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Multidimensional Mappings for Iteratively Decoded BICM on Multiple-Antenna Channels

机译:多天线信道上迭代解码BICM的多维映射

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摘要

Multidimensional binary mappings for bit-interleaved coded modulations (BICMs) on ergodic multiple-antenna channels with iterative decoding are presented. After derivation of a closed-form expression for the pairwise error probability under ideal maximum-likelihood (ML) decoding, the design criterion for mapping optimization is established from the ML performance of the ideally interleaved channel. It coincides with the figure of merit derived from the genie condition when the iterative receiver converges to perfect a priori information. Multidimensional mapping constructions that exhibit high signal-to-noise ratio (SNR) gains without increasing the complexity of the a posteriori probability (APP) detection are proposed. They allow for a reduced decoding complexity as they achieve near turbo code performance with a single convolutional code.
机译:提出了遍历多天线信道上具有迭代解码的比特交织编码调制(BICM)的多维二进制映射。导出理想最大似然(ML)解码下成对错误概率的闭式表达式后,根据理想交错通道的ML性能,建立映射优化的设计标准。当迭代接收器收敛以完善先验信息时,它与从精灵条件得出的品质因数吻合。提出了具有高信噪比(SNR)增益而又不增加后验概率(APP)检测复杂性的多维映射结构。它们通过单个卷积码实现接近Turbo码的性能,从而降低了解码复杂度。

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