch B sends an ACM (Address Complete Message Address Resolution Complete Information) to the color vibration server, where the message may carry a response message to indicate whether the called terminal supports the color If the response message is "CRT_YES", the responding terminal supports the color vibration and accepts the color vibration; the response message is "CRT_NO", indicating that the called terminal does not support the color vibration or does not accept the color vibration, then The terminal is called to perform local ringing, and the following steps S117, S118, and S119 are not performed, and the called terminal performs voice communication or video telephone communication with the calling terminal; if the carrying is empty, it indicates that the called terminal does not support the color vibration, then The terminal is called to perform local ringing, and the following steps S117, S118, and S119 are not performed, and the called terminal performs voice communication or videophone communication with the calling terminal;
  • ACM Address Complete Message Address Resolution Complete Information
  • the color vibration server sends an ACM message to switch A;
  • the switch A sends an alerting message to the terminal of the calling user, indicating that the current state of the called terminal is ringing;
  • the color vibration server establishes a communication channel with the called terminal; or the color vibration server establishes a H.245 process with the called terminal, and the color vibration server establishes an H.245 channel with the called terminal;
  • the S118 color vibration server sends the multimedia data to the called terminal
  • the called terminal accepts the color vibration business, and plays and processes the color vibration;
  • the called terminal accepts the call request, and the called terminal sends a Connect (connect) message to the switch B;
  • the switch B sends an ANM (Answer Message) message to the color vibration server, indicating that the called terminal picks up the phone;
  • ANM Answer Message
  • switch B sends a Connect_ACK (Connect Acknowledgement) message to the called terminal;
  • the color vibration server stops sending the color burst multimedia data to the called terminal, and sends an ANM message to the switch A;
  • the switch A sends a Connect message to the calling terminal, to indicate that the called terminal picks up the phone;
  • the communication channel of the color vibration server and the called terminal is removed; or the H.245 communication channel of the color vibration server and the called terminal is removed;
  • the calling terminal establishes a communication channel with the called terminal to perform voice communication, or the calling terminal establishes an H.245 communication channel with the called terminal to perform videophone communication.
  • At least one of the CALL_CONFIRMED message in step S112, the Alerting message in step S113, and the ACM message in step S114 carries at least one response message.
  • the color vibration is implemented in the non-span mode on the CS domain, and the color vibration server detects that the called terminal is off-hook, and then disconnects from the called terminal.
  • Communication The channel is configured to establish a communication channel between the called terminal and the calling terminal, so that the service call channel between the calling terminal and the called terminal does not need to be connected to the color vibration server, thereby saving the resource consumption of the color vibration server and reducing the resource consumption.
  • the cost of the color vibration server increases the time for establishing a service call between the calling terminal and the called terminal.
  • the method for non-cross-connected color burst communication of this embodiment further includes steps after step S113:
  • the called terminal sends a Connect message to the switch B, where the message may carry a response message to indicate whether the called terminal supports the color vibration or whether to accept the color vibration.
  • the response message is "CRT_YES", indicating that the called terminal supports the color vibration.
  • the response message is "CRT_NO", indicating that the called terminal does not support the color vibration or does not accept the color vibration, then the called terminal performs local ringing, and does not perform the following steps S217, S218, S219, called The terminal performs voice communication or video telephone communication with the calling terminal; if the carrying is empty, indicating that the called terminal does not support the color vibration, the called terminal performs local ringing, and does not perform the following steps S217, S218, S219, called The terminal performs voice communication or video telephone communication with the calling terminal;
  • the switch B sends an ANM message to the color vibration server, where the message may carry a response message to indicate whether the called terminal supports the color vibration or accepts the color vibration.
  • the response message is "CRT_YES", indicating that the called terminal supports the color vibration.
  • the response message is "CRT_NO", indicating that the called terminal does not support the color vibration or does not accept the color vibration, then the called terminal performs local ringing, and does not perform the following steps S217, S218, S219, called The terminal performs voice communication or video telephone communication with the calling terminal; if the carrying is empty, indicating that the called terminal does not support the color vibration, the called terminal performs local ringing, and does not perform the following steps S217, S218, S219, called The terminal performs voice communication or video telephone communication with the calling terminal;
  • switch B sends a Connect_ACK to the called terminal
  • the color vibration response message may be carried by steps S113a and S113b to trigger the color vibration server to establish a communication channel with the called terminal.
  • FIG. 3 is a schematic flow chart of an embodiment of a method for receiving non-crossover color vibration according to the present invention. As shown in FIG. 3, the method for non-cross-connected color vibration receiving of this embodiment includes:
  • S21 Receive a call message carrying a color vibration indicator.
  • the called terminal receives the call message carrying the color vibration identifier, and the call may be a voice call or a video telephone call, and then sends a response message according to the call message, and establishes a response message with the color vibration server.
  • the communication channel which may be a voice communication channel or an H.245 video telephone communication channel, through which the multimedia color burst data delivered by the color tone server is received.
  • the receiving of the color vibration can be implemented on the CS domain.
  • the response message sent by the called terminal according to the call message includes indicating that the called terminal supports the color vibration.
  • the response message sent by the called terminal according to the call message includes indicating that the called terminal supports non-transit mode communication.
  • FIG. 4 is a schematic flow chart of an embodiment of a method for receiving non-crossover color vibration according to the present invention. As shown in FIG. 4, the method for non-cross-connected color vibration receiving of the embodiment further includes:
  • the called terminal shields local ringing and plays the multimedia data.
  • the method further includes:
  • S25 Send an off-hook message to the color vibration server, disconnect a communication channel with the color vibration server, and establish a communication channel with the calling terminal.
  • the called terminal after receiving the color burst multimedia data sent by the color vibration server through the communication channel established with the color vibration server, the called terminal sends the color vibration according to the user's off-hook instruction.
  • the server sends an off-hook message, disconnects the communication channel with the color vibration server, establishes a communication channel with the calling terminal, and implements voice communication or video telephone communication with the calling terminal.
  • the non-cross-connected color vibration receiving method of the embodiment of the present invention can enable the called terminal to implement the color vibration in the non-span mode on the CS domain, and the called terminal disconnects from the color vibration server after being off-hook.
  • the established communication channel establishes a communication channel with the calling terminal, so that the service call channel between the calling terminal and the called terminal does not need to be connected to the color vibration server, thereby saving resource consumption of the color vibration server and reducing color
  • the cost of the server is increased, and the time for establishing a service call between the calling terminal and the called terminal is increased.
  • FIG. 5 is a structural block diagram of an embodiment of a color vibration server provided by the present invention.
  • the color vibration server of this embodiment includes:
  • the call message sending module 1 is configured to send a call message carrying the color vibration identifier to the called terminal, and the channel module 2 is configured to establish communication between the color vibration server and the called terminal according to the response message of the called terminal. channel;
  • the multimedia data sending module 3 is configured to send the color burst multimedia data to the called terminal through the communication channel.
  • the color vibration server of the embodiment of the present invention may send a call signaling with a color vibration identifier added to the called terminal, establish a communication channel with the called terminal according to the response message of the called terminal, and send the communication channel to the called terminal through the communication channel.
  • the color vibration multimedia data is sent. Therefore, the color vibration server of the embodiment of the present invention enables the calling terminal and the called terminal to implement color vibration on the CS domain.
  • FIG. 6 is a structural block diagram of a color vibration server according to an embodiment of the present invention.
  • the color vibration server further includes: an identification module 4, configured to identify the color burst subscription information, to trigger the call message sending module 1 to the called terminal. Sending a call message carrying a color vibration indicator;
  • the control module 5 is configured to control the channel module 2 to disconnect the communication channel established with the called terminal when detecting that the called terminal is off-hook, so that the communication channel is re-established between the called terminal and the calling terminal.
  • the triggering call message sending module 1 sends a call message carrying the color vibration identifier to the called terminal through the control module 5
  • the called terminal can be detected to go off-hook, and the control channel module 2 disconnects the communication channel established between the called terminal and the called terminal, so that the communication channel is re-established between the called terminal and the calling terminal. Therefore, the embodiment of the present invention
  • the color vibration server can enable the calling terminal and the called terminal to implement the color vibration in a non-crossover manner on the CS domain, and the service call channel between the calling terminal and the called terminal does not need to be connected by the color vibration server, thereby saving color.
  • the resource consumption of the vibration server reduces the cost of the color vibration server and improves the time for establishing a service call between the calling terminal and the called terminal.
  • the identification module 4 is further configured to identify a response message of the called terminal that accepts the color vibration.
  • the color vibration server of the embodiment of the present invention can identify the response message of the called terminal receiving the color vibration, and when the called terminal supports the color vibration, establish a communication channel with the called terminal, and send the color burst multimedia data. In the case that the called terminal does not support the color vibration, the communication channel is not established with the called terminal.
  • the identification module 4 is further configured to identify the called terminal Support for non-crossover communication mode response messages.
  • the color vibration server of the embodiment of the present invention can identify the response message of the called terminal supporting the non-crossover communication mode.
  • the called terminal picks up the phone, and tears down the called terminal. Communication channel; If the called terminal does not support non-crossover, the called terminal picks up the phone, and does not remove the communication channel with the called terminal.
  • FIG. 7 is a structural block diagram of an embodiment of a communication terminal provided by the present invention.
  • the structural block diagram of the communication terminal of this embodiment includes:
  • the receiving module 21 is configured to receive a call message carrying the color vibration identifier, and configured to receive the delivered multimedia multimedia data after establishing a communication channel with the color vibration server;
  • the sending module 22 is configured to send a response message to the color vibration server after the receiving module receives the call message carrying the color vibration identifier;
  • the communication module 23 is configured to establish a communication channel with the color vibration server after the sending module sends a response message to the color vibration server.
  • the communication terminal of this embodiment can receive the call message carrying the color vibration indicator through the receiving module 21, and the sending module 22 sends a response message to the color vibration server, and the communication module 23 establishes a communication channel with the color vibration server, and the receiving module 1 passes The communication channel receives the color burst multimedia data sent by the color tone server. Therefore, the communication terminal of this embodiment can implement color burst on the CS domain.
  • FIG. 8 is a structural block diagram of an embodiment of a communication terminal provided by the present invention.
  • the communication terminal in this embodiment further includes:
  • the playing module 24 is configured to block the local ringing and play the multimedia data of the color vibration.
  • the communication terminal in the embodiment of the present invention can mask the local ringing and play the multimedia data sent by the color vibration server.
  • the communication terminal in this embodiment further includes:
  • the communication control module 25 is configured to send an off-hook message to the color vibration server, and control the communication module 23 to disconnect the communication channel with the color vibration server, and control the communication module 23 and the calling terminal.
  • the communication channel is re-established between.
  • the communication terminal of the embodiment sends the off-hook message of the user to the color vibration server through the communication control module 25, and controls the communication module 23 to disconnect the communication channel with the color vibration server, and also controls the communication module 23 and the calling terminal.
  • the communication channel is re-established between the communication terminals, so that the communication terminal of the present invention can implement the color vibration in a non-crossover manner on the CS domain, and the service call channel between the calling terminal and the calling terminal does not need color.
  • the vibration server is docked, which saves the resource consumption of the color vibration server, reduces the cost of the color vibration server, and improves the time for establishing a service call between the calling terminal and the called terminal.
  • FIG. 9 is a schematic diagram of an embodiment of a color vibration communication system provided by the present invention.
  • the color vibration communication system of this embodiment includes a calling terminal 91, a called terminal 96, a color vibration server 93, a switch A 92, a switch B 95, and a home location register 94, wherein the color vibration server The 93 is configured to send a call message carrying the color vibration identifier to the called terminal 96, establish a communication channel with the called terminal 96 according to the response message of the called terminal 96, and send a color tone to the called terminal 96.
  • Multimedia data
  • the called terminal 96 is configured to receive a call message carrying a color vibration identifier, send a response message to the color vibration server 93, and receive the delivered color burst multimedia data after establishing a communication channel with the color vibration server 93.
  • the color vibration communication system of the embodiment of the invention can enable the communication terminal to implement color burst on the CS domain.
  • the response message includes a representation of the called terminal
  • the color vibration server 93 is further configured to: when detecting that the called terminal 96 is off-hook, disconnect the communication channel established with the called terminal 96, so that the communication channel is re-established between the called terminal 96 and the calling terminal 91;
  • the called terminal 96 is further configured to send an off-hook message to the color vibration server 93, disconnect the communication channel with the color vibration server 93, and re-establish a communication channel with the calling terminal 91.
  • the home location register 94 is configured to store the color burst subscription information of the calling terminal 91.
  • the color vibration communication system of the embodiment can implement the color vibration in the non-span mode on the CS domain, so that the service call channel between the calling terminal and the called terminal does not need to be connected by the color vibration server, thereby saving the color vibration server.
  • Resource consumption reduces the cost of the color vibration server and increases the time for establishing a service call between the calling terminal and the called terminal.
  • the storage medium may be a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).
  • ROM read-only memory
  • RAM random access memory

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Description

非跨接彩振通信的方法、 终端及***
本申请要求于 2008年 12月 11日提交中国专利局、申请号 200810185185.2、 发明名称为"非跨接彩振通信的方法、 终端及***"的中国专利申请的优先权, 其全部内容通过引用结合在本申请中。
技术领域
本发明涉及一种网络通信技术, 尤其涉及应用于 CS ( Circuit Switch, 电 路切换)域上实现 CRT ( Customized Ring Tone, 彩振)业务的方法、 终端及 ***。 背景技术
CRT 业务是指主叫终端呼叫被叫终端, 被叫终端想起的振铃音不是被叫 终端所存储并设置的振铃音, 而是由主叫终端定制的彩振。 目前在 CS域上得 到应用的 CRBT ( Customized Ring Back Tone, 彩铃 )业务, 由被叫用户定制, 当主叫终端呼叫被叫终端, ***在被叫终端振铃的同时为主叫终端提供音乐、 广告等来代替普通的回铃音的业务。
发明人在实施本发明的过程中, 至少发现现有技术存在以下问题: 还没有 在 CS域上非跨接彩振通信的方法、 终端及***。 发明内容
为解决上述不能在 CS域上实现非跨接彩振通信的问题, 本发明实施例提 供了在 CS域上实现非跨接彩振通信的方法、 终端、 彩振服务器及通信***。
一方面, 提供了一种电路域非跨接彩振实现的方法, 该方法包括: 向被叫终端发送携带彩振标识的呼叫消息;
根据所述被叫终端的响应消息与被叫终端建立通信信道;
向被叫终端下发彩振多媒体数据。
另一方面, 提供另一种电路域非跨接彩振接收的方法, 包括:
接收携带彩振标识的呼叫消息;
发送响应消息, 与彩振服务器建立通信信道;
接收所述彩振服务器下发的彩振多媒体数据。
另一方面, 提供一种彩振服务器, 包括: 呼叫消息发送模块, 用于向被叫终端发送携带彩振标识的呼叫消息; 信道模块,用于根据所述被叫终端的响应消息建立所述彩振服务器与被叫 终端之间的通信信道;
多媒体数据发送模块,用于通过上述通信信道向上述被叫终端下发彩振多 媒体数据。
另一方面, 提供一种通信终端, 包括:
接收模块, 用于接收携带彩振标识的呼叫消息, 以及用于在与彩振服务器 建立通信信道之后接收下发的彩振多媒体数据;
发送模块, 用于在所述接收模块接收到携带彩振标识的呼叫消息之后, 向 所述彩振服务器发送响应消息;
通信模块, 用于在所述发送模块向所述彩振服务器发送响应消息之后, 与 彩振服务器建立通信信道。
另一方面, 提供另一种彩振通信***, 包括主叫终端、 被叫终端、 彩振服 务器、 交换机与归属位置寄存器,
所述彩振服务器用于向所述被叫终端发送携带彩振标识的呼叫消息,根据 所述被叫终端的响应消息与所述被叫终端建立通信信道,以及向所述被叫终端 下发彩振多媒体数据。
通过本发明实施例的彩振实现方法、彩振服务器、通信终端及彩振通信系 统, 可以在 CS域上实现非跨接彩振通信, 使主叫终端与被叫终端之间的业务 呼叫信道不需要彩振服务器进行对接, 节省了彩振服务器的资源消耗。 附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施 例或现有技术描述中所需要使用的附图作一筒单地介绍, 显而易见地, 下面描 述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不 付出创造性劳动性的前提下, 还可以根据这些附图获得其他的附图。
图 1为本发明提供的实现彩振方法的一个实施例的流程示意图; 图 2为本发明提供的实现彩振方法的一个实施例的流程示意图; 图 3为本发明提供的非跨接彩振接收的方法的一个实施例的流程示意图; 图 4为本发明提供的非跨接彩振接收的方法的一个实施例的流程示意图 图 5为本发明提供的彩振服务器的一个实施例的结构框图;
图 6为本发明提供的彩振服务器的一个实施例的结构框图;
图 7为本发明提供的通信终端的一个实施例的结构框图;
图 8为本发明提供的通信终端的一个实施例的结构框图;
图 9为本发明提供的彩振通信***的一个实施例的示意图。 具体实施方式
图 1为本发明提供的实现彩振方法的一个实施例的流程示意图。
如图 1所示, 该实施例实现彩振方法包括步骤:
S01: 向被叫终端发送携带彩振标识的呼叫消息;
S02: 根据所述被叫终端的响应消息与被叫终端建立通信信道;
S03: 向被叫终端下发彩振多媒体数据。
通过本实施例的实现彩振方法, 可以在 CS域上实现彩振。
图 2为本发明提供的实现彩振方法的一个实施例的流程示意图。
如图 2所示, 该实施例的实现彩振方法, 包括步骤:
5101 , 主叫用户 (UE A )通过 SETUP (发起呼叫建立) 消息发起一个语 音呼叫或视频电话呼叫至交换机 A ( MSC SEVER A );
5102, 交换机 A向归属位置寄存器(HLR )查询主叫用户的彩振签约信 息及被叫用户 (UE B ) 的终端的状态, 如, 被叫终端是否在服务区、 是否在 通话中等信息, 所述归属位置寄存器为移动用户管理的数据库,每个移动用户 都应在其归属的位置寄存器中注册登记;
5103, 归属位置寄存器向交换机 B 查询被叫终端的状态, 如是否在服务 区、 是否在通话中、 是否开机等状态信息;
5104, 交换机 B将被叫终端的状态, 如是否在服务区、 是否在通话中、 是否开机等状态信息返回给归属位置寄存器;
5105, 归属位置寄存器将被叫终端的状态, 如是否在服务区、 是否在通话 中、 是否开机等状态信息, 以及主叫用户的彩振签约信息发送至交换机 A;
5106, 交换机 A向主叫用户的终端发送 Call_Proceeding (呼叫进行中) 信息; 同时
S107, 交换机 A向彩振服务器发送 IAM ( Initial Address Message, 初始 地址解析) 消息, 并携带彩振的签约信息标识;
5108, 彩振服务器向交换机 B发送 IAM消息, 并携带彩振的签约信息标 识;
5109, 交换机 B向被叫终端发送 Paging (寻呼消息);
S110, 被叫终端收到寻呼消息, 则向服务器发送 Paging rsp (寻呼响应);
S111 ,交换机 B向被叫终端发送携带有彩振标识的 SETUP消息,可以在 SETUP 消息中的 UUI ( User to User Information, 自定义用户信息 )字段携带彩振标识, 或这在 SETUP消息中的 Facility IE ( Facility Information Element, 补充业务指 示信息元素)字段携带彩振标识, 或者在 Facility (补充业务指示) 消息中携 带彩振标识, 表示当前呼叫为 CRT呼叫, 要求被叫终端启动彩振模式; 同时 查询被叫终端是否支持非跨接通信方式;
5112 , 被叫终端向交换机 B发送 CALL_CONFIRMED (呼叫确认信息), 可以在 CALL_CONFIRMED中的 UUI字段携带响应消息, 该消息中可以携带 响应消息用以表示被叫终端是否支持彩振或是否接受彩振, 如, 响应消息为 "CRT_YES"表示被叫终端支持彩振且接受彩振; 响应消息为 "CRT_NO"则 表示被叫终端不支持彩振或不接受彩振, 则被叫终端进行本地振铃, 并且不执 行下述的 S117、 S118、 S119步骤, 被叫终端与主叫终端进行语音通信或视频 电话通信; 携带为空, 表示被叫终端不支持彩振, 则被叫终端进行本地振铃, 并且不执行下述的 S117、 S118、 S119步骤, 被叫终端与主叫终端进行语音通 信或视频电话通信;
5113, 被叫终端向交换机 B发送 Alerting (振铃消息), 表示被叫终端当 前正在进行振铃,该消息中可以携带响应消息用以表示被叫终端是否支持彩振 或是否接受彩振, 如, 响应消息为 "CRT_YES" 表示被叫终端支持彩振且接 受彩振; 响应消息为 "CRT_NO" 则表示被叫终端不支持彩振或不接受彩振, 则被叫终端进行本地振铃, 并且不执行下述的 S117、 S118、 S119步骤, 被叫 终端与主叫终端进行语音通信或视频电话通信; 携带为空,表示被叫终端不支 持彩振, 则被叫终端进行本地振铃, 并且不执行下述的 S117、 S118、 S119步 骤, 被叫终端与主叫终端进行语音通信或视频电话通信;
5114, 交换机 B向彩振服务器发送 ACM ( Address Complete Message地 址解析完成信息), 该消息中可以携带响应消息用以表示被叫终端是否支持彩 振或是否接受彩振, 如, 响应消息为 "CRT_YES" 表示被叫终端支持彩振且 接受彩振; 响应消息为 "CRT_NO"则表示被叫终端不支持彩振或不接受彩振, 则被叫终端进行本地振铃, 并且不执行下述的 S117、 S118、 S119步骤, 被叫 终端与主叫终端进行语音通信或视频电话通信; 携带为空,表示被叫终端不支 持彩振, 则被叫终端进行本地振铃, 并且不执行下述的 S117、 S118、 S119步 骤, 被叫终端与主叫终端进行语音通信或视频电话通信;
5115, 彩振服务器向交换机 A发送 ACM消息;
5116, 交换机 A向主叫用户的终端发送 Alerting消息,表示被叫终端的当 前状态为正在振铃;
S117,彩振服务器与被叫终端建立通信信道; 或彩振服务器与被叫终端建 立 H.245过程, 彩振服务器与被叫终端建立 H.245信道;
S118彩振服务器向被叫终端下发彩振多媒体数据;
5119, 被叫终端接受彩振业务, 进行彩振的播放及处理;
5120,被叫终端接受呼叫请求,被叫终端向交换机 B发送 Connect (连接) 消息;
5121 , 交换机 B向彩振服务器发送 ANM ( Answer Message, 应答信息) 消息, 表示被叫终端摘机; 同时
5122,交换机 B向被叫终端发送 Connect_ACK ( Connect Acknowledgement 连接确认) 消息;
S123, 彩振服务器停止向被叫终端发送彩振多媒体数据, 向交换机 A发 送 ANM消息;
5124, 交换机 A向主叫终端发送 Connect消息, 以表示被叫终端摘机;
5125 ,彩振服务器与被叫终端的通信信道拆除; 或彩振服务器与被叫终端 的 H.245通信信道拆除;
S126, 主叫终端与被叫终端建立通信信道, 进行语音通信; 或主叫终端与 被叫终端建立 H.245通信信道, 进行视频电话通信。
本实施例中, 步骤 S 112中的 CALL_CONFIRMED消息、 步骤 S 113中的 Alerting消息、 步骤 S114中的 ACM消息中至少有一个携带响应消息。
本实施例的非跨接彩振通信的方法,在 CS域上以非跨接方式实现了彩振, 由于彩振服务器检测到被叫终端摘机之后,会断开与被叫终端之间建立的通信 信道,使得被叫终端与主叫终端之间建立通信信道,从而使主叫终端与被叫终 端之间的业务呼叫信道不需要彩振服务器进行对接,节省了彩振服务器的资源 消耗, 降低了彩振服务器的成本,提高主叫终端与被叫终端之间的业务呼叫建 立的时间。
如图 2所示, 该实施例的非跨接彩振通信的方法在步骤 S113之后, 还包 括步骤:
S113a, 被叫终端向交换机 B发送 Connect消息, 该消息中可以携带响应 消息用以表示被叫终端是否支持彩振或是否接受彩振, 如, 响应消息为 "CRT_YES"表示被叫终端支持彩振且接受彩振; 响应消息为 "CRT_NO"则 表示被叫终端不支持彩振或不接受彩振, 则被叫终端进行本地振铃, 并且不执 行下述的 S217、 S218、 S219步骤, 被叫终端与主叫终端进行语音通信或视频 电话通信; 携带为空, 表示被叫终端不支持彩振, 则被叫终端进行本地振铃, 并且不执行下述的 S217、 S218、 S219步骤, 被叫终端与主叫终端进行语音通 信或视频电话通信;
S113b, 交换机 B向彩振服务器发送 ANM消息, 该消息中可以携带响应 消息用以表示被叫终端是否支持彩振或是否接受彩振, 如, 响应消息为 "CRT_YES"表示被叫终端支持彩振且接受彩振; 响应消息为 "CRT_NO"则 表示被叫终端不支持彩振或不接受彩振, 则被叫终端进行本地振铃, 并且不执 行下述的 S217、 S218、 S219步骤, 被叫终端与主叫终端进行语音通信或视频 电话通信; 携带为空, 表示被叫终端不支持彩振, 则被叫终端进行本地振铃, 并且不执行下述的 S217、 S218、 S219步骤, 被叫终端与主叫终端进行语音通 信或视频电话通信;
S113c, 交换机 B向被叫终端发送 Connect_ACK;
在本实施例中, 可以由步骤 S113a、 S113b携带彩振响应消息, 触发彩振 服务器与被叫终端建立通信信道。
图 3为本发明提供的非跨接彩振接收的方法的一个实施例的流程示意图。 如图 3所示, 该实施例的非跨接彩振接收的方法包括:
S21: 接收携带彩振标识的呼叫消息;
S22: 发送响应消息, 与彩振服务器建立通信信道;
S23: 接收所述彩振服务器下发的彩振多媒体数据。 该实施例的非跨接彩振接收的方法,由被叫终端接收携带彩振标识的呼叫 消息, 此呼叫可以是语音呼叫或者视频电话呼叫, 然后根据呼叫消息发送响应 消息, 与彩振服务器建立通信信道, 此通信信道可以为语音通信信道或 H.245 视频电话通信信道, 通过该信道接收彩振服务器下发的多媒体彩振数据。
本发明实施例的非跨接彩振接收的方法,可以在 CS域上实现彩振的接收。 本发明提供的非跨接彩振接收的方法的一个实施例中,被叫终端根据呼叫 消息发送的响应消息, 包括表示被叫终端支持彩振。
本发明提供的非跨接彩振接收的方法的一个实施例中,被叫终端根据呼叫 消息发送的响应消息, 包括表示被叫终端支持非跨界方式通信。
图 4为本发明提供的非跨接彩振接收的方法的一个实施例的流程示意图。 如图 4所示, 该实施例的非跨接彩振接收的方法还包括:
S24: 屏蔽本地振铃, 播放所述彩振多媒体数据。
该实施例的非跨接彩振接收的方法,被叫终端屏蔽本地振铃,播放所述彩 振多媒体数据。
在本发明提供的非跨接彩振接收的方法的一个实施例中,如图 4所示,还 包括:
S25: 向所述彩振服务器发送摘机消息, 并断开与所述彩振服务器之间的 通信信道, 与主叫终端之间建立通信信道。
本发明实施例的非跨接彩振接收的方法,在通过与彩振服务器建立的通信 信道接收彩振服务器下发的彩振多媒体数据之后,被叫终端根据用户的摘机指 令, 向彩振服务器发送摘机消息, 断开与彩振服务器的通信信道, 与主叫终端 建立通信信道, 实现与主叫终端的语音通信或视频电话通信。
本发明实施例的非跨接彩振接收的方法, 可以使被叫终端在 CS域上以非 跨接方式实现了彩振, 由于被叫终端摘机之后,会断开与彩振服务器之间建立 的通信信道, 与主叫终端之间建立通信信道,从而使主叫终端与被叫终端之间 的业务呼叫信道不需要彩振服务器进行对接, 节省了彩振服务器的资源消耗, 降低了彩振服务器的成本,提高主叫终端与被叫终端之间的业务呼叫建立的时 间。
图 5为本发明提供的彩振服务器的一个实施例的结构框图。
如图 5所示, 该实施例的彩振服务器包括: 呼叫消息发送模块 1 , 用于向被叫终端发送携带彩振标识的呼叫消息; 信道模块 2, 用于根据所述被叫终端的响应消息建立所述彩振服务器与被 叫终端之间的通信信道;
多媒体数据发送模块 3 , 用于通过上述通信信道向上述被叫终端下发彩振 多媒体数据。
本发明实施例的彩振服务器可以向被叫终端发送添加有彩振标识的呼叫 信令,根据所述被叫终端的响应消息与被叫终端建立通信信道, 并通过此通信 信道向被叫终端发送彩振多媒体数据, 因此, 本发明实施例的彩振服务器使主 叫终端与被叫终端在 CS域上实现彩振。
图 6为本发明一个实施例的彩振服务器的结构框图。
如图 6所示,在本发明的彩振服务器的一个实施例中,彩振服务器还包括: 识别模块 4, 用于识别彩振签约信息, 以触发所述呼叫消息发送模块 1向 被叫终端发送携带彩振标识的呼叫消息;
控制模块 5 , 用于在检测到被叫终端摘机时, 控制所述信道模块 2断开与 被叫终端建立的通信信道, 以使得被叫终端与主叫终端之间重新建立通信信 道。
这样,本发明实施例的彩振服务器可通过识别模块 4识别出主叫终端的彩 振签约信息之后,触发呼叫消息发送模块 1向被叫终端发送携带彩振标识的呼 叫消息,通过控制模块 5可检测到被叫终端摘机, 并控制信道模块 2断开与被 叫终端之间建立的通信信道,以使得被叫终端与主叫终端之间重新建立通信信 道, 因此, 本发明实施例的彩振服务器可以使主叫终端与被叫终端在 CS域上 以非跨接的方式实现彩振,主叫终端与被叫终端之间的业务呼叫信道不需要彩 振服务器进行对接,节省了彩振服务器的资源消耗,降低了彩振服务器的成本, 提高主叫终端与被叫终端之间的业务呼叫建立的时间。
在本发明的彩振服务器的一个实施例中,识别模块 4还用于识别被叫终端 的接受彩振的响应消息。
这样, 本发明实施例的彩振服务器, 可以识别被叫终端的接受彩振的响应 消息, 在被叫终端支持彩振的情况下, 才与被叫终端建立通信信道, 下发彩振 多媒体数据;在被叫终端不支持彩振的情况下,则不与被叫终端建立通信信道。 在本发明的彩振服务器的一个实施例中,识别模块 4还用于识别所述被叫终端 的支持非跨接通信方式的响应消息。
这样, 本发明实施例的彩振服务器, 可以识别被叫终端的支持非跨接通信 方式的响应消息, 在被叫终端支持非跨接的情况下, 被叫终端摘机, 拆除与被 叫终端的通信信道; 在被叫终端不支持非跨接的情况下, 被叫终端摘机, 则不 拆除与被叫终端的通信信道。
图 7为本发明提供的通信终端的一个实施例的结构框图。
如图 7所示, 本实施例的通信终端的结构框图包括:
接收模块 21 , 用于接收携带彩振标识的呼叫消息, 以及用于在与彩振服 务器建立通信信道之后接收下发的彩振多媒体数据;
发送模块 22, 用于在所述接收模块接收到携带彩振标识的呼叫消息之后, 向所述彩振服务器发送响应消息;
通信模块 23 , 用于在所述发送模块向所述彩振服务器发送响应消息之后, 与彩振服务器建立通信信道。
本实施例的通信终端可以通过接收模块 21 接收携带彩振标识的呼叫消 息, 由发送模块 22向彩振服务器发送响应消息,有通信模块 23与彩振服务器 建立通信信道,并由接收模块 1通过此通信信道接收彩振服务器下发的彩振多 媒体数据, 因此本实施例的通信终端可以在 CS域上实现彩振。
图 8为本发明提供的通信终端的一个实施例的结构框图。
如图 8所示, 在本实施例的通信终端, 还包括:
播放模块 24, 用于屏蔽本地振铃, 并播放所述彩振多媒体数据。
这样, 本发明实施例的通信终端可以屏蔽掉本地的振铃,播放彩振服务器 下发的多媒体数据。
如图 6所示, 在本实施例的通信终端, 还包括:
通信控制模块 25 , 用于向所述彩振服务器发送摘机消息, 并控制所述通 信模块 23断开与所述彩振服务器之间的通信信道, 以及控制所述通信模块 23 与主叫终端之间重新建立通信信道。
本实施例的通信终端, 通过通信控制模块 25将用户的摘机消息发送给彩 振服务器, 并控制通信模块 23断开与彩振服务器之间的通信信道, 还控制通 信模块 23与主叫终端之间重新建立通信信道, 因此本发明的通信终端可以在 CS域上以非跨接的方式实现彩振, 与主叫终端之间的业务呼叫信道不需要彩 振服务器进行对接,节省了彩振服务器的资源消耗,降低了彩振服务器的成本, 提高主叫终端与被叫终端之间的业务呼叫建立的时间。
图 9为本发明提供的彩振通信***的一个实施例的示意图。
如图 9所示, 本实施例的彩振通信***包括主叫终端 91、 被叫终端 96、 彩振服务器 93、 交换机 A 92、 交换机 B 95与归属位置寄存器 94, 其中, 所述彩振服务器 93用于向所述被叫终端 96发送携带彩振标识的呼叫消息,根 据被叫终端 96的响应消息与所述被叫终端 96建立通信信道,以及向所述被叫 终端 96下发彩振多媒体数据;
所述被叫终端 96用于接收携带彩振标识的呼叫消息, 向所述彩振服务器 93发送响应消息, 以及在与彩振服务器 93建立通信信道之后接收下发的彩振 多媒体数据。
本发明实施例的彩振通信***, 可以使通信终端在 CS域上实现彩振。 在本发明的彩振通信***的一个实施例中, 响应消息包括表示被叫终端
96接受彩振或表示被叫终端 96支持非跨接通信方式的响应消息;
彩振服务器 93还用于在检测到被叫终端 96摘机时, 断开与被叫终端 96 建立的通信信道, 以使得被叫终端 96与主叫终端 91之间重新建立通信信道; 所述被叫终端 96还用于向所述彩振服务器 93发送摘机消息,并断开与所述彩 振服务器 93之间的通信信道, 以及与主叫终端 91之间重新建立通信信道。 所述归属位置寄存器 94用于存储所述主叫终端 91的彩振签约信息。
本实施例的彩振通信***可以在 CS域上以非跨接方式实现彩振, 使主叫终 端与被叫终端之间的业务呼叫信道不需要彩振服务器进行对接,节省了彩振服 务器的资源消耗, 降低了彩振服务器的成本,提高主叫终端与被叫终端之间的 业务呼叫建立的时间。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程, 是可以通过计算机程序来指令相关的硬件来完成,所述的程序可存储于一计算 机可读取存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。 其中,所述的存储介质可为磁碟、光盘、只读存储记忆体(Read-Only Memory, ROM )或随机存储记忆体(Random Access Memory, RAM )等。 对所公开的 实施例的上述说明,使本领域专业技术人员能够实现或使用本发明。对这些实 施例的多种修改对本领域的专业技术人员来说将是显而易见的,本文中所定义 的一般原理可以在不脱离本发明的精神或范围的情况下, 在其它实施例中实 现。 因此, 本发明将不会被限制于本文所示的这些实施例, 而是要符合与本文 所公开的原理和新颖特点相一致的最宽的范围。

Claims

权 利 要 求
1、 一种电路域非跨接彩振实现的方法, 其特征在于, 包括:
向被叫终端发送携带彩振标识的呼叫消息;
根据所述被叫终端的响应消息与被叫终端建立通信信道;
向被叫终端下发彩振多媒体数据。
2、 如权利要求 1所述的方法, 其特征在于, 所述呼叫消息包括: SETUP 消息即呼叫建立消息, 或 Facility消息即补充业务指示消息。
3、 如权利要求 1所述的方法, 其特征在于, 在向被叫终端发送携带彩振 标识的消息之前, 还包括: 接收主叫终端的彩振签约信息。
4、 如权利要求 1所述的方法, 其特征在于, 所述响应消息包括: 表示被 叫终端接受彩振的响应消息。
5、 如权利要求 1所述的方法, 其特征在于, 所述响应消息包括: 表示被 叫终端支持非跨接通信方式的响应消息。
6、 如权利要求 4或 5所述的方法, 其特征在于, 所述响应消息由以下消 息中的一种消息携带: Call Confirmed消息即呼叫确认消息、 ACM消息即地址 解析完成信息消息、 Connect消息即连接消息或 ANM消息即应答信息消息。
7、 如权利要求 1所述的方法, 其特征在于, 在向被叫终端下发彩振多媒 体数据之后, 还包括: 检测到被叫终端摘机, 则断开与被叫终端建立的通信信 道, 以使得被叫终端与主叫终端之间建立通信信道。
8、 一种电路域非跨接彩振接收的方法, 其特征在于, 包括:
接收携带彩振标识的呼叫消息;
发送响应消息, 与彩振服务器建立通信信道;
接收所述彩振服务器下发的彩振多媒体数据。
9、 如权利要求 8所述的方法, 其特征在于, 还包括:
屏蔽本地振铃, 播放所述彩振多媒体数据。
10、 如权利要求 8所述的方法, 其特征在于, 所述响应消息包括: 表示被 叫终端接受彩振的响应消息。
11、 如权利要求 8所述的方法, 其特征在于, 所述响应消息包括: 表示被 叫终端支持非跨接通信方式的响应消息。
12、 如权利要求 8所述的方法, 其特征在于, 在接收彩振服务器下发的彩 振多媒体数据之后, 还包括: 向所述彩振服务器发送摘机消息, 并断开与所述 彩振服务器之间的通信信道, 与主叫终端之间建立通信信道。
13、 一种彩振服务器, 其特征在于, 包括:
呼叫消息发送模块, 用于向被叫终端发送携带彩振标识的呼叫消息; 信道模块,用于根据所述被叫终端的响应消息建立所述彩振服务器与被叫 终端之间的通信信道;
多媒体数据发送模块,用于通过上述通信信道向上述被叫终端下发彩振多 媒体数据。
14、 如权利要求 13所述的彩振服务器, 其特征在于, 还包括:
识别模块, 用于识别彩振签约信息, 以触发所述呼叫消息发送模块向被叫 终端发送携带彩振标识的呼叫消息。
15、 如权利要求 14所述的彩振服务器, 其特征在于, 所述识别模块还用 于识别所述被叫终端的接受彩振的响应消息。
16、 如权利要求 13所述的彩振服务器, 其特征在于, 所述识别模块还用 于识别所述被叫终端的支持非跨接通信方式的响应消息。
17、 如权利要求 13所述的彩振服务器, 其特征在于, 还包括: 控制模块, 用于在检测到被叫终端摘机时,控制所述信道模块断开与被叫终端建立的通信 信道, 以使得被叫终端与主叫终端之间建立通信信道。
18、 一种通信终端, 其特征在于, 包括:
接收模块, 用于接收携带彩振标识的呼叫消息, 以及用于在与彩振服务器 建立通信信道之后接收下发的彩振多媒体数据;
发送模块, 用于在所述接收模块接收到携带彩振标识的呼叫消息之后, 向 所述彩振服务器发送响应消息;
通信模块, 用于在所述发送模块向所述彩振服务器发送响应消息之后, 与 彩振服务器建立通信信道。
19、 如权利要求 18所述的通信终端, 其特征在于, 所述响应消息包括表 示被叫终端接受彩振或表示被叫终端支持非跨接通信方式的响应消息。
20、 如权利要求 18所述的通信终端, 其特征在于, 还包括:
播放模块, 用于屏蔽本地振铃, 并播放所述彩振多媒体数据。
21、 如权利要求 18所述的通信终端, 其特征在于, 还包括: 通信控制模块, 用于向所述彩振服务器发送摘机消息, 并控制所述通信模 块断开与所述彩振服务器之间的通信信道,以及控制所述通信模块与主叫终端 之间建立通信信道。
22、 一种彩振通信***, 包括主叫终端、 被叫终端、 彩振服务器、 交换机 与归属位置寄存器, 其特征在于:
所述彩振服务器用于向所述被叫终端发送携带彩振标识的呼叫消息,根据 所述被叫终端的响应消息与所述被叫终端建立通信信道,以及向所述被叫终端 下发彩振多媒体数据。
23、 如权利要求 22所述的彩振通信***, 其特征在于:
所述被叫终端用于接收携带彩振标识的呼叫消息,向所述彩振服务器发送 响应消息, 以及在与彩振服务器建立通信信道之后接收下发的彩振多媒体数 据。
24、 如权利要求 22所述的彩振通信***, 其特征在于:
所述归属位置寄存器用于存储所述主叫终端的彩振签约信息。
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