Safety Verification of Nonlinear Hybrid Systems Based on Invariant Clusters

dc.contributor.authorKong, Hui
dc.contributor.authorBogomolov, Sergiy
dc.contributor.authorSchilling, Christian
dc.contributor.authorJiang, Yu
dc.contributor.authorHenzinger, Thomas A.
dc.date.accessioned2021-03-03T12:56:47Z
dc.date.available2021-03-03T12:56:47Z
dc.date.issued2017eng
dc.description.abstractIn this paper, we propose an approach to automatically compute invariant clusters for nonlinear semialgebraic hybrid systems. An invariant cluster for an ordinary differential equation (ODE) is a multivariate polynomial invariant g(u, x)=0, parametric in u, which can yield an infinite number of concrete invariants by assigning different values to u so that every trajectory of the system can be overapproximated precisely by the intersection of a group of concrete invariants. For semialgebraic systems, which involve ODEs with multivariate polynomial right-hand sides, given a template multivariate polynomial g(u, x), an invariant cluster can be obtained by first computing the remainder of the Lie derivative of g(u,x) divided by g(u, x) and then solving the system of polynomial equations obtained from the coefficients of the remainder. Based on invariant clusters and sum-of-squares (SOS) programming, we present a new method for the safety verification of hybrid systems. Experiments on nonlinear benchmark systems from biology and control theory show that our approach is efficient.eng
dc.description.versionpublishedeng
dc.identifier.doi10.1145/3049797.3049814eng
dc.identifier.urihttps://kops.uni-konstanz.de/handle/123456789/53070
dc.language.isoengeng
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dc.subject.ddc004eng
dc.titleSafety Verification of Nonlinear Hybrid Systems Based on Invariant Clusterseng
dc.typeINPROCEEDINGSeng
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kops.citation.bibtex
@inproceedings{Kong2017Safet-53070,
  year={2017},
  doi={10.1145/3049797.3049814},
  title={Safety Verification of Nonlinear Hybrid Systems Based on Invariant Clusters},
  isbn={978-1-4503-4590-3},
  publisher={ACM},
  address={New York},
  booktitle={HSCC '17: proceedings of the 20th International Conference on Hybrid Systems: Computation and Control (part of CPS Week) : April 18-20, 2017, Pittsburgh, PA, USA},
  pages={163--172},
  editor={Frehse, Goran and Mitra, Sayan},
  author={Kong, Hui and Bogomolov, Sergiy and Schilling, Christian and Jiang, Yu and Henzinger, Thomas A.}
}
kops.citation.iso690KONG, Hui, Sergiy BOGOMOLOV, Christian SCHILLING, Yu JIANG, Thomas A. HENZINGER, 2017. Safety Verification of Nonlinear Hybrid Systems Based on Invariant Clusters. HSCC '17: 20th International Conference on Hybrid Systems: Computation and Control. Pittsburgh, Pennsylvania, 18. Apr. 2017 - 20. Apr. 2017. In: FREHSE, Goran, ed., Sayan MITRA, ed.. HSCC '17: proceedings of the 20th International Conference on Hybrid Systems: Computation and Control (part of CPS Week) : April 18-20, 2017, Pittsburgh, PA, USA. New York: ACM, 2017, pp. 163-172. ISBN 978-1-4503-4590-3. Available under: doi: 10.1145/3049797.3049814deu
kops.citation.iso690KONG, Hui, Sergiy BOGOMOLOV, Christian SCHILLING, Yu JIANG, Thomas A. HENZINGER, 2017. Safety Verification of Nonlinear Hybrid Systems Based on Invariant Clusters. HSCC '17: 20th International Conference on Hybrid Systems: Computation and Control. Pittsburgh, Pennsylvania, Apr 18, 2017 - Apr 20, 2017. In: FREHSE, Goran, ed., Sayan MITRA, ed.. HSCC '17: proceedings of the 20th International Conference on Hybrid Systems: Computation and Control (part of CPS Week) : April 18-20, 2017, Pittsburgh, PA, USA. New York: ACM, 2017, pp. 163-172. ISBN 978-1-4503-4590-3. Available under: doi: 10.1145/3049797.3049814eng
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kops.sourcefield.plainFREHSE, Goran, ed., Sayan MITRA, ed.. HSCC '17: proceedings of the 20th International Conference on Hybrid Systems: Computation and Control (part of CPS Week) : April 18-20, 2017, Pittsburgh, PA, USA. New York: ACM, 2017, pp. 163-172. ISBN 978-1-4503-4590-3. Available under: doi: 10.1145/3049797.3049814eng
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source.titleHSCC '17: proceedings of the 20th International Conference on Hybrid Systems: Computation and Control (part of CPS Week) : April 18-20, 2017, Pittsburgh, PA, USAeng

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