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Modeling of the controlled traction power supply system in the space-time coordinates

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Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The problems of the traction power supply system calculation are considered in the article. The authors proposed the space-time model, which is based on the analytical functions of the current- and voltage-drop distributions in the contact network. The usage of the proposed model is shown for the control law calculation both to stabilize the voltage at the pantographs of the electric rolling stocks and to reduce the power losses.
Czasopismo
Rocznik
Strony
5--19
Opis fizyczny
Bibliogr. 14 poz.
Twórcy
autor
  • Dnipropetrovsk National University of Railway Transport Lazaryana 2, 49010, Dnipro, Ukraine
autor
  • Dnipropetrovsk National University of Railway Transport Lazaryana 2, 49010, Dnipro, Ukraine
Bibliografia
  • 1. Марквардт, К.Г. Энергоснабжение электрифицированных железных дорог. Москва: Транспорт. 1982. 528 p. [In Russian: Markvardt, K. G. Power supply of electric railways. Moscow: Transport].
  • 2. Аржанников, Б.А. Система управляемого электроснабжения электрифицированных железных дорог постоянного тока. Екатеринбург: УрГУПС. 2010. 176 p. [In Russian: Arzhannikov, B.A. The system of controlled power supply on the electrified DC railways. Yekaterinburg: USURT].
  • 3. Марикин, А.Н. Стабилизация напряжения на токоприемниках подвижного состава электрифицированных железных дорог постоянного тока. D.Sc thesis. Санкт-Петербург: ПГУПС. 2008. 38 p. [In Russian: Marikin, A.N. Voltage stabilization on the current collectors of the rolling stock on the electrified DC railways. D.Sc thesis. St. Petersburg: PGUPS].
  • 4. Герман, Л.А. & Кишкурно, К.В. Сравнение методов расчета системы тягового электроснабжения при разных способах учета параметров внешней сети. Вестник ВНИИЖТ. 2013. No. 1. P. 16-21. [In Russian: German, L.A. & Kishkurno, K.V. Comparison of methods for the calculation of traction power supply at different ways of taking into account the parameters of the external network. VNIIZhT Bulletin].
  • 5. Mario, A.R. & Ramos, G. Power System Modelling for Urban Massive Transportation Systems, Infrastructure. Dr. Xavier Perpinya (Ed.). In Tech Publ. 2012. 522 P. ISBN 10.5772/35191. Available at: http://www.intechopen.com/books/infrastructure-design-signalling-and-security-in-railway/power-system-modelling-for-urban-massive-transportation-systems.
  • 6. Ho, T.K. & Chi, Y.L. & Siu, L.K. & Ferreira, L. Traction power system simulation in electrified railways. Journal of Transportation Systems Engineering and Information Technology. 2005. No. 5(3). P. 93-107.
  • 7. Dudgeon, G. Railway Network Electrification and Energy Management Systems. The Math Works Ink. Webinar. 2014. Available at: https://www.mathworks.com/solutions/railway-systems.html#electrification_systems.
  • 8. J., Hu & J.H., He & L., Yu & M.X., Li & Z.Q., Bo & F., Du & J.F., Xu. The Research of DC Traction Power Supply System and the DDL Protection Algorithm Based on MATLAB/Simulink. China International Conference on Electricity Distribution. 2010. P. 1-6.
  • 9. Simulation software for railway power supply systems «Openpower.net». Available at: http://www.openpowernet.de.
  • 10.Di, Yu. & Lo, K.L. & Xiaodong, Wang & Xiaobao, Wang. MRTS traction power supply system simulation using Matlab/Simulink. In: 55th IEEE «Vehicular Technology Conference» IEEE. 2002. Vol. 1. P. 308-312.
  • 11.Bosiy, D. & Kosarev, E. Calculation of the Traction Power Supply Systems Using the Functions of Resistance. Problemy Kolejnictwa. 2015. No. 168. P. 7-14. Available at: http://eadnurt.diit.edu.ua/jspui/handle/123456789/8837.
  • 12.Szelag, A. Application of modeling and simulation techniques as methods for feasibility studies and design in electric traction systems. Electrification of transport. 2014. No. 8. P. 56-65.
  • 13.Сыченко, В.Г. & Босый, Д.А. & Косарев, Е.Н. Усовершенствование методологии расчета распределенной системы тягового электроснабжения с усиливающим пунктом. Энергосбережение. Энергетика. Энергоаудит. 2014. Spec. Issue. P. 8-18. [In Russian: Sychenko, V.G. & Bosiy, D.A. & Kosarev, E.N. Improvement of the methodology for calculating the distribution of traction power supply reinforcing point. Energy saving. Power engineering. Energy audit].
  • 14.Sychenko, V.G. & Bosiy, D.O. & Kosarev, E.M. Improving the quality of voltage in the system of traction power supply of direct current. The archives of transport. 2015. Vol. 35. No. 3. P. 63-70. Available at: http://eadnurt.diit.edu.ua/jspui/handle/123456789/4501.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b38381b6-a924-4d29-922b-9fa5649b677c
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