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March 3, 20260 citationsOpen Access

Evaluating the Effectiveness of Simulated Cyber-Physical Attacks on Autonomous Drones

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JAJosef AnhedeSGSimon Grimberg

Key Points

  • Mission deviation is significantly affected by cyberattacks, showing critical vulnerabilities in drone performance.
  • Communication interference led to a 20% increase in failure rates during drone missions, emphasizing the risk.
  • Evaluation utilized a simulation model of the Crazyflie 2.1 drone to assess various attack types and their impacts.
  • Findings suggest that implementing robust filtering mechanisms is essential to enhance drone resilience against minor disruptions.

Abstract

This study investigates the effectiveness of cyberattacks on autonomous quadcopters. Using the Webots simulation environment and a digital model of the Crazyflie 2.1 drone, we analyze four types of attacks: sensor bias, sensor noise, sensor delay, and communication interference. The impact of each attack is evaluated using three key metrics: mission deviation, mission delay, and failure rate. Our results highlight the need for robust filtering mechanisms to counteract even minor disruptions, and identify which sensors benefit most from such protection.

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Cite This Study

Anhede et al. (2025) studied this question.

synapsesocial.com/papers/69a760f4c6e9836116a2e56fhttps://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-376168
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