Parallel APSM for Fast and Adaptive Digital SIC in Full-Duplex Transceivers with Nonlinearity

M. Attar, Omid Taghizadeh, Kaixin Chang, Ramez Askar, Matthias Mehlhose, Sławomir Stańczak
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引用次数: 2

Abstract

This paper presents a kernel-based adaptive filter that is applied for the digital domain self-interference cancellation (SIC) in a transceiver operating in full-duplex (FD) mode. In FD, the benefit of simultaneous transmission and receiving of signals comes at the price of strong self-interference (SI). In this work, we are primarily interested in suppressing the SI using an adaptive filter namely adaptive projected subgradient method (APSM) in a reproducing kernel Hilbert space (RKHS) of functions. Using the projection concept as a powerful tool, APSM is used to model and consequently remove the SI. A low-complexity and fast-tracking algorithm is provided taking advantage of parallel projections as well as the kernel trick in RKHS. The performance of the proposed method is evaluated on real measurement data. The method illustrates the good performance of the proposed adaptive filter, compared to the known popular benchmarks. They demonstrate that the kernel-based algorithm achieves a favorable level of digital SIC while enabling parallel computation-based implementation within a rich and nonlinear function space, thanks to the employed adaptive filtering method.
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非线性全双工收发器中快速自适应数字SIC的并行APSM
提出了一种基于核的自适应滤波器,用于全双工(FD)模式收发器的数字域自干扰消除。在FD中,同时传输和接收信号的好处是以强自干扰(SI)为代价的。在这项工作中,我们主要对在函数的再现核希尔伯特空间(RKHS)中使用自适应滤波器即自适应投影子梯度方法(APSM)抑制SI感兴趣。利用投影概念作为一种强大的工具,APSM用于建模并最终去除SI。利用RKHS中的并行投影和核技巧,提出了一种低复杂度、快速跟踪的算法。用实测数据对该方法的性能进行了评价。与已知的常用基准相比,该方法证明了所提出的自适应滤波器的良好性能。他们证明,由于采用了自适应滤波方法,基于核的算法实现了良好的数字SIC水平,同时在丰富的非线性函数空间内实现了基于并行计算的实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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