Channel reciprocity of compact antenna array and the calibration

PIMRC(2011)

引用 4|浏览13
暂无评分
摘要
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.
更多
查看译文
关键词
transmitting array,link level,calibration,transmitting antennas,radiofrequency gain mismatch,channel reciprocity,mmse,receiving antennas,mutual coupling,antenna arrays,dot-division calibration,least mean squares methods,antenna elements,un-reciprocal factor,uplink channels,receiving array,tdd systems,channel re,compact antenna array,downlink channels,reciprocity error,antenna array,radio frequency
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要