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Selected information technology tools supporting maintenance and operation management electrical grids

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Języki publikacji
EN
Abstrakty
EN
The paper presents the main issues of the management of electrical grids. Selected information technology tools supporting electrical grids maintenance are presented. In electrical infrastructure maintenance of power companies, geographic information systems are increasingly used to support the management of their resources. Their functionalities in terms of creating comprehensive databases for the electrical infrastructure of the power sector are described. The important information technology tools regarding spatial systems for supporting maintenance and operation management electrical grids and the conditions of their implementation are presented. This paper also attempts to present an innovative multidimensional evaluation of the technical and economic benefits resulting from the use of modern information technology tools for the management of energy infrastructure.
Rocznik
Strony
art. no. e138089
Opis fizyczny
Bibliogr. 23 poz., rys.
Twórcy
  • Gdansk University of Technology, Faculty of Electrical and Control Engineering, Power Engineering Department, ul. Narutowicza 11/12, 80-233 Gdansk, Poland
Bibliografia
  • [1] Y. Sakamoto, “Improvement of operability and maintainability using new information and telecommunication technologies”, in Study Committee D2, 48th Session CIGRE. Paper D2 – 106, Paris, 2020.
  • [2] M. Cepin, “Assessment of Power System Reliability. Methods and Applications”, Springer, London, 2011.
  • [3] J. Piotrowski, “Systemy informatyczne i telekomunikacyjne”, Study Committee D2, 48th Session CIGRE – Energetyka, problemy energetyki i gospodarki paliwowo – energetycznej, pp. 319‒323, March 2021.
  • [4] S. Samek and M. Lizer, “Działalność CIGRE i CIGRE Polska”, 48th Session CIGRE 2020 – Energetyka, problemy energetyki i gospodarki paliwowo – energetycznej, pp. 157‒161, March 2021.
  • [5] A.P. Apostolov, “Artificial Intelligence Applications to Electric Power System”, in Study Committee D2, 48th Session CIGRE, Paper D2 – 102. Paris, 2020.
  • [6] A. Fraioli, “Failure reduction and predictive replacement approach for overhead lines using big data and advanced analytics”, Study Committee D2, 48th Session CIGRE, Paper D2 – 103, Paris, 2020.
  • [7] A. Rodionov, “Application of modern information and communication technologies for improving the effectiveness power systems”, Study Committee D2, 48th Session CIGRE. Paper D2 – 112. Paris 2020.
  • [8] X. Dong, “Research on the Architecture for Smart Energy Service System Based on Industrial Internet”, Study Committee D2, 48th Session CIGRE, Paper D2 – 114. Paris, 2020.
  • [9] S. Guo, “The IoT solution architecture for Power Distribution and its Application”, Study Committee D2, 48th Session CIGRE, Paper D2 – 115, Paris, 2020.
  • [10] M. Savinek, “Management of data from smart measuring device for predictive maintenance”, Study Committee D2, 48th Session CIGRE, Paper D2 – 130, Paris, 2020.
  • [11] D. Campara, “Applying Automated Cyber Risk Assessment for Smart Grid”, Study Committee D2, 48th Session CIGRE, Paper D2 – 204, Paris, 2020.
  • [12] A. Augusiak and W. Kamrat, “Automated network control and supervision”, IEEE Comput. Appl. Power, vol. 15, no. 1, pp. 20‒23, Aug. 2002, doi: 10.1109/67.976987.
  • [13] M. Shahidehpour, “Energy Efficiency – perfect power system techniques”, IEEE Power Energy, vol. 6, no. 6, pp. 25‒26. Oct. 2008, doi: 10.1109/MPE.2008.929795. [Accessed: 17 Jan. 2021].
  • [14] J. Girl, D. Sun, and R. Auila-Rosales, “Wanted A More Intelligent Grid”, IEEE Power Energy, vol. 7, no. 2, pp. 34‒40, Feb. 2009, doi: 10.1109/MPE.2008.931391.
  • [15] W. Kamrat and T. Szczepański, “Wybrane zagadnienia budowy i eksploatacji linii przesyłowych najwyższych napięć”, Energetyka, problemy energetyki i gospodarki paliwowo – energetycznej, pp. 649‒668, Oct. 2009.
  • [16] M. Bartosik, W. Kamrat, M. Kaźmierkowski, W. Lewandowski, M. Pawlik, T. Peryt, T. Skoczkowski, A. Strupczewski, and A. Szeląg, “Przesył energii elektrycznej – potrzeby, progi i bariery”, Przegląd Elektrotechniczny, vol. 11, pp. 297‒302, Nov. 2016.
  • [17] T. Pakulski and J. Klucznik, “Expected range of cooperation between transmissions system operators and distribution systems operators after implementation of ENTSO-e Grids Codes”, Acta Energ. Power Eng. Quarterly, vol. 2, pp. 14‒19, Jun. 2015, doi: 10.12736/issn.2300-3022.2015202.
  • [18] P. Marchel, J. Paska, K. Pawlak, and K. Zagrajek, “A practical approach to optimal strategies of electricity contracting from Hybrid Power Sources”, Bull. Pol. Acad. Sci. Tech. Sci., vol. 68, no. 6 pp. 1543‒1551, doi: 10.24425/bpasts.2020.135377.
  • [19] W. Kamrat, “Wybrane zagadnienia lokalizacji turbin wiatrowych ze względu na ich aerodynamiczne oddziaływanie na przesyłowe linie elektroenergetyczne”, Elektroenergetyka: współczesność i rozwój – Biuletyn PSE, vol. 1, pp. 58‒65, 2020.
  • [20] SIEMENS NIXDORF information materials, “SICAD from Siemens Nixdorf GIS for your business”, Siemens AG.
  • [21] ELBUD – SAG, “Geographic information systems for the energy sector. SICAD/open as a system for managing energy network documentation”, 2017, Gdansk, Poland.
  • [22] FLI-MAP, “System presentation materials from Fugro-In-park B.V.”, Leidschendam, Netherlands”, [Online] Available: www.fugro-inpark.nl [Accessed: 17 Jan. 2021].
  • [23] Article-GeoEurope, “Laser Altimetry Survey Populates GIS Database”, Leidschendam, Netherlands, [Online] Available: www.fugro-inpark.nl [Accessed: 17 Jan. 2021].
  • [24] W. Kamrat and M. Dubert, “Selected Problems of Energy Infrastructure Diagnostics”, Ciepłownictwo, Ogrzewnictwo, Wentylacja, vol. 9, pp. 343‒346, Oct. 2018, doi: 10.15199/9.2018.9.1.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-9bf1bacc-7566-4471-98e3-a4cb6cf2f9be
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