Formal verification of neural certificates done dynamically

Henzinger TA, Kueffner K, Yu E. 2025. Formal verification of neural certificates done dynamically. 25th International Conference on Runtime Verification. RV: Runtime Verification, LNCS, vol. 16087, 54–72.

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Series Title
LNCS
Abstract
Neural certificates have emerged as a powerful tool in cyber-physical systems control, providing witnesses of correctness. These certificates, such as barrier functions, often learned alongside control policies, once verified, serve as mathematical proofs of system safety. However, traditional formal verification of their defining conditions typically faces scalability challenges due to exhaustive state-space exploration. To address this challenge, we propose a lightweight runtime monitoring framework that integrates real-time verification and does not require access to the underlying control policy. Our monitor observes the system during deployment and performs on-the-fly verification of the certificate over a lookahead region to ensure safety within a finite prediction horizon. We instantiate this framework for ReLU-based control barrier functions and demonstrate its practical effectiveness in a case study. Our approach enables timely detection of safety violations and incorrect certificates with minimal overhead, providing an effective but lightweight alternative to the static verification of the certificates.
Publishing Year
Date Published
2025-09-13
Proceedings Title
25th International Conference on Runtime Verification
Publisher
Springer Nature
Acknowledgement
This work is supported by the European Research Council under Grant No.: ERC-2020-AdG 101020093.
Volume
16087
Page
54-72
Conference
RV: Runtime Verification
Conference Location
Graz, Austria
Conference Date
2025-09-15 – 2025-09-19
ISSN
eISSN
IST-REx-ID

Cite this

Henzinger TA, Kueffner K, Yu E. Formal verification of neural certificates done dynamically. In: 25th International Conference on Runtime Verification. Vol 16087. Springer Nature; 2025:54-72. doi:10.1007/978-3-032-05435-7_4
Henzinger, T. A., Kueffner, K., & Yu, E. (2025). Formal verification of neural certificates done dynamically. In 25th International Conference on Runtime Verification (Vol. 16087, pp. 54–72). Graz, Austria: Springer Nature. https://doi.org/10.1007/978-3-032-05435-7_4
Henzinger, Thomas A, Konstantin Kueffner, and Emily Yu. “Formal Verification of Neural Certificates Done Dynamically.” In 25th International Conference on Runtime Verification, 16087:54–72. Springer Nature, 2025. https://doi.org/10.1007/978-3-032-05435-7_4.
T. A. Henzinger, K. Kueffner, and E. Yu, “Formal verification of neural certificates done dynamically,” in 25th International Conference on Runtime Verification, Graz, Austria, 2025, vol. 16087, pp. 54–72.
Henzinger TA, Kueffner K, Yu E. 2025. Formal verification of neural certificates done dynamically. 25th International Conference on Runtime Verification. RV: Runtime Verification, LNCS, vol. 16087, 54–72.
Henzinger, Thomas A., et al. “Formal Verification of Neural Certificates Done Dynamically.” 25th International Conference on Runtime Verification, vol. 16087, Springer Nature, 2025, pp. 54–72, doi:10.1007/978-3-032-05435-7_4.
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