Generalised spatial modulation for large-scale MIMO

Abdelhamid Younis, R. Mesleh, M. Renzo, H. Haas
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引用次数: 34

Abstract

In this paper, the performance of generalised spatial modulation (GSM) and spatial modulation (SM) is studied assuming channel estimation errors (CSEs) and correlated Rayleigh and Rician fading channels. A new, simple, accurate and general analytical closed-form upper bound for the average bit error ratio (ABER) performance of both systems is derived. The analytical bound is shown to be applicable to correlated and uncorrelated channels, as well as to small and large scale multiple-input multiple-output (MIMO) systems. The results demonstrate that GSM is more suitable for large-scale MIMO systems than SM. The performance gain of GSM over SM is about 5 dB. The results also show that SM is very robust to CSEs. Specifically, the performance degradation of SM in the presence of CSEs are 0.7 dB and 0.3 dB for Rayleigh and Rician fading channels respectively. Lastly, the findings in this paper underpin the suitability of both GSM and SM for future large-scale MIMO systems.
大规模MIMO的广义空间调制
本文研究了广义空间调制(GSM)和空间调制(SM)在信道估计误差(cse)和相关瑞利和瑞利衰落信道条件下的性能。给出了两种系统的平均误码率(ABER)性能的一个新的、简单、准确和通用的解析封闭上界。分析界适用于相关和不相关信道,以及小型和大型多输入多输出(MIMO)系统。结果表明,GSM比SM更适合大规模MIMO系统。GSM比SM的性能增益约为5db。结果还表明,SM对cse具有很强的鲁棒性。具体来说,在瑞利信道和瑞利信道中,CSEs存在时SM的性能下降分别为0.7 dB和0.3 dB。最后,本文的研究结果支持了GSM和SM在未来大规模MIMO系统中的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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