Analysis of Faults in Cyber-Physical Systems by Finite Discrete-Time Markov Chains
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SKOBELEV, Volodymyr, SKOBELEV, Volodymyr. Analysis of Faults in Cyber-Physical Systems by Finite Discrete-Time Markov Chains. In: Computer Science Journal of Moldova, 2020, nr. 3(84), pp. 269-284. ISSN 1561-4042.
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Computer Science Journal of Moldova
Numărul 3(84) / 2020 / ISSN 1561-4042 /ISSNe 2587-4330

Analysis of Faults in Cyber-Physical Systems by Finite Discrete-Time Markov Chains

CZU: 512.2+519.87+004.89

Pag. 269-284

Skobelev Volodymyr, Skobelev Volodymyr
 
V.M. Glushkov Institute of Cybernetics of National Academy of Sciences of Ukraine
 
 
Disponibil în IBN: 16 decembrie 2020


Rezumat

In the given paper the problem of Cyber-Physical Systems behavior analysis in the occurrence of faults is investigated. To present the fault-free behavior of the investigated Cyber-Physical System as well as its behaviors in the presence of admissible faults, some Finite Discrete-Time Markov Chain is proposed and analyzed. It is shown that a single stationary probability distribution exists for the proposed model. This distribution is applied for characterization the behaviors of the investigated CyberPhysical System in terms of the distance from the current fault to the set of critical faults. Besides, the algorithm for bounded probabilistic reachability analysis of the target set of faults is proposed.

Cuvinte-cheie
cyber-physical systems, faults, Discrete-Time Markov Chains, bounded probabilistic reachability, probabilistic counterexamples