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Uplink Achievable Rate for Massive MIMO Systems With Low-Resolution ADC

机译:具有低分辨率ADC的大规模MIMO系统的上行链路可达到速率

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摘要

In this letter, we derive an approximate analytical expression for the uplink achievable rate of a massive multiinput multioutput (MIMO) antenna system when finite precision analog-digital converters (ADCs) and the common maximal-ratio combining technique are used at the receivers. To obtain this expression, we treat quantization noise as an additive quantization noise model. Considering the obtained expression, we show that low-resolution ADCs lead to a decrease in the achievable rate but the performance loss can be compensated by increasing the number of receiving antennas. In addition, we investigate the relation between the number of antennas and the ADC resolution, as well as the power-scaling law. These discussions support the feasibility of equipping highly economical ADCs with low resolution in practical massive MIMO systems.
机译:在这封信中,当接收器使用有限精度模数转换器(ADC)和常见的最大比率组合技术时,我们得出了大规模多输入多输出(MIMO)天线系统的上行链路可达到速率的近似解析表达式。为了获得该表达式,我们将量化噪声视为加法量化噪声模型。考虑到所获得的表达式,我们表明低分辨率ADC导致可实现速率的降低,但是可以通过增加接收天线的数量来补偿性能损失。此外,我们研究了天线数量与ADC分辨率之间的关系以及功率缩放定律。这些讨论支持在实际的大规模MIMO系统中配备具有低分辨率的经济型ADC的可行性。

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