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Pilot implementation of the on-line partial discharge monitoring system for heads of the high voltage cable lines

Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article presents the assumptions, characteristics and description of the implementation of a pilot system for on-line monitoring of partial discharges in heads of the high-voltage cable lines. The main purpose of the implementation was to increase the reliability of cable line heads by equipping them with a system of continuous assessment of technical condition with direct transmission of measurement data and alarms to the SCADA system. In order to achieve the assumed goal, unconventional methods for measuring partial discharges were used, the application of which does not require disconnecting the line from the voltage. The implementation was carried out on an active 110 kV high voltage cable line in the area of activity of one of the Distribution System Operators.
Rocznik
Strony
373--382
Opis fizyczny
Bibliogr. 20 poz., rys.
Twórcy
  • Lublin University of Technology, Faculty of Electrical Engineering and Computer Science, Nadbystrzycka 38 A, 20-618 Lublin, Poland
  • Lublin University of Technology, Faculty of Electrical Engineering and Computer Science, Nadbystrzycka 38 A, 20-618 Lublin, Poland
Bibliografia
  • [1] Energy Regulatory Office (2015). Regulacja Jakościowa w latach 2016-2020 dla Operatorów Systemów Dystrybucyjnych, Warsaw. (in polish)
  • [2] Konarski, M., Węgierek, P. (2018). The use of power restoration systems for automation of medium voltage distribution grid. Przegląd Elektrotechniczny, 94(7), 167-172.
  • [3] Council of European Energy Regulators (2018). Benchmarking Report 6.1 on the Continuity of Electricity and Gas Supply, Brussels: CEER.
  • [4] Konarski, M., Węgierek, P. (2019). Application of the UHF method for partial discharges measurement in high voltage cable lines. Przegląd Elektrotechniczny, 2019, 95(6), 86-89.
  • [5] IEC TS 62478:2016 High voltage test techniques - Measurement of partial discharges by electromagnetic and acoustic methods. International Electrotechnical Commission.
  • [6] IEC 60270:2000 High-voltage test techniques - Partial discharge measurements. International Electrotechnical Commission.
  • [7] Zygarlicki, J., Mroczka, J. (2012). Variable-frequency Prony method in the analysis of electrical power quality. Metrology and Measurement Systems, 19(1), 39-48.
  • [8] Zygarlicki J., Mroczka J. (2012). Method of testing and correcting signal amplifiers’ transfer function using Prony analysis. Metrology and Measurement Systems, 19(3), 489-498.
  • [9] Zygarlicki, J., Mroczka, J. (2012). Prony’s method used for testing harmonics and interharmonics in electrical power systems. Metrology and Measurement Systems, 19(4), 659-672.
  • [10] Zygarlicki, J., Mroczka, J. (2014). Prony’s method with reduced sampling-numerical aspects. Metrology and Measurement Systems, 21(3), 521-534.
  • [11] Zygarlicki, J., Mroczka, J. (2011). Short time algorithm of power waveforms fundamental harmonic estimation with use of Prony’s methods. Metrology and Measurement Systems, 18(3), 371-378.
  • [12] Yaacob, M.M., Alsaedi, M.A., Rashed, J.R., Dakhil, A.M., Atyah, S.F. (2014). Review on partial discharge detection techniques related to high voltage power equipment using different sensors. Photonic Sensors, 4(4), 325-337.
  • [13] Wu, M., Cao, H., Cao, J., Nguyen, H.L., Gomes, J.B., Krishnaswamy, S.P. (2015). An overview of state-of-the-art partial discharge analysis techniques for condition monitoring. IEEE Electrical Insulation Magazine, 6(31), 22-35.
  • [14] MONCABLO Brochure, Omicron Energy. (2018) https://www.omicronenergy.com/download/docu-ment/60A31CB9-AE62-47D1-BD5A-B2E0443FA6EB/ (accessed on Apr. 2020).
  • [15] doblePRIME PD-GUARD Datasheet, Doble Engineering Company. (2018). https://www.doble.com/wp-content/uploads/doblePRIME-PD-Guard_web.pdf (accessed on Apr. 2020).
  • [16] PRY-CAM Brochure, Prysmian Electronics. https://dk.prysmiangroup.com/sites/default/files/atoms/files/Pry-Cam%20Brochure.pdf (accessed on Apr. 2020).
  • [17] InsulGard Brochure, Eaton Industries. (2011). http://www.eaton.com.cn/EN/ecm/idcplg?IdcService=GET_FILE&allowInterrupt=1&RevisionSelectionMethod=LatestReleased&noSaveAs=0&Rendition=Primary&dDocName=PCT_310863 (accessed on Apr. 2020).
  • [18] QUALITROL QPDM Product Brochure, Qualitrol Company. https://2hfybu1lrdue3x9wnu1dvw7s-wpengine.netdna-ssl.com/wp-content/uploads/2019/08/Qualitrol_QPDM_Partial_Discharge_Monitor_for_Transformers.pdf (accessed on Apr. 2020).
  • [19] QUALITROL PDMG-RH Product Brochure, Qualitrol Company. (2012). https://2hfybu1lrdue3x9wnu1dvw7s-wpengine.netdna-ssl.com/wp-content/uploads/2016/09/PD-D27-07L-01E_PDMG_RH.pdf (accessed on Apr. 2020).
  • [20] Álvarez, F., Garnacho, F., Ortego, J., Sánchez-Urán, M.Á. (2015). Application of HFCT and UHF sensors in on-line partial discharge measurements for insulation diagnosis of high voltage equipment. Sensors, 15(4), 7360-7387.
Uwagi
EN
1. This work was supported by Ministry of Investment and Economic Development and co-financed from the European Union funds under the Smart Growth Operational Programme (grant# POIR.02.01.00-00-0005/17).
PL
2. Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-7f8bff56-308e-4476-b397-a96acfb6a709
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