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Adaptive maximum-likelihood sequence estimation by means of combined equalization and decoding in fading environments

机译:衰落环境中通过组合均衡和解码进行的自适应最大似然序列估计

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摘要

This paper proposes an adaptive maximum-likelihood sequence estimation (MLSE) by means of combined equalization and decoding, i.e., adaptive combined MLSE, which employs separate channel estimation for respective states in the Viterbi algorithm. First, an approximate metric including channel estimation is derived analytically for this proposed adaptive combined MLSE. Secondly, procedures to accomplish blind equalization are investigated for the proposed MLSE. Finally, its excellent BER performance on fast time-varying fading channels is confirmed by computer simulation, when the proposed MLSE operates as a blind equalizer.
机译:本文提出了一种通过组合均衡和解码的自适应最大似然序列估计(MLSE),即自适应组合MLSE,它在维特比算法中为各个状态采用了独立的信道估计。首先,针对所提出的自适应组合式MLSE,分析得出包括信道估计在内的近似度量。其次,针对提出的MLSE,研究了实现盲均衡的程序。最后,当拟议的MLSE用作盲均衡器时,计算机仿真证实了其在快速时变衰落信道上的出色BER性能。

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