mmEcho:一种基于毫米波的声学窃听方法

Pengfei Hu, Wenhao Li, Riccardo Spolaor, Xiuzhen Cheng
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引用次数: 5

摘要

针对私人或机密空间的声学窃听是最严重的隐私威胁之一。隔音室可能会降低这种风险,但它们无法阻止精密窃听,这是近年来新兴的研究趋势。研究人员已经研究了这种通过启用传感器的侧信道进行的声学窃听攻击。然而,这种攻击要么做出不切实际的假设,要么有相当大的限制。mmEcho是一种利用毫米波无线电信号精确测量由声波引起的物体微米级振动的声学窃听系统。与以前的工作相比,我们的窃听方法具有很高的准确性,并且不需要事先了解受害者。我们在广泛的现实环境和场景下评估了mmEcho的性能。我们的研究结果表明,mmEcho可以准确地重建来自不同距离、方向、混响物体、隔音体、口语和声级的移动声源的音频。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
mmEcho: A mmWave-based Acoustic Eavesdropping Method
Acoustic eavesdropping targeting private or confidential spaces is one of the most severe privacy threats. Soundproof rooms may reduce such risks, but they cannot prevent sophisticated eavesdropping, which has been an emerging research trend in recent years. Researchers have investigated such acoustic eavesdropping attacks via sensor-enabled side-channels. However, such attacks either make unrealistic assumptions or have considerable constraints. This paper introduces mmEcho, an acoustic eavesdropping system that uses a millimeter-wave radio signal to accurately measure the micrometer-level vibration of an object induced by sound waves. Compared with previous works, our eavesdropping method is highly accurate and requires no prior knowledge about the victim. We evaluate the performance of mmEcho under extensive real-world settings and scenarios. Our results show that mmEcho can accurately reconstruct audio from moving sources at various distances, orientations, reverberating objects, sound insulators, spoken languages, and sound levels.
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