Non-Consensus Crystal Oscillators Enhanced Radio Frequency Fingerprinting: State-of-The-Art

Yi Hao, Xintao Huan, Kaitao Miao, Han Hu
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Abstract

Consensus problem has been extensively studied in time synchronization for approaching non-consensus clocks to a common time frame. The non-consensus clocks driven by crystal oscillators, per se, are adequate features for device fingerprinting, however. A reflection of the non-consensus crystal oscillator in radio frequency (RF) is the carrier frequency offset (CFO), which has been put under the spotlight in the recent RF fingerprinting research. In this paper, we first investigate the relationship between crystal oscillator and CFO, with illustrating the application of CFO in achieving RF fingerprinting. We then conduct a review on the existing RF fingerprinting schemes leveraging CFO as a critical feature for identification. We also review the state-of-the-art schemes advocating CFO compensation for fingerprinting. Interestingly, two contradictory viewpoints on CFO both promote the research on RF fingerprinting in terms of such as identification accuracy.
非共识晶体振荡器增强射频指纹识别:最先进的
共识问题在时间同步中得到了广泛的研究,以使非共识时钟接近一个共同的时间框架。然而,由晶体振荡器驱动的非共识时钟本身就足以用于设备指纹识别。非一致晶振在射频(RF)中的反映是载波频率偏移(CFO),这是近年来射频指纹识别研究的热点问题。本文首先研究晶体振荡器与CFO之间的关系,并举例说明CFO在射频指纹识别中的应用。然后,我们对现有的射频指纹识别方案进行审查,利用CFO作为识别的关键特征。我们还回顾了最先进的方案,倡导首席财务官的薪酬指纹。有趣的是,两种相互矛盾的CFO观点在识别精度等方面都促进了射频指纹技术的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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