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2015 | 5 | 1099--1106
Tytuł artykułu

Experimentation Tool for Critical Infrastructures Risk Management

Warianty tytułu
Języki publikacji
The paper concerns a risk assessment and management methodology in critical infrastructures. The research objective is to adapt a ready-made risk manager, supporting information security- and business continuity management systems, to a new domain of application - critical infrastructure protection. First, a review of security issues in critical infrastructures was performed, with special focus on risk management. On this basis the assumptions were discussed how to adapt the OSCAD risk manager designed for the information security/business continuity applications. According to these assumptions, the OSCAD risk manager was adapted to its new domain of application, i.e. critical infrastructures. The aim of this work is to assess the usefulness of such a solution and to elaborate requirements for the advanced critical infrastructure risk manager to be developed from scratch.(original abstract)
Słowa kluczowe
Opis fizyczny
  • Institute of Innovative Technologies EMAG,
  • Council Directive 2008/114/EC of 8 December 2008 on the identification and designation of European critical infrastructures and the assessment of the need to improve their protection (2008).
  • Commission Staff Working Document on a new approach to the European Programme for Critical Infrastructure Protection Making European Critical Infrastructures more secure. European Commission. Brussels, Aug 28 2013, SWD(2013) 318 final
  • Ciras project: (access date: June 2015).
  • Bialas A.: Critical infrastructures risk manager - the basic requirements elaboration, In: Zamojski W., Mazurkiewicz J., Sugier J., Walkowiak T., Kacprzyk J (Eds.): Theory and Engineering of Complex Systems and Dependability Proceedings of the Tenth International Conference on Dependability and Complex Systems DepCoS-RELCOMEX, June 29 - July 3 2015, Brunów, Poland, Advances in Intelligent Systems and Computing Vol. 365, 2015, Springer-Verlag: Cham, Heidelberg, New York, Dordrecht, London, pp. 11-24, DOI: 10.1007978-3-319-19216-1_2.
  • OSCAD project: (access date: June 2015).
  • Rinaldi, S.M., Peerenboom, J.P., Kelly, T.K.: Identifying, Understanding and Analyzing Critical Infrastructure Interdependencies. IEEE Control Systems Magazine. December, 11- 25 (2001).
  • Hokstad, P., Utne, I.B., Vatn, J. (Eds): Risk and Interdependencies in Critical Infrastructures: A Guideline for Analysis (Springer Series in Reliability Engineering). Springer-Verlag London (2012), DOI: 10.1007/978-1-4471-4661-2_2.
  • Rausand, M., Risk Assessment: Theory, Methods, and Applications. Series: Statistics in Practice (Book 86), Wiley (2011).
  • Giannopoulos, G., Filippini, R., Schimmer, M.: Risk assessment methodologies for Critical Infrastructure Protection. Part I: A state of the art. European Union (2012).
  • Deliverable D2.1: Common areas of Risk Assessment Methodologies. Euracom (2007).
  • ISO/IEC 31010:2009 - Risk Management - Risk Assessment Techniques.
  • ENISA: (access date: June 2015).
  • D1.1 State of the Art of Methods and Tools, Ciras report (Dissem. level: RE/CO), 2015.
  • EN 61025 Fault tree analysis (FTA) (IEC 61025:2006), CENELEC (2007).
  • EN 62502 Event tree analysis (ETA) (IEC 62502:2010), CENELEC (2010).
  • Białas A.: Risk assessment aspects in mastering the value function of security measures. In: Zamojski W., Mazurkiewicz J., Sugier J., Walkowiak T., Kacprzyk J (Eds.): New results in dependability and computer systems. Advances in Intelligent and Soft Computing, Vol. 224, 2013, Springer-Verlag: Cham, Heidelberg, New York, Dordrecht, London, pp. 25-39. 2_3
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