Electromagnetic Compatibility and Radiation Analysis in Control Room

Author:

Kucera Matej1,Gutten Miroslav1,Simko Milan1,Sebok Milan1,Korenciak Daniel1,Jarina Roman1,Pitonak Martin2

Affiliation:

1. University of Žilina , Faculty of Electrical Engineering and Information Technology , Univerzitná 1, 010 26 Žilina , Slovak Republic

2. Faculty of Civil Engineering , University of Žilina , Univerzitná 1, 01026 Žilina , Slovak Republic

Abstract

Abstract The article presents a theoretical analysis of electromagnetic compatibility (EMC) and experimental measurement of effects of radiation and acoustic emission of high-voltage transformers for electronic equipment and working personnel in a control room. Electromagnetic compatibility and safety of equipment are not considered as two distinct areas of study in electric and electronic safety. Economic criteria cannot compromise safety but at the same time immunity levels must be relevant in order to establish a “Functional Safety”. Introducing Special Immunity Levels in the level of equipment testing allows us to combine the two areas of EMC and safety. The measurement was carried out in high-current of very high-voltage distribution station. A real-life analysis of effects of electric and electromagnetic field was carried out. FFT was used for mathematical processing of data which were later presented in a graphical form of a spectrally analyzed area. In the last part of the paper we discuss the suitability of acoustic camera to perform contactless monitoring of the health and operation conditions of the power transformer by analyzing acoustic field generated by the transformer core and windings in near control room.

Publisher

Walter de Gruyter GmbH

Subject

Instrumentation,Biomedical Engineering,Control and Systems Engineering

Reference20 articles.

1. [1] Vaculíková, P., Vaculík, E. (2003). Electromagnetic Compatibility of Electric Equipments. Prague, Czech Republic: Grada Publishing. (in Czech)

2. [2] Krug, F. (2002). EMV: Störemissionen systematisch untersuchen. Elektronik, 19, 88-93.

3. [3] Nicolae, P.M., Nicolae, M.S., Smarandescu, I.D., Nicolae, I.D. (2017). Concerns on electromagnetic compatibility and power quality issues at a three-phase transformer. In IEEE International Symposium on Electromagnetic Compatibility & Signal/Power Integrity (EMCSI), Washington, USA. IEEE, 377-382.

4. [4] Kucera, M., Sebok, M., Korenciak, D., Zhukowski, P. (2013). Effect of asymmetry on reliability of a distribution transformer in star-delta configuration. In Conference on Diagnostics in Electrical Engineering (CDEE 2013), Pilsen, Czech Republic, 37-40.

5. [5] Spanik, P., Sedo, J., Drgona, P., Frivaldsky, M. (2013). Real time harmonic analysis of recuperative current through utilization of digital measuring equipment. Elektronika ir Elektrotechnika, 19 (5), 33-38.

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