By Eugene Asarin (auth.), Kim Guldstrand Larsen, Peter Niebert (eds.)
This e-book constitutes the completely refereed post-proceedings of the 1st foreign Workshop on Formal Modeling and research of Timed platforms, codecs 2003, held in Marseille, France in September 2003.
The 19 revised complete papers awarded including an invited paper and the abstracts of 2 invited talks have been conscientiously chosen from 36 submissions in the course of rounds of reviewing and development. All present features of formal process for modeling and examining timed platforms are addressed; one of the timed platforms handled are timed automata, timed Petri nets, max-plus algebras, real-time platforms, discrete time platforms, timed languages, and real-time working systems.
Read or Download Formal Modeling and Analysis of Timed Systems: First International Workshop, FORMATS 2003, Marseille, France, September 6-7, 2003. Revised Papers PDF
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Extra resources for Formal Modeling and Analysis of Timed Systems: First International Workshop, FORMATS 2003, Marseille, France, September 6-7, 2003. Revised Papers
Szreter, R. Gerth, and R. Kuiper. Improving partial order reductions for universal branching time properties. Fundamenta Informaticae, 43:245– 267, 2000. 18, 19  W. Penczek, B. Wo´zna, and A. Zbrzezny. Bounded model checking for the universal fragment of CTL. Fundamenta Informaticae, 51(1-2):135–156, June 2002. 18, 19, 23, 31 Checking ACTL∗ Properties of Discrete Timed Automata 33  W. Penczek, B. Wo´zna, and A. Zbrzezny. SAT-Based Bounded Model Checking for the Universal Fragment of TCTL.
Zbrzezny. Reachability for timed systems based on SAT-solvers. In Proc. of CS&P’02, vol. II of Informatik-Berichte Nr 161. Humboldt University, 2002. 18, 19  B. Wo´zna and A. Zbrzezny. Reaching the limits for Bounded Model Checking. Technical Report 958, ICS PAS, 2003. 20, 22, 24, 28 Removing Irrelevant Atomic Formulas for Checking Timed Automata Eﬃciently Jianhua Zhao, Xuandong Li, Tao Zheng, and Guoliang Zheng State Key Laboratory of Novel Software Technology Dept. of Computer Sci. and Tech.
In the case of Fischer’s protocol the processes of the system are given as instances of the template depicted in Figure 2. The template has one local clock, x, and no local variables. Note that the header of the template deﬁnes a (constant) scalarset parameter pid of type proc id.