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Performance Analysis of RF Self-interference Cancellation in Broadband Full Duplex Systems

机译:宽带全双工系统RF自干扰取消的性能分析

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Considering a broadband co-frequency and co-time full duplex (CCFD) transceiver, which transmits and receives at the same time and frequency resources, the previous studies propose many self-interference cancellation algorithms in the radio frequency (RF) domain, but lack their performance analysis. Therefore, we make an attempt to analyze the optimal self-interference cancellation performance in the RF domain of a CCFD transceiver, by adopting the general multi-tap self-interference cancellation structure. In detail, the optimal RF self-interference cancellation performance of a CCFD transceiver is derived by using the optimal parameters of the RF multitap self-interference canceller. By analysis and simulation, the optimal RF self-interference cancellation performance of a C-CFD transceiver is related with the signal bandwidth, carrier frequency, and differences between the multi-tap delays of the self-interference cancellation structure and multi-path delays of the self-interference channel.
机译:考虑到宽带共频和共同时间全双工(CCFD)收发器,其在同一时间和频率资源发送和接收,先前的研究提出了射频(RF)域中的许多自干扰消除算法,但缺乏他们的性能分析。因此,我们试图通过采用一般的多抽头自干扰消除结构来分析CCFD收发器的RF域中的最佳自干扰消除性能。详细地,通过使用RF MultoP自干扰消除器的最佳参数来导出CCFD收发器的最佳RF自干扰消除性能。通过分析和仿真,C-CFD收发器的最佳RF自干扰消除性能与信号带宽,载波频率和自干扰消除结构的多抽头延迟之间的差异有关,以及多路径延迟自干扰频道。

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