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Impact of RF mismatches on the performance of massive MIMO systems with ZF precoding

机译:采用ZF预编码的RF失配对大规模MIMO系统性能的影响

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摘要

Thanks to the channel reciprocity, the time division duplex (TDD) operation is more preferred in massive multiple-input multiple-output (MIMO) systems. Avoiding the heavy feedback of downlink channel state information (CSI) from the user equipment (UE) to the base station (BS), the uplink CSI can be exploited for the downlink precoding. However, due to the mismatches of the radio frequency (RF) circuits at both sides of the link, the whole communication channels are usually not symmetric in practical systems. This paper is focused on the RF mismatches at the UEs and the BS for the multi-user massive MIMO systems with zero forcing (ZF) precoding. The closed-form expressions of the ergodic sum-rates are derived for evaluating the impact of RF mismatches on the system performance. Theoretical analysis and simulation results show that the RF mismatches at the UEs only lead to a negligible performance loss. However, it is imperative to perform reciprocity calibration at the BS, because the RF mismatches at the BS contribute to the inter-user interference (IUI) and result in a severe system performance degradation.
机译:由于信道互易性,在大规模多输入多输出(MIMO)系统中,时分双工(TDD)操作更为可取。避免了从用户设备(UE)到基站(BS)的下行链路信道状态信息(CSI)的大量反馈,可以将上行链路CSI用于下行链路预编码。但是,由于链路两侧的射频(RF)电路不匹配,因此整个通信通道在实际系统中通常不对称。本文着眼于具有零强迫(ZF)预编码的多用户大规模MIMO系统在UE和BS处的RF不匹配。得出遍历总速率的闭式表达式,以评估RF不匹配对系统性能的影响。理论分析和仿真结果表明,UE处的RF不匹配只会导致性能损失可忽略不计。但是,必须在BS上执行互易性校准,因为BS上的RF不匹配会导致用户间干扰(IUI),并导致严重的系统性能下降。

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