A MULTICARRIER E1-HDSL TRANSCEIVER SYSTEM WITH CODED MODULATION

被引:3
作者
CHOW, PS
ALDHAHIR, N
CIOFFI, JM
BINGHAM, JAC
机构
[1] Information Systems Laboratory, Stanford University, Stanford, California
[2] Amati Communications Corporation, Palo Alto, California
来源
EUROPEAN TRANSACTIONS ON TELECOMMUNICATIONS | 1993年 / 4卷 / 03期
关键词
D O I
10.1002/ett.4460040306
中图分类号
TN [电子技术、通信技术];
学科分类号
0809 ;
摘要
In this paper, we present a trellis-coded multicarrier transceiver system, known as Discrete Multitone modulation, for the application of transmitting digital data at the E1 rate of 2.048 Mbit/s over existing copper telephone lines. The service of E1-HDSL (E1-rate High-speed Digital Subscriber Lines) is currently being studied by ETSI for future deployment in Europe. Because of severe crosstalk and additive white Gaussian noise (AWGN) encountered in E1-HDSL, the application of a powerful trellis code is highly desirable to ensure reliable system performance, with a required bit-error-rate (BER) of no more than 10(-7), at the desired E1 data rate. Detailed descriptions of the DMT transmitter and receiver structures are given, and projected performance results, both with and without the addition of a trellis code, are presented. Because of the different transmission environments encountered in the various countries in Europe, we have performed our computer simulation on both British and German (1) copper twisted-pairs. We find that with the addition of Wei's powerful 4-D 16-state trellis code: we can achieve the E1 rate with a positive margin over all loops tested using either one or two sets of twisted-pairs only, depending on the particular transmission scenario.
引用
收藏
页码:257 / 266
页数:10
相关论文
共 15 条
  • [1] Lechleiden J.W., High bit rate digital subsciber lines: A review of HDSL progress, IEEE Journal on Selected Areas in Communications, 9, 6, pp. 769-784, (1991)
  • [2] (1991)
  • [3] Bingham J.A.C., Multicarrier modulation for data transmission: An idea whose time has come, IEEE Communications Magazine, 28, 5, pp. 5-14, (1990)
  • [4] Kalet I., The multitone channel, IEEE Transactions on Communications, 37, 2, pp. 19-124, (1989)
  • [5] Kasturia S., Aslanis J., Cioffi J.M., Vector coding for partial‐response channels, IEEE Transactions on Information Theory, 36, 4, pp. 741-762, (1990)
  • [6] Lechleider J.W., The optimum combination of block codes and receivers for arbitrary channels, IEEE Transactions on Communications, 38, 5, pp. 615-621, (1990)
  • [7] Ruiz A., Cioffi J.M., Kasturia S., Discrete multiple tone modulation with coset coding for the spectrally shaped channel, IEEE Transactions on Communications, 40, 6, pp. 1012-1029, (1992)
  • [8] Cioffi J.M., Dudevoir G.P., Eyuboglu M.V., Fomey G.D.
  • [9] Kalet I., Shamai (Shitz) S., On the Capacity of a Twisted‐Wire Pair Gaussian Model, IEEE Transactions on Communications, 38, 3, pp. 379-383, (1990)
  • [10] Cioffi J.M., A Multicarrier Primer, (1991)