Model Checking Autonomous Components within Electric Power Systems Specified by Interpreted Petri Nets
Iwona Grobelna,Pawel Szczesniak +1 more
TL;DR: It is shown how autonomous components within electric power systems can also be formally verified against some behavioral user-defined properties that relate to the safety or liveness of a designed system.
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Abstract: Autonomous components within electric power systems can be successfully specified by interpreted Petri nets. Such a formal specification makes it possible to check some basic properties of the models, such as determinism or deadlock freedom. In this paper, it is shown how these models can also be formally verified against some behavioral user-defined properties that relate to the safety or liveness of a designed system. The requirements are written as temporal logic formulas. The rule-based logical model is used to support the verification process. An interpreted Petri net is first written as an abstract logical model, and then automatically transformed into a verifiable model that is supplemented by appropriate properties for checking. Formal verification is then performed with the nuXmv model checker. Thanks to this the initial specification of autonomous components can be formally verified and any design errors can be identified at an early stage of system development. An electric energy storage (EES) is presented as an application system for the provision of a system service for stabilizing the power of renewable energy sources (RES) or highly variable loads. The control algorithm of EES in the form of an interpreted Petri net is then written as a rule-based logical model and transformed into a verifiable model, allowing automatic checking of user-defined requirements.
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Citations
Model Checking Autonomous Components within Electric Power Systems Specified by Interpreted Petri Nets
Iwona Grobelna,Pawel Szczesniak +1 more
TL;DR: It is shown how autonomous components within electric power systems can also be formally verified against some behavioral user-defined properties that relate to the safety or liveness of a designed system.
Intelligent Industrial Process Control Systems
Iwona Grobelna
- 01 Aug 2023
TL;DR: The widespread realization of Industry 4 will be a major factor in the development of knowledge and skills in the coming generation of managers and decision-makers.
3
Model Checking of Concurrency in Cyber-Physical Systems Specified with Interpreted Petri Nets*
Iwona Grobelna
- 20 Mar 2024
TL;DR: This paper proposes how to model interpreted Petri nets as simple timed automata in the commonly available Uppaal tool and how to verify the user-defined properties related to the co-occurrence of particular output signals.
An automated qualitative analysis of real-time systems using Timed Petri net and SPIN
Tanuja Shailesh,Ashalatha Nayak,Devi Prasad +2 more
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Ren David,Hassane Alla +1 more
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The nuXmv Symbolic Model Checker
Roberto Cavada,Alessandro Cimatti,Michele Dorigatti,Alberto Griggio,Alessandro Mariotti,Andrea Micheli,Sergio Mover,Marco Roveri,Stefano Tonetta +8 more
- 18 Jul 2014
TL;DR: The nuXmv symbolic model checker for finite- and infinite-state synchronous transition systems is described, which complements the basic verification techniques of nu Xmv with state-of-the-art verification algorithms.
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