Abstract

In embodied cyber-physical systems, active cyberattacks pose an immediate threat not just to data, but to physical integrity and human safety. While existing security approaches excel at detection, they lack the runtime mechanisms to determine whether a disruption is tolerable or if performance degradation remains within safe operational bounds. This gap leaves autonomous systems vulnerable to graceful failure paralysis, where they cannot distinguish between a safe, degraded state and a catastrophic hazard during an ongoing attack. This paper presents RobResilience, an implementation of a formal resilience framework for embodied cyber-physical systems in a Webots simulation environment, using a PR2 robot and ROS2. The framework evaluates three predicates at runtime: tolerable disruption ($δ$), tolerable degradation ($γ$), and mitigation feasibility ($μ$), over a compromised device set derived from IDS confidence scores. When resilience is lost, the framework triggers available mitigation strategies. We evaluate our implementation through eight attack scenarios that systematically cover all possible combinations of the predicate state space, varying attack targets, degradation rates, and mitigation availability. Results confirm that the runtime behaviour of the implementation is consistent with the theoretical definitions.

Keywords

Subject

Publication details

DOI
10.1145/3847353.3847504
Journal
Not available
Open access
Green open access

Cite this article

APA 7

Imrell, G., Miotto, E., Kashani, M. M., Conti, M., & Giaretta, A. (2026). RobResilience: Implementing and Evaluating a Resilience Framework for Cyber-Physical Embodied Systems. https://doi.org/10.1145/3847353.3847504

MLA 9

Imrell, Gysella, et al. "RobResilience: Implementing and Evaluating a Resilience Framework for Cyber-Physical Embodied Systems." https://doi.org/10.1145/3847353.3847504.

Chicago (author–date)

Imrell, Gysella, Emanuele Miotto, Mahya Mohammadi Kashani, Mauro Conti, and Alberto Giaretta. 2026. "RobResilience: Implementing and Evaluating a Resilience Framework for Cyber-Physical Embodied Systems." https://doi.org/10.1145/3847353.3847504.

Harvard

Imrell, G., Miotto, E., Kashani, M. M., Conti, M. and Giaretta, A. (2026) 'RobResilience: Implementing and Evaluating a Resilience Framework for Cyber-Physical Embodied Systems', doi:10.1145/3847353.3847504.

Vancouver

Imrell G, Miotto E, Kashani MM, Conti M, Giaretta A. RobResilience: Implementing and Evaluating a Resilience Framework for Cyber-Physical Embodied Systems. doi:10.1145/3847353.3847504

IEEE

G. Imrell, E. Miotto, M. M. Kashani, M. Conti, and A. Giaretta, "RobResilience: Implementing and Evaluating a Resilience Framework for Cyber-Physical Embodied Systems," doi: 10.1145/3847353.3847504.