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Design and Analysis of Hybrid DC Circuit Breaker for LVDC Grid Systems

Authors
Kim, Dong-UkKim, Sungmin
Issue Date
Sep-2021
Publisher
전력전자학회
Keywords
DC grid system; Fault current interruption; Hybrid DC circuit breaker; LVDC circuit breaker; Permanent magnet actuator
Citation
Journal of Power Electronics, v.21, no.9, pp 1395 - 1405
Pages
11
Indexed
SCIE
SCOPUS
KCI
Journal Title
Journal of Power Electronics
Volume
21
Number
9
Start Page
1395
End Page
1405
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/113902
DOI
10.1007/s43236-021-00272-2
ISSN
1598-2092
2093-4718
Abstract
The emerging interconnections of renewable energy sources that generate DC power have resulted in demands on DC grid systems. In this situation, a low-voltage DC (LVDC) grid system could be a solution for these DC power sources. For the reliable operation of a LVDC grid, DC faults are an issue and DC circuit breakers (DC CBs) are appropriate devices to clear fault current. However, there are some difficulties in terms of breaking DC faults such as the absence of zero crossing of the current and voltage, and the high di/dt of the fault current. This paper proposes a hybrid circuit breaker (HCB) with a new structure for a LVDC grid system. The main switch consists of a vacuum interrupter (VI) and a permanent magnetic actuator (PMA). Some improvements are proposed to enhance the performance of the PMA. A bi-directional commutation loop consisting of a minimum number of power electronic devices is suggested. To absorb fault energy, a capacitor and a diode loop are applied. The principle of the proposed HCB and the design methods for all of the components are analyzed. Through a simulation model, the designed components are selected and verified. Experimental results with a realized prototype (750V/300A) verify the design method and its performance.
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Kim, Sung min
ERICA 공학대학 (SCHOOL OF ELECTRICAL ENGINEERING)
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