Multi-Layer MTDC Protection: Design and Simulation Assessment

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초록

With the growing demand for scalable and resilient high-voltage direct current infrastructure driven by offshore renewables and international power exchange, multi-terminal DC (MTDC) systems are emerging as a key solution. However, their deployment is hindered by the lack of effective DC fault protection. Conventional single-layer architectures assign detection, limitation, and interruption to a single breaker, resulting in over-engineered designs and high system complexity. This study proposes a multi-layer protection approach that decouples fault current management into two dedicated functions: a thyristor-based fault current limiter for initial current suppression and an active resonance circuit breaker for selective fault isolation. A comparative simulation using the CIGRE B4.57 MTDC benchmark in PSCAD/EMTDC evaluates the proposed scheme against a widely adopted hybrid DC circuit breaker baseline. The results demonstrate reduced peak fault current, lower surge-arrester stress, and a significant decrease in semiconductor requirements. Together, these outcomes confirm that the proposed multi-layer architecture provides comparable interruption performance while offering practical implementation advantages and improved scalability for future MTDC systems. © 2026 The Author(s). IET Generation, Transmission & Distribution published by John Wiley & Sons Ltd on behalf of The Institution of Engineering and Technology.

키워드

circuit breakersfault current limitersfault currentsHVDC power transmission
제목
Multi-Layer MTDC Protection: Design and Simulation Assessment
저자
Lee, JonggeonKwon, IlKwahk, YujinLee, Bangwook
DOI
10.1049/gtd2.70231
발행일
2026-01
유형
Article
저널명
IET Generation, Transmission and Distribution
20
1