A Sensor System for Detecting and Localizing Partial Discharges in Power Transformers with Improved Immunity to Interferences
The paper reports on the solution, principles, and application results related to a system for diagnosing main transformers in power plants via the radiofrequency method. The subject of the diagnostics is the occurrence of partial discharge activity in transformers. The technical solution of the sys...
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doaj-84bc4232dabd4f37a3678ed72c7aaf822020-11-25T01:33:15ZengMDPI AGSensors1424-82202019-02-0119492310.3390/s19040923s19040923A Sensor System for Detecting and Localizing Partial Discharges in Power Transformers with Improved Immunity to InterferencesPetr Drexler0Martin Čáp1Pavel Fiala2Miloslav Steinbauer3Radim Kadlec4Miloš Kaška5Lubomír Kočiš6Department of Theoretical and Experimental Electrical Engineering, Faculty of Electrical Engineering and Communication, Brno University of Technology, 616 00 Brno, Czech RepublicDepartment of Theoretical and Experimental Electrical Engineering, Faculty of Electrical Engineering and Communication, Brno University of Technology, 616 00 Brno, Czech RepublicDepartment of Theoretical and Experimental Electrical Engineering, Faculty of Electrical Engineering and Communication, Brno University of Technology, 616 00 Brno, Czech RepublicDepartment of Theoretical and Experimental Electrical Engineering, Faculty of Electrical Engineering and Communication, Brno University of Technology, 616 00 Brno, Czech RepublicDepartment of Theoretical and Experimental Electrical Engineering, Faculty of Electrical Engineering and Communication, Brno University of Technology, 616 00 Brno, Czech RepublicTES s.r.o., 674 01 Třebíč, Czech RepublicEGU - HV Laboratory a.s., 190 11 Prague, Czech RepublicThe paper reports on the solution, principles, and application results related to a system for diagnosing main transformers in power plants via the radiofrequency method. The subject of the diagnostics is the occurrence of partial discharge activity in transformers. The technical solution of the system is characterized in the introductory section of the article. There then follows a description of the operating principle and the implemented novel advanced methods for signal detection and source localization. The results obtained from practical application of the system within the diagnostics of high-power transformers are presented as well. Because ambient electromagnetic disturbance was recognized as a major issue during the system development, novel detection methods were proposed, implemented, and verified. The principal approach utilizes an external radiofrequency sensor to detect outer impulse disturbance and to eliminate disturbance-triggered acquisitions, and it also ensures direct real-time visualization of the desired impulse signals. The ability of weak signal detection was verified via artificial impulse signal injection into the transformer. The developed detection methods were completed with localization techniques for signal source estimation. The desired impulse signal was detected and localized during full operation of the main transformer, despite the presence of strong electromagnetic interference.https://www.mdpi.com/1424-8220/19/4/923partial dischargeultra-high frequencyspatial localizationelectromagnetic interference |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Petr Drexler Martin Čáp Pavel Fiala Miloslav Steinbauer Radim Kadlec Miloš Kaška Lubomír Kočiš |
spellingShingle |
Petr Drexler Martin Čáp Pavel Fiala Miloslav Steinbauer Radim Kadlec Miloš Kaška Lubomír Kočiš A Sensor System for Detecting and Localizing Partial Discharges in Power Transformers with Improved Immunity to Interferences Sensors partial discharge ultra-high frequency spatial localization electromagnetic interference |
author_facet |
Petr Drexler Martin Čáp Pavel Fiala Miloslav Steinbauer Radim Kadlec Miloš Kaška Lubomír Kočiš |
author_sort |
Petr Drexler |
title |
A Sensor System for Detecting and Localizing Partial Discharges in Power Transformers with Improved Immunity to Interferences |
title_short |
A Sensor System for Detecting and Localizing Partial Discharges in Power Transformers with Improved Immunity to Interferences |
title_full |
A Sensor System for Detecting and Localizing Partial Discharges in Power Transformers with Improved Immunity to Interferences |
title_fullStr |
A Sensor System for Detecting and Localizing Partial Discharges in Power Transformers with Improved Immunity to Interferences |
title_full_unstemmed |
A Sensor System for Detecting and Localizing Partial Discharges in Power Transformers with Improved Immunity to Interferences |
title_sort |
sensor system for detecting and localizing partial discharges in power transformers with improved immunity to interferences |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2019-02-01 |
description |
The paper reports on the solution, principles, and application results related to a system for diagnosing main transformers in power plants via the radiofrequency method. The subject of the diagnostics is the occurrence of partial discharge activity in transformers. The technical solution of the system is characterized in the introductory section of the article. There then follows a description of the operating principle and the implemented novel advanced methods for signal detection and source localization. The results obtained from practical application of the system within the diagnostics of high-power transformers are presented as well. Because ambient electromagnetic disturbance was recognized as a major issue during the system development, novel detection methods were proposed, implemented, and verified. The principal approach utilizes an external radiofrequency sensor to detect outer impulse disturbance and to eliminate disturbance-triggered acquisitions, and it also ensures direct real-time visualization of the desired impulse signals. The ability of weak signal detection was verified via artificial impulse signal injection into the transformer. The developed detection methods were completed with localization techniques for signal source estimation. The desired impulse signal was detected and localized during full operation of the main transformer, despite the presence of strong electromagnetic interference. |
topic |
partial discharge ultra-high frequency spatial localization electromagnetic interference |
url |
https://www.mdpi.com/1424-8220/19/4/923 |
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