Positive-Negative Array-Element Based Single-Antenna Full-Duplex Self-Interference Mitigation

Wenchi Cheng, Jianyu Wang, Hailin Zhang
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Abstract

Full-duplex (FD), where the terminal transmits and receives signals simultaneously using the same frequency-band and time-slots, has been treated as one of the potential candidate techniques to enhance the spectrum of future wireless communications. However, one of critical problems in wireless FD communications is how to efficiently mitigate the self-interference (SI) while achieving the maximum spectrum efficiency. In this paper, we develop novel positive-negative array-element based SI mitigation scheme for wireless FD communications. In particular, we formulate the system model for positive-negative array-element based SI mitigation scheme. Then, based on the system model, we analyze the performance of the SI mitigation scheme. Simulation results verify our theoretical analyses and show that our developed SI mitigation schemes can significantly reduce SI for wireless FD communications.
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基于正负阵列元件的单天线全双工自干扰抑制
全双工(FD),即终端使用相同的频带和时隙同时发送和接收信号,已被视为增强未来无线通信频谱的潜在候选技术之一。然而,无线FD通信的关键问题之一是如何有效地减轻自干扰,同时实现最大的频谱效率。在本文中,我们开发了一种新的基于正负阵列元件的无线FD通信的SI缓解方案。特别地,我们建立了基于正-负阵列单元的SI缓解方案的系统模型。然后,在系统模型的基础上,分析了SI缓解方案的性能。仿真结果验证了我们的理论分析,并表明我们开发的SI缓解方案可以显着降低无线FD通信的SI。
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