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Robust Low Complexity Digital Self Interference Cancellation for Multi Channel Full Duplex Systems

机译:多通道全双工系统的鲁棒低复杂度数字自干扰消除

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Self interference in a communications system occurs when there is electromagnetic coupling between the transmission (TX) and reception (RX) radio frequency (RF) chains or antennas. This coupling degrades the system's RX sensitivity to incoming signals. In this paper a low complexity technique for self interference cancellation in multi channel systems is presented. In this scenario, multiple carriers at overlapping arbitrary bandwidths and powers are simultaneously received and transmitted by the system. Traditional algorithms for self-interference mitigation based on Recursive Least Squares (RLS) and Least Mean Squares (LMS), fail to provide sufficient rejection since the incoming signal is not spectrally white, which is critical for their performance. The proposed algorithm mitigates the interference by modeling the incoming multi carrier signal as an Auto-Regressive (AR) process and jointly estimates the AR parameters and self interference. The resulting algorithm can be implemented using a low complexity architecture comprised of only two RLS modules. The main advantage of the proposed technique over RLS and LMS is the robustness to the spectrum of arbitrary incoming signals and improved rejection levels of over 10dB. All of this is achieved while not compromising on low latency constraints.
机译:当传输(TX)和接收(RX)射频(RF)链或天线之间存在电磁耦合时,发生通信系统中的自干扰。该耦合降低了系统的Rx对输入信号的敏感性。本文介绍了多通道系统中自干扰消除的低复杂性技术。在这种情况下,系统通过重叠任意带宽和功率的多个载波同时接收和发送。基于递归最小二乘(RLS)和最小均方(LMS)的自干扰减轻的传统算法不能提供足够的抑制,因为输入信号不是光谱空白,这对于它们的性能至关重要。所提出的算法通过将传入的多载波信号建模为自动回归(AR)过程来缓解干扰,并共同估计AR参数和自干扰。可以使用仅由两个RLS模块组成的低复杂度架构来实现所得到的算法。所提出的技术通过RLS和LMS的主要优点是对任意输入信号的频谱的鲁棒性和改进的抑制水平超过10dB。所有这一切都是实现的,而在低延迟约束上没有损害。

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