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Analysis of the pairwise error probability of noninterleaved codes on the Rayleigh-fading channel

机译:瑞利衰落信道上非交织码的成对错误概率分析

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The majority of previous analytical studies of signal-space coding techniques (includes trellis and block codes) on the Rayleigh-fading channel have assumed ideal interleaving. The effect of finite interleaving on the performance of different coding schemes has been studied only by simulation In this paper we first derive a maximum likelihood (ML) decoder for codewords transmitted over a noninterleaved Rayleigh flat fading channel, followed by an exact expression for the pairwise error event probability of such a decoder. It includes phase shift keying (PSK), quadrature amplitude modulation (QAM) signal sets, trellis coded modulation (TCM) and block coded modulation (BCM) schemes, as well as coherent (ideal channel state information) and partially coherent (e.g., differential, pilot tone, etc.) detection. We derive an exact expression for the pairwise event probability in the case of very slow fading-i.e., the fading experienced by all the symbols of the codeword is highly correlated. We also show that the interleaving depth required to optimize code performance for a particular minimum fading bandwidth can be approximated by the first zero of the fading channel's auto-correlation function.
机译:先前在瑞利衰落信道上对信号空间编码技术(包括网格和分组码)的大多数分析研究都假定了理想的交织。仅通过仿真研究了有限交织对不同编码方案性能的影响。在本文中,我们首先针对通过非交织瑞利平坦衰落信道传输的码字推导最大似然(ML)解码器,然后给出成对的精确表达式这种解码器的错误事件概率。它包括相移键控(PSK),正交幅度调制(QAM)信号集,网格编码调制(TCM)和块编码调制(BCM)方案,以及相干(理想信道状态信息)和部分相干(例如差分) ,导频音等)检测。在非常慢的衰落情况下,我们得出了成对事件概率的精确表达式,即,码字的所有符号经历的衰落高度相关。我们还表明,对于特定的最小衰落带宽,优化代码性能所需的交织深度可以通过衰落信道的自相关函数的第一个零来近似。

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