English

Experimental evaluation of sensor attacks and defense mechanisms in feedback systems

Systems and Control 2022-05-02 v2 Systems and Control Optimization and Control

Abstract

In this work, we evaluate theoretical results on the feasibility of, the worst-case impact of, and defense mechanisms against a stealthy sensor attack in an experimental setup. We demonstrate that for a controller with stable dynamics the stealthy sensor attack is possible to conduct and the theoretical worst-case impact is close to the achieved practical one. However, although the attack should theoretically be possible when the controller has integral action, we show that the integral action slows the attacker down and the attacker is not able to remain stealthy if it has not perfect knowledge of the controller state. In addition to that, we investigate the effect of different anomaly detectors on the attack impact and conclude that the impact under detectors with internal dynamics is smaller. Finally, we use noise injection into the controller dynamics to unveil the otherwise stealthy attacks.

Keywords

Cite

@article{arxiv.2111.03407,
  title  = {Experimental evaluation of sensor attacks and defense mechanisms in feedback systems},
  author = {David Umsonst and Henrik Sandberg},
  journal= {arXiv preprint arXiv:2111.03407},
  year   = {2022}
}

Comments

Accepted in Control Engineering Practice. The paper is published as OpenAccess, so please find the latest version in Volume 124 of Control Engineering Practice