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Optimal Path Planning for ω-regular Objectives with Abstraction-Refinement.

, and . ICRA, page 7683-7689. IEEE, (2019)

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An algorithmic approach to global asymptotic stability verification of hybrid systems., and . EMSOFT, page 9:1-9:10. ACM, (2016)Deciding Concurrent Planar Monotonic Linear Hybrid Systems., , and . FORMATS, volume 9268 of Lecture Notes in Computer Science, page 256-269. Springer, (2015)Foundations for approximation based analysis of stability properties of hybrid systems.. Allerton Conference, page 1602-1609. IEEE, (2012)Relating Syntactic and Semantic Perturbations of Hybrid Automata., , and . CONCUR, volume 118 of LIPIcs, page 26:1-26:16. Schloss Dagstuhl - Leibniz-Zentrum für Informatik, (2018)Verifying information flow properties of hybrid systems., and . HiCoNS, page 77-84. ACM, (2013)STORMED Hybrid Systems., , , and . ICALP (2), volume 5126 of Lecture Notes in Computer Science, page 136-147. Springer, (2008)Verifying Band Convergence for Sampled Control Systems., , , , and . NFM, volume 12229 of Lecture Notes in Computer Science, page 329-349. Springer, (2020)Counterexample Guided Abstraction Refinement for Polyhedral Probabilistic Hybrid Systems., and . ACM Trans. Embed. Comput. Syst., 18 (5s): 98:1-98:23 (2019)Hybridization for Stability Verification of Nonlinear Switched Systems., and . RTSS, page 244-256. IEEE, (2020)Abstraction based Output Range Analysis for Neural Networks., and . NeurIPS, page 15762-15772. (2019)