A Fly on the Wall -- Exploiting Acoustic Side-Channels in Differential Pressure Sensors

Fuente: arXiv
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Auteurs principaux: Achamyeleh, Yonatan Gizachew, Fakih, Mohamad Habib, Garcia, Gabriel, Barua, Anomadarshi, Faruque, Mohammad Al
Format: Preprint
Publié: 2024
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author Achamyeleh, Yonatan Gizachew
Fakih, Mohamad Habib
Garcia, Gabriel
Barua, Anomadarshi
Faruque, Mohammad Al
author_facet Achamyeleh, Yonatan Gizachew
Fakih, Mohamad Habib
Garcia, Gabriel
Barua, Anomadarshi
Faruque, Mohammad Al
contents Differential Pressure Sensors are widely deployed to monitor critical environments. However, our research unveils a previously overlooked vulnerability: their high sensitivity to pressure variations makes them susceptible to acoustic side-channel attacks. We demonstrate that the pressure-sensing diaphragms in DPS can inadvertently capture subtle air vibrations caused by speech, which propagate through the sensor's components and affect the pressure readings. Exploiting this discovery, we introduce BaroVox, a novel attack that reconstructs speech from DPS readings, effectively turning DPS into a "fly on the wall." We model the effect of sound on DPS, exploring the limits and challenges of acoustic leakage. To overcome these challenges, we propose two solutions: a signal-processing approach using a unique spectral subtraction method and a deep learning-based approach for keyword classification. Evaluations under various conditions demonstrate BaroVox's effectiveness, achieving a word error rate of 0.29 for manual recognition and 90.51% accuracy for automatic recognition. Our findings highlight the significant privacy implications of this vulnerability. We also discuss potential defense strategies to mitigate the risks posed by BaroVox.
format Preprint
id arxiv_https___arxiv_org_abs_2409_18213
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A Fly on the Wall -- Exploiting Acoustic Side-Channels in Differential Pressure Sensors
Achamyeleh, Yonatan Gizachew
Fakih, Mohamad Habib
Garcia, Gabriel
Barua, Anomadarshi
Faruque, Mohammad Al
Sound
Audio and Speech Processing
Differential Pressure Sensors are widely deployed to monitor critical environments. However, our research unveils a previously overlooked vulnerability: their high sensitivity to pressure variations makes them susceptible to acoustic side-channel attacks. We demonstrate that the pressure-sensing diaphragms in DPS can inadvertently capture subtle air vibrations caused by speech, which propagate through the sensor's components and affect the pressure readings. Exploiting this discovery, we introduce BaroVox, a novel attack that reconstructs speech from DPS readings, effectively turning DPS into a "fly on the wall." We model the effect of sound on DPS, exploring the limits and challenges of acoustic leakage. To overcome these challenges, we propose two solutions: a signal-processing approach using a unique spectral subtraction method and a deep learning-based approach for keyword classification. Evaluations under various conditions demonstrate BaroVox's effectiveness, achieving a word error rate of 0.29 for manual recognition and 90.51% accuracy for automatic recognition. Our findings highlight the significant privacy implications of this vulnerability. We also discuss potential defense strategies to mitigate the risks posed by BaroVox.
title A Fly on the Wall -- Exploiting Acoustic Side-Channels in Differential Pressure Sensors
topic Sound
Audio and Speech Processing
url https://arxiv.org/abs/2409.18213