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    • 1. 发明授权
    • Efficient use of wire for data communication systems
    • 有效利用电线数据通信系统
    • US06678375B1
    • 2004-01-13
    • US09461143
    • 1999-12-14
    • P. Michael HendersonSverrir OlafssonMickey RushingJoel D. Peshkin
    • P. Michael HendersonSverrir OlafssonMickey RushingJoel D. Peshkin
    • H04M100
    • H04Q1/16
    • The present invention uses a wiring scheme for data transmission. The wiring scheme includes designating N−1 telecommunication wires and a common wire to each carry N−1 signals. The wiring scheme further includes designating one telecommunication wire, other than the N−1 telecommunication wires, as a common wire for each of the N−1 wires. In addition, the DC voltage polarities of at least one of the N−1 telecommunication wires may be reversed to reduce the likelihood of overloading the common wire. The wiring scheme may be utilized in the context of many data transmission systems including: POTS, PSTN, DSL, data modems, facsimile modems, and ISDN. The wiring scheme of the present invention may achieve higher data rates for data transmission.
    • 本发明使用用于数据传输的布线方案。 接线方案包括指定N-1个电信线和一条公共线,每个进行N-1个信号。 布线方案还包括将除N-1电信线之外的一条电信线指定为N-1条线中的每条线的公共线。 此外,N-1电信线中的至少一个的直流电压极性可以颠倒,以减少公共线的超载的可能性。 布线方案可以在许多数据传输系统的上下文中使用,包括:POTS,PSTN,DSL,数据调制解调器,传真调制解调器和ISDN。 本发明的布线方案可以实现更高的数据传输速率。
    • 5. 发明授权
    • Methods and apparatus for data communications on packet networks
    • 分组网络数据通信的方法和装置
    • US06788651B1
    • 2004-09-07
    • US09553773
    • 2000-04-21
    • Jason B. BrentJames W. JohnstonJoel D. PeshkinGilles G. Fayad
    • Jason B. BrentJames W. JohnstonJoel D. PeshkinGilles G. Fayad
    • H04L1228
    • H04L47/10
    • In accordance with one aspect of the present invention, the detection of voice signals versus modem signals in a data communication system may be conducted, a determination can be made whether existing VoIP algorithm functions or characteristics may be appropriate for modem communications, and then the VoIP algorithms may be modified to improve operating conditions for a modem connection. Additionally, the existing VoIP algorithm functions and network characteristics within the data communication system that may degrade modem performance can be identified prior to the determination of whether the VoIP algorithm functions are appropriate for modem communications. In accordance with another aspect, the detection between voice signals and modem signals can also comprise the determination as to a particular type of modems signal. Further, control of the adaptive jitter buffer to remove or reduce adaptation during detection of modem signals can be provided.
    • 根据本发明的一个方面,可以进行语音信号对数据通信系统中的调制解调器信号的检测,可以确定现有的VoIP算法功能或特性是否适合于调制解调器通信,然后VoIP 可以修改算法以改善调制解调器连接的操作条件。 另外,可以在确定VoIP算法功能是否适合于调制解调器通信之前,识别可能降低调制解调器性能的数据通信系统内的现有VoIP算法功能和网络特性。 根据另一方面,语音信号和调制解调器信号之间的检测还可以包括关于特定类型的调制解调器信号的确定。 此外,可以提供自适应抖动缓冲器的控制以消除或减少在调制解调器信号的检测期间的适配。
    • 9. 发明授权
    • System and method for multiple modem traffic redirection
    • 多调制解调器流量重定向的系统和方法
    • US06614794B1
    • 2003-09-02
    • US09261276
    • 1999-03-03
    • Abdelnaser M. AdasJoel D. PeshkinWarner B. Andrews, Jr.Glendon C. King
    • Abdelnaser M. AdasJoel D. PeshkinWarner B. Andrews, Jr.Glendon C. King
    • H04L1228
    • H04Q11/0478H04L2012/5615H04L2012/5616H04L2012/5653
    • A communication system for communication of data packets associated with a packet switched network is disclosed herein. The system includes a port processor, a segmentation and reassembly device, and a host processor. The port processor communicates data packets to and from at least one communication device and at least one destination. The segmentation and reassembly device routes data packets to and from the port processor and the at least one destination. The host processor establishes a virtual circuit between the port processor and the segmentation and reassembly device. The host processor further directs the port processor to communicate data traffic to the segmentation and reassembly device via the virtual circuit, whereby the port processor and segmentation and reassembly device exchange data directly via the virtual circuit without per-packet handling by the host processor of all data traffic.
    • 本文公开了一种用于与分组交换网络相关联的数据分组的通信的通信系统。 该系统包括端口处理器,分段和重组装置以及主机处理器。 端口处理器向至少一个通信设备和至少一个目的地传送数据分组。 分段和重组装置将数据分组路由到端口处理器和至少一个目的地。 主处理器在端口处理器和分段和重组装置之间建立虚拟电路。 主机处理器还引导端口处理器经由虚拟电路将数据业务传送到分段和重组装置,由此端口处理器和分段和重新组装设备直接经由虚拟电路交换数据,而无需主机处理器的所有 数据流量。
    • 10. 发明授权
    • Methods and apparatus for data communications through packet networks
    • 通过分组网络进行数据通信的方法和装置
    • US07957369B2
    • 2011-06-07
    • US12660469
    • 2010-02-26
    • Gilles G. FayadJoel D. PeshkinJames W. JohnstonPaul C. Wren
    • Gilles G. FayadJoel D. PeshkinJames W. JohnstonPaul C. Wren
    • H04L12/66
    • H04L12/2874H04L12/2856H04L12/4604H04L12/66
    • An improved data communication technique may be employed with modems through a packet network. The disclosed technique facilitates a virtual end-to-end connection between two modems such that the two modems can effectively behave as if directly connected to each other, unaware of any modifications to the data being transferred or to the protocols configured within the communication connection. Preferably, a data communication system for carrying out the communication technique demodulates data coming from a first modem, transports the demodulated data in packets between two gateways, and then remodulates the data before delivering to a second modem at the other end. In accordance with various aspects of the present invention, various alternatives for calling and quality of service set-up mechanisms, the establishment of a communication session, the transport of data during a communication session, the flow control between all system components involved, and the mechanisms for the termination of communications are also provided.
    • 改进的数据通信技术可以通过分组网络与调制解调器一起使用。 所公开的技术有助于两个调制解调器之间的虚拟端对端连接,使得两个调制解调器可以有效地表现为彼此直接连接,不知道对要传送的数据的任何修改或通信连接中配置的协议的任何修改。 优选地,用于执行通信技术的数据通信系统解调来自第一调制解调器的数据,在两个网关之间传送分组中的解调数据,然后在另一端传送到第二调制解调器之前重新调制数据。 根据本发明的各个方面,用于呼叫的各种替代方案和服务质量建立机制,建立通信会话,在通信会话期间传输数据,所涉及的所有系统组件之间的流控制以及 还提供终止通信的机制。