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Event-driven optimization-based control of hybrid systems with integral continuous-time dynamics.

, , and . Autom., 45 (5): 1243-1251 (2009)

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Design of observers for timed continuous Petri net systems., , , and . SMC (2), page 1678-1685. IEEE, (2004)Evaluation of Sustained Stochastic Oscillations by Means of a System of Differential Equations., , , and . Int. J. Comput. Their Appl., 19 (2): 101-111 (2012)A Scheduling Strategy for Synchronous Elastic Designs., , , and . Fundam. Informaticae, 108 (1-2): 1-21 (2011)Deadlock-Freeness Analysis of Continuous Mono-T-Semiflow Petri Nets., , and . IEEE Trans. Automat. Contr., 51 (9): 1472-1481 (2006)Marking homothetic monotonicity and fluidization of untimed Petri nets., , and . WODES, page 21-27. International Federation of Automatic Control, (2012)fnyzer: A Python Package for the Analysis of Flexible Nets., and . CMSB, volume 12314 of Lecture Notes in Computer Science, page 349-355. Springer, (2020)On Controllability of Timed Continuous Petri Net Systems: the Join Free Case., , , and . CDC/ECC, page 7645-7650. IEEE, (2005)Modeling Uncertain Biomass Composition in Genome-Scale Metabolic Models with Flexible Nets., , and . QEST, volume 14287 of Lecture Notes in Computer Science, page 148-151. Springer, (2023)Steady-state performance evaluation of continuous mono-T-semiflow Petri nets., , and . Autom., 41 (4): 605-616 (2005)The "bound Reaching Problem" on the Fluidization of Timed Petri Nets., , and . WODES, page 142-148. International Federation of Automatic Control, (2014)