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Full-Duplex Wireless Transceiver Self-Interference Cancellation Through FD-SOI Buried-Gate Signaling

机译:通过FD-SOI埋入式门控信号进行全双工无线收发器自干扰消除

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Full-Duplex (FD) transceiver architectures have recently gained increased attention due to their potential for doubling the theoretical spectral efficiency. One of the main challenges in FD transceivers is the self-interference (SI) from the local transmitter (TX). In this paper we present a novel analog SI cancellation technique through buried-gate signaling in the fully-depleted silicon-on-insulator (FD-SOI) process. The proposed technique attenuates the TX leakage in the receiver (RX) chain before gain is applied. This relaxes the dynamic range requirement of the later RX stages by the amount of attenuation offered by the buried-gate signaling. Further, in comparison to other published analog techniques, the proposed technique offers no penalty on RX noise figure. Measured results in a 28nm FD-SOI technology demonstrate 40–50dB of SI cancellation for TX leakage as high as −10dBm, and above 20dB for TX leakage of −5dBm, with no increase in the RX noise figure.
机译:全双工(FD)收发器体系结构由于具有将理论频谱效率提高一倍的潜力,因此最近受到了越来越多的关注。 FD收发器的主要挑战之一是来自本地发射器(TX)的自干扰(SI)。在本文中,我们介绍了一种通过完全耗尽绝缘体上硅(FD-SOI)工艺中的掩埋门信号传输的新型模拟SI消除技术。所提出的技术在应用增益之前衰减了接收器(RX)链中的TX泄漏。这通过掩埋门信令所提供的衰减量放松了后续RX级的动态范围要求。此外,与其他已发布的模拟技术相比,该提议的技术对RX噪声系数没有任何影响。在28nm FD-SOI技术中的测量结果表明,对于高达-10dBm的TX泄漏,SI抵消为40–50dB,对于-5dBm的TX泄漏,SI抵消为20dB以上,而RX噪声系数却没有增加。

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