Lab-STICC, Université de Bretagne Occidentale, CNRS, CS 93837, 6 Avenue Le Gorgeu, CEDEX 3, 29238 Brest, France.
Telecommunications and Information Technology Department, Military Technical Academy "Ferdinand I", 050141 Bucharest, Romania.
Sensors (Basel). 2022 Dec 8;22(24):9607. doi: 10.3390/s22249607.
Full-duplex (FD) communication systems allow for increased spectral efficiency but require effective self-interference cancellation (SIC) techniques to enable the proper reception of the signal of interest. The underlying idea of digital SIC is to estimate the self-interference (SI) channel based on the received signal and the known transmitted waveform. This is a challenging task since the SI channel involves, especially for mass-market FD transceivers, many nonlinear distortions produced by the impairments of the analog components from the receiving and transmitting chains. Hence, this paper first analyzes the power of the SI components under practical conditions and focuses on the most significant one, which is proven to be produced by the I/Q mixer imbalance. Then, a widely-linear digital SIC approach is adopted, which simultaneously deals with the direct SI and its image component caused by the I/Q imbalance. Finally, the performances achieved by linear and widely-linear SIC approaches are evaluated and compared using an experimental FD platform relying on software-defined radio technology and GNU Radio. Moreover, the considered experimental framework allows us to set different image rejection ratios for the transmission path I/Q mixer and to study its influence on the SIC capability of the discussed approaches.
全双工(FD)通信系统可以提高频谱效率,但需要有效的自干扰消除(SIC)技术来实现对感兴趣信号的正确接收。数字 SIC 的基本思想是根据接收信号和已知的发射波形来估计自干扰(SI)信道。这是一项具有挑战性的任务,因为 SI 信道涉及到,特别是对于大众市场的 FD 收发器,接收和发射链中的模拟组件的许多非线性失真。因此,本文首先分析了实际条件下 SI 分量的功率,并重点分析了其中最显著的分量,该分量是由 I/Q 混频器不平衡产生的。然后,采用了一种广泛线性的数字 SIC 方法,该方法同时处理由 I/Q 不平衡引起的直接 SI 及其镜像分量。最后,使用基于软件定义无线电技术和 GNU Radio 的实验性 FD 平台评估和比较了线性和广泛线性 SIC 方法的性能。此外,所考虑的实验框架允许我们为传输路径 I/Q 混频器设置不同的镜像抑制比,并研究其对所讨论方法的 SIC 能力的影响。