ChirpEye: Passive Sensing and Profiling of FMCW Radars with a Resource-constrained Tag
Mingyue Tang, Jizheng He, Ryu Okubo, Dhruv Panchmia, Elahe Soltanaghai
摘要
As Frequency-Modulated Continuous Wave (FMCW) radar systems become increasingly prevalent across various sensing applications, detecting their presence is crucial to mitigate interference and address potential security risks. Existing methods for spectrum sensing or detecting unintended Radio Frequency (RF) transmissions rely on expensive specialized hardware because these radars typically operate in the GHz frequency range and utilize large bandwidths. To overcome these limitations, we present ChirpEye, a simple but effective tag design that is capable of identifying FMCW radar waveforms without requiring prior knowledge of radar parameters such as chirp slope, operating frequency, or bandwidth. In addition, ChirpEye can identify the direction of incident signal, hinting at the potential location of the radar. The key innovation of ChirpEye lies in its novel tag design, which uses multiple antennas and delay lines to process GHz-level radar signals with only kHz sampling rates. The tag structure generates unique baseband frequencies that are proportional to FMCW waveform parameters. We also propose a new super-resolution algorithm, called Spectra-MUSIC, which can accurately estimate these beat frequencies from noisy data. Our extensive evaluations demonstrate that ChirpEye achieves 99% accuracy in detecting FMCW radars at distances up to 15 meters with less than 5% median error in estimating the radar chirp slope and less than 15 degrees median error in estimating the direction of the radar.
问问这篇 Paper
问问你的智能体。
Lune 读过与它相关的顶会 Paper,每个回答都会注明依据哪几篇。
相关 Paper
- MilliSign: mmWave-Based Passive Signs for Guiding UAVs in Poor Visibility ConditionsTatsuya Iizuka, Takuya Sasatani, Toru Nakamura, Naoko Kosaka 等MobiCom 2023 · 被引用 22 次
- MetaWave: Attacking mmWave Sensing with Meta-material-enhanced TagsXingyu Chen, Zhengxiong Li, Baicheng Chen, Yi Zhu 等NDSS 2023
- mmSpoof: Resilient Spoofing of Automotive Millimeter-wave Radars using Reflect ArrayRohith Reddy Vennam, Ish Kumar Jain, Kshitiz Bansal, Joshua Orozco 等S&P 2023
- MadRadar: A Black-Box Physical Layer Attack Framework on mmWave Automotive FMCW RadarsDavid Hunt, Kristen Angell, Zhenzhou Qi, Tingjun Chen 等NDSS 2024
- Integrated Two-way Radar Backscatter Communication and Sensing with Low-power IoT TagsRyu Okubo, Luke Jacobs, Jinhua Wang, Steven M. Bowers 等SIGCOMM 2024 · 被引用 18 次
