A Wolf in Sheep's Clothing: Spreading Deadly Pathogens Under the Disguise of Popular Music
Anomadarshi Barua, Yonatan Gizachew Achamyeleh, Mohammad Abdullah Al Faruque
Abstract
A Negative Pressure Room (NPR) is an essential requirement by the Bio-Safety Levels (BSLs) in biolabs or infectious-control hospitals to prevent deadly pathogens from being leaked from the facility. An NPR maintains a negative pressure inside with respect to the outside reference space so that microbes are contained inside of an NPR. Nowadays, differential pressure sensors (DPSs) are utilized by the Building Management Systems (BMSs) to control and monitor the negative pressure in an NPR. This paper demonstrates a non-invasive and stealthy attack on NPRs by spoofing a DPS at its resonant frequency. Our contributions are: (1) We show that DPSs used in NPRs typically have resonant frequencies in the audible range. (2) We use this finding to design malicious music to create resonance in DPSs, resulting in an overshooting in the DPS's normal pressure readings. (3) We show how the resonance in DPSs can fool the BMSs so that the NPR turns its negative pressure to a positive one, causing a potential leak of deadly microbes from NPRs. We do experiments on 8 DPSs from 5 different manufacturers to evaluate their resonant frequencies considering the sampling tube length and find resonance in 6 DPSs. We can achieve a 2.5 Pa change in negative pressure from a ∼7 cm distance when a sampling tube is not present and from a ∼2.5 cm distance for a 1 m sampling tube length. We also introduce an interval-time variation approach for an adversarial control over the negative pressure and show that the forged pressure can be varied within 12 -33 Pa. Our attack is also capable of attacking multiple NPRs simultaneously. Moreover, we demonstrate our attack at a real-world NPR located in an anonymous bioresearch facility, which is FDA approved and follows CDC guidelines. We also provide countermeasures to prevent the attack. CCS CONCEPTS • Security and privacy → Embedded systems security; Hardware attacks and countermeasures.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext c317f136-0a83-40f6-8936-3c9ee7b51adaCited by top-tier papers1
Ask how each one uses itBuilds on4
- DolphinAttack: Inaudible Voice CommandsGuoming Zhang, Chen Yan, Xiaoyu Ji, Tianchen Zhang et al.CCS 2017 · 753 citations
- Injected and Delivered: Fabricating Implicit Control over Actuation Systems by Spoofing Inertial SensorsYazhou Tu, Zhiqiang Lin, Insup Lee, Xiali HeiUSENIX Security 2018 · 132 citations
- Blue Note: How Intentional Acoustic Interference Damages Availability and Integrity in Hard Disk Drives and Operating SystemsConnor Bolton, Sara Rampazzi, Chaohao Li, Andrew Kwong et al.S&P 2018 · 41 citations
- Hall Spoofing: A Non-Invasive DoS Attack on Grid-Tied Solar InverterAnomadarshi Barua, Mohammad Abdullah Al FaruqueUSENIX Security 2020
Related papers
- BreathSign: Transparent and Continuous In-ear Authentication Using Bone-conducted Breathing BiometricsFeiyu Han, Panlong Yang, Shaojie Yan, Haohua Du et al.INFOCOM 2023 · 20 citations
- ReThink: Reveal the Threat of Electromagnetic Interference on Power InvertersFengchen Yang, Zihao Dan, Kaikai Pan, Chen Yan et al.NDSS 2025
- Devil in the Room: Triggering Audio Backdoors in the Physical WorldMeng Chen, Xiangyu Xu, Li Lu, Zhongjie Ba et al.USENIX Security 2024 · 7 citations
- Query-Based Black-Box Stealthy Sensor Attacks on Cyber-Physical SystemsShixiong Jiang, Weizhe Xu, Mengyu Liu, Fanxin KongDAC 2025
- mmEcho: A mmWave-based Acoustic Eavesdropping MethodPengfei Hu, Wenhao Li, Riccardo Spolaor, Xiuzhen ChengS&P 2023
