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Validation of partial discharge emulator simulations using free-space radiometric measurements.

Jaber, A.; Lazaridis, P.; Saeed, B.; Zhang, Y.; Khan, U.; Upton, D.; Ahmed, H.; Mather, P.; Vieira, M.F.Q.; Atkinson, R.; Judd, M.; Glover, I.A.

Authors

A. Jaber

P. Lazaridis

B. Saeed

Y. Zhang

U. Khan

D. Upton

H. Ahmed

P. Mather

M.F.Q. Vieira

R. Atkinson

M. Judd

I.A. Glover



Contributors

Zeyad Yousif Abdoon Al-Shibaany
Editor

Atheer F. Hameed
Editor

Abstract

A useful technique to estimate the degradation of insulation in high voltage (HV) installations is the measurement of partial discharge (PD). Free-space radiometric (FSR) detection of PD is a relatively new technique. Several types of PD emulator sources have been constructed: two internal PD emulators and a floating electrode emulator. The emulators have been simulated using the CST Microwave Studio software package. The intention is to use the simulated emulators to establish a relationship between radiated PD signals and PD intensity as defined by apparent charge transfer. To this end the radiated fields predicted in the simulations are compared with measurements. There is sufficient agreement between simulations and measurements to suggest the simulations could be used to investigate the relationship between PD intensity and the field strength of radiated signals.

Citation

JABER, A., LAZARIDIS, P., SAEED, B., ZHANG, Y., KHAN, U., UPTON, D., AHMED, H., MATHER, P., VIEIRA, M.F.Q., ATKINSON, R., JUDD, M. and GLOVER, I.A. 2016. Validation of partial discharge emulator simulations using free-space radiometric measurements. In Al-Shibaany, Z.Y.A. and Hameed, A.F. (eds.) Proceedings of 2016 International conference for students on applied engineering (ICSAE 2016), 20-21 October 2016, Newcastle Upon Tyne, UK. Piscataway: IEEE [online], pages 475-478. Available from: https://doi.org/10.1109/ICSAE.2016.7810238

Conference Name 2016 International conference for students on applied engineering (ICSAE 2016)
Conference Location Newcastle upon Tyne, UK
Start Date Oct 20, 2016
End Date Oct 21, 2016
Acceptance Date Jun 3, 2016
Online Publication Date Oct 20, 2016
Publication Date Jan 9, 2017
Deposit Date Nov 2, 2020
Publicly Available Date Nov 2, 2020
Publisher Institute of Electrical and Electronics Engineers (IEEE)
Pages 475-478
DOI https://doi.org/10.1109/ICSAE.2016.7810238
Keywords CST microwave studio; Electromagnetic waves; FDTD; Free space radiometric measurement; Partical discharge
Public URL https://rgu-repository.worktribe.com/output/980344

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