GhostTac: Manipulating Tactile Sensors without Physical Contact

📅 2026-08-21
📈 Citations: 0
Influential: 0
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🤖 AI Summary
研究提出GhostTac,通过电磁干扰非接触式操纵触觉传感器,导致机器人行为异常,评估了10个传感器模块和两只灵巧手,揭示了新的物理攻击途径。
📝 Abstract
Tactile sensors are integral to modern robotic systems, enabling robots to perceive and interact with the physical environment through tactile feedback. However, the physical-layer security of tactile sensors has received little attention. We present GhostTac, the first contactless attack, to the best of our knowledge, that manipulates tactile sensing through electromagnetic interference (EMI). GhostTac exploits nonlinear rectification and limited-bandwidth amplification, converting carefully crafted EMI signals into persistent DC offsets that bypass onboard filtering and induce stable measurement deviations. It enables fine-grained, controllable manipulation of sensor outputs by shaping the spatial distribution and magnitude of interference at targeted locations. Such manipulation can induce harmful robot behaviors, including excessive force that may damage objects or injure people. We evaluate GhostTac on 10 sensor modules and two dexterous hands, covering 15 tactile sensors of different types, and demonstrate consistent effectiveness across all tested devices. Three case studies involving tactile grasping, slip detection, and material classification further illustrate its practical impact on real robotic tasks. These findings reveal a new physical attack vector against tactile sensing in robotic systems.
Problem

Research questions and friction points this paper is trying to address.

tactile sensors
physical-layer security
electromagnetic interference (EMI)
sensor manipulation
robotic systems
Innovation

Methods, ideas, or system contributions that make the work stand out.

Electromagnetic Interference (EMI)
Nonlinear Rectification
Limited-Bandwidth Amplification
Tactile Sensors
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