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Analysis and modeling of load parameters of wind power station

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Języki publikacji
EN
Abstrakty
EN
The method and the load parameters dynamics simulation algorithm fed to the input of the energy-dynamic wind power station modes management system have been developed. Based on the real data analysis, we obtained dependencies of the management system input data changes for the specific time intervals. Input load parameters were simulated using the developed method. We have obtained data for the neural network training with the justification of changes in active wind power composition. The results are shown in a load parameters table as input management system data and estimated load charts. The results are important for the wind power station management system simulation as they provide higher reliability and accuracy of the results.
Twórcy
  • Lviv Polytechnic National University
  • Department of Telecommunications, University of Computer Sciences and Skills, Poland, Lodz
  • Lviv Polytechnic National University
autor
  • Lviv Polytechnic National University
Bibliografia
  • 1. Medykovskyy M.O., Shunevych O.B. 2010 Using integer programming for determination of wind power, Modeling and Information Technologies, Kyiv, Vol 57, 230-233 (in Ukrainian).
  • 2. Medykovskyy M.O., Shunevych O.B. 2010 Multicriteria method for evaluating the effectiveness of wind energy installations, Journal of Engineering Academy of Ukraine. – Kyiv, 2010, Vol. 3-4. 240-245 (in Ukrainian).
  • 3. Medykovskyy M.O., Shunevych O.B. 2011 Investigation of the effectiveness of methods for determining weight coefficients importance // Journal of Khmelnytsky National University: Coll. scientifictechnical. papers. – Khmelnytskyi, 2011, no 5, 176-182 (in Ukrainian).
  • 4. Medykovskyy M.O., Shunevych O.B. 2009 The method of determining the structure of wind power plants, taking into account the dynamics of load Modelling and Information Technology: coll. science. works. - Kyiv .: IPM NASU. 2009. Vol. 53. 175–181 (in Ukrainian).
  • 5. Knyazevsky B.A, Lipkin Y.B 1986 Electrical supply of industrial enterprises, Higher School, Moscow, 1986. 400 (in Russian) .
  • 6. Fedorov A.A., Kamenev V.V. 1984 Fundamentals industrial power, Energoatomizdat, Moscow, 1984. 472 (in Russian).
  • 7. Oliynyk Y. 2008 Research conjuncture electricity markets of Western Ukraine, NS mowers, LI pipers. Bulletin "Lviv Polytechnic": Logistics, no.6 (23).109-116 (in Ukrainian).
  • 8. Garkusha N.M., Tsukanov A.V., Horoshanska A.A. 2012. Models and methods of decision analysis and audit., 2nd ed., Erased. Kyiv, Knowledge, 2012. 591 (in Ukrainian).
  • 9. Labeysh.V.G. 2003 Alternative and renewable energy sources: Textbook, Sankt- Petersburg, 2003. 25 (in Russian).
  • 10. Venikov V. A., Zhuravlev V.G., Filippova T.A. 1990 Optimization of power plants and power systems, 2nd ed., Rev. and add. Moscow: Energoatomizdat, 1990. 349 (in Russian).
  • 11. Shunevych O.B. 2008 Analysis of operating systems for embedded technologies, Technical missing. Lviv, Vol. 2008/1 (27) 2 (28). 40-44. (In Ukrainian)
  • 12. Shunevych O.B., Medykovskyy M.O. 2009 Fuzzy logic in simulation mode enerhodynamichnyh, "Signal processing and non-Gaussian processes": II Intern. scientific-practic. conf, 25-29 May. 2009, Cherkasy: Theses. / Cherkas. state technical University.– Cherkasy, 2009. 255-256. (In Ukrainian).
  • 13. Shunevych O.B. 2009 Features of programming techniques TDD, Automation 2009: 16 Intern. Conf. from the automated control, 22-25 September. 2009, Chernovtsy: Theses. / Mob. nat. Univ. them. Fedkovych. - Chernivtsi.. 405-406. (In Ukrainian).
  • 14. Medykovskyy M.O., Shunevych O.B. 2010. Optimal Choice of Wind Turbines Combination Based on Customer's Requirements, "Modern Problems of Radio Electronics, Telecommunications and Computer Science": 10-Intern. scientific-technical conf, 23-27 February. 2010, Lviv-Slavsko: Theses. / Nat. University of "Lviv Polytechnic". 319 (in Ukrainian).
  • 15. Medykovskyy M.O., Shunevych O.B. 2010 Energy-dynamic modeling processes in renewable energy systems, Automation 2010: 17 Intern. Conf. from the automated control, 27-29 September. 2010, Kharkov: Theses / Kharkiv University of Radio Electronics. - Kharkov. 56-58. (In Ukrainian).
  • 16. Bondarenko M.F., Bilous N.V. 2004 Computer discrete mathematics, Kharkiv. 438. (in Ukrainian).
  • 17. Valenkin N.Y. 1975 The popular combinatorics, Publisher 'Nauka', Moskow, 139-140 (in Russian).
  • 18. Urin V.D, Cutler P.P 1974 Energy performance for optimization of power stations and power grids. Mosow: Energia,. – 136 (in Russian).
  • 19. Corman T., Charles Leiserson T., Rivest R., Stein C. 2005 Introduction to Algorithms, 2nd ed. Moscow: Williams. 1296 (in Russian).
  • 20. Gamm A.Z., Kucherov Y.N. 1991 Methods for solving problems in the power of real-time H-SC .- Nauka, 1991. – 272 (in Russian)
  • 21. Horyński M., Pietrzyk W., Boguta A. 2012 A model of an energy effi cient building automation system, EconTechMod, An International Quarterly Journal on Economics in Technology, new Technologies and Modelling Processes. Krakiv-Lviv, Vol. 1, No 1. 41-47.
  • 22. B. Kovalyshyn 2012 Theoretical and experimental ground of the fuel energy efficiency improvement by an activation of the burning reaction molecules-reagents, EconTechMod, An International Quarterly Journal on Economics in Technology, new Technologies and Modelling Processes. Krakiv-Lviv, Vol. 1, No 1. 63-67.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-9b2706f3-4623-4cd7-8eec-8923e9bcf6f4
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