Channel reciprocity of compact antenna array and the calibration

Jing Shi, Qinglin Luo, Huan Sun
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引用次数: 6

Abstract

Channel reciprocity is regarded as one of the most important advantages of TDD systems. However, the uplink (UL) and downlink (DL) channels are not actually reciprocal because of different characteristics of transmitters (TXs) and receivers (RXs). When the antenna elements are placed with large distance, the Radio Frequency (RF) gain mismatch of TXs and RXs is the dominant un-reciprocal factor, but if the antenna elements are placed close, such as compact antenna array, mutual coupling (MC) should be considered. In general, the MC effects for a transmitting and receiving array are different, even if the physical geometry of the array remains unchanged. Conventional reciprocity calibration methods mainly target at compensating RF gain mismatch and regard reciprocity error as diagonal matrix. However, the reciprocity error is no longer diagonal for compact antenna array due to the un-reciprocal MC of TXs and RXs, and thus the conventional calibration methods do not work in this scenario. In this paper, a comprehensive reciprocity error model is proposed firstly, and a combined MMSE and dot-division calibration scheme is then presented for calibrating MC and RF mismatch at the same time. Link level simulation results demonstrate the efficiency of the proposed scheme. The calibration method can well calibrate the UL and DL channel reciprocity, and the performance can be boosted up to around 1dB∼2dB less than the ideal reciprocal case.
紧凑型天线阵的信道互易性及其校正
信道互易性被认为是TDD系统最重要的优点之一。但是,由于发射器(TXs)和接收器(RXs)的特性不同,上行通道(UL)和下行通道(DL)实际上并不是对等的。当天线单元放置距离较远时,天线单元与天线单元的射频增益失配是主要的非互反因素,但如果天线单元放置距离较近,如紧凑的天线阵列,则应考虑互耦(MC)。一般来说,即使阵列的物理几何形状保持不变,发射和接收阵列的MC效应也是不同的。传统的互易校准方法主要以补偿射频增益失配为目标,将互易误差视为对角矩阵。然而,由于TXs和rx的非互反MC,紧凑天线阵列的互易误差不再是对角线,因此传统的校准方法无法在这种情况下工作。本文首先提出了一种综合互易误差模型,然后提出了一种同时校正MC和RF失配的MMSE和点分相结合的校准方案。链路级仿真结果验证了该方案的有效性。该校准方法可以很好地校准UL和DL通道的互易性,并且可以将性能提高到比理想互易情况小1dB ~ 2dB左右。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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