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    Academic Journal
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    Academic Journal

    Πηγή: Вестник Томского государственного университета. Управление, вычислительная техника и информатика. 2019. № 48. С. 83-91

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    Academic Journal

    Πηγή: Modeling and Analysis of Information Systems; Том 23, № 6 (2016); 715-728 ; Моделирование и анализ информационных систем; Том 23, № 6 (2016); 715-728 ; 2313-5417 ; 1818-1015

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    Relation: https://www.mais-journal.ru/jour/article/view/409/368; Moore E. F., “Gedanken-experiments on Sequential Machines”, Automata Studies, Annals of Mathematical Studies, 34 (1956), 129–153.; Gill A., Introduction to the theory of finite-state machines, McGraw-Hill, New-York, 1962, 207 pp.; Yevtushenko N., Villa T., Brayton R., Petrenko A. and Sangiovanni-Vincentelli A., “Solution of parallel language equations for logic synthesis”, The Proceedings of the International Conference on Computer-Aided Design, 2001, 103–110.; Castagnetti G., Piccolo M., Villa T., Yevtushenko N., Mishchenko A. and Brayton R. K., Solving Parallel Equations with balm-ii, Technical Report No UCB/EECS-2012-181, Electrical Engineering and Computer Sciences University of California at Berkeley, 2012, http://www.eecs.berkeley.edu/Pubs/TechRpts/2012/EECS-2012-181.pdf.; Alur R. and Dill D. L., “A theory of timed automata”, Theoretical computer science, 126:2 (1994), 183–235.; El-Fakih K., Gromov M, Shabaldina N. and Yevtushenko N., “Distinguishing Experiments for Timed Non-Deterministic Finite State Machines”, Acta Cybernetica, 21:2 (2013), 205– 222.; Kondratyeva O., Yevtushenko N. and Cavalli A., “Parallel composition of nondeterministic finite state machines with timeouts”, Journal of Control and Computer Science of Tomsk State University, 2:27 (2014), 73–81.; Kondratyeva O., Yevtushenko N. and Cavalli A., “Solving parallel equations for Finite State Machines with Timeouts”, The Proceedings of ISP RAS, 26:6 (2014), 85–98.; http://www.uppaal.com/.; Zhigulin M., Yevtushenko N., Maag S. and Cavalli A. R., “FSM-based test derivation strategies for systems with timeouts.”, Proceedings of the international conference QSIC, 2011, 141–149.; Gromov M. and Shabaldina N., “Using balm-iifor deriving parallel composition of timed finite state machines with outputs delays and timeouts: work-in-progress”, System Informatics, 8 (2016), 33–42.; Springintveld J., Vaandrager F. and D’Argenio P. R., “Testing timed automata”, Theoretical Computer Science, 254:1–2 (March 2001), 225–257.

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    Academic Journal

    Συνεισφορές: РФФИ

    Πηγή: Modeling and Analysis of Information Systems; Том 21, № 6 (2014); 18-30 ; Моделирование и анализ информационных систем; Том 21, № 6 (2014); 18-30 ; 2313-5417 ; 1818-1015

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    Relation: https://www.mais-journal.ru/jour/article/view/68/66; Ван дер Аалст В., ван Хей К. Управление потоками работ: модели, методы и системы. М.: Научный мир, 2007. (English transl.: van der Aalst W., van Hee K. Workflow Management: Models, Methods and Systems. MIT Press, 2002.); Башкин В. А. Сети активных ресурсов // Моделирование и анализ информационных систем. 2007. Т. 14. № 4. С. 13–19.; Башкин В. А. Формализация семантики систем с ненадежными агентами при помощи сетей активных ресурсов // Программирование. 2010. №4. С.3–15. (English transl.: Bashkin V. A. Formalization of semantics of systems with unreliable agents by means of nets of active resources // Programming and Computer Software. 2010. 36(4). P. 187–196.); Van der Aalst W. M. P. The Application of Petri Nets to Workflow Management // The Journal of Circuits, Systems and Computers. 1998. 8(1). P. 21–66.; Van der Aalst W.M.P., van Hee K.M., Hofstede A.H.M., Sidorova N., Verbeek H.M.W., Voorhoeve M., Wynn M.T. Soundness of workflow nets: classification, decidability, and analysis // Formal Aspects of Computing. 2011. 23(3). P. 333–363.; Barkaoui K., Petrucci L. Structural Analysis of Workflow Nets with Shared Resources // Proc. of Workflow Management: Net-based Concepts, Models, Techniques and Tools (WFM98). Computing Science Reports. Eindhoven University of Technology. 1998. Vol. 98/7. P. 82–95.; Barkaoui K., Ben Ayed R., Sba¨ı Z. Workflow Soundness Verification based on Structure Theory of Petri Nets // International Journal of Computing and Information Sciences. 2007. 5(1). P. 51–61.; Bashkin V. A., Lomazova I. A. Petri nets and resource bisimulation // Fundamenta Informaticae. 2003. Vol. 55. No. 2. P. 101–114.; Bashkin V. A., Lomazova I. A. Resource equivalence in workflow nets // Proc. of Concurrency, Specification and Programming (CS&P’2006). Humboldt Universitat zu Berlin, 2006. Vol. 1. P. 80–91.; Bashkin V. A., Lomazova I. A. Soundness of Workflow Nets with an Unbounded Resource is Decidable // Joint Proc. of Petri Nets and Software Engineering (PNSE’13) and Modeling and Business Environments (ModBE’13). 2013. Vol. 989 of CEUR. P. 61–75.; Chrz¸astowski-Wachtel P. Sound Markings in Structured Nets // Proc. of Concurrency, Specification and Programming (CS&P’2005). Warsaw University, 2005. P. 71–85.; Ezpeleta J., Colom J.-M., Martinez J. A Petri Net Based Deadlock Prevention Policy for Flexible Manufacturing Systems // IEEE Transactions on Robotics and Automation. 1995. 11(2). P. 173–184.; Van Hee K., Serebrenik A., Sidorova N., Voorhoeve M. Soundness of Resource-Constrained Workflow Nets // Proc. of ICATPN 2005. Lecture Notes in Computer Science. 2005. Vol. 3536. P. 250–267.; Lomazova I. A., Romanov I. V. Analyzing Compatibility of Services via Resource Conformance // Fundamenta Informaticae. 2013. Vol. 128. No. 1–2. P. 129–141.; Sidorova N., Stahl C. Soundness for resource-contrained workflow nets is decidable // IEEE Transactions on Systems, Man, and Cybernetics: Systems. 2013. 43(3). P. 724–729.

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    Academic Journal

    Συνεισφορές: Томский государственный университет Радиофизический факультет Публикации студентов и аспирантов РФФ, Томский государственный университет Радиофизический факультет Кафедра информационных технологий в исследовании дискретных структур

    Πηγή: Труды Института системного программирования РАН. 2014. Т. 26, вып. 6. С. 85-98

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