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Tytuł artykułu

An approach to Baltic Port, Shipping, Ship Traffic and Operation Information Critical Infrastructure Network operation process

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The goal of the article is to analysis of static and dynamic industry installations existing in the Baltic Sea Region performed to classify them as a network of networks. As the result of this analysis, the Baltic Port, Shipping, Ship Traffic and Port Operations Information Critical Infrastructure Network composed of three single critical infrastructure networks are distinguished. In the next step, the operation process for every installations and finally for network of networks are defined.
Rocznik
Strony
21--30
Opis fizyczny
Bibliogr. 23 poz., rys., wykr.
Twórcy
autor
  • Maritime University, Gdynia, Poland
  • Maritime University, Gdynia, Poland
Bibliografia
  • [1] Blokus-Roszkowska, A., Guze, S., Kołowrocki, K. et al. (2016). Port Critical Infrastructure Network. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 7, 2, 15-28.
  • [2] Bogalecka, M., Kołowrocki, K., Soszyńska-Budny, J. et al. (2016). Shipping critical infrastructure network. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 7, 2, 43-52.
  • [3] Dziewicki, M. (2007). The role of AIS for small ships monitoring. Baltic Master Report.
  • [4] Enisa. (2011). Analysis of cyber security aspects in the maritime sector.
  • [5] EU-CIRCLE Report D1.1-GMU1. (2015). EUCIRCLE Taxonomy.
  • [6] EU-CIRCLE Report D1.2-GMU1. (2016). Identification of existing critical infrastructures at the Baltic Sea area and its seaside, their scopes, parameters and accidents in terms of climate change impacts.
  • [7] Ferreira, F. & Pacheco, A. (2007) Comparison of level-crossing times for Markov and semiMarkov processes. Statistics and Probability Letters 7, 2, 151-157.
  • [8] Glynn, P.W. & Haas, P.J. (2006). Laws of large numbers and functional central limit theorems for generalized semi Markov processes. Stochastic Models 22, 2, 201-231.
  • [9] Grabski, F. (2002). Semi-Markov Models of Systems Reliability and Operations Analysis. System Research Institute, Polish Academy of Science, (in Polish).
  • [10] Guze, S., Kołowrocki, K. & Soszyńska, J. (2008). Modeling environment and infrastructure influence on reliability and operation processes of port transportation systems. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 2, 1, 179-188.
  • [11] Guze, S. & Kołowrocki, K. (2016). Joint Network of Port, Shipping, Ship Traffic and Port Operation Information Critical Infrastructure Network. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 7, 2, 61-64.
  • [12] Guze, S. & Ledóchowski, M. (2016). Ship Traffic and Port Operation Information Critical Infrastructure Network. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 7, 2, 65-72.
  • [13] Kołowrocki, K. (2014). Reliability of Large and Complex Systems. Amsterdam, Boston, Heidelberd, London, New York, Oxford, Paris, San Diego, San Francisco, Singapore, Sidney, Tokyo, Elsevier.
  • [14] Kolowrocki, K. & Soszynska, J. (2009). Modeling environment and infrastructure influence on reliability and operation process of port oil transportation system. Electronic Journal Reliability & Risk Analisys: Theory & Applications 2, 3, 131-142.
  • [15] Kolowrocki, K. & Soszynska, J. (2009). Safety and risk evaluation of Stena Baltica ferry in variable operation conditions. Electronic Journal Reliability & Risk Analisys: Theory & Applications 2, 4, 168-180.
  • [16] Kolowrocki, K. & Soszynska, J. (2010). Reliability modeling of a port oil transportation system’s operation processes. International Journal of Performance Engineering 6, 1, 77-87.
  • [17] Kolowrocki, K. & Soszynska, J. (2010) Reliability, availability and safety of complex technical systems: modelling – identification – prediction – optimization. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 4, 1, 133-158.
  • [18] Kołowrocki, K. & Soszyńska-Budny, J. (2011). Reliability and Safety of Complex Technical Systems and Processes: Modeling - Identification - Prediction – Optimization. London, Dordrecht, Heildeberg, New York, Springer.
  • [19] Limnios, N. & Oprisan, G. (2005). Semi-Markov Processes and Reliability. Birkhauser, Boston.
  • [20] Mercier, S. (2008). Numerical bounds for semi-Markovian quantities and application to reliability. Methodology and Computing in Applied Probability 10, 2, 179-198.
  • [21] Soszyńska, J. (2007). Systems reliability analysis in variable operation conditions. PhD Thesis, Gdynia Maritime University-System Research Institute Warsaw (in Polish).
  • [22] Soszyńska, J., Kołowrocki, K., Blokus-Roszkowska, A. et al. (2010). Prediction of complex technical systems operation processes. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 4, 2, 379-510.
  • [23] Watts, R. (2005). Maritime Critical Infrastructure Protection: Multi-Agency Command and Control in an Asymmetric Environment.” Homeland Security Affairs 1, Article 3 [available at: https://www.hsaj.org/ articles/179].
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-72e17775-850f-418a-b65d-13b4966c261a
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