Synthesizing Permissive Winning Strategy Templates for Parity Games

Author:

Anand Ashwani,Nayak Satya Prakash,Schmuck Anne-Kathrin

Abstract

AbstractWe present a novel method to compute permissive winning strategies in two-player games over finite graphs with $$ \omega $$ ω -regular winning conditions. Given a game graph G and a parity winning condition $$\varPhi $$ Φ , we compute a winning strategy template$$\varPsi $$ Ψ that collects an infinite number of winning strategies for objective $$\varPhi $$ Φ in a concise data structure. We use this new representation of sets of winning strategies to tackle two problems arising from applications of two-player games in the context of cyber-physical system design – (i) incremental synthesis, i.e., adapting strategies to newly arriving, additional$$\omega $$ ω -regular objectives $$\varPhi '$$ Φ , and (ii) fault-tolerant control, i.e., adapting strategies to the occasional or persistent unavailability of actuators. The main features of our strategy templates – which we utilize for solving these challenges – are their easy computability, adaptability, and compositionality. For incremental synthesis, we empirically show on a large set of benchmarks that our technique vastly outperforms existing approaches if the number of added specifications increases. While our method is not complete, our prototype implementation returns the full winning region in all 1400 benchmark instances, i.e. handling a large problem class efficiently in practice.

Publisher

Springer Nature Switzerland

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Contract-Based Distributed Logical Controller Synthesis;Proceedings of the 27th ACM International Conference on Hybrid Systems: Computation and Control;2024-05-14

2. Template Decision Diagrams for Meta Control and Explainability;Communications in Computer and Information Science;2024

3. Localized Attractor Computations for Infinite-State Games;Lecture Notes in Computer Science;2024

4. Context-Triggered Abstraction-Based Control Design;IEEE Open Journal of Control Systems;2023

5. Synthesizing Permissive Winning Strategy Templates for Parity Games;Computer Aided Verification;2023

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