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1. 重庆大学通信与测控中心,重庆 400044
2. 重庆大学通信工程学院,重庆 400044
[ "吴皓威(1981-),男,湖北天门人,博士,重庆大学副研究员、硕士生导师,主要研究方向为无线局域网、宽带无线通信、飞行器测控等。" ]
[ "赵俊波(1991-),男,四川南充人,重庆大学硕士生,主要研究方向为全双工通信、网络安全等。" ]
[ "徐浩然(1991-),男,江苏张家港人,重庆大学硕士生,主要研究方向为无线局域网、飞行器测控等。" ]
[ "欧静兰(1981-),女,四川宜宾人,重庆大学副教授,主要研究方向为宽带无线通信、中继通信等。" ]
网络出版日期:2017-01,
纸质出版日期:2017-01-25
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吴皓威, 赵俊波, 徐浩然, 等. 全双工终端的收发I/Q不平衡估计与补偿算法[J]. 通信学报, 2017,38(1):141-148.
Hao-wei WU, Jun-bo ZHAO, Hao-ran XU, et al. Estimation and compensation for transmitter and receiver I/Q imbalance of full-duplex terminals[J]. Journal on communications, 2017, 38(1): 141-148.
吴皓威, 赵俊波, 徐浩然, 等. 全双工终端的收发I/Q不平衡估计与补偿算法[J]. 通信学报, 2017,38(1):141-148. DOI: 10.11959/j.issn.1000-436x.2017016.
Hao-wei WU, Jun-bo ZHAO, Hao-ran XU, et al. Estimation and compensation for transmitter and receiver I/Q imbalance of full-duplex terminals[J]. Journal on communications, 2017, 38(1): 141-148. DOI: 10.11959/j.issn.1000-436x.2017016.
针对直接变换收发结构的全双工通信终端中存在的I/Q不平衡问题,提出基于直接自干扰信号的收发I/Q不平衡参数估计与补偿算法。该算法无需外接标准的发射机或接收机进行参数估计,利用全双工结构中发射端泄露到接收端的直接自干扰信号,进行估计与分离,可分别获得收发I/Q不平衡参数,再进行发射前的预补偿和接收后的校正,使从外部来看该全双工终端的I/Q支路是平衡的,无需对其进行参数估计,从而降低整个系统信号处理的复杂度。仿真结果表明,所提算法不仅能够有效估计全双工终端的I/Q不平衡参数,还能对终端的收发I/Q不平衡分别进行补偿,从而提升系统整体性能。
In order to reduce I/Q imbalance of the full-duplex terminal with direct-conversion transceiver
an algorithm based on self-interference signal was proposed for the estimation and compensation of I/Q imbalance in both transmitter (Tx) and receiver (Rx).Without the perfect transmitter or receiver for I/Q imbalance estimation
the self-interference signal from Tx chain to Rx chain was used for parameter estimation and separation
and the Tx and Rx I/Q imbalance parameters were obtained
respectively.Then the pre-compensation before transmission and the correction after receiving was processed
so that there was nearly no I/Q imbalance in this full-duplex terminal from the view of the other terminals
and the complexity of the signal processing will be reduced as a result of the absent of the I/Q imbalance estimation.The simulation results show that the proposed algorithm can effectively estimate and compensate the I/Q imbalance of the full-duplex Tx & Rx terminal
and improve the overall signal quality and the system performance.
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