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Doświadczenia z badań odbiorczych i eksploatacyjnych linii kablowych wysokiego napięcia

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
EN
Experiences from acceptance and exploitation tests of high voltage cable lines
Języki publikacji
PL
Abstrakty
PL
W artykule przedstawiono zastosowanie napięcia przemiennego tłumionego (DAC) do badań odbiorczych i diagnostyki w miejscu zainstalowania elektroenergetycznych kabli wysokiego napięcia (do 230 kV).
EN
The article presents the application of damped alternating voltage (DAC) for acceptance tests and diagnostics in the place of installing high voltage power cables (up to 230 kV).
Rocznik
Strony
33--36
Opis fizyczny
Bibliogr. 27 poz., rys., tab.
Twórcy
autor
  • on-site hv solutions Central Europe Sp. z. o.o., ul. Bagatela 11 lok. 14, 00-585 Warszawa
autor
  • Politechnika Poznańska, Instytut Elektroenergetyki, ul. Piotrowo 3A, 60-965 Poznań
autor
  • Politechnika Poznańska, Instytut Elektroenergetyki, ul. Piotrowo 3A, 60-965 Poznańl
autor
  • Politechnika Poznańska, Instytut Elektroenergetyki, ul. Piotrowo 3A, 60-965 Poznań
Bibliografia
  • [1] IEEE 400-2012: Guide for Field Testing and Evaluation of the Insulation of Shielded Power Cable Systems Rated 5 kV and Above, (2012)
  • [2] IEEE 400.2-2013: IEEE Guide for Field Testing of Shielded Power Cable Systems Using Very Low Frequency, (2013)
  • [3] IEEE 400.4-2015: Guide for Field Testing of Shielded Power Cable Systems Rated 5 kV and Above with Damped Alternating Current Voltage (DAC), (2015)
  • [4] Gulski E, Wester F.J., Smit J.J., Seitz P.P., Turner M., Advanced PD diagnostic of MV power cable system using oscillating wave test system, IEEE Electrical Insulation Magazine, 16, 2, (2000), 17-25
  • [5] Gulski E., Smit J.J., Petzold F., Seitz P.P., Quak B., de Vries F., Advanced Solution for On-Site Diagnosis of Distribution Power Cables, Jicable 2007, Versailles, France, (2007), paper C.7.2.4
  • [6] Houtepen R., Chmura L., Smit J.J., Quak B., Seitz P.P., Gulski E., Estimation of Dielectric Loss Using Damped AC Voltages, IEEE Electrical Insulation Magazine, Vol. 27, No. 3, (2011)
  • [7] Bodega R., Morshuis P.H., Lazzaroni M., Wester F.J., PD Recurrence in Cavities at Different Energizing Methods, IEEE Trans. on Instrumentation and Measurement, Vol. 53, No. 2, (2004)
  • [8] Wester F.J., Gulski E., Smit J.J., Detection of Partial Discharges at Different AC Voltage Stresses in Power Cables, IEEE Electrical Insulation Magazine, July/August (2007), 28-43.
  • [9] Wester F.J., Condition Assessment of Power Cables Using PD Diagnosis at Damped AC Voltages, ISBN 90-8559-019-1, Delft, the Netherlands, (2004)
  • [10] Gulski E., Lemke E., Gamlin M., Gockenbach E., Hauschild W., Pultrum E., Experiences in PD detection of distribution power cable systems, Electra, (ISSN 1286-1146), 34-43
  • [11] Gulski E., Wester F.J., Schikarski P., Seitz P.P., PD diagnoses and condition assessment of distribution power cables using damped AC voltages. Proceedings XIIIth International Symposium on HV, Delft, (2003), paper 776
  • [12] Gulski E., Smit J.J., Wester F.J., PD knowledge rules for insulation condition assessment of distribution power cables. IEEE Transactions on dielectrics and electrical insulation, 12(2), 223-239.
  • [13] Aucourt C., Boone W., Kalkner W., Naybour R.D., Ombello F., Recommendations for a New After Laying Test Method for High Voltage Extruded Cable Systems, CIGRE, August (1990), Paper 21-105
  • [14] Seitz P.P., Quak B., Gulski E., Smit J.J., Cichecki P., de Vries P., Petzold F., Novel Method for On-site Testing and Diagnosis of Transmission Cables up to 250kV, Proceedings 7th International Conference Jicable, (2007)
  • [15] IEC 60502-2:2014, Power cables with extruded insulation and their accessories for rated voltages from 1 kV (Um = 1,2 kV) up to 30 kV (Um = 36 kV) – Part 2: Cables for rated voltages from 6 kV (Um = 7,2 kV) up to 30 kV (Um = 36 kV)
  • [16] IEC 60840: Power cables with extruded insulation and the accessories for rated voltages above 30 kV up to 150 kV – Test methods and requirements
  • [17] IEC 62067: Power cables with extruded insulation and their accessories for rated voltages above 150 kV (Um = 170 kV) up to 500 kV (Um = 550 kV) – Test methods and requirements
  • [18] Kreuger F.H., Industrial High DC Voltage, ISBN 9-407-1110-0, (1995)
  • [19] Jongen R., Seitz P.P., Quak B., de Vries F., Cichecki P., New Generation of On-site Testing Technology for Transmission Power Cables, Jicable, Versailles, France (2011), paper A.8.3
  • [20] Jongen R., Quak B., Gulski E., Tenbohlen S., New developments in on-site testing of long lengths of (E)HV power cable, Condition Monitoring and Diagnosis, Conference CMD, (2012), 149-152.
  • [21] Gulski E., Jongen R., Patterson R., Modern Testing and Diagnosis of Power Cables Using Damped AC Voltages, NETA World, Spring (2015)
  • [22] CIGRE Technical Brochure 502, High-voltage on-site testing with partial discharge measurement, (2012)
  • [23] CIGRE Technical Brochure 496, Recommendations for Testing DC Extruded Cable Systems for Power Transmission at a Rated Voltage up to 500 kV, (2012)
  • [24] CIGRE Technical Brochure 680, Implementation of Long AC HV and EHV Cable Systems, (2017)
  • [25] CIGRE Technical Brochure 444, Guidelines for Unconventional Partial Discharge Measurements, (2010)
  • [26] CIGRE Technical Brochure 662, Guidelines for partial discharge detection using conventional (IEC 60270) and unconventional methods, (2016)
  • [27] Gulski E., Rakowska A., Siodła K., Jongen R., Minassian R., Cichecki P., Parciak J., Smit J., On-Site Testing and Diagnosis of Transmission Power Cables up to 230 kV Using Damped AC Voltages, IEEE Electrical Insulation Magazine, vol. 30, No. 3, May/June 2014, 27-38
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-c90db3b7-e3e7-4476-a5f1-7223eb9aa584
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