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Time Causal Processes in Time Petri Nets with Weak Semantics

https://doi.org/10.15514/ISPRAS-2020-32(4)-19

Abstract

In this paper, we present a method for state space reduction of dense-time Petri nets (TPNs) – an extension of Petri nets by adding a time interval to every transition for its firing. The time elapsing and memory operating policies define different semantics for TPNs. The decidability of many standard problems in the context of TPNs depends on the choice of their semantics. The state space of the TPN is infinite and non-discrete, in general, and, therefore, the analysis of its behavior is rather complicated. To cope with the problem, we elaborate a state space discretization technique and develop a partial order semantics for TPNs equipped with weak time elapsing and intermediate memory policies.

About the Authors

Irina Bonaventurovna VIRBITSKAITE
A.P. Ershov Institute of Informatics Systems, Novosibirsk State University
Russian Federation
Doctor of Physical and Mathematical Sciences, Professor, Head of the Laboratory of the Theory of Parallel Processes at IIS SB RAS


Alexey Yurievich ZUBAREV
A.P. Ershov Institute of Informatics Systems
Russian Federation
PhD student


References

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Review

For citations:


VIRBITSKAITE I.B., ZUBAREV A.Yu. Time Causal Processes in Time Petri Nets with Weak Semantics. Proceedings of the Institute for System Programming of the RAS (Proceedings of ISP RAS). 2020;32(4):261-284. https://doi.org/10.15514/ISPRAS-2020-32(4)-19



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This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2079-8156 (Print)
ISSN 2220-6426 (Online)