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An improved scheme based on log-likelihood-ratio for lattice reduction-aided MIMO detection

机译:一种基于对数似然比的改进的格子减少辅助MIMO检测方案

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Lattice reduction (LR)-aided detectors have been shown great potentials in wireless communications for their low complexity and low bit-error-rate (BER) performance. The LR algorithms use the unimodular transformation to improve the orthogonality of the channel matrix. However, the LR algorithms only utilize the channel state information (CSI) and do not take account for the received signal, which is also important information in enhancing the performance of the detectors. In this paper, we make a readjustment of the received signal in the LR domain and propose a new scheme which is based on the log-likelihood-ratio (LLR) criterion to improve the LR-aided detectors. The motivation of using the LLR criterion is that it utilizes both the received signal and the CSI, so that it can provide exact pairwise error probabilities (PEPs) of the symbols. Then, in the proposed scheme, we design the LLR-based transformation algorithm (TA) which uses the unimodular transformation to minimize the PEPs of the symbols by the LLR criterion. Note that the PEPs of the symbols affect the error propagation in the vertical Bell Laboratories Layered Space-Time (VBLAST) detector, and decreasing the PEPs can reduce the error propagation in the VBLAST detectors; thus, our LLR-based TA-aided VBLAST detectors will exhibit better BER performance than the previous LR-aided VBLAST detectors. Both the BER performance and the computational complexity are demonstrated through the simulation results.
机译:格子减少(LR)辅助检测器因其低复杂度和低误码率(BER)性能而在无线通信中显示出巨大潜力。 LR算法使用单模变换来改善信道矩阵的正交性。但是,LR算法仅利用信道状态信息(CSI),而没有考虑接收信号,这也是增强检测器性能的重要信息。在本文中,我们对LR域中的接收信号进行了调整,并提出了一种基于对数似然比(LLR)准则的新方案,以改进LR辅助检测器。使用LLR准则的动机是它同时利用了接收信号和CSI,因此它可以提供符号的精确成对错误概率(PEP)。然后,在提出的方案中,我们设计了基于LLR的变换算法(TA),该算法使用单模变换,以LLR准则最小化符号的PEP。请注意,符号的PEP会影响垂直Bell实验室分层时空(VBLAST)检测器中的误差传播,而减小PEP可以减少VBLAST检测器中的误差传播。因此,与以前的LR辅助VBLAST检测器相比,基于LLR的TA辅助VBLAST检测器将表现出更好的BER性能。仿真结果证明了BER性能和计算复杂性。

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