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Investigation of liquid metal current limiter based on a novel topology

  • Zhuo Yang
  • , Hailong He
  • , Yi Wu
  • , Peng Zhao
  • , Zirui Liu
  • , Qing Wan
  • Xi'an Jiaotong University
  • State Grid Shaanxi Electric Power Research Institute

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

4 Scopus citations

Abstract

In this paper, a novel liquid metal current limiter (LMCL) is proposed allowing for the large rated current and considerable fault current energy dissipation in DC power system. According to this topology, the LMCL consists of a fast switch and several liquid metal current limiting units in parallel. Firstly, a simulation model of this LMCL is built to calculate the fault current commutation process and it is then experimentally verified. Based on this model the duration of current commutation is analyzed allowing for different factors including rising rate of current, contact types of main switch and the inductance of branch circuit, which directly affects the design of parallel current limiting unit to avoid its early arc ignition before the completion of current commutation. Finally, Its current limiting performance is discussed with different number of channels in LMCL unit, it indicates that arc voltage increases with the channels quantity of LMCL unit.

Original languageEnglish
Title of host publicationICEPE-ST 2017 - 4th International Conference on Electric Power Equipment- Switching Technology
PublisherInstitute of Electrical and Electronics Engineers Inc.
Pages500-504
Number of pages5
ISBN (Electronic)9781538616512
DOIs
StatePublished - 12 Dec 2017
Event4th International Conference on Electric Power Equipment- Switching Technology, ICEPE-ST 2017 - Xi'an, China
Duration: 22 Oct 201725 Oct 2017

Publication series

NameICEPE-ST 2017 - 4th International Conference on Electric Power Equipment- Switching Technology
Volume2017-December

Conference

Conference4th International Conference on Electric Power Equipment- Switching Technology, ICEPE-ST 2017
Country/TerritoryChina
CityXi'an
Period22/10/1725/10/17

Keywords

  • DC power systems
  • fast switch
  • fault current limiter
  • liquid metal

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