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Sources of independent power supply for protection relay

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
PL
Źródła niezależnego zasilania układów zabezpieczeniowych
Języki publikacji
EN
Abstrakty
EN
Nowadays, telemetry and relay protection, which are located directly on the protected element of the electric power system or inside of it are increasingly used in the electric power industry. For its supply, it requires an autonomous source of low power, which has a stabilized DC voltage. Existing devices are unreliable, expensive to manufacture and operate. This work offers power and relay protection and diagnostics with the help of autonomous power sources that can be used in the network with the help of current or voltage transformers, and with the help of an inductive converter placed in the end zone of an electric machine as well.
PL
W pracy nalizowano metody niezależnego zasilania układów przekaźnikowych zabezpieczeń. Układy takie powinny charakteryszować się małym poborem mocy, niezawodnością I niską ceną.
Rocznik
Strony
23--26
Opis fizyczny
Bibliogr. 14 poz., rys., tab.
Twórcy
autor
  • Pavlodar State University, Pavlodar, Republic of Kazakhstan
autor
  • Pavlodar State University, Pavlodar, Republic of Kazakhstan
autor
  • Pavlodar State University, Pavlodar, Republic of Kazakhstan
autor
  • Technical Science, Associate Professor of OmSTU, Omsk, Russian Federation
  • Pavlodar State University, Pavlodar, Republic of Kazakhstan
Bibliografia
  • [1] Lebedeva Yu.A. Selection of development concepts for overhead power lines of 110-220 kV affected by extreme meteorological conditions: diss. PhD Tech. Saratov, 2011. -147 pp.
  • [2] Nikitin K.I. design concept and model of current protection of electric power systems: diss. PhD Tech.: 05.14.02. - Omsk, 2012. - 166 pp.
  • [3] D. Divan. Improving Power Line Utilization and Perfomanse with D-FACTS Devisces./https://wed.fe.up.pt.
  • [4] Kuznik Yu.S. Temperature protection of electric motors / Industrial power-engineering - 1995, №6, pp. 9 - 11.
  • [5] Novozhilov A.N., Assainov G.Zh., Novozhilov T.A., Antontsev A.V. Methods of transmission of information about damage to an alternating current electric machine with built-in measuring transducers. Bulletin of the PSU, Power Engineering Series No. 1, 2017, pp. 245-253.
  • [6] Shevchenko N.Yu., Soshinov A.G., Lebedeva Yu.V., Khromov N.P. Implementation of an automated glaze monitoring system in the Kamyshinsky electric power lines// Modern problems of science and education. - 2009. - №5. - pp. 127-132.
  • [7] IEEE Transactions On Computer-Aided Design, Vol. 10. No. 4, April 1991
  • [8] Glazyrina A.E., Levin D.S., Petrenko S.A. Mathematical model of a current transformer of a power takeoff source. // Bulletin of Science of Siberia. Engineering Sciences Series . Special Issue (15). 2015., pp.21-25.
  • [9] Mazel N.B. Power supply transformers. M.:. Energoizdat - 1982. -79 pp.
  • [10] Zero sequence current transformers ТЗЛК-СЭЩ- 0,66, ТЗЛКР-СЭЩ-0,66. Technical information (reference). ORT.135.019 TI, Samara, 2013.
  • [11] Njiende H., Wetzel H., Froehleke N., Cronje W.A. Models of integrated magnetic components for simulation based design of SMPS with SIMPLORER. http://wwwlea.uni-paderborn.de/fileadmin/Elektrotehnic/AGLEA/forschung/veroeffentlichungen/2003/03epe-njiendewetzel-froehleke-cronje.pdf.
  • [12] Afanasyev VV, Adoniev NM, Kibel VM, Sirota IM, Stogniy B.S. Current transformers. L .: Energoatomizdat, 1989 .-416p
  • [13] Bessonov: Theoretical Basics of Electrical Engineering M .: Higher School, 1967.- 775 pp.
  • [14] Halina Pasek-Siurek, Janusz Skiba: Application of nanocrystalline cores in pulse transformers. Przeglad elektrotechniczny, 2002, No 11, pp. 248-252
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2a3f7d40-d5a0-42d7-a313-c5f8c929eac4
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