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    • 2. 发明授权
    • Apparatus and method for testing the administration of network based
supplementary services
    • 用于测试基于网络的补充业务管理的装置和方法
    • US5883883A
    • 1999-03-16
    • US731791
    • 1996-10-18
    • Albert D. BakerCharles L. DavidsonEllen Eng
    • Albert D. BakerCharles L. DavidsonEllen Eng
    • H04Q11/04H04L12/16
    • H04Q11/045
    • Whether or not the provisioning of a given BRI is properly administered is determined by providing a collection of processes which exercise the known network provided supplementary services in a predetermined fashion. Specifically, a predetermined, i.e., algorithmic, process is employed to examine an administration database to determine which DSLs are to support supplementary services and, then, the process invokes a plurality of processes which attempt to activate the expected supplementary service. The basic mode of operation is to generate a connectivity context in which the supplementary service can be invoked and, then, cause the service to be invoked. ISDN messages are transmitted to the network over the D channel of the given BRI both to establish the service context and, then, to invoke the supplemental service. By analyzing the processes and ISDN messages the system can determine if the desired supplementary services are available, and the results of the analysis are recorded and made available to an operator.
    • 通过提供以预定方式行使已知网络提供的补充服务的过程集合来确定给定BRI的供应是否被适当地管理。 具体地,采用预定的即算法的过程来检查管理数据库以确定哪些DSL支持补充服务,然后该过程调用尝试激活预期补充服务的多个进程。 基本的操作模式是生成连接上下文,在该连接上下文中可以调用补充服务,然后引起服务的调用。 ISDN消息通过给定BRI的D信道传输到网络,以建立服务上下文,然后调用补充服务。 通过分析流程和ISDN消息,系统可以确定所需的补充服务是否可用,分析结果被记录并提供给运营商。
    • 3. 发明申请
    • Accelerated Recovery During Negotiation Between a Media Gateway and a Media Gateway Controller
    • 在媒体网关和媒体网关控制器之间的协商期间的加速恢复
    • US20080117807A1
    • 2008-05-22
    • US11562955
    • 2006-11-22
    • Charles L. DavidsonMark D. Rajcok
    • Charles L. DavidsonMark D. Rajcok
    • G06F11/00
    • H04L41/0672G06F11/2033H04L41/0663H04L65/1043H04L65/1069H04L69/40
    • A method is disclosed that enables an improved technique for recovering from an error scenario encountered during a call setup that involves a malfunctioning media gateway and the corresponding media gateway controller. The media gateway first detects a malfunction that affects a digital signal processing resource. The media gateway then proactively selects a processing resource available elsewhere at the gateway. The media gateway selects the new processing resource based on criteria that include: i) the capabilities that were identified to handle the packet stream at the affected (faulty) processor; ii) the capabilities of the IP terminal originating the packet stream that is being moved; and iii) the Internet Protocol address of the affected processing resource. Advantageously, an effort is made to avoid having to inform the media gateway controller of the move, thereby minimizing any discontinuity in each packet stream and minimizing the time and processing that are required to establish the call.
    • 公开了一种方法,其实现了一种用于从涉及故障媒体网关和对应的媒体网关控制器的呼叫建立期间遇到的错误情况中恢复的改进技术。 媒体网关首先检测影响数字信号处理资源的故障。 然后,媒体网关主动地选择在网关处可用的处理资源。 媒体网关基于以下标准选择新的处理资源:i)被识别处理受影响(有故障)处理器的数据包流的能力; ii)发起正在移动的分组流的IP终端的能力; 和iii)受影响的处理资源的因特网协议地址。 有利地,努力避免必须通知媒体网关控制器移动,从而最小化每个分组流中的任何不连续性,并最小化建立呼叫所需的时间和处理。
    • 4. 发明申请
    • Accelerated Removal from Service of a Signal Processor at a Media Gateway
    • 加速从Media Gateway处的信号处理器中删除
    • US20080117898A1
    • 2008-05-22
    • US11562956
    • 2006-11-22
    • Charles L. DavidsonMark D. Rajcok
    • Charles L. DavidsonMark D. Rajcok
    • H04L12/28
    • H04L12/66H04L65/1023
    • A method is disclosed that enables accelerating the removal from service of a signal processor at a media gateway. In accordance with the illustrative embodiment of the present invention, the media gateway receives an indication to remove one of its digital signal processors from service. Instead of waiting for all of the calls that are using the signal processor to come to an end, the media gateway proactively moves the packet streams from the signal processor to one or more other signal processors resident at the gateway. Advantageously, an effort is made to avoid having to inform the corresponding media gateway controller of the move, thereby minimizing any discontinuity in each moved packet stream.
    • 公开了一种能够加速从媒体网关处的信号处理器的服务移除的方法。 根据本发明的说明性实施例,媒体网关接收从其服务中移除其数字信号处理器之一的指示。 媒体网关不是等待使用信号处理器的所有呼叫结束,而是主动地将分组流从信号处理器移动到驻留在网关处的一个或多个其他信号处理器。 有利地,努力避免必须通知相应的媒体网关控制器移动,从而最小化每个移动的分组流中的任何不连续性。
    • 5. 发明申请
    • ACCELERATED RECOVERY DURING NEGOTIATION BETWEEN A MEDIA GATEWAY AND A MEDIA GATEWAY CONTROLLER
    • 在媒体网关和媒体网关控制器之间的谈判期间加速恢复
    • US20130250751A1
    • 2013-09-26
    • US13621190
    • 2012-09-15
    • Charles L. DavidsonMark D. Rajcok
    • Charles L. DavidsonMark D. Rajcok
    • H04J3/14
    • H04L41/0672G06F11/2033H04L41/0663H04L65/1043H04L65/1069H04L69/40
    • A method is disclosed that enables an improved technique for recovering from an error scenario encountered during a call setup involving a malfunctioning media gateway and corresponding media gateway controller. The media gateway first detects a malfunction that affects a digital signal processing resource, and then proactively selects a processing resource available elsewhere at the gateway. The media gateway selects the new processing resource based on criteria including: i) the capabilities that were identified to handle the packet stream at the affected (faulty) processor; ii) the capabilities of the IP terminal originating the packet stream that is being moved; and iii) the Internet Protocol address of the affected processing resource. Advantageously, an effort is made to avoid having to inform the media gateway controller of the move, thereby minimizing any discontinuity in each packet stream and minimizing the time and processing that are required to establish the call.
    • 公开了一种能够实现用于从涉及故障媒体网关和对应的媒体网关控制器的呼叫建立期间遇到的错误情况中恢复的改进技术。 媒体网关首先检测影响数字信号处理资源的故障,然后主动选择网关其他地方可用的处理资源。 媒体网关基于以下标准选择新的处理资源,包括:i)被识别处理受影响(有故障)处理器的分组流的能力; ii)发起正在移动的分组流的IP终端的能力; 和iii)受影响的处理资源的因特网协议地址。 有利地,努力避免必须通知媒体网关控制器移动,从而最小化每个分组流中的任何不连续性,并最小化建立呼叫所需的时间和处理。