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Full- or half-duplex? A capacity analysis with bounded radio resources

机译:全双工或半双工?有限无线电资源的容量分析

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Full duplex communication requires nodes to cancel their own signal which appears as an interference at their receive antennas. Recent work has experimentally demonstrated the feasibility of full duplex communications using software radios. In this paper, we address capacity comparisons when the total amount of analog radio hardware is bounded. Under this constraint, it is not immediately clear if one should use these radios to perform full-duplex self-interference cancellation or use the radios to give additional MIMO multiplexing advantage. We find that repurposing radios for cancellation, instead of using all of them for half-duplex over-the-air transmission, can be beneficial since the resulting full-duplex system performs better in some practical SNR regimes and almost always outperforms half duplex in symmetric degrees-of-freedom (large SNR regime).
机译:全双工通信要求节点取消自己的信号,这些信号在其接收天线处表现为干扰。最近的工作通过实验证明了使用软件无线电进行全双工通信的可行性。在本文中,我们解决了模拟无线电硬件总量有限时的容量比较问题。在这种约束下,尚不清楚应使用这些无线电来执行全双工自干扰消除还是使用无线电来提供额外的MIMO复用优势。我们发现,重新使用无线电以消除干扰,而不是将它们全部用于半双工空中传输,可能会有所帮助,因为所得的全双工系统在某些实际的SNR方案中表现更好,并且在对称情况下几乎总是优于半双工。自由度(SNR大)。

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