RF-Parrot: Wireless Eavesdropping on Wired Audio
Yanni Yang, Genglin Wang, Zhenlin An, Guoming Zhang, Xiuzhen Cheng, Pengfei Hu
摘要
Recent works demonstrated that we can eavesdrop on audio by using radio frequency signals or videos to capture the physical surface vibrations of surrounding objects. They fall short when it comes to intercepting internally transmitted audio through wires. In this work, we first address this gap by proposing a new eavesdropping system, RF-Parrot, that can wirelessly capture the audio signal transmitted in earphone wires.
Our system involves embedding a tiny field-effect transistor in the wire to create a battery-free retroreflector, with its reflective efficiency tied to the audio signal's amplitude. To capture full details of the analog audio signals, we engineered a novel retroreflector using a depletion-mode MOSFET, which can be activated by any voltage of the audio signals, ensuring no information loss. We also developed a theoretical model to demystify the nonlinear transmission of the retroreflector, identifying it as a convolution operation on the audio spectrum. Subsequently, we have designed a novel convolutional neural network-based model to accurately reconstruct the original audio. Our extensive experimental results demonstrate that the reconstructed audio bears a strong resemblance to the original audio, achieving an impressive 95% accuracy in speech command recognition.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
引用它的顶会 Paper3
- RadEar: A Self-Supervised RF Backscatter System for Voice Eavesdropping and SeparationQijun Wang, Peihao Yan, Chunqi Qian, Huacheng ZengINFOCOM 2026 · 被引用 2 次
- EveGuard: Defeating Vibration-based Side-Channel Eavesdropping with Audio Adversarial PerturbationsJung-Woo Chang, Ke Sun, David Xia, Xinyu Zhang 等S&P 2025
- Injected and Leaked: Actively Inducing Side-Channel Leakage Using Electromagnetic Injection and Hardware NonlinearityHaoran Yan, Ziyu Shao, Shuhao Zhang, Qinhong Jiang 等USENIX Security 2026
它引用的顶会 Paper9
- AccEar: Accelerometer Acoustic Eavesdropping with Unconstrained VocabularyPengfei Hu, Hui Zhuang, Panneer Selvam Santhalingam, Riccardo Spolaor 等S&P 2022 · 被引用 65 次
- MILLIEAR: Millimeter-wave Acoustic Eavesdropping with Unconstrained VocabularyPengfei Hu, Yifan Ma, Panneer Selvam Santhalingam, Parth H. Pathak 等INFOCOM 2022 · 被引用 60 次
- Multi-SpectroGAN: High-Diversity and High-Fidelity Spectrogram Generation with Adversarial Style Combination for Speech SynthesisSang-Hoon Lee, Hyun-Wook Yoon, Hyeong-Rae Noh, Ji-Hoon Kim 等AAAI 2021 · 被引用 60 次
- mmEve: eavesdropping on smartphone's earpiece via COTS mmWave deviceChao Wang, Feng Lin, Tiantian Liu, Kaidi Zheng 等MobiCom 2022 · 被引用 60 次
- mmPhone: Acoustic Eavesdropping on Loudspeakers via mmWave-characterized Piezoelectric EffectChao Wang, Feng Lin, Tiantian Liu, Ziwei Liu 等INFOCOM 2022 · 被引用 46 次
相关 Paper
- EMTap: Eavesdropping on Sound Transmitted via Audio Cables by Sensing Electromagnetic Variation Using RFIDYunzhong Chen, Jiadi Yu, Hao Kong, Daqiang Zhang 等UbiComp 2025 · 被引用 2 次
- Eavesdropping on Black-box Mobile Devices via Audio Amplifier's EMRHuiling Chen, Wenqiang Jin, Yupeng Hu, Zhenyu Ning 等NDSS 2024
- Thru-the-wall Eavesdropping on Loudspeakers via RFID by Capturing Sub-mm Level VibrationChuyu Wang, Lei Xie, Yuancan Lin, Wei Wang 等UbiComp 2022 · 被引用 43 次
- mmEar: Push the Limit of COTS mmWave Eavesdropping on HeadphonesXiangyu Xu, Yu Chen, Zhen Ling, Li Lu 等INFOCOM 2024 · 被引用 9 次
- EchoLLM: LLM-Augmented Acoustic Eavesdropping Attack on Bone Conduction Headphones with mmWave RadarXin Yao, Kecheng Huang, Yimin Chen, Jiawei Guo 等USENIX Security 2025
