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    • 9. 发明授权
    • Method and apparatus for echo cancellation
    • 用于回波消除的方法和装置
    • US06259680B1
    • 2001-07-10
    • US08941911
    • 1997-10-01
    • Steven R. BlackwellRichard L. Goodson
    • Steven R. BlackwellRichard L. Goodson
    • H04B320
    • H04B3/23
    • The present invention relates to an improved method and apparatus for echo cancellation in a communication system utilizing a bidirectional transmission medium. The invention significantly reduces computational overhead associated with echo cancellation by using sub-Nyquist sampling in the echo path. In particular, the invention relates to a method and apparatus for echo cancellation in a communication system utilizing different signaling or baud rates in the transmit and receive directions, whereby the computational overhead of the echo cancellation is significantly reduced as compared to traditional methods. In a preferred embodiment herein, the present invention reduces by one-half the computational overhead associated with echo cancellation in a data communications system utilizing symmetrical information rates at asymmetrical signal rates.
    • 本发明涉及利用双向传输介质的通信系统中的回波消除的改进方法和装置。 本发明通过在回波路径中使用子奈奎斯特采样来显着地减少与回波消除相关的计算开销。 具体地说,本发明涉及一种在传输和接收方向上利用不同的信令或波特率的通信系统中的回波消除的方法和装置,由此与传统方法相比,回波抵消的计算开销显着降低。 在本文的优选实施例中,本发明在利用对称信息速率的对称信息速率的数据通信系统中减少了与回波消除相关联的计算开销的一半。
    • 10. 发明授权
    • Apparatus and method for controlling and varying multiple data rates
among multiple communications devices in a communications system
    • 响应于接收到的数据的有效性的处理器系统以默认速率重新发送标识请求,并且通过设备的地址位置修改默认速率
    • US5805925A
    • 1998-09-08
    • US572203
    • 1995-12-13
    • Steven R. BlackwellRichard A. Gautreaux, IIDouglas D. Reed
    • Steven R. BlackwellRichard A. Gautreaux, IIDouglas D. Reed
    • G06F13/38G06F3/00
    • G06F13/385
    • A data communications system (10) has a system management controller (100) and multiple data communications devices (21-1 through 21-n). The system management controller has a processor (110) and random access memory (115). The various data communications devices (21-1 through 21-n) are coupled to the system management controller (100) through a common address bus (12) and a common management bus (11). Through the processor (110), the system management controller (100) sequentially addresses each of the data communications devices (21-1 through 21-n) at a default data rate and determines a requested data rate for each device (FIG. 6, 305-333). The system management controller (100), through the processor (110), stores this requested data rate information, correlated with the address of each data communication device, in the random access memory (115) (FIG. 6, 305), and communicates with each such device at its requested data rate (FIG. 6, 335; FIG. 10, 500-545). In the event of errors, both the system management controller (100) and the addressed data communications device revert to a default data rate (FIG. 9, 435; FIG. 10, 525).
    • 数据通信系统(10)具有系统管理控制器(100)和多个数据通信设备(21-1至21-n)。 系统管理控制器具有处理器(110)和随机存取存储器(115)。 各种数据通信设备(21-1至21-n)通过公共地址总线(12)和公共管理总线(11)耦合到系统管理控制器(100)。 通过处理器(110),系统管理控制器(100)以默认数据速率顺序地寻址每个数据通信设备(21-1至21-n),并确定每个设备的请求数据速率(图6, 305-333)。 系统管理控制器(100)通过处理器(110)将与数据通信设备的地址相关的所请求的数据速率信息存储在随机存取存储器(115)(图6,305)中,并且通信 每个这样的设备以其所请求的数据速率(图6,335;图10,500-545)。 在错误的情况下,系统管理控制器(100)和所寻址的数据通信设备都恢复到默认数据速率(图9,435;图10,525)。