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Innovations based maximum likelihood sequence estimation for Rayleigh fading channels.

机译:基于创新的瑞利衰落信道最大似然序列估计。

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摘要

This thesis deals with the use of the innovations approach for developing a general maximum likelihood sequence estimation (MLSE) receiver for digital signals transmitted over Rayleigh fading channels. First, it is shown that the innovations process and the normalized linear prediction errors are mathematically equivalent regardless of whether the given gaussian random process is stationary or not. Then the conceptually powerful and elegant innovations approach is applied to Rayleigh fading channels to derive the receiver structure which can be implemented by a bank of time-invariant FIR linear filters followed by squaring operations and a Viterbi processor. The proposed receiver, with a computational complexity independent of the transmitted signal sequence length, is applicable to most practically modulated signals and to fast or slow frequency-selective or nonselective Rayleigh fading channels. A unified interpretation of MLSE of signals transmitted over both gaussian noise channels in the presence of ISI and Rayleigh fading channels is presented based on the innovations process. The innovations-based MLSE receiver has a reasonable geometrical interpretation. It is shown that, in some special cases, the MLSE of data is in fact one of choosing the signal sequence which minimizes the linear prediction errors. Error performance of the receiver is studied theoretically by using the innovations approach and discrete-time Karhunen-Loeve transform. An analytical expression for the sequence pairwise error probability, which is determined by the eigenvalues of a matrix generated from the autocorrelation function or the received signal, and an upper bound on the bit error rate are derived. The efficiency of diversity reception is investigated. Computer simulations are performed and the results are presented to validate analysis.
机译:本文涉及创新方法的使用,该方法为通过瑞利衰落信道传输的数字信号开发通用最大似然序列估计(MLSE)接收器。首先,表明无论给定的高斯随机过程是否平稳,创新过程和标准化线性预测误差在数学上都是等效的。然后,将概念上强大而优雅的创新方法应用于瑞利衰落信道,以得出接收机结构,该结构可由一组时不变FIR线性滤波器,平方运算和维特比处理器实现。所提出的接收器具有与所发送的信号序列长度无关的计算复杂度,适用于大多数实际调制的信号以及快速或慢速频率选择或非选择瑞利衰落信道。基于创新过程,提出了在存在ISI和瑞利衰落信道的情况下,通过两个高斯噪声信道传输的信号的MLSE的统一解释。基于创新的MLSE接收器具有合理的几何解释。结果表明,在某些特殊情况下,数据的MLSE实际上是选择使线性预测误差最小的信号序列之一。通过使用创新方法和离散时间Karhunen-Loeve变换,从理论上研究了接收机的误码性能。导出由成对自相关函数或接收信号生成的矩阵的特征值确定的序列成对错误概率的解析表达式以及误码率的上限。研究了分集接收的效率。执行计算机仿真,并提供结果以验证分析。

著录项

  • 作者

    Yu, Xiaoyong.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 1995
  • 页码 163 p.
  • 总页数 163
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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