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An Improved HHL Prover: An Interactive Theorem Prover for Hybrid Systems.

, , and . ICFEM, volume 9407 of Lecture Notes in Computer Science, page 382-399. Springer, (2015)

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An Improved HHL Prover: An Interactive Theorem Prover for Hybrid Systems., , and . ICFEM, volume 9407 of Lecture Notes in Computer Science, page 382-399. Springer, (2015)An Assume/Guarantee Based Compositional Calculus for Hybrid CSP., , and . TAMC, volume 7287 of Lecture Notes in Computer Science, page 72-83. Springer, (2012)A Two-Way Path Between Formal and Informal Design of Embedded Systems., , , , and . UTP, volume 10134 of Lecture Notes in Computer Science, page 65-92. Springer, (2016)A Graph-Based Operational Semantics of OO Programs., , , and . ICFEM, volume 5885 of Lecture Notes in Computer Science, page 347-366. Springer, (2009)Formal Modelling, Analysis and Verification of Hybrid Systems., , and . ICTAC Training School on Software Engineering, volume 8050 of Lecture Notes in Computer Science, page 207-281. Springer, (2013)Formally Verified C Code Generation from Hybrid Communicating Sequential Processes., , , , , and . ICCPS, page 123-134. IEEE, (2024)A Sparsity-Invariant Model via Unifying Depth Prediction and Completion., , and . Algorithms, 17 (7): 298 (July 2024)Output feedback disturbance decoupling of boolean control networks: A logical matrix factorization approach., , and . CASE, page 181-186. IEEE, (2017)Verifying Simulink diagrams via a Hybrid Hoare Logic Prover., , , , and . EMSOFT, page 9:1-9:10. IEEE, (2013)Modelling and Verification of Real-Time Publish and Subscribe Protocol Using Uppaal and Simulink/Stateflow., , , and . J. Comput. Sci. Technol., 35 (6): 1324-1342 (2020)