Analog Least Mean Square Loops for Self-Interference Cancellation in In-Band Full-Duplex Systems

Anh Tuyen Le, Le Chung Tran, Xiaojing Huang, Jay Guo
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Abstract

Analog Least Mean Square (ALMS) loop is a promising method to cancel self-interference (SI) in in-band full-duplex (IBFD) systems. In this talk, the steady state analyses of the residual SI powers in both analog and digital domains are derived in frequency domain. It is proved that the ALMS loop amplifies the frequency components of the residual SI at the edges of the signal spectrum in the analog domain, but the matched filter in the receiver chain reduces this effect. This results in a significant improvement of the interference suppression ratio in the digital domain before information data detection. The lower bounds of the interference suppression ratio given by the ALMS loop in both analog and digital domains are then addressed. These lower bounds are proved to be joint effects of the loop gain, tap delay, number of taps, and transmitted signal properties. The discovered relationship among these parameters allows the flexibility in choosing appropriate parameters when designing the IBFD systems under given constraints. Finally, the effects of I/Q imbalance in the ALMS loop and the upper bound of the degradation on SI cancellation performance are then investigated. The degradation is proved to be insignificant even under severe conditions of I/Q imbalance. The upper bound of the degradation provides an essential reference for the system design.
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带内全双工系统中自干扰消除的模拟最小均方环
模拟最小均方环路(ALMS)是带内全双工(IBFD)系统中一种很有前途的消除自干扰(SI)的方法。在这次演讲中,在频域中推导了模拟域和数字域的剩余SI功率的稳态分析。在模拟域中,ALMS环路放大了信号频谱边缘残余SI的频率分量,而接收机链中的匹配滤波器则减小了这种影响。这使得信息数据检测前的数字域干扰抑制率有了显著提高。然后对模拟域和数字域由ALMS环路给出的干扰抑制比的下界进行了处理。这些下界被证明是环路增益、分接延迟、分接数和传输信号特性的共同影响。所发现的这些参数之间的关系允许在给定约束条件下设计IBFD系统时灵活地选择适当的参数。最后,研究了ALMS环路中I/Q不平衡和退化上界对SI对消性能的影响。即使在严重的I/Q不平衡条件下,这种退化也被证明是微不足道的。退化的上界为系统设计提供了重要的参考。
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