Time Reversal to Localise Multiple Partial Discharges in Power Cables

Conference Presentation


Ragusa, A., Sasse, H., Duffy, A., Rachidi, F. and Rubinstein, M. 2023. Time Reversal to Localise Multiple Partial Discharges in Power Cables . International Symposium on High Voltage Engineering, Glascow, UK, 28 August – 1 September, 2023.
AuthorsRagusa, A., Sasse, H., Duffy, A., Rachidi, F. and Rubinstein, M.
TypeConference Presentation
Abstract

The paper studies the suitability of the electromagnetic time reversal (EMTR) technique to localise multiple sources of partial discharges (PD) in power cables. In particular, the localisation of two PDs in a homogeneous power line is investigated both in the presence or absence of noise. The investigation, which is based on numerical simulations, shows that an EMTR-based PD localisation method is able to localise two PDs occurring simultaneously in a line using only a measurement at one observation point (OP), indiscriminately collecting the direct and reflected signals coming from the two PD sources. The EMTR procedure to localise multiple PD sources, using a Transmission Line Matrix model digital twin for the time reversal simulations, is described and the challenges that must be addressed to develop an EMTR-based device for the on-line location of multiple PDs
are discussed.

KeywordsTime reversal ; Transmission line matrix method; Partial discharge
Year2023
ConferenceInternational Symposium on High Voltage Engineering, Glascow, UK, 28 August – 1 September, 2023
Web address (URL)https://infoscience.epfl.ch/record/307021?ln=en
Accepted author manuscript
License
All rights reserved
File Access Level
Open
Output statusPublished
Publication dates
Online2023
Publication process dates
Deposited12 Apr 2024
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https://repository.derby.ac.uk/item/9z851/time-reversal-to-localise-multiple-partial-discharges-in-power-cables

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Accepted author manuscript
Full-Paper_ISH2023_final.pdf
License: All rights reserved
File access level: Open

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Electromagnetic time reversal applied to online partial discharge location in power cables: influence of interfering reflections from the cable circuit
Ragusa, A., Wouters, P. A. A. F., Sasse, H., Duffy, A., Rachidi, F. and Rubinstein, M. 2023. Electromagnetic time reversal applied to online partial discharge location in power cables: influence of interfering reflections from the cable circuit. 11th International Conference on Computation in Electromagnetics.