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COVQ for MAP hard-decision demodulated channels

机译:MAP硬决策解调通道的COVQ

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摘要

We design a channel optimized vector quantizer (COVQ) for symbol-by-symbol maximum a posteriori (MAP) hard-decision demodulated channels. The main objective is to exploit the non-uniformity of the indices representing the quantized source via the MAP decoder and iteratively optimize the overall discrete channel (at the symbol level) jointly with the quantizer. We consider memoryless Gaussian and Gauss-Markov sources transmitted over a binary phase-shift keying modulated Rayleigh fading channel. Our scheme has less encoding computational and storage complexity (particularly for noisy channel conditions) than both conventional and soft-decision COVQ systems, which use hard-decision and soft-decision maximum likelihood demodulation, respectively. Furthermore, it provides a notable signal-to-distortion ratio gain over the former system, and in some cases it matches or outperforms the latter one.
机译:我们针对逐个符号最大后验(MAP)硬决策解调通道设计了通道优化矢量量化器(COVQ)。主要目的是通过MAP解码器利用表示量化源的索引的不均匀性,并与量化器一起迭代优化整个离散信道(在符号级别)。我们考虑通过二进制相移键控调制瑞利衰落信道传输的无记忆高斯和高斯-马尔可夫源。与分别使用硬判决和软判决最大似然解调的常规和软判决COVQ系统相比,我们的方案具有较少的编码计算和存储复杂性(尤其是在嘈杂的信道条件下)。此外,它在前一种系统上提供了显着的信噪比增益,在某些情况下,它与后一种系统匹配或优于后者。

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