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Metric Selection for Reduced-Complexity MAP Detectors in MIMO Systems

机译:MIMO系统中降低复杂度的MAP检测器的度量选择

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摘要

Reduced-complexity maximum a posteriori probability (MAP) signal detection is a promising technique for multiple-input multiple-output space division multiplexing (MIMO-SDM) transmission. These detectors avoid exhaustive searches for all possible transmitted symbol vectors by generating a set of candidate symbol vectors. One problem with the reduced-complexity MAP detectors when used in conjunction with soft input decoders is the inaccuracy of log likelihood ratio (LLR) values since they are computed from a handful of candidate symbol vectors, which degrades the subsequent decoding process. To rectify this weakness, this paper proposes an LLR computation scheme for reduced complexity MAP detectors. The unique feature of the proposed scheme is that it utilizes the statistical property of the MIMO channel metric to narrow down further the number of candidate symbol vectors. Toward this goal, metric selection is performed to select only a statistically "good" portion of the candidate symbol vectors. Computer simulation results show that the proposed LLR computation scheme is more effective than the existing schemes especially when the number of candidate symbol vectors becomes smaller in reduced-complexity MAP detection.
机译:降低复杂度的最大后验概率(MAP)信号检测是一种用于多输入多输出空分复用(MIMO-SDM)传输的有前途的技术。这些检测器通过生成一组候选符号向量来避免穷举搜索所有可能的传输符号向量。当与软输入解码器结合使用时,降低复杂度的MAP检测器的一个问题是对数似然比(LLR)值的不准确性,因为它们是从少数候选符号向量中计算出来的,这会降低后续的解码过程。为了纠正这一弱点,本文提出了一种用于降低复杂度的MAP检测器的LLR计算方案。所提出的方案的独特之处在于它利用MIMO信道度量的统计特性来进一步缩小候选符号向量的数量。为了实现该目标,执行度量选择以仅选择候选符号向量的统计上“良好”的部分。计算机仿真结果表明,所提出的LLR计算方案比现有方案更有效,尤其是在复杂度降低的MAP检测中候选符号向量的数量变小时。

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