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Low-complexity lattice reduction aided detection for generalised spatial modulation

机译:低复杂度晶格约简辅助检测,用于广义空间调制

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Generalised spatial modulation (GSM) was first introduced with the maximum-likelihood (ML) optimum decoder. However, ML decoder may be infeasible for practical implementation due to its exponential complexity especially when the number of antennas or the constellation size is large. Lattice reduction (LR) aided linear decoders are known to have much lower complexity while achieving near-optimal bit-error-rate (BER) performance in MIMO V-BLAST systems. In this paper, LR-aided linear decoders are applied to GSM systems for the first time, but the simulation results demonstrate unsatisfactory BER performances. Thereby, two improved LR-aided linear decoders are proposed in this work. The proposed schemes achieve significant BER performance enhancement compared to that of conventional LR-aided linear decoders as well as linear decoders including zero forcing (ZF) detection and minimum mean square error (MMSE) detection. Compared to the ML decoder, the proposed schemes can provide fairly lower complexities with small BER performance degradation.
机译:首次引入具有最大似然性(ML)最佳解码器的广义空间调制(GSM)。但是,由于ML解码器的指数复杂性,特别是在天线数或星座图较大时,ML解码器对于实际实现可能是不可行的。众所周知,在MIMO V-BLAST系统中,格子缩减(LR)辅助线性解码器具有低得多的复杂度,同时实现了接近最佳的误码率(BER)性能。本文首次将LR辅助线性解码器应用于GSM系统,但仿真结果表明BER性能不尽人意。因此,在这项工作中提出了两种改进的LR辅助线性解码器。与传统的LR辅助线性解码器以及包括零强制(ZF)检测和最小均方误差(MMSE)检测的线性解码器相比,所提出的方案实现了显着的BER性能增强。与ML解码器相比,提出的方案可以提供相当低的复杂度,并具有较小的BER性能下降。

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