具有延迟CSIT和信道预测的下行大规模MIMO线性预编码

Anastasios K. Papazafeiropoulos, T. Ratnarajah
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引用次数: 29

摘要

我们考虑了时分双工(TDD) MIMO系统的多小区多用户下行信道,其中基站(BSs)采用大规模MIMO的概念,即它们配备了大量天线。此外,用户数量也以同样的速度增长。针对信道的实际损害,如导频污染,特别是发射机的信道状态信息延迟(CSIT),我们推导了正则化零强迫(RZF)预编码的和速率近近值,它提供了容量损失的量化。因此,我们认为有必要通过在我们的分析中纳入避免延迟CSIT导致的退化的信道预测来获得确定性的等效和率。仿真结果表明,该方法对实际系统尺寸是准确的。最后,我们展示了在和速率中应用RZF与在相同的多普勒频移中使用本征波束形成(BF)相比的好处,并且没有额外的计算复杂度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Linear precoding for downlink massive MIMO with delayed CSIT and channel prediction
We consider a multi-cell multi-user downlink channel of a time-division duplex (TDD) MIMO system, where the base stations (BSs) employ the concept of massive MIMO, i.e., they are equipped with a large number of antennas. In addition, the number of users increases with the same speed. Focusing on the practical impairments of the channel such as pilot contamination and, in particular, delayed channel state information at the transmitter (CSIT), we derive an approximation of the sum rate with regularized zero-forcing (RZF) precoding, which provides a quantification of the capacity loss. As a result, it is deemed necessary to obtain the deterministic equivalent sum rate by incorporating in our analysis channel prediction circumventing the degradation due to delayed CSIT. The proposed results are accurate for realistic system dimensions, as simulations testify. Finally, we show the benefits of applying RZF in the sum rate against using eigenbeamforming (BF) for the same Doppler shift with no extra computational complexity.
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