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Stacje elektroenergetyczne – Komitet Studiów B3

Autorzy
Identyfikatory
Warianty tytułu
EN
Electric power substations – Study Committee B3
Języki publikacji
PL
Abstrakty
PL
Przedstawiono najciekawsze przykłady obrazujące nowości organizacyjne i techniczne, również te z zakresu relacji pomiędzy energetyką a środowiskiem, w szeroko rozumianym obszarze stacji energetycznych, zaprezentowane podczas 42. sesji CIGRE w Paryżu. Omówiono optymalizację użytkowania stacji elektroenergetycznych, nowe wyzwania w zakresie stacji oraz energetykę polską na tle światowych nowości.
EN
Presented are the most interesting examples of organizational and technical novelties - also the ones referring to relationship between power industry and the environment – concerning electric power substations. Discussed are new challenges in the scope of electric power substations and possibilities to optimize their exploitation. Described is the Polish power industry against the background of the world's novelties in this field.
Czasopismo
Rocznik
Tom
Strony
164--171
Opis fizyczny
Bibliogr. 24 poz., rys., tab.
Twórcy
autor
  • Energoprojekt – Kraków SA
Bibliografia
  • [1] B3-101. Davey C., Pritchard D., Ridings N. (Australia): Asset management plan for a distribution electricity business
  • [2] B3-102. Binder C., Ansoud B., Magnani A. (France): The specialized maintenance of substation at RTE
  • [3] B3-103. Hinow M. (Switzerland), Waldron M. (United Kingdom), Muller L., Aeschbach H., Pohlink K. (Switzerland): Substation life cycle cost management supported by stochastic optimization algorithm
  • [4] B3-104. Laskowski K., Schwan M. (Germany): Optimized asset management of High Voltage Substations based on life cycle cost analyses integrating reliability prognosis methods
  • [5] B3-105. Perez D. G., Hurtado G. L., Del Rey M. A., De la Torre L. (Spain): New asset management practices for T&D utilities within deregulated Power Markets
  • [6] B3-106. Kobayashi T., Kawakita K., Sato T., Yokota T., Sasamori K., Ohno M. (Japan): Advanced maintenance technology against deterioration of metal enclosed equipment
  • [7] B3-107. Soto Bouzas X. O., Mahou A., Feijoo Martinez J. (Spain): Maintenance strategy based on knowledge management
  • [8] B3-108. Buakaew S., Ongkawat T. (Thailand): Case study: The effect of "Open Conductor Fault" of 69 kV OCB SY-6022 at Sipraya substation
  • [9] B3-109. Rezaei M., Oskouee M., Shariati M. R., Agah S., Rasti M. (Iran): A practical application of substation maintenance at a steel mill factory in south of Iran
  • [10] B3-201. Finn J. S., Knight M. A., Prior C. E. (United Kingdom): Designing substations for offshore wind farm connections
  • [11] B3-202. Krieg T., Steindl M. (Australia): Coping with major growth - implication for substation design
  • [12] B3-203. Fernandez A., Adobes R., Anaya P. D. (Spain): Urban substations evolution related to the big cities growth
  • [13] B3-204. Solver C. E., Olofsson M. N., Larsson P., Norberg P. (Sweden): Environmental benefits of AIS substations with disconnecting circuit - breakers
  • [14] B3-205. Kutlev K., Andersson U., Tang L., Reymers R. (USA): Complete methodology for selecting optimal substation solutions
  • [15] B3-206. Koch H. (Germany): Application of long high capacity Gas Insulated Lines in structures
  • [16] B3-207. Dieter Fuechsle D. F., Willi Paul W. P. (Switzerland): Hybrid solutions an attractive option for modernisation and retrofit of AIS substations
  • [17] B3-208. Imagawa H., Kobayaschi T., Sato T., Uehara K., Shimomura T., Okada A. (Japan): Substation designs for the least environmental impact in Japan
  • [18] B3-209. Carlini E. M., Falorni D., Iuliani V., Colombo E. (Italy): Unconventional duties for the transmission grid resulting from the connection of wind farms - a view from the Italian side
  • [19] B3-210. Koch H., Kunze D., Pöhler S., Hofmann L., Rathke C., Mueller A. (Germany): Gas Insulated Lines - reliable power transmission towards new worldwide challenges in hydro and wind power generation
  • [20] B3-211. Witham T. (USA): Secure substation networks: implement for today; design for tomorrow
  • [21] B3-212. Sato T., Taira T., Kawakita K. (Japan): Substation automatic restoration system achieving drastic outage time reduction by optimized procedure
  • [22] B3-213. Tremouille G. (France), Kapoor S. (India), Royer L. (France): Impact of recent electrical field exposure criteria on air insulated substation design - 800 kV case
  • [23] B3-214. Diaconu C., Pop L. T., Munteanu C. (Romania): The analysis of the electric and magnetic field distribution inside a recently rehabilitated substation belonging to Romanian TSO company
  • [24] B3-215. Santarem R. C. (Brazil), Gonzalez L. E. (USA): Critical role of timing and synchronization in substation automation
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS1-0037-0078
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