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Reduced-complexity sequence estimation for trellis coded modulation with outer Reed-Solomon codes over ISI channels

机译:ISI信道上具有外部Reed-Solomon码的网格编码调制的复杂度降低的序列估计

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The combined linear-Viterbi equalizer (CLVE) is a class of receivers employing a linear filter before the Viterbi algorithm (VA) in order to shape the original channel impulse response (CIR) to some shorter desired impulse response (DIR) which allows a lower complexity VA. The CLVE technique is originally proposed to reduce the complexity of VA that performs maximum likelihood sequence estimation (MLSE) to uncoded transmission over intersymbol interference (ISI) channels. In this paper, we adopt the CLVE technique to reduce the complexity of VA that performs MLSE to trellis coded transmission over ISI channels. Furthermore, reduced state sequence estimation for high rate concatenated systems with bandwidth efficient trellis inner codes and Reed-Solomon (RS) outer codes over ISI channels is investigated.
机译:组合线性维特比均衡器(CLVE)是一类接收器,在维特比算法(VA)之前采用线性滤波器,以将原始信道冲激响应(CIR)整形为一些较短的所需冲激响应(DIR),从而允许较低的复杂度VA。最初提出CLVE技术是为了降低VA的复杂性,VA可以通过符号间干扰(ISI)信道对未编码传输执行最大似然序列估计(MLSE)。在本文中,我们采用CLVE技术来降低执行MLSE到ISI信道上的网格编码传输的VA的复杂性。此外,研究了在ISI信道上具有带宽有效的网格内码和里德-所罗门(RS)外码的高速率级联系统的简化状态序列估计。

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