LAPSE:2023.12330
Published Article

LAPSE:2023.12330
Estimation Accuracy of the Electric Field in Cable Insulation Based on Space Charge Measurement
February 28, 2023
Abstract
Space charge measurement accuracy is crucial when assessing the suitability of cables for high-voltage direct current (DC) systems. This study assembled state-of-the-art analysis technologies, including time-domain deconvolution, to mark electric field estimation accuracy, which the present techniques achieve. The pulse electroacoustic method was applied to a 66 kV-class extruded cable, and waveforms were obtained and analyzed to reproduce the electric field distribution. The DC voltage was set to be sufficiently low so that the analysis results can be compared with Laplace’s equation. The statistical analysis of 81 waveforms under a DC voltage of 30 kV showed that the estimation accuracy was −0.3% ± 19.9% with a 95.4% confidence interval, even with the deconvolution parameter optimized. The estimated accuracy using the “reference” waveform is applied to waveforms at higher voltages since similar estimation accuracies were confirmed for waveforms obtained under a DC voltage of 45 kV.
Space charge measurement accuracy is crucial when assessing the suitability of cables for high-voltage direct current (DC) systems. This study assembled state-of-the-art analysis technologies, including time-domain deconvolution, to mark electric field estimation accuracy, which the present techniques achieve. The pulse electroacoustic method was applied to a 66 kV-class extruded cable, and waveforms were obtained and analyzed to reproduce the electric field distribution. The DC voltage was set to be sufficiently low so that the analysis results can be compared with Laplace’s equation. The statistical analysis of 81 waveforms under a DC voltage of 30 kV showed that the estimation accuracy was −0.3% ± 19.9% with a 95.4% confidence interval, even with the deconvolution parameter optimized. The estimated accuracy using the “reference” waveform is applied to waveforms at higher voltages since similar estimation accuracies were confirmed for waveforms obtained under a DC voltage of 45 kV.
Record ID
Keywords
deconvolution, estimation accuracy, field distribution, power cables, pulsed electroacoustic method, space charge measurement
Suggested Citation
Fuse N, Morita S, Miyazaki S, Takahashi T, Hozumi N. Estimation Accuracy of the Electric Field in Cable Insulation Based on Space Charge Measurement. (2023). LAPSE:2023.12330
Author Affiliations
Fuse N: Grid Innovation Res. Lab., Central Research Institute of Electric Power Industry, Yokosuka 240-0196, Japan [ORCID]
Morita S: Grid Innovation Res. Lab., Central Research Institute of Electric Power Industry, Yokosuka 240-0196, Japan
Miyazaki S: Grid Innovation Res. Lab., Central Research Institute of Electric Power Industry, Yokosuka 240-0196, Japan [ORCID]
Takahashi T: Grid Innovation Res. Lab., Central Research Institute of Electric Power Industry, Yokosuka 240-0196, Japan
Hozumi N: Dept. Electrical & Electronic Information Engineering, Toyohashi University of Technology, Toyohashi 441-8580, Japan
Morita S: Grid Innovation Res. Lab., Central Research Institute of Electric Power Industry, Yokosuka 240-0196, Japan
Miyazaki S: Grid Innovation Res. Lab., Central Research Institute of Electric Power Industry, Yokosuka 240-0196, Japan [ORCID]
Takahashi T: Grid Innovation Res. Lab., Central Research Institute of Electric Power Industry, Yokosuka 240-0196, Japan
Hozumi N: Dept. Electrical & Electronic Information Engineering, Toyohashi University of Technology, Toyohashi 441-8580, Japan
Journal Name
Energies
Volume
15
Issue
13
First Page
4920
Year
2022
Publication Date
2022-07-05
ISSN
1996-1073
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Original Submission
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PII: en15134920, Publication Type: Journal Article
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LAPSE:2023.12330
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https://doi.org/10.3390/en15134920
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Feb 28, 2023
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