Saturated-core fault current limiters for AC power systems: Towards reliable, economical and better performance application
With the continuous expansion of power grid capacity, the problem of short-circuit current exceeding the standard is becoming increasingly serious. Fault current limiter is a promising solution and is gradually becoming a research hotspot. In this study, fault current limiters are classified into fo...
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doaj-6d82e4f122d54cc78a272eaaf987d8ec2021-04-02T11:07:06ZengWileyHigh Voltage2397-72642019-08-0110.1049/hve.2019.0049HVE.2019.0049Saturated-core fault current limiters for AC power systems: Towards reliable, economical and better performance applicationJiaxin Yuan0Pengcheng Gan1Zhaoyang Zhang2Hang Zhou3Liangliang Wei4Kazuhiro Muramatsu5Wuhan UniversityWuhan UniversityWuhan UniversityWuhan UniversityGraduate School of Engineering, Kyoto UniversitySaga UniversityWith the continuous expansion of power grid capacity, the problem of short-circuit current exceeding the standard is becoming increasingly serious. Fault current limiter is a promising solution and is gradually becoming a research hotspot. In this study, fault current limiters are classified into four categories. And saturated-core fault current limiters are emphatically introduced, including its working principle and comparison with the other three categories. Saturated core fault current limiters are divided into four branches according to the ways leading the core saturated. A comprehensive review of the research activities and emerging technologies of saturated-core fault current limiters for AC power systems is presented in this study. The working principle and typical structure of DC-biased-, permanent-magnet-, superconducting- and hybrid-type saturated-core fault current limiters are introduced. The advantages and disadvantages of four types of saturated core fault current limiters are compared in detail from the aspects of current-limiting performance, iron core size and DC magnetomotive force. Real grid application examples of some types of devices are presented, as well as new progress in the techniques, are covered and discussed in detail. One may find the content of this study helpful as a detailed literature review or as practical technical guidance.https://digital-library.theiet.org/content/journals/10.1049/hve.2019.0049power gridsshort-circuit currentssuperconducting fault current limitersac power systemspower grid capacityshort-circuit current problemhybrid-type saturated-core fault current limitersdc-biased-saturated-core fault current limiterspermanent-magnet-saturated-core fault current limiterssuperconducting-saturated-core fault current limiterscurrent-limiting performanceiron core sizedc magnetomotive force |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jiaxin Yuan Pengcheng Gan Zhaoyang Zhang Hang Zhou Liangliang Wei Kazuhiro Muramatsu |
spellingShingle |
Jiaxin Yuan Pengcheng Gan Zhaoyang Zhang Hang Zhou Liangliang Wei Kazuhiro Muramatsu Saturated-core fault current limiters for AC power systems: Towards reliable, economical and better performance application High Voltage power grids short-circuit currents superconducting fault current limiters ac power systems power grid capacity short-circuit current problem hybrid-type saturated-core fault current limiters dc-biased-saturated-core fault current limiters permanent-magnet-saturated-core fault current limiters superconducting-saturated-core fault current limiters current-limiting performance iron core size dc magnetomotive force |
author_facet |
Jiaxin Yuan Pengcheng Gan Zhaoyang Zhang Hang Zhou Liangliang Wei Kazuhiro Muramatsu |
author_sort |
Jiaxin Yuan |
title |
Saturated-core fault current limiters for AC power systems: Towards reliable, economical and better performance application |
title_short |
Saturated-core fault current limiters for AC power systems: Towards reliable, economical and better performance application |
title_full |
Saturated-core fault current limiters for AC power systems: Towards reliable, economical and better performance application |
title_fullStr |
Saturated-core fault current limiters for AC power systems: Towards reliable, economical and better performance application |
title_full_unstemmed |
Saturated-core fault current limiters for AC power systems: Towards reliable, economical and better performance application |
title_sort |
saturated-core fault current limiters for ac power systems: towards reliable, economical and better performance application |
publisher |
Wiley |
series |
High Voltage |
issn |
2397-7264 |
publishDate |
2019-08-01 |
description |
With the continuous expansion of power grid capacity, the problem of short-circuit current exceeding the standard is becoming increasingly serious. Fault current limiter is a promising solution and is gradually becoming a research hotspot. In this study, fault current limiters are classified into four categories. And saturated-core fault current limiters are emphatically introduced, including its working principle and comparison with the other three categories. Saturated core fault current limiters are divided into four branches according to the ways leading the core saturated. A comprehensive review of the research activities and emerging technologies of saturated-core fault current limiters for AC power systems is presented in this study. The working principle and typical structure of DC-biased-, permanent-magnet-, superconducting- and hybrid-type saturated-core fault current limiters are introduced. The advantages and disadvantages of four types of saturated core fault current limiters are compared in detail from the aspects of current-limiting performance, iron core size and DC magnetomotive force. Real grid application examples of some types of devices are presented, as well as new progress in the techniques, are covered and discussed in detail. One may find the content of this study helpful as a detailed literature review or as practical technical guidance. |
topic |
power grids short-circuit currents superconducting fault current limiters ac power systems power grid capacity short-circuit current problem hybrid-type saturated-core fault current limiters dc-biased-saturated-core fault current limiters permanent-magnet-saturated-core fault current limiters superconducting-saturated-core fault current limiters current-limiting performance iron core size dc magnetomotive force |
url |
https://digital-library.theiet.org/content/journals/10.1049/hve.2019.0049 |
work_keys_str_mv |
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1724165673705275392 |