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Frequency-Domain Hammerstein Self-Interference Canceller for In-Band Full-Duplex OFDM Systems

机译:带内全双工OFDM系统的频域Hammerstein自干扰消除器

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In-band full-duplex communications have been spotlighted because they can double the spectral efficiency of the current wireless communication systems. However, it is necessary to mitigate the self-interference (SI). Currently, several time-domain and frequency-domain SI cancellers have been proposed. Time-domain SI cancellers are based on the parallel Hammerstein (PH) model, and they have good flexibility with high computational cost. In contrast, frequency-domain SI cancellers can achieve high cancellation performance with low computational cost but they have less flexibility than time-domain PH based SI cancellers. In this paper, we propose a frequency-domain SI canceller based on the PH model. The proposed scheme estimates the frequency response of the SI channel and regenerates SI signals by the overlap- save method. Therefore, the computational complexity of the proposed scheme is less than time-domain PH based SI canceller. The performance of the proposed scheme is assessed by equivalent baseband signal simulations of a full-duplex transceiver. As a result, the proposed scheme achieves high SI cancellation as the time-domain PH based SI canceller with low computational cost. In addition, the convergence performance of the proposed scheme is faster than the time-domain scheme.
机译:带内全双工通信之所以受到关注,是因为它们可使当前无线通信系统的频谱效率提高一倍。但是,有必要减轻自干扰(SI)。当前,已经提出了几种时域和频域SI抵消器。时域SI抵消器基于并行Hammerstein(PH)模型,并且具有良好的灵活性和较高的计算成本。相反,频域SI抵消器可以以较低的计算成本实现较高的抵消性能,但与基于时域PH的SI抵消器相比,它们的灵活性较小。在本文中,我们提出了一种基于PH模型的频域SI抵消器。所提出的方案估计SI信道的频率响应,并通过重叠保存方法来再生SI信号。因此,所提出方案的计算复杂度小于基于时域PH的SI抵消器。拟议方案的性能通过全双工收发器的等效基带信号仿真进行评估。结果,所提出的方案实现了高SI消除,作为基于时域PH的SI消除器,具有较低的计算成本。另外,所提出的方案的收敛性能比时域方案更快。

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