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An equalizer design technique for the PCM modem: a new modem for the digital public switched network

机译:PCM调制解调器的均衡器设计技术:用于数字公共交换网的新调制解调器

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Modems designed for the public switched telephone network (PSTN) have conventionally been based on modeling assumptions which view the PSTN connection as an essentially analog medium. However, as the PSTN evolves toward all digital transport and switching, and particularly as major traffic sources, such as Internet service providers, increasingly have direct digital connections to the PSTN, it is appropriate to revisit the model assumptions. Recently, several modem and chipset manufacturers have announced "56 K" modems based on an emerging system paradigm in which one user (a residential Internet subscriber) has an analog connection to the PSTN, and the other (an Internet service provider) has a digital one. ITU-T is expected to finalize details of a corresponding recommendation in 1998. With this configuration, modem designs based on signaling with the /spl mu/-law alphabet become feasible, and the conventional Shannon limit disappears as the quantization noise is avoided. Thus, the conventional Shannon limit of about 36 kb/s can be beaten, and it is possible to approach the digital transmission rate of 64 kb/s. Modems employing this general approach have become known as /spl mu/-law or pulse-code modulation (PCM) modems. In this paper we present a signaling technique and the sampling theory based on this technique, display the structure and operating principles of a PCM modem equalizer, and show how this equalizer problem can be cast in the language of multiinput-multioutput (MIMO) system theory.
机译:传统上,为公共交换电话网(PSTN)设计的调制解调器是基于建模假设的,这些假设将PSTN连接视为本质上是模拟介质。但是,随着PSTN朝着所有数字传输和交换的方向发展,特别是随着主要流量源(例如Internet服务提供商)越来越多地直接与PSTN建立数字连接,因此有必要重新研究模型假设。最近,一些调制解调器和芯片组制造商宣布了一种基于新兴系统范例的“ 56 K”调制解调器,其中一个用户(一个住宅Internet用户)具有与PSTN的模拟连接,而另一个用户(一个Internet服务提供商)具有一个数字连接。一。预期ITU-T将在1998年完成相应建议的细节。采用这种配置,基于带有/ spl mu / -law字母的信令的调制解调器设计变得可行,并且由于避免了量化噪声,传统的Shannon限制也消失了。因此,可以克服常规的大约36 kb / s的Shannon限制,并且有可能接近64 kb / s的数字传输速率。采用这种通用方法的调制解调器已被称为/ spl mu / -law或脉冲编码调制(PCM)调制解调器。在本文中,我们提出一种信令技术和基于该技术的采样理论,展示PCM调制解调器均衡器的结构和工作原理,并展示如何用多输入多输出(MIMO)系统理论的语言来解决此均衡器问题。 。

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