A Hybrid DC Circuit Breaker with Vacuum Contact and SiC-MOSFET for Arcless Commutation

被引:0
作者
Yasuoka, Koichi [1 ]
Yoshiki, Tsuboi [1 ]
Hayakawa, Tatsuya [1 ]
Oide, Tamanosuke [1 ]
Takeuchi, Nozomi [1 ]
机构
[1] Tokyo Inst Technol, Dept Elect & Elect Engn, Tokyo, Japan
来源
PROCEEDINGS OF THE SIXTY-SECOND IEEE HOLM CONFERENCE ON ELECTRICAL CONTACTS | 2016年
关键词
component; Hybrid DC circuit breaker; Molten metal bridge; SiC-MOSFET; Vaccuum contact; Arcless commutation;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
DC circuit breakers (DCCBs) have been intensively studied because of increasing demand for DC power transmission. A hybrid DC circuit breaker that consists of mechanical switches, semiconductor devices, and metal-oxide varistor (MOV) elements is a promising device to provide low contact resistance and a fast interruption. The semiconductor devices are turned on by the sustaining voltage of arc discharge generated between the metal contacts of the mechanical switch. Though arc duration time in the hybrid DCCB is shorter than that in classical mechanical CBs, the arc causes contact erosion. In this report, an arcless commutation is described that uses the molten metal-bridge voltage at the opening stage of the contacts. The magnitude of the molten-bridge voltage is just enough to turn on SiC-MOSFET devices under specific conditions. Arcless commutation of DC current was observed with a Ag-W vacuum contact and SiC-MOSFETs at current values of 78 similar to 140 A.
引用
收藏
页码:45 / 48
页数:4
相关论文
共 50 条
  • [31] No-Load Dielectric Recovery of the Ultra-Fast Vacuum Switch in Hybrid DC Circuit Breaker
    Wen, Weijie
    Li, Bin
    Li, Botong
    Wang, Yizhen
    Huang, Yulong
    Cheng, Tingting
    Liu, Weidong
    IEEE TRANSACTIONS ON POWER DELIVERY, 2019, 34 (03) : 840 - 847
  • [32] 25 kW 1200 V unidirectional DC solid-state circuit breaker design with SiC MOSFET desaturation detection
    Kim, Jinwoo
    Yoon, Dongkwan
    Choi, Dongmin
    Lee, Jung-Yong
    Cho, Younghoon
    JOURNAL OF POWER ELECTRONICS, 2023, 23 (07) : 1150 - 1159
  • [33] 25 kW 1200 V unidirectional DC solid-state circuit breaker design with SiC MOSFET desaturation detection
    Jinwoo Kim
    Dongkwan Yoon
    Dongmin Choi
    Jung-Yong Lee
    Younghoon Cho
    Journal of Power Electronics, 2023, 23 : 1150 - 1159
  • [34] Research on Current Commutation Measures for Hybrid DC Circuit Breakers
    Wen, Weijie
    Huang, Yulong
    Sun, Yinshan
    Wu, Junhui
    Al-Dweikat, Mohmmad
    Liu, Weidong
    IEEE TRANSACTIONS ON POWER DELIVERY, 2016, 31 (04) : 1456 - 1463
  • [35] Multi-port Commutation-based Hybrid DC Circuit Breaker with Low Conduction Loss Considering Bus Fault
    Shi W.
    Chen Y.
    Sun C.
    Wang W.
    Xie Y.
    Fang T.
    Dianli Xitong Zidonghua/Automation of Electric Power Systems, 2022, 46 (14): : 140 - 149
  • [36] Hybrid DC circuit breaker with fault current suppression capability
    Mei, Mingwan
    Wang, Ping
    Che, Yanbo
    Ishaq, Muhammad
    Xing, Chao
    JOURNAL OF POWER ELECTRONICS, 2021, 21 (10) : 1542 - 1555
  • [37] Novel Hybrid DC Circuit Breaker Based on Current Injection
    Wan C.
    Pei X.
    Zhou W.
    Li Z.
    Li P.
    Zhang S.
    Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering, 2023, 43 (12): : 4727 - 4735
  • [38] Hybrid DC circuit breaker with fault current suppression capability
    Mingwan Mei
    Ping Wang
    Yanbo Che
    Muhammad Ishaq
    Chao Xing
    Journal of Power Electronics, 2021, 21 : 1542 - 1555
  • [39] An Evaluation of a New Type of High Efficiency Hybrid Gate Drive Circuit for SiC-MOSFET Suitable for Automotive Power Electronics System Applications
    Yamamoto, Masayoshi
    Shirai, Shinya
    Thilak, Senanayake
    Imaoka, Jun
    Ishido, Ryosuke
    Okawauchi, Yuta
    Nakahara, Ken
    IEICE TRANSACTIONS ON FUNDAMENTALS OF ELECTRONICS COMMUNICATIONS AND COMPUTER SCIENCES, 2022, E105A (05) : 834 - 843
  • [40] Hybrid DC circuit breaker with current-limiting capability
    Liu, Yiqi
    Li, Bingkun
    Yin, Laicheng
    Zheng, Junyuan
    Duan, Zhaoyu
    Li, Zhenjie
    JOURNAL OF POWER ELECTRONICS, 2023, 23 (04) : 700 - 711