Frequency Range of UHF PD Measurements in Power Transformers

Author:

Tenbohlen Stefan1ORCID,Beura Chandra1ORCID,Sikorski Wojciech2ORCID,Albarracín Sánchez Ricardo3ORCID,de Castro Bruno4ORCID,Beltle Michael1ORCID,Fehlmann Pascal5,Judd Martin6ORCID,Werner Falk7,Siegel Martin8ORCID

Affiliation:

1. Institute of Power Transmission and High Voltage Technology (IEH), University of Stuttgart, 70569 Stuttgart, Germany

2. Institute of Electrical Power Engineering, Poznan University of Technology, Piotrowo 3A, 60-965 Poznan, Poland

3. Department of Electrical and Electronic Engineering, Automatic Control, and Applied Physics, School of Industrial Design and Engineering (ETSIDI), Universidad Politécnica de Madrid (UPM), Ronda de Valencia 3, 28012 Madrid, Spain

4. Department of Electrical Engineering, School of Engineering, São Paulo State University (UNESP), Bauru 17033-360, SP, Brazil

5. FKH Fachkommission für Hochspannungsfragen, 8050 Zürich, Switzerland

6. High Frequency Diagnostics and Engineering Ltd., Clydeway House, 813 South Street, Glasgow G14 0BX, UK

7. Doble Engineering Company, Marlborough, MA 01752, USA

8. BSS Hochspannungstechnik GmbH, 71229 Leonberg, Germany

Abstract

Although partial discharge (PD) measurement is a well-accepted technology to assess the quality of the insulation system of power transformers, there are still uncertainties about which frequency range PDs radiate and which frequency range should be evaluated in a measurement. This paper discusses both a UHF PD frequency range obtained from studies investigating laboratory experiments and a frequency range from numerous practical use cases with online and on-site measurements. The literature review reveals a frequency spectrum of ultrahigh-frequency (UHF) PD measurements in the range of 200 MHz to 1 GHz for most publications. Newer publications extend this range from 3 to 6 GHz. The use cases present UHF PD measurements at transformers with power ratings up to 1000 MVA to determine frequency ranges which are considered effective for practical applications. The “common” frequency range, where measurements from all use cases provide signal power, is from approximately 400 MHz to 900 MHz, but it is noted that the individual frequency range, as well as the peak UHF signal power, strongly varies from case to case. We conclude from the discussed laboratory experiments and practical observations that UHF PD measurements in power transformers using either valve or window antennas, according to Cigré, are feasible methods to detect PD.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference31 articles.

1. Rutgers, W.R., and Fu, Y.H. (1997, January 25–29). UHF PD-detection in a power transformer. Proceedings of the 10th International Symposium on High Voltage Engineering, Montreal, QC, Canada.

2. UHF Partial Discharge Detection System for GIS: Application Guide for Sensitivity Verification: CIGRE WG D1.25;Schichler;IEEE Trans. Dielectr. Electr. Insul.,2016

3. Kuppuswamy, R., Devaux, F., and Lelaidier, S. (2003). CIGRE Transformer Colloquium, Merida.

4. Siegel, M., Coenen, S., Beltle, M., Tenbohlen, S., Weber, M., Fehlmann, P., Hoek, S.M., Kempf, U., Schwarz, R., and Linn, T. (2019). Calibration Proposal for UHF Partial Discharge Measurements at Power Transformers. Energies, 12.

5. Recognition of discharge sources using UHF PD signatures;Kuppuswamy;IEEE Electr. Insul. Mag.,2002

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