Compact 132 kV combined optical voltage and current measurement system

This paper presents details of a compact 132 kV insulator arrangement developed for use with unlinked optical voltage and current transducers (OCT and OVT). The measured temperature characteristics of terbium gallium garnet, the Faraday rotator in the OCT, is given and compared to previously publish...

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Published inIEEE transactions on instrumentation and measurement Vol. 47; no. 1; pp. 219 - 223
Main Authors Cruden, A., Richardson, Z.J., McDonald, J.R., Andonovic, I., Laycock, W., Bennett, A.
Format Journal Article
LanguageEnglish
Published IEEE 01.02.1998
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Abstract This paper presents details of a compact 132 kV insulator arrangement developed for use with unlinked optical voltage and current transducers (OCT and OVT). The measured temperature characteristics of terbium gallium garnet, the Faraday rotator in the OCT, is given and compared to previously published results. The application of this data to a temperature compensation system for the OCT is discussed. In addition, research results associated with the identification of piezoelectric resonance in the OVT is presented and a solution proposed and tested.
AbstractList This paper presents details of a compact 132 kV insulator arrangement developed for use with unlinked optical voltage and current transducers (OCT and OVT). The measured temperature characteristics of terbium gallium garnet, the Faraday rotator in the OCT, is given and compared to previously published results. The application of this data to a temperature compensation system for the OCT is discussed. In addition, research results associated with the identification of piezoelectric resonance in the OVT is presented and a solution proposed and tested
This paper presents details of a compact 132 kV insulator arrangement developed for use with unlinked optical voltage and current transducers (OCT and OVT). The measured temperature characteristics of terbium gallium garnet, the Faraday rotator in the OCT, is given and compared to previously published results. The application of this data to a temperature compensation system for the OCT is discussed. In addition, research results associated with the identification of piezoelectric resonance in the OVT is presented and a solution proposed and tested.
Author Richardson, Z.J.
Laycock, W.
Bennett, A.
Andonovic, I.
Cruden, A.
McDonald, J.R.
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StartPage 219
SubjectTerms Conducting materials
Current measurement
Frequency
Garnets
Insulation
Optical recording
Optical sensors
Piezoelectric transducers
Temperature sensors
Voltage
Title Compact 132 kV combined optical voltage and current measurement system
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