Time-Dependent Unavailability Exploration of Interconnected Urban Power Grid and Communication Network

Author:

Vrtal Matej1ORCID,Fujdiak Radek1ORCID,Benedikt Jan1ORCID,Praks Pavel2ORCID,Bris Radim3ORCID,Ptacek Michal1ORCID,Toman Petr1ORCID

Affiliation:

1. Faculty of Electrical Engineering and Communication, Brno University of Technology, Technicka 3058/10, 616 00 Brno, Czech Republic

2. IT4Innovations National Supercomputing Center, VSB—Technical University of Ostrava, 708 00 Ostrava, Czech Republic

3. Faculty of Electrical Engineering and Computer Science, VSB—Technical University of Ostrava, 708 33 Ostrava, Czech Republic

Abstract

This paper presents a time-dependent reliability analysis created for a critical energy infrastructure use case, which consists of an interconnected urban power grid and a communication network. By utilizing expert knowledge from the energy and communication sectors and integrating the renewal theory of multi-component systems, a representative reliability model of this interconnected energy infrastructure, based on real network located in the Czech Republic, is established. This model assumes reparable and non-reparable components and captures the topology of the interconnected infrastructure and reliability characteristics of both the power grid and the communication network. Moreover, a time-dependent reliability assessment of the interconnected system is provided. One of the significant outputs of this research is the identification of the critical components of the interconnected network and their interdependencies by the directed acyclic graph. Numerical results indicate that the original design has an unacceptable large unavailability. Thus, to improve the reliability of the interconnected system, a slightly modified design, in which only a limited number of components in the system are modified to keep the additional costs of the improved design limited, is proposed. Consequently, numerical results indicate reducing the unavailability of the improved interconnected system in comparison with the initial reliability design. The proposed unavailability exploration strategy is general and can bring a valuable reliability improvement in the power and communication sectors.

Funder

Ministry of the Interior of the Czech Republic

Publisher

MDPI AG

Subject

Computational Mathematics,Computational Theory and Mathematics,Numerical Analysis,Theoretical Computer Science

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