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Feasibility of in-band full-duplex radio transceivers with imperfect RF components: Analysis and enhanced cancellation algorithms

机译:具有不完美RF组件的带内全双工无线电收发器的可行性:分析和增强的取消算法

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In this paper we provide an overview regarding the feasibility of in-band full-duplex transceivers under imperfect RF components. We utilize results and findings from the recent research on full-duplex communications, while introducing also transmitter-induced thermal noise into the analysis. This means that the model of the RF impairments used in this paper is the most comprehensive thus far. By assuming realistic parameter values for the different transceiver components, it is shown that IQ imaging and transmitter-induced nonlinearities are the most significant sources of distortion in in-band full-duplex transceivers, in addition to linear self-interference. Motivated by this, we propose a novel augmented nonlinear digital self-interference canceller that is able to model and hence suppress all the essential transmitter imperfections jointly. This is also verified and demonstrated by extensive waveform simulations.
机译:在本文中,我们提供了关于在不完美RF组件下的带内全双工收发器的可行性的概述。我们利用了最近关于全双工通信研究的结果和结果,同时引入了发射器引起的热噪声进入分析。这意味着本文中使用的RF损伤模型是迄今为止最全面的障碍。通过假设不同收发器组件的现实参数值,示出IQ成像和发射器引起的非线性是带内的全双工收发器中最重要的失真源,除线性自干扰之外。由此激励,我们提出了一种新颖的增强非线性数字自干扰消除器,能够建模,从而共同抑制所有必不可少的发射机缺陷。这也通过广泛的波形模拟验证和证明。

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