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Analog Least Mean Square Loop With I/Q Imbalance for Self-Interference Cancellation in Full-Duplex Radios

机译:具有I / Q不平衡的模拟最小均方环路,用于全双工无线电中的自干扰消除

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摘要

Analog least mean square (ALMS) loop is a promising structure for self-interference (SI) mitigation in full-duplex radios due to its simplicity and adaptive capability. However, being constructed from in-phase/quadrature (I/Q) demodulators and modulators to process complex signals, the ALMS loop may face I/Q imbalance problems. Thus, in this paper, the effects of frequency-independent I/Q imbalance in the ALMS loop are investigated. It is revealed that I/Q imbalance affects the loop gain and the level of SI cancellation. The loop gain can be easily compensated by adjusting the gain at other stages of the ALMS loop. Meanwhile, the degradation on cancellation performance is proved to be insignificant even under severe conditions of I/Q imbalance. In addition, an upper bound of the degradation factor is derived to provide an essential reference for the system design. Simulations are conducted to confirm the theoretical analyses.
机译:由于其简单性和自适应能力,模拟最小均方(ALMS)环路是一种有希望的全双工无线电缓解自干扰(SI)的结构。但是,由同相/正交(I / Q)解调器和调制器构成以处理复杂信号,ALMS环路可能会面临I / Q不平衡问题。因此,本文研究了ALMS环路中与频率无关的I / Q不平衡的影响。结果表明,I / Q不平衡会影响环路增益和SI消除水平。通过调整ALMS环路其他阶段的增益,可以轻松补偿环路增益。同时,即使在严重的I / Q不平衡条件下,抵消性能的降低也被证明是微不足道的。另外,得出劣化因子的上限以为系统设计提供必要的参考。进行仿真以确认理论分析。

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