大规模MIMO系统的时空相关信道反馈

Yao Ge, Zhimin Zeng, Tiankui Zhang, Yuanwei Liu
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引用次数: 1

摘要

在传统的多输入多输出(MIMO)系统中,准确的信道状态信息是实现全复用和分集增益的关键。在频分双工(FDD)系统中,它是通过下行链路训练和上行链路反馈获得的。然而,大规模MIMO系统的训练和反馈开销对于在BS上装备的大量天线是不可接受的。为了减少CSI反馈开销,提高CSI量化精度,提出了一种用于时空相关海量MIMO信道的有限反馈方案。该方案对CSI进行了karhunen - lo变换(KLT)和极帽量化。对于密集部署的天线,在大规模MIMO信道中存在空间相关性。当用户设备(UE)移动缓慢时,相邻信道具有时间相关性。通过KLT压缩高维空间相关的CSI。然后将压缩后的CSI归一化为各向同性,进行极帽量化。仿真结果表明,该方案能够在有限反馈比特的情况下提高大规模MIMO系统的和速率性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spatio-temporal Correlated Channel Feedback for Massive MIMO Systems
Accurate channel state information (CSI) at base station (BS) is the key to achieve full multiplexing and diversity gain in traditional multiple-input multiple-output (MIMO) systems. In frequency-division-duplex (FDD) systems, it is obtained through downlink training and uplink feedback. However, the training and feedback overhead in massive MIMO systems is unacceptable for the large number of antennas equipped at BS. To reduce the CSI feedback overhead and improve CSI quantization accuracy, we propose a limited feedback scheme for spatio-temporal correlated massive MIMO channel. The proposed scheme jointly performs Karhunen-Loève transform (KLT) and polar-cap quantization on CSI. For the compactly deployed antennas at BS, there exists spatial correlation in massive MIMO channel. When the user equipment (UE) moves slowly, adjacent channels feature temporal correlation. The high dimensional and spatial correlated CSI is compressed through KLT. Then the compressed CSI is normalized to be isotropic to perform polar-cap quantization. Simulation results show that the proposed scheme is capable of improving the sum-rate performance with limited feedback bits for massive MIMO systems.
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