Detail publikačního výsledku

Integrative Modelling and Resilience Enhancement in Critical Infrastructure Systems: A Comprehensive Approach

FUJDIAK, R.; VRTAL, M.; PRAKS, P.; BENEDIKT, J.; TOMAN, P.; BĚLOCH, M.

Originální název

Integrative Modelling and Resilience Enhancement in Critical Infrastructure Systems: A Comprehensive Approach

Anglický název

Integrative Modelling and Resilience Enhancement in Critical Infrastructure Systems: A Comprehensive Approach

Druh

Stať ve sborníku v databázi WoS či Scopus

Originální abstrakt

The increasing complexity and interconnectedness of critical infrastructure systems necessitate advanced analytical capabilities for effective management and resilience enhancement. This paper addresses the inadequacy of traditional modelling tools in handling the dynamic and heterogeneous nature of modern infrastructures, focusing on power distribution networks, communication networks, and control systems. We propose an integrative modelling approach that combines system dynamics, agent-based modelling, and probabilistic risk assessments, supported by real-time data analytics and machine learning. This methodology enables comprehensive simulation and evaluation of infrastructure resilience, providing significant benefits for operators, planners, and policymakers. The paper discusses the theoretical underpinnings, detailed methodologies, and practical applications, offering insights into enhancing resilience against various operational challenges and external threats.

Anglický abstrakt

The increasing complexity and interconnectedness of critical infrastructure systems necessitate advanced analytical capabilities for effective management and resilience enhancement. This paper addresses the inadequacy of traditional modelling tools in handling the dynamic and heterogeneous nature of modern infrastructures, focusing on power distribution networks, communication networks, and control systems. We propose an integrative modelling approach that combines system dynamics, agent-based modelling, and probabilistic risk assessments, supported by real-time data analytics and machine learning. This methodology enables comprehensive simulation and evaluation of infrastructure resilience, providing significant benefits for operators, planners, and policymakers. The paper discusses the theoretical underpinnings, detailed methodologies, and practical applications, offering insights into enhancing resilience against various operational challenges and external threats.

Klíčová slova

critical; infrastructures; resilience; modelling

Klíčová slova v angličtině

critical; infrastructures; resilience; modelling

Autoři

FUJDIAK, R.; VRTAL, M.; PRAKS, P.; BENEDIKT, J.; TOMAN, P.; BĚLOCH, M.

Rok RIV

2026

Vydáno

07.11.2024

Nakladatel

Institution of Engineering and Technology

Kniha

IET Conference Proceedings

ISSN

2732-4494

Periodikum

IET conference proceedings

Svazek

2024

Číslo

27

Stát

Spojené království Velké Británie a Severního Irska

Strany od

325

Strany do

329

Strany počet

5

URL

BibTex

@inproceedings{BUT191148,
  author="Radek {Fujdiak} and Matěj {Vrtal} and Pavel {Praks} and Jan {Benedikt} and Petr {Toman} and Michal {Běloch}",
  title="Integrative Modelling and Resilience Enhancement in Critical Infrastructure Systems: A Comprehensive Approach",
  booktitle="IET Conference Proceedings",
  year="2024",
  journal="IET conference proceedings",
  volume="2024",
  number="27",
  pages="325--329",
  publisher="Institution of Engineering and Technology",
  doi="10.1049/icp.2024.2625",
  url="https://digital-library.theiet.org/doi/10.1049/icp.2024.2625"
}