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A Novel and Efficient Mapping of 32-QAM Constellation for BICM-ID Systems

机译:一种新颖且高效的BICM-ID系统32-QAM星座图

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摘要

Bit-interleaved coded modulation with iterative decoding (BICM-ID) is a bandwidth-efficient technique for both additive white Gaussian noise and fading channels. The asymptotic performance of BICM-ID is strongly determined by how the coded bits are mapped to the symbols of the signal constellation. In this paper an explicit mapping method is presented for 32-QAM using two criteria: (i) maximization of the minimum Euclidean distance between the symbols with Hamming distance one, and (ii) minimizing the number of symbols which have jointly the minimum Hamming distance and the minimum Euclidean distance from each other. Our method is much simpler than the previously-known methods. Compared to previously-known best mapping, the mapping obtained by our method performs significantly better in a BICM-ID system implemented with hard-decision feedback, while its asymptotic performance is almost the same in a BICM-ID system using soft-decision feedback.
机译:具有迭代解码功能的比特交织编码调制(BICM-ID)是一种针对加性高斯白噪声和衰落信道的带宽有效技术。 BICM-ID的渐近性能在很大程度上取决于编码位如何映射到信号星座图的符号。在本文中,使用两种标准提出了一种针对32-QAM的显式映射方法:(i)最大化汉明距离为1的符号之间的最小欧几里得距离,以及(ii)最小化共同具有最小汉明距离的符号的数量以及彼此之间的最小欧几里得距离。我们的方法比以前已知的方法简单得多。与以前已知的最佳映射相比,通过我们的方法获得的映射在使用硬决策反馈实现的BICM-ID系统中表现更好,而其渐近性能在使用软决策反馈的BICM-ID系统中几乎相同。

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