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A cost-effective nonlinear self-interference canceller in full-duplex direct-conversion transceivers

机译:全双工直接转换收发器中具有成本效益的非线性自干扰消除器

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Cancellation of self-interference (SI) arising due to hardware nonidealities is a key issue in the design of mobile-scale full-duplex devices in future full-duplex (FD) communications. To efficiently address this issue in the baseband, we propose a cost-effective adaptive digital SI cancellation scheme for FD direct-conversion transceivers (DCTs) in the presence of major circuit imperfections, such as frequency-dependent la imbalance, power amplifier (PA) distortion, thermal noise and quantization noise. This is achieved by employing a recent complex dual channel estimation (CDC) framework which offers low computational complexity in the widely nonlinear model fitting task which underpins this problem, to yield a dual channel nonlinear complex least-mean-square (DC-NCLMS) based SI canceller. For rigor, a unified theoretical evaluation is further performed to illustrate the second order performance optimality and low computation requirements of DC-NCLMS in both the transient and steady state stages. Further, for enhanced convergence, the proposed SI cancellation structure is equipped with an affine projection based scheme and a prewhitening procedure. Simulations in practical FD DCT settings, compliant with orthogonal frequency division multiplexing (OFDM)-based IEEE 802.11ac standard, support the findings. (C) 2018 Elsevier B.V. All rights reserved.
机译:由硬件不理想引起的自干扰(SI)消除是未来全双工(FD)通信中移动规模全双工设备设计中的关键问题。为了在基带中有效解决此问题,我们针对存在主要电路缺陷(例如,频率相关的la不平衡,功率放大器(PA))的情况,为FD直接转换收发器(DCT)提出了一种经济高效的自适应数字SI消除方案失真,热噪声和量化噪声。这是通过采用最新的复数双通道估计(CDC)框架实现的,该框架在支持该问题的广泛非线性模型拟合任务中提供了低计算复杂性,从而产生了基于双通道非线性复数最小均方(DC-NCLMS)的模型SI抵消器。为了严格起见,进一步进行了统一的理论评估,以说明DC-NCLMS在瞬态和稳态阶段的二阶性能最优性和较低的计算要求。此外,为了增强收敛性,所提出的SI消除结构配备有基于仿射投影的方案和预白化过程。符合基于正交频分复用(OFDM)的IEEE 802.11ac标准的实际FD DCT设置中的仿真支持了这一发现。 (C)2018 Elsevier B.V.保留所有权利。

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