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Active Cancellation of Self-Interference for Full-Duplex Amplify and Forward Wi-Fi Relay

机译:主动消除全双工放大和转发Wi-Fi中继的自干扰

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摘要

This letter presents a Wi-Fi compliant self-interference (SI) active cancellation (AC) technique for amplify and forward full-duplex relay (AF-FDR) utilizing orthogonal frequency division multiplexing. First, we describe the system model of AF-FDR, where the relay transparently extends the range of the main access point (AP) to reach a station located outside the AP’s radio coverage. We highlight the SI (and its suppression) impact on FDR, due to simultaneous transmission/reception on the same frequency. We then present a novel Wi-Fi compliant estimation technique of the SI channel and its delay parameters, which are later used for AC, achieving SI suppression of up to an additional 35 dB. The proposed AF-FDR system is simulated in a fading channel environment with Doppler frequency of up to 10 Hz. Simulation results show cancellation gains within 1 dB of static channels with an SI training overhead of 1.5%.
机译:这封信提出了一种Wi-Fi兼容自干扰(SI)有源消除(AC)技术,用于利用正交频分复用来放大和转发全双工中继(AF-FDR)。首先,我们描述AF-FDR的系统模型,其中中继透明地扩展主接入点(AP)的范围,以到达位于AP无线电覆盖范围之外的站点。由于在相同频率上同时进行发送/接收,因此我们强调了SI(及其抑制)对FDR的影响。然后,我们介绍了一种新颖的SI信道及其延迟参数符合Wi-Fi的估算技术,该技术随后用于AC,可实现高达35 dB的SI抑制。所提出的AF-FDR系统是在多普勒频率高达10 Hz的衰落信道环境中进行仿真的。仿真结果表明,静态信道的消除增益在1 dB以内,SI训练开销为1.5%。

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