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ROS2-Based Simulation Framework for Cyberphysical Security Analysis of UAVs

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arxiv 2410.03971 v1 pith:4VRQNNXU submitted 2024-10-04 cs.RO cs.CR

ROS2-Based Simulation Framework for Cyberphysical Security Analysis of UAVs

classification cs.RO cs.CR
keywords frameworkattacksecuritysimulatoruavshardwaremechanismsmodels
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present a new simulator of Uncrewed Aerial Vehicles (UAVs) that is tailored to the needs of testing cyber-physical security attacks and defenses. Recent investigations into UAV safety have unveiled various attack surfaces and some defense mechanisms. However, due to escalating regulations imposed by aviation authorities on security research on real UAVs, and the substantial costs associated with hardware test-bed configurations, there arises a necessity for a simulator capable of substituting for hardware experiments, and/or narrowing down their scope to the strictly necessary. The study of different attack mechanisms requires specific features in a simulator. We propose a simulation framework based on ROS2, leveraging some of its key advantages, including modularity, replicability, customization, and the utilization of open-source tools such as Gazebo. Our framework has a built-in motion planner, controller, communication models and attack models. We share examples of research use cases that our framework can enable, demonstrating its utility.

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