English

Property-Guided Cyber-Physical Reduction and Surrogation for Safety Analysis in Robotic Vehicles

Cryptography and Security 2025-12-03 v1 Robotics

Abstract

We propose a methodology for falsifying safety properties in robotic vehicle systems through property-guided reduction and surrogate execution. By isolating only the control logic and physical dynamics relevant to a given specification, we construct lightweight surrogate models that preserve property-relevant behaviors while eliminating unrelated system complexity. This enables scalable falsification via trace analysis and temporal logic oracles. We demonstrate the approach on a drone control system containing a known safety flaw. The surrogate replicates failure conditions at a fraction of the simulation cost, and a property-guided fuzzer efficiently discovers semantic violations. Our results suggest that controller reduction, when coupled with logic-aware test generation, provides a practical and scalable path toward semantic verification of cyber-physical systems.

Cite

@article{arxiv.2512.02270,
  title  = {Property-Guided Cyber-Physical Reduction and Surrogation for Safety Analysis in Robotic Vehicles},
  author = {Nazmus Shakib Sayom and Luis Garcia},
  journal= {arXiv preprint arXiv:2512.02270},
  year   = {2025}
}

Comments

Accepted at EAI SmartSP 2025 (EAI International Conference on Security and Privacy in Cyber-Physical Systems and Smart Vehicles), Springer LNICST. The code repository is available here: https://doi.org/10.5281/zenodo.17497068