Flexible composite suppression method for ground arc in resonant grounding system

Abstract A current‐voltage composite controller for an arc suppression inverter is designed. The current and voltage at the fault point are reduced by injecting current and regulating the neutral point voltage to completely eliminate the risk of fire and overvoltage caused by a single‐line‐to‐ground...

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Main Authors: Jianzhang You, Moufa Guo, Zeyin Zheng, Xinbin Liu
Format: Article
Language:English
Published: Wiley 2023-12-01
Series:High Voltage
Online Access:https://doi.org/10.1049/hve2.12354
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author Jianzhang You
Moufa Guo
Zeyin Zheng
Xinbin Liu
author_facet Jianzhang You
Moufa Guo
Zeyin Zheng
Xinbin Liu
author_sort Jianzhang You
collection DOAJ
description Abstract A current‐voltage composite controller for an arc suppression inverter is designed. The current and voltage at the fault point are reduced by injecting current and regulating the neutral point voltage to completely eliminate the risk of fire and overvoltage caused by a single‐line‐to‐ground fault arc. A cascaded inverter is used, and the effects of the ground parameter measurement, line impedance voltage drop, harmonic current and arc suppression coil on the current control, voltage control and composite control methods are analysed and compared. Finally, software simulations and industrial prototype experiments show that the proposed composite control method is effective and less affected by ground parameter measurement and line impedance voltage drop and has better adaptability.
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spelling doaj.art-84efce5a46dc45c2a7b64b5c0f4269d82023-12-23T04:49:06ZengWileyHigh Voltage2397-72642023-12-01861296130510.1049/hve2.12354Flexible composite suppression method for ground arc in resonant grounding systemJianzhang You0Moufa Guo1Zeyin Zheng2Xinbin Liu3School of Electrical Engineering and Automation Fuzhou University Fuzhou ChinaSchool of Electrical Engineering and Automation Fuzhou University Fuzhou ChinaSchool of Electrical Engineering and Automation Fuzhou University Fuzhou ChinaSchool of Electrical Engineering and Automation Fuzhou University Fuzhou ChinaAbstract A current‐voltage composite controller for an arc suppression inverter is designed. The current and voltage at the fault point are reduced by injecting current and regulating the neutral point voltage to completely eliminate the risk of fire and overvoltage caused by a single‐line‐to‐ground fault arc. A cascaded inverter is used, and the effects of the ground parameter measurement, line impedance voltage drop, harmonic current and arc suppression coil on the current control, voltage control and composite control methods are analysed and compared. Finally, software simulations and industrial prototype experiments show that the proposed composite control method is effective and less affected by ground parameter measurement and line impedance voltage drop and has better adaptability.https://doi.org/10.1049/hve2.12354
spellingShingle Jianzhang You
Moufa Guo
Zeyin Zheng
Xinbin Liu
Flexible composite suppression method for ground arc in resonant grounding system
High Voltage
title Flexible composite suppression method for ground arc in resonant grounding system
title_full Flexible composite suppression method for ground arc in resonant grounding system
title_fullStr Flexible composite suppression method for ground arc in resonant grounding system
title_full_unstemmed Flexible composite suppression method for ground arc in resonant grounding system
title_short Flexible composite suppression method for ground arc in resonant grounding system
title_sort flexible composite suppression method for ground arc in resonant grounding system
url https://doi.org/10.1049/hve2.12354
work_keys_str_mv AT jianzhangyou flexiblecompositesuppressionmethodforgroundarcinresonantgroundingsystem
AT moufaguo flexiblecompositesuppressionmethodforgroundarcinresonantgroundingsystem
AT zeyinzheng flexiblecompositesuppressionmethodforgroundarcinresonantgroundingsystem
AT xinbinliu flexiblecompositesuppressionmethodforgroundarcinresonantgroundingsystem