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  4. Towards Safety and Security Testing of Cyberphysical Power Systems by Shape Validation
 
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2025
Conference Paper
Title

Towards Safety and Security Testing of Cyberphysical Power Systems by Shape Validation

Abstract
The increasing complexity of cyberphysical power systems leads to larger attack surfaces to be exploited by malicious actors and a higher risk of faults through misconfiguration. We propose to meet those risks with a declarative approach to describe cyberphysical power systems and to automatically evaluate security and safety controls. We leverage Semantic Web technologies as a well-standardized framework, providing languages to specify ontologies, rules and shape constraints. We model infrastructure through an ontology which combines external ontologies, architecture and data models for sufficient expressivity and interoperability with external systems. The ontology can enrich itself through rules defined in SPARQL, allowing for the inference of knowledge that is not explicitly stated. Through the evaluation of SHACL shape constraints we can then validate the data and verify safety and security constraints. We demonstrate this concept with two use cases and illustrate how this solution can be developed further in a community-driven fashion.
Author(s)
Geiger, Alexander
Fraunhofer-Institut für Angewandte Informationstechnik FIT  
Hacker, Immanuel
Fraunhofer-Institut für Angewandte Informationstechnik FIT  
Sen, Ömer
Fraunhofer-Institut für Angewandte Informationstechnik FIT  
Ulbig, Andreas  
Fraunhofer-Institut für Angewandte Informationstechnik FIT  
Mainwork
IEEE International Conference on Cyber Security and Resilience, CSR 2025. Proceedings  
Project(s)
Belastungsoptimierte Arbeitsgestaltung für Netzleitstellen kritischer Infrastrukturen - Kognitive Ergonomie, Assistenzsysteme und Leitwarten-Simulatoren; Teilprojekt: Prozessdatensimulation, Nutzerzustandsbewertung und ergonomische Assistenzsysteme  
Funder
Bundesministerium für Forschung, Technologie und Raumfahrt  
Conference
International Conference on Cyber Security and Resilience 2025  
DOI
10.1109/CSR64739.2025.11130167
Language
English
Fraunhofer-Institut für Angewandte Informationstechnik FIT  
Keyword(s)
  • cyber-physical systems

  • cybersecurity

  • deductive reasoning

  • semantic web

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