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Beam-Based Analog Self-Interference Cancellation in Full-Duplex MIMO Systems

机译:全双工MIMO系统中基于光束的模拟自干扰消除

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摘要

Self-interference (SI) cancellation for full-duplex (FD) multiple input multiple output (MIMO) systems is challenging due to both hardware and signal processing complexity. In this paper, a beam-based adaptive filter structure with analog least mean square (ALMS) loops is proposed to significantly reduce the complexity of SI cancellation for FD MIMO systems. With this structure, the number of adaptive filters required for SI cancellation scales linearly with the number of transmit beams rather than quadratically with the number of antennas. Furthermore, to avoid additional transmit chains used to up-convert the beam signals to generate reference signals for the ALMS loops, a novel method is proposed to select the optimized reference signals from all transmitted signals. In addition, our stationary analysis shows that the proposed structure for FD MIMO systems outperforms the ALMS loop employed for an FD single input single output system. Simulations are conducted to confirm the theoretical analyses.
机译:用于全双工(FD)的自干扰(SI)取消多输入多输出(MIMO)系统由于硬件和信号处理复杂性而挑战。在本文中,提出了一种基于光束的自适应滤波器结构,其具有模拟最小均方(ALMS)环路,以显着降低FD MIMO系统的SI取消的复杂性。利用这种结构,Si取消所需的自适应滤波器的数量与发射波束的数量线性缩放,而不是二次次地用天线的数量。此外,为了避免用于向上转换光束信号的额外发射链以产生用于ALMS环路的参考信号,提出了一种新的方法来选择来自所有发送信号的优化参考信号。此外,我们的静止分析表明,FD MIMO系统的所提出的结构优于用于FD单输入单输出系统的施舍环。进行仿真以确认理论分析。

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