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Improved linear soft-input soft-output detection via soft feedback successive interference cancellation

机译:通过软反馈连续干扰消除,改进了线性软输入软输出检测

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摘要

We propose an improved minimum mean square error (MMSE) vertical Bell Labs layered space-time (V-BLAST) detection technique, called a soft input, soft output, and soft feedback (SIOF) V-BLAST detector, for turbo multi-input multioutput (Turbo-MIMO) systems. We derive a symbol estimator by minimizing the power of the interference plus noise, given a priori probabilities of undetected layer symbols and a posteriori probabilities for past detected layer symbols. For a low-complexity implementation, an approximate SIOF algorithm is presented, which allows for a time-invariant realization of the symbol ordering and an MMSE filtering process. Another implementation, referred to as the iterative SIOF algorithm is introduced, which decides on symbol detection order based on a posteriori symbol probabilities to improve the detection performance. Simulations performed on a space-time bit-interleaved coded modulation (STBICM) architecture over quasi-static MIMO fading channels demonstrate that the SIOF V-BLAST detector provides performance gains over previous Turbo-BLAST detectors, most notably when more transmit antennas are used.
机译:我们提出了一种改进的最小均方误差(MMSE)垂直Bell Labs分层时空(V-BLAST)检测技术,称为软输入,软输出和软反馈(SIOF)V-BLAST检测器,用于涡轮多输入多输出(Turbo-MIMO)系统。给定未检测到的层符号的先验概率和过去检测到的层符号的后验概率,我们通过最小化干扰加噪声的能力来推导符号估计器。对于低复杂度的实现,提出了一种近似的SIOF算法,该算法可实现符号排序和MMSE过滤过程的时不变实现。介绍了另一种称为迭代SIOF算法的实现,该算法根据后验符号概率决定符号检测顺序,以提高检测性能。在准静态MIMO衰落信道上对空时比特交织编码调制(STBICM)体系结构进行的仿真表明,SIOF V-BLAST检测器比以前的Turbo-BLAST检测器具有更高的性能,尤其是当使用更多发射天线时。

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