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Iterative Self-Interference Mitigation in Full-Duplex Wireless Communications

机译:全双工无线通信中的迭代自干扰缓解

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摘要

This paper considers a full-duplex wireless communication system in which detection of the desired signal is hindered not only by the self-interference (SI), but also phase noise, in-phase and quadrature-phase imbalance and power amplifier's nonlinearity distortion. An iterative algorithm is proposed in which the processes of SI cancellation and detection of the desired signal aid each other in each iteration. In each iteration, the SI cancellation process performs widely linear estimation of the SI channel and compensates for physical impairments to improve the detection performance of the desired signal. The detected desired signal is in turn removed from the received signal to improve SI channel estimation and SI cancellation in the next iteration. Simulation results show that the proposed algorithm significantly outperforms existing algorithms in SI cancellation and detection of the desired signal.
机译:本文考虑了一个全双工无线通信系统,其中不仅通过自干扰(SI)而且阻碍了所需信号的检测,而且是相位噪声,同相和正交相位不平衡和功率放大器的非线性失真。 提出了一种迭代算法,其中Si取消的过程和在每次迭代中彼此互相辅助的所需信号的过程。 在每次迭代中,SI取消过程执行SI信道的广泛线性估计,并补偿物理损伤以改善所需信号的检测性能。 检测到的期望信号又从接收信号中移除,以在下一次迭代中提高SI信道估计和SI消除。 仿真结果表明,该算法显着优异地优于Si取消的现有算法和所需信号的检测。

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