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    • 1. 发明授权
    • Method and apparatus for controlling signaling links in a telecommunications system
    • 用于控制电信系统中的信令链路的方法和装置
    • US06768735B1
    • 2004-07-27
    • US09541123
    • 2000-03-31
    • Robert S. Gammenthaler, Jr.Serge F. FourcandDavid W. Wynn
    • Robert S. Gammenthaler, Jr.Serge F. FourcandDavid W. Wynn
    • H04Q1100
    • H04Q3/0025
    • In particular embodiments, the present invention provides an apparatus for controlling a signaling link. The apparatus includes a plurality of receivers and a plurality of drivers. Each receiver receives signaling messages from one of a plurality of first signaling links, and each driver sends signaling messages over one of a plurality of second signaling links. The apparatus also includes an interface that receives signaling messages and control data from a control module and sends signaling messages and control data to the control module. The apparatus further includes a processor coupled to the receivers, the drivers, and the interface. The processor receives signaling messages from the receivers and multiplexes portions of the signaling messages together for communication through the interface. The processor also receives portions of signaling messages from the interface and demultiplexes the portions for communication to the drivers.
    • 在具体实施例中,本发明提供了一种用于控制信令链路的装置。 该装置包括多个接收器和多个驱动器。 每个接收器从多个第一信令链路之一接收信令消息,并且每个驱动器通过多个第二信令链路之一发送信令消息。 该装置还包括从控制模块接收信令消息和控制数据并向控制模块发送信令消息和控制数据的接口。 该装置还包括耦合到接收器,驱动器和接口的处理器。 处理器从接收器接收信令消息,并将信令消息的一部分复用在一起以通过接口进行通信。 处理器还从接口接收信令消息的部分,并将该部分解复用于与驱动程序的通信。
    • 3. 发明授权
    • Method and system for providing redundancy for signaling link modules in a telecommunication system
    • 用于为电信系统中的信令链路模块提供冗余的方法和系统
    • US06778491B1
    • 2004-08-17
    • US09539920
    • 2000-03-31
    • Serge F. FourcandRobert S. Gammenthaler, Jr.Michael J. Hanlon
    • Serge F. FourcandRobert S. Gammenthaler, Jr.Michael J. Hanlon
    • H04L122
    • H04Q3/0025
    • In particular embodiments, the present invention provides a system for managing signaling messages in a telecommunication system. The system includes a first control module that is operable to receive signaling messages from a plurality of signaling links, process the signaling messages, and send the processed signaling messages through a communication network interface. The system also includes a second control module that is operable to receive the signaling messages from the plurality of signaling links, process the signaling messages, and send the processed signaling messages through a communication network interface. The system further includes a Matelink coupled to the first control module and the second control module. The Matelink is operable to communicate the status of the first control module to the second control module and the status of the second control module to the first control module. The first control module and the second control module are further operable to be in either an active mode or a standby mode, only one of the first control module and the second control module being in the active mode at one time, the control module in the active mode sending the processed signaling messages through the associated communication network interface and the status messages over the Matelink.
    • 在具体实施例中,本发明提供一种用于在电信系统中管理信令消息的系统。 该系统包括第一控制模块,其可操作以从多个信令链路接收信令消息,处理信令消息,并通过通信网络接口发送经处理的信令消息。 该系统还包括第二控制模块,其可操作以从多个信令链路接收信令消息,处理信令消息,并通过通信网络接口发送经处理的信令消息。 该系统还包括耦合到第一控制模块和第二控制模块的Matelink。 马特林克可操作地将第一控制模块的状态和第二控制模块的状态通信给第一控制模块。 第一控制模块和第二控制模块还可操作为处于主动模式或待机模式,一次只有第一控制模块和第二控制模块中的一个处于活动模式,控制模块 主动模式通过相关联的通信网络接口发送已处理的信令消息,并通过Matelink发送状态消息。
    • 5. 发明授权
    • Memory card and system for updating distributed memory
    • 用于更新分布式存储器的存储卡和系统
    • US06865637B1
    • 2005-03-08
    • US09891999
    • 2001-06-26
    • Ignacio A. LinaresRobert S. Gammenthaler, Jr.Edwin J. Burger
    • Ignacio A. LinaresRobert S. Gammenthaler, Jr.Edwin J. Burger
    • G06F1/00H04L12/66H04Q3/00
    • H04L12/66
    • A memory card cooperating with a network interface for receiving data entry and update signals from a database manager via a switch fabric and with a bus interface for outputting data on a system bus disposed in a system shelf, which shelf forms at least a portion of a telecommunications node having a distributed scalable database system. The memory card is operable to contain at least a portion of the distributed database in a high speed, high density memory block disposed thereon, which memory block is coupled to a network interface controller via a first memory interface and to a bus interface controller via a second memory interface. An arbiter is coupled to the first and second memory interfaces for arbitrating data input operations and data output operations with respect to the memory block.
    • 与网络接口协作的存储卡,用于经由交换结构从数据库管理器接收数据输入和更新信号,并且具有用于在布置在系统架中的系统总线上输出数据的总线接口,所述系统总线架构形成至少一部分 电信节点具有分布式可扩展数据库系统。 存储卡可操作以将分布式数据库的至少一部分包含在其上设置的高速,高密度存储器块中,该存储块经由第一存储器接口耦合到网络接口控制器,并经由 第二存储器接口。 仲裁器耦合到第一和第二存储器接口,用于对相对于存储器块的数据输入操作和数据输出操作进行仲裁。
    • 9. 发明授权
    • DSO timing source transient compensation
    • DSO定时源瞬态补偿
    • US07209492B2
    • 2007-04-24
    • US10122461
    • 2002-04-15
    • Matthew J. MarcouxRobert S. Gammenthaler, Jr.
    • Matthew J. MarcouxRobert S. Gammenthaler, Jr.
    • H04J3/06
    • H04J3/0688G06F1/10
    • System and method for compensating for DS0 timing source transients, such as may occur during a switchover to a new external reference, is described. In one embodiment, an SFI control signal is monitored for embedded frame position information. When the frame position information is initially detected, a 10-bit frame clock counter is reset to zero. The counter is then incremented using an 8.192 MHz clock. From that point on, each time the SFI frame position information is detected, the value of the frame clock counter is checked. If the counter value is zero, the counter continues to run freely. If the counter value is non-zero and the most significant bit (“MSB”) thereof is zero, the count of the frame clock counter is held for one clock period. If the counter value is non-zero and the MSB thereof is one, the count of the frame clock counter is advanced by a value of two, rather than one, for one clock period.
    • 描述了用于补偿DS0定时源瞬变的系统和方法,例如在切换到新的外部参考时可能发生的系统和方法。 在一个实施例中,对嵌入的帧位置信息监视SFI控制信号。 当最初检测到帧位置信息时,10位帧时钟计数器被复位为零。 然后使用8.192MHz时钟递增计数器。 从那时开始,每当检测到SFI帧位置信息时,检查帧时钟计数器的值。 如果计数器值为零,则计数器继续自由运行。 如果计数器值不为零并且其最高有效位(“MSB”)为零,则帧时钟计数器的计数保持一个时钟周期。 如果计数器值不为零并且其MSB为1,则在一个时钟周期内帧时钟计数器的计数提前两个值而不是一个。
    • 10. 发明授权
    • State machine architecture partitionable into control and data planes
    • 状态机架构可分割成控制和数据平面
    • US06985968B1
    • 2006-01-10
    • US09853387
    • 2001-05-11
    • Robert S. Gammenthaler, Jr.
    • Robert S. Gammenthaler, Jr.
    • G06F15/16
    • H04Q3/0025H04Q2213/13056H04Q2213/13176H04Q2213/13204
    • A system and method for optimizing state machine transitional performance in a high speed link (HSL) protocol stack at an application node disposed in a network. An input event decoder and a state decoder decode an input event and state-specific context information relating to a particular protocol layer involved in a layer service for a specific connection. The decoded state-specific context information is utilized for personalizing a generic state machine (GSM) logic structure in order to effectuate a layer-specific state logic package that is partitionable into a control plane and a data plane. The decoded input event is processed by the personalized state machine to generate encodable output event and next-state information. In parallel with the control plane operations, parametric tests and data operations with respect to the layer service are performed in the data plane, thereby improving state machine transitional processing in the application node.
    • 一种用于在布置在网络中的应用节点处优化高速链路(HSL)协议栈中的状态机过渡性能的系统和方法。 输入事件解码器和状态解码器对涉及特定连接的层服务中涉及的特定协议层的输入事件和状态特定上下文信息进行解码。 解码的状态特定上下文信息用于个性化通用状态机(GSM)逻辑结构,以便实现可分割成控制平面和数据平面的层特定状态逻辑包。 解码的输入事件由个性化状态机处理以产生可编码的输出事件和下一状态信息。 与控制平面操作并行,在数据平面中执行相对于层服务的参数测试和数据操作,从而改善应用节点中的状态机过渡处理。