Neural Vector Lyapunov-Razumikhin Certificates for Delayed Interconnected Systems
Jingyuan Zhou, Yuexuan Wang, Kaidi Yang
- Year
- 2026
- Access
- Open access
Abstract
Ensuring scalable input-to-state stability (sISS) is critical for the safety and reliability of large-scale interconnected systems, especially in the presence of communication delays. While learning-based controllers can achieve strong empirical performance, their black-box nature makes it difficult to provide formal and scalable stability guarantees. To address this gap, we propose a framework to synthesize and verify neural vector Lyapunov-Razumikhin certificates for discrete-time delayed interconnected systems. Our contributions are three-fold. First, we establish a sufficient condition for discrete-time sISS via vector Lyapunov-Razumikhin functions, which enables certification for large-scale delayed interconnected systems. Second, we develop a scalable synthesis and verification framework that learns the neural certificates and verifies the certificates on reachability-constrained delay domains with scalability analysis. Third, we validate our approach on mixed-autonomy platoons, drone formations, and microgrids against multiple baselines, showing improved verification efficiency with competitive control performance.
Keywords
Related papers
A dual-loop framework for manufacturability-aware topology optimization of electric vehicle structures via wire arc additive manufacturing
Qiang Cui, Chuan Yu, Daoqian Yang +2 more
Robotics and Computer-Integrated Manufacturing · 2026
Geometric digital twin: A digital and intelligent model for aero-engine assembly accuracy prediction
Ke Shang, Xin Jin, Teli Xu +4 more
Robotics and Computer-Integrated Manufacturing · 2026
Remaining useful life aware physics-informed Bayesian digital twin for safety-constrained control in robot-integrated battery manufacturing
Faizanbasha A., U. Rizwan, Syed Tahir Hussainy +2 more
Robotics and Computer-Integrated Manufacturing · 2026
Leveraging large and small model collaboration for advanced automation in smart manufacturing
Qunlong Chen, Yuyi Zhang, Wei Qin +4 more
Robotics and Computer-Integrated Manufacturing · 2026