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Full-Duplex Massive MIMO Relaying Systems With Low-Resolution ADCs

机译:具有低分辨率ADC的全双工大规模MIMO中继系统

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This paper considers a multipair amplify-and-forward massive MIMO relaying system with low-resolution analog-to-digital converters (ADCs) at both the relay and destinations. The channel state information (CSI) at the relay is obtained via pilot training, which is then utilized to perform simple maximum-ratio combining/maximum-ratio transmission processing by the relay. Also, it is assumed that the destinations use statistical CSI to decode the transmitted signals. Exact and approximated closed-form expressions for the achievable sum rate are presented, which enable the efficient evaluation of the impact of key system parameters on the system performance. In addition, optimal relay power allocation scheme is studied, and power scaling law is characterized. It is found that, with only low-resolution ADCs at the relay, increasing the number of relay antennas is an effective method to compensate for the rate loss caused by coarse quantization. However, it becomes ineffective to handle the detrimental effect of low-resolution ADCs at the destination. Moreover, it is shown that deploying massive relay antenna arrays can still bring significant power savings, i.e., the transmit power of each source can be cut down proportional to to maintain a constant rate, where is the number of relay antennas.
机译:本文考虑了在中继和目的地均具有低分辨率模数转换器(ADC)的多对放大转发大型MIMO中继系统。中继器处的信道状态信息(CSI)是通过导频训练获得的,然后用于通过中继器执行简单的最大比率组合/最大比率传输处理。另外,假定目的地使用统计CSI来解码所发送的信号。给出了可达到的总和率的精确和近似闭合形式表达式,这些表达式可以有效地评估关键系统参数对系统性能的影响。此外,研究了最佳的继电器功率分配方案,并描述了功率定律。已经发现,仅在继电器处使用低分辨率ADC时,增加继电器天线的数量是一种补偿由粗量化引起的速率损失的有效方法。但是,在目的地处理低分辨率ADC的有害影响变得无效。而且,已经表明,部署大规模中继天线阵列仍可以带来显着的功率节省,即,可以与保持恒定速率成比例地削减每个源的发射功率,这是中继天线的数量。

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