Test Bench and Frequency Response of a Magnetic Antenna used in GIS PD Measurements

Conference Paper (2021)
Author(s)

C. Mier Escurra (TU Delft - DC systems, Energy conversion & Storage, TU Delft - High Voltage Technology Group)

Dr A.Rodrigo Mor (Universitat Politécnica de Valencia)

Research Group
DC systems, Energy conversion & Storage
Copyright
© 2021 C. Mier Escurra, A. R. Mor
DOI related publication
https://doi.org/10.1109/EIC49891.2021.9612372
More Info
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Publication Year
2021
Language
English
Copyright
© 2021 C. Mier Escurra, A. R. Mor
Research Group
DC systems, Energy conversion & Storage
Pages (from-to)
269-272
ISBN (print)
978-1-6654-4686-0
ISBN (electronic)
978-1-6654-1564-4
Reuse Rights

Other than for strictly personal use, it is not permitted to download, forward or distribute the text or part of it, without the consent of the author(s) and/or copyright holder(s), unless the work is under an open content license such as Creative Commons.

Abstract

Gas insulated substations (GIS) have increased in the electric power system in recent years and is expected to continue increasing in the following years. The GIS has remarkable advantages over air insulated substation in offshore windfarms where the installation space is limited. The outlying location of the GIS demands a robust monitoring system. It is well known from literature that partial discharge (PD) measurements are an accepted method for insulation diagnosis and in many cases a required part of the acceptance protocol for many high voltage (HV) assets. In a recent investigation, a new concept of PD measurements in GIS using a Very High Frequency (VHF) Sensor (so-called Magnetic Antenna) has been demonstrated. Unlike Ultra High Frequency (UHF) technology, the presented PD sensor has a sensitivity better than 5 pC and yield an estimation of the charge magnitude, thus providing information about the severity of the insulation degradation. In this paper, a test bench for the characterization of the magnetic antenna is proposed. The magnetic antenna and a traditional UHF antenna are tested in the frequency domain up to 1 GHz, and in the time domain using different wave-shapes. Additionally, using the test bench, it is demonstrated the homogeneity of the PD current propagating in the GIS in the transverse electromagnetic (TEM) mode. The charge is estimated using the double integral voltage method, showing low errors. The results from the research gives a preface for further investigation in the design of the magnetic antenna.

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