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Sequence estimation over the slow nonselective Rayleigh fading channel with diversity reception and its application to Viterbi decoding

机译:具有分集接收的慢速非选择性瑞利衰落信道上的序列估计及其在维特比解码中的应用

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摘要

The authors consider minimum error probability detection of a data sequence transmitted using linear-suppressed carrier modulations, specifically phase-shift keying (PSK), over the Gaussian channel with slow nonselective Rayleigh fading. Complete channel interleaving/deinterleaving and diversity reception are assumed. The problem is considered with application to Viterbi decoding in particular. It is first shown that the two presently available receivers, namely, the conventional maximum likelihood (ML) receiver and the simultaneous estimation receiver, do not perform adequately for this problem. A two-stage receiver is proposed in which the unknown channel fading gains are estimated in the first stage prior to data sequence estimation in the second stage. This receiver is shown to perform adequately, and leads to an efficient receiver/decoder for Viterbi decoding of convolutionally trellis-coded sequences. The issue of optimum estimation of channel fading gains is clarified. The bit error probability of the receiver/decoder is analyzed, and numerical performance results are presented.
机译:作者考虑了使用慢速非选择性瑞利衰落在高斯信道上使用线性抑制载波调制(特别是相移键控(PSK))传输的数据序列的最小错误概率检测。假定完成信道交织/解交织以及分集接收。特别是在应用于维特比解码时考虑了该问题。首先示出了两个当前可用的接收器,即常规的最大似然(ML)接收器和同时估计接收器,对于该问题不能充分发挥作用。提出了一种两阶段接收机,其中在第二阶段中的数据序列估计之前,在第一阶段中估计未知信道衰落增益。该接收器显示出足够的性能,并导致用于卷积网格编码序列的维特比解码的有效接收器/解码器。澄清了信道衰落增益的最佳估计问题。分析了接收器/解码器的误码率,并给出了数值性能结果。

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