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A Partial Discharge Study of Medium-Voltage Motor Winding Insulation Under Two-Level Voltage Pulses With High Dv/Dt

Medium-voltage (e.g., 10 kV rated) silicon carbide (SiC) devices have great potentials in medium-voltage variable speed drives. But their high switching dv/dt can increase the voltage stress on motor windings and cause partial discharges. This paper presents a partial discharge study of a medium-vol...

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Autores principales: HU, BOXUE, WEI, ZHUO, YOU, HAOYANG, NA, RISHA, LIU, RUI, XIONG, HAN, FU, PENGYU, ZHANG, JULIA, WANG, JIN
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8152218/
https://www.ncbi.nlm.nih.gov/pubmed/34046640
http://dx.doi.org/10.1109/ojpel.2021.3069780
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author HU, BOXUE
WEI, ZHUO
YOU, HAOYANG
NA, RISHA
LIU, RUI
XIONG, HAN
FU, PENGYU
ZHANG, JULIA
WANG, JIN
author_facet HU, BOXUE
WEI, ZHUO
YOU, HAOYANG
NA, RISHA
LIU, RUI
XIONG, HAN
FU, PENGYU
ZHANG, JULIA
WANG, JIN
author_sort HU, BOXUE
collection PubMed
description Medium-voltage (e.g., 10 kV rated) silicon carbide (SiC) devices have great potentials in medium-voltage variable speed drives. But their high switching dv/dt can increase the voltage stress on motor windings and cause partial discharges. This paper presents a partial discharge study of a medium-voltage form-wound winding under two-level square-wave voltage pulses. A 10 kV SiC device-based test platform is built to generate voltage pulses with high dv/dt. A three-step test approach is proposed and employed to systematically investigate the effects of various voltage parameters on partial discharges. These include voltage rise/fall time, voltage pulse width, pulse repetitive rate, duty ratio, voltage polarity, fundamental frequency, and modulation index. Partial discharge inception voltages (PDIVs) and repetitive partial discharge inception voltages (RPDIVs) of the sample are measured with varied voltage parameters. Test results show that voltage rise/fall time is a major affecting factor which reduces PDIVs of the winding sample by 6.5% when it decreases from 800 ns to 100 ns. Based on test results, a hypothetical partial discharge mechanism is presented to explain the effects of fast voltage rise/fall edges. An empirical equation is also derived to estimate PDIVs of a winding sample under various voltage rise/fall time and pulse width conditions.
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spelling pubmed-81522182021-05-26 A Partial Discharge Study of Medium-Voltage Motor Winding Insulation Under Two-Level Voltage Pulses With High Dv/Dt HU, BOXUE WEI, ZHUO YOU, HAOYANG NA, RISHA LIU, RUI XIONG, HAN FU, PENGYU ZHANG, JULIA WANG, JIN IEEE Open J Power Electron Article Medium-voltage (e.g., 10 kV rated) silicon carbide (SiC) devices have great potentials in medium-voltage variable speed drives. But their high switching dv/dt can increase the voltage stress on motor windings and cause partial discharges. This paper presents a partial discharge study of a medium-voltage form-wound winding under two-level square-wave voltage pulses. A 10 kV SiC device-based test platform is built to generate voltage pulses with high dv/dt. A three-step test approach is proposed and employed to systematically investigate the effects of various voltage parameters on partial discharges. These include voltage rise/fall time, voltage pulse width, pulse repetitive rate, duty ratio, voltage polarity, fundamental frequency, and modulation index. Partial discharge inception voltages (PDIVs) and repetitive partial discharge inception voltages (RPDIVs) of the sample are measured with varied voltage parameters. Test results show that voltage rise/fall time is a major affecting factor which reduces PDIVs of the winding sample by 6.5% when it decreases from 800 ns to 100 ns. Based on test results, a hypothetical partial discharge mechanism is presented to explain the effects of fast voltage rise/fall edges. An empirical equation is also derived to estimate PDIVs of a winding sample under various voltage rise/fall time and pulse width conditions. 2021-03-30 /pmc/articles/PMC8152218/ /pubmed/34046640 http://dx.doi.org/10.1109/ojpel.2021.3069780 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 License. For more information, see https://creativecommons.org/licenses/by/4.0/
spellingShingle Article
HU, BOXUE
WEI, ZHUO
YOU, HAOYANG
NA, RISHA
LIU, RUI
XIONG, HAN
FU, PENGYU
ZHANG, JULIA
WANG, JIN
A Partial Discharge Study of Medium-Voltage Motor Winding Insulation Under Two-Level Voltage Pulses With High Dv/Dt
title A Partial Discharge Study of Medium-Voltage Motor Winding Insulation Under Two-Level Voltage Pulses With High Dv/Dt
title_full A Partial Discharge Study of Medium-Voltage Motor Winding Insulation Under Two-Level Voltage Pulses With High Dv/Dt
title_fullStr A Partial Discharge Study of Medium-Voltage Motor Winding Insulation Under Two-Level Voltage Pulses With High Dv/Dt
title_full_unstemmed A Partial Discharge Study of Medium-Voltage Motor Winding Insulation Under Two-Level Voltage Pulses With High Dv/Dt
title_short A Partial Discharge Study of Medium-Voltage Motor Winding Insulation Under Two-Level Voltage Pulses With High Dv/Dt
title_sort partial discharge study of medium-voltage motor winding insulation under two-level voltage pulses with high dv/dt
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8152218/
https://www.ncbi.nlm.nih.gov/pubmed/34046640
http://dx.doi.org/10.1109/ojpel.2021.3069780
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