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Some results of research into harmonics in the high voltage networks with distributed nonlinear loads

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Warianty tytułu
PL
Rezultaty badania harmonicznych w sieci trakcyjnej z nieliniowym obciążeniem
Języki publikacji
EN
Abstrakty
EN
The paper presents the results of the analysis of harmonic parameters that were measured at the nodes of connecting railway substations to the feeding network. Traction load is nonlinear, unbalanced and stochastic. The 3-rd and 5-th harmonics are dominant in the current of the traction load. The paper shows some properties and specific features of the measured parameters of 3-rd and 5-th harmonics.
PL
W artykule zaprezentowano rezultaty analizy harmonicznych zmierzonych na węzłach połączeń podstacji kolejowych z siecią zasilającą. Sieć trakcyjna jest nieliniowa, niezrównoważona i stochastyczna. Dominują trzecia i piąta harmoniczna.
Rocznik
Strony
239--243
Opis fizyczny
Bibliogr. 12 poz., rys., tab., wykr.
Twórcy
  • Energy Systems Institute of the Siberian Branch of the Russian Academy of Sciences
Bibliografia
  • [1] T.C. Shuter, H. T. Vollkommer, T.L. Kirkpatrick, A survey of harmonic levels on the American electric power distribution system, IEEE Trans. on Power Delivery, vol. 4, No. 4, October 1989, 2204-2213.
  • [2] A.E. Emanuel, J.A.Orr, D.Cyganski, E.M.Gulachenski, A survey of harmonic voltages and currents at distribution substantions, IEEE Trans. on Power Delivery, vol. 6, No. 4, October 1991, 1883-1890.
  • [3] A.E. Emanuel, J.A.Orr, D.Cyganski, E.M.Gulachenski, A survey of harmonic voltages and currents at the customer’s bus, IEEE Trans. on Power Delivery, vol. 8, No. 1, January 1993, 411-421.
  • [4] Y.J. Wang, L. Pierrat, L. Wang, Summation of harmonic currents produced by AC/DC static power converter with randomly fluctuating loads, IEEE Trans. on Power Delivery, vol. 9, No. 2, April 1994, 1129-1135.
  • [5] A. Mansoor, W. M. Grady, A. H. Chowdhury, M. J. Samotyj, An investigation of harmonics attenuation and diversity among distributed single-phase power electronic loads, IEEE Trans. on Power Delivery, vol. 10, No. 1, January 1995, 467-473.
  • [6] A.Cavallini, G.C.Montanari, M.Cacciari, Stochastic evaluation of harmonics at network buses, IEEE Trans. on Power Delivery, vol. 10, No. 3, July 1995, 1606-1613.
  • [7] Chung-Hsing Hu, Chi-Jui Wu, Shih-Shong Yen, Yu-Wu Chen, Bor-An Wu, Jan-San Hwang, Survey of harmonic voltage and current at distribution substation in Northern Taiwan, IEEE Trans. on Power Delivery, vol. 12, No. 3, July 1997, 1275-1284.
  • [8] A.Cavallini, R.Langella, A. Tesla, F. Ruggiero, Gaussian modeling of harmonic vectors in power systems, 8th International conference on Harmonics and Quality of Power, Athens, Greece, 14-16th Oct.1998, Proccedings, vol.II, 1010-1017.
  • [9] Probabilistic Aspects Task Force of Harmonics working group Subcommittee of the Transmission and Distribution committee, Time-varying harmonics: part I – characterizing measured data, IEEE Trans. on Power Delivery, vol. 13, No. 3, July 1998, 938-944.
  • [10] I.M.Neidawi, A.E.Emanuel, D.J.Pileggi, M.J.Corridori, R.D. Archambeault, Harmonics trend in NE USA: a preliminary survey, IEEE Trans. on Power Delivery, vol. 14, No. 4, October 1999, 1488-1494.
  • [11] A. Ardito, S. Malgarotti, A. Prudenzi, A survey of power quality aspects at industrial customers in Italy, 17th International conference on Electricity Distribution, Barcelona, Spain, 12-15 May, 2003, Proccedings, vol.II, 1010-1017.
  • [12] State standard R 54149-2010. Electric energy. Electromagnetic compatibility of technical equipment. Power quality limits in the public power supply systems. Moskva. Standartinform. 2012.
Typ dokumentu
Bibliografia
Identyfikator YADDA
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