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Reduced-Complexity (Quasi-)Maximum-Likelihood Detectors with No Performance Degradation for S-QAM Modulated MIMO Systems

机译:S-QAM调制MIMO系统的降低复杂度(拟)最大似然检测器而不会降低性能

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摘要

This paper proposes a rotation and scaling based transformation method to simplify the (quasi-)maximum-likelihood (ML) detectors (such as QRD-M, sphere decoding (SD), etc.) for the square quadrature amplitude modulation (S-QAM) modulated multiple-input and multiple-output (MIMO) systems with no performance degradation. The key idea of the simplification is to utilize the symmetric shape of the S-QAM constellation so that after rotation and scaling, real multiplication and addition with certain constellation points in symbol replica generation simply transform into bit shifting or even vanish. As an illustrative example, the QRD-M detector is employed in this work. By using the proposed method, the number of real multiplications of the symbol replica generation required for the QRD-M detector is reduced by 50% and 25% for 4-QAM and 16-QAM, respectively. The numbers of real addition reduction is twice the amount of multiplication. The underlying principle of the proposed rotation and scaling transformation can be straightforwardly extended to amplitude and phase-shift keying (APSK) modulated MIMO systems employing the QRD-M, SD, list sequential sphere decoder (LISS), list sphere decoding (LSD), and the full ML detectors.
机译:本文提出了一种基于旋转和缩放的变换方法,以简化平方正交幅度调制(S-QAM)的(准)最大似然(ML)检测器(如QRD-M,球面解码(SD)等) )调制的多输入多输出(MIMO)系统,而不会降低性能。简化的关键思想是利用S-QAM星座的对称形状,以便在旋转和缩放后,在符号副本生成中与某些星座点的实数乘法和加法简单地转换为移位甚至消失。作为说明性示例,在这项工作中采用了QRD-M检测器。通过使用提出的方法,QRD-M检测器所需的符号副本生成的实数乘法次数分别对于4-QAM和16-QAM减少了50%和25%。实际加法减少的数量是乘法量的两倍。所提出的旋转和缩放变换的基本原理可以直接扩展到采用QRD-M,SD,列表顺序球解码器(LISS),列表球解码(LSD)的幅度和相移键控(APSK)调制MIMO系统以及完整的ML检测器。

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