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Resilience of Multi-robot Systems to Physical Masquerade Attacks

Kacper Wardega, Roberto Tron, Wenchao Li

Year
2019
Citations
10
Access
Open access

Abstract

The advent of autonomous mobile multi-robot systems has driven innovation in both the industrial and defense sectors. The integration of such systems in safety-and security-critical applications has raised concern over their resilience to attack. In this work, we investigate the security problem of a stealthy adversary masquerading as a properly functioning agent. We show that conventional multi-agent pathfinding solutions are vulnerable to these physical masquerade attacks. Furthermore, we provide a constraint-based formulation of multi-agent pathfinding that yields multi-agent plans that are provably resilient to physical masquerade attacks. This formalization leverages inter-agent observations to facilitate introspective monitoring to guarantee resilience.

Keywords

AdversaryComputer scienceResilience (materials science)Computer securityRobotIntrospectionPathfindingHuman–computer interactionDistributed computingArtificial intelligence

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