Physical-Layer Attacks Against Pulse Width Modulation-Controlled Actuators
Gökçen Yilmaz Dayanikli, Sourav Sinha, Devaprakash Muniraj, Ryan M. Gerdes, Mazen Farhood, Mani Mina
摘要
Cyber-physical systems (CPS) consist of integrated computational and physical components. The dynamics of physical components (e.g., a robot arm) are controlled by actuators via actuation signals. In this work, we analyze the extent to which intentional electromagnetic interference (IEMI) allows an attacker to alter the actuation signal to jam or control a class of widely used actuators: those that use pulse width modulation (PWM) to encode actuation data (e.g., rotation angle or speed). A theory of False Actuation Injection (FAI) is developed and experimentally validated with IEMI waveforms of certain frequencies and modulations. Specifically, three attack waveforms, denoted as Block, Block & Rotate, and Full Control, are described that can be utilized by an attacker to block (denial of service) or alter the actuation data encoded in the PWM signal sent by an actuator's legitimate controller. The efficacy of the attack waveforms is evaluated against several PWM-controlled actuators, and it is observed that an attacker can implement denial-of-service attacks on all the tested actuators with Block waveform. Additionally, attackers can take control of servo motors from specific manufacturers (Futaba and HiTec) with reported Block & Rotate, and Full Control waveforms. A coupling model between the attack apparatus and victim PWMbased control system is presented to show that the attacker can utilize magnetic, resonant coupling to mount attacks at an appreciable distance. Indoor and in-flight attacks are demonstrated on the actuators of an unmanned aerial vehicle (UAV), the effects of which are shown to seriously impact the safe operation of said UAV, e.g., change in the flight trajectory. Additionally, the denial of service attacks are demonstrated on other actuators such as DC motors, the rotational speed of which is controlled with PWM, and possible countermeasures (such as optical actuation data transmission) are discussed.
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引用它的顶会 Paper8
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- SoK: Security of Cyber-physical Systems Under Intentional Electromagnetic Interference AttacksQinhong Jiang, Yan Long, Youqian Zhang, Chen Yan 等USENIX Security 2026
- PowerRadio: Manipulate Sensor Measurement via Power GND RadiationYan Jiang, Xiaoyu Ji, Yancheng Jiang, Kai Wang 等NDSS 2025
- LightAntenna: Characterizing the Limits of Fluorescent Lamp-Induced Electromagnetic InterferenceFengchen Yang, Wenze Cui, Xinfeng Li, Chen Yan 等NDSS 2025
- Paralyzing Drones via EMI Signal Injection on Sensory Communication ChannelsJoon-Ha Jang, ManGi Cho, Jaehoon Kim, Dongkwan Kim 等NDSS 2023
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- Trick or Heat?: Manipulating Critical Temperature-Based Control Systems Using Rectification AttacksYazhou Tu, Sara Rampazzi, Bin Hao, Angel Rodriguez 等CCS 2019 · 被引用 87 次
- SoK: A Minimalist Approach to Formalizing Analog Sensor SecurityChen Yan, Hocheol Shin, Connor Bolton, Wenyuan Xu 等S&P 2020 · 被引用 86 次
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