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首页> 外文期刊>Communications Letters, IEEE >Enhancing the Performance of the SIC-MMSE Iterative Receiver for Coded MIMO Systems via Companding
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Enhancing the Performance of the SIC-MMSE Iterative Receiver for Coded MIMO Systems via Companding

机译:通过压扩提高编码MIMO系统的SIC-MMSE迭代接收器的性能

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Iterative detection and decoding (IDD) method based on soft interference cancellation and minimum-mean squared-error filtering (SIC-MMSE) has received considerable attention in recent years due to its good performance-complexity tradeoff for coded multiple-input multiple-output (MIMO) systems. The Gaussianity of the a priori and a posteriori log-likelihood ratios (LLRs) computed at the constitute stages of the SIC-MMSE iterative receiver is a presumption for IDD to work. In this letter, the Gaussianity assumption is first shown to be not tight for high rate coded MIMO systems and thus leads to poor performance (for high rate coded MIMO systems). Then a non-linear companding based transformation method is incorporated into the SIC-MMSE iterative receiver to alleviate the non-Gaussianity of the a priori and a posteriori LLRs due to the imperfection of the (high-rate) code and per-stream approximation. Analytical and numerical results show that the proposed transformed SIC-MMSE iterative receiver achieves significant performances gains over the conventional one for coded MIMO systems, in particular, high rate coded ones with even lower computational complexity.
机译:近年来,基于软干扰消除和最小均方误差滤波(SIC-MMSE)的迭代检测和解码(IDD)方法因其在编码多输入多输出( MIMO)系统。在SIC-MMSE迭代接收器的构成阶段计算的先验和后验对数似然比(LLR)的高斯性是IDD工作的前提。在这封信中,首先显示了高斯假设对于高速率编码的MIMO系统而言并不严格,因此会导致性能较差(对于高速率编码的MIMO系统)。然后将基于非线性压扩的变换方法合并到SIC-MMSE迭代接收器中,以减轻由于(高速率)代码和每流逼近的不完善而导致的先验LLR和后验LLR的非高斯性。分析和数值结果表明,所提出的变换后的SIC-MMSE迭代接收机在编码MIMO系统上,尤其是在具有更高计算复杂度的高速率编码系统上,取得了比传统接收机更高的性能增益。

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