Validation of low-accuracy quantization in massive MIMO and constellation EVM analysis

C. Desset, L. Perre
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引用次数: 25

Abstract

Massive MIMO is a promising approach in order to increase the data rate of cellular systems while reducing their power consumption. While the concept is elegant, many potential show-stoppers have to be investigated, in order to make sure that the idea keeps its promises. On such element is the claim that massive MIMO systems can operate with very low digital signal processing accuracy, and hence reduced implementation complexity and power consumption. In this paper, we investigate the impact of digital quantization of massive MIMO at low resolution. Simulations show that the system can operate correctly with as few as 2 or 3 bits of digital resolution at the end of the digital chain, while limiting the degradation to 1 dB in required signal-to-noise ratio.
大规模MIMO和星座EVM分析中的低精度量化验证
大规模MIMO是一种很有前途的方法,可以提高蜂窝系统的数据速率,同时降低其功耗。虽然这个概念很优雅,但为了确保这个想法能兑现承诺,必须对许多潜在的阻碍因素进行调查。在这样的元素上,声称大规模MIMO系统可以以非常低的数字信号处理精度运行,从而降低了实现的复杂性和功耗。在本文中,我们研究了数字量化对低分辨率大规模MIMO的影响。仿真表明,该系统可以在数字链末端的数字分辨率低至2或3位的情况下正常运行,同时将所需信噪比的退化限制在1 dB。
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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