Journal Article10.1109/tpel.2023.3313985
Low-Loss Bidirectional Solid-State Circuit Breakers with Reliable Breaking Capability for Protecting DC Microgrids
Yufeng Wang,Sheng Wang,Carlos E. Ugalde-Loo,Wenlong Ming,Weilin Li +4 more
TL;DR: Low-loss bidirectional solid-state circuit breakers with reliable breaking capability for protecting DC microgrids reduce conduction losses by ∼50% and enhance reliability by enabling controlled interruption of short-circuit faults.
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Abstract: Silicon-controlled rectifier-based dc solid-state circuit breakers (SCR-SSCBs) have received an increased attention for their ease of control and high efficiency, but their considerable conduction losses remain a major disadvantage. This article presents a new bidirectional SCR-SSCB topology, which reduces the conduction losses by ∼50%, with the loss reduction attributed to an inductor being eliminated from the main circuit during normal operation. This is achieved by conducting current through one semiconductor switch instead of two as in the conventional devices. In addition, the presented topology enhances the reliability of protection by enabling a controlled interruption of short-circuit faults in which fault interruption is not affected by the parameters of external systems to which the circuit breaker is connected to. A second topology that reduces the size of the capacitors in the commutating circuit is also introduced. A detailed analysis of the operating principle of the two novel topologies is presented. Recommendations supported by mathematical modeling are provided for selecting the relevant components of the devices. The performance of the two topologies was verified through simulation and experimental tests.
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Figures

Fig. 12. Experimental setup and circuits diagram for dc tests. 
Fig. 11. Relationship between C1 and k. 
Fig. 9. Relationship between C1 and Lw2 subjected to variations in n (with tq = 35 μs). 
Fig. 10. Relationship between C1 and Lw2 subjected to variations in tq (with n = 3). 
TABLE IV COMPARISON OF SCR-BCB1 AND SCR-BCB2 WITH DIFFERENT SSCBS IN THE LITERATURE 
Fig. 1. Connection of power electronic devices for bidirectional Z-SSCBs.
Citations
Research on Breaking Function for Two Bidirectional Γ-source DC Solid-state Circuit Breakers
Chen Wang,Zhenhong Han,Ning An,Dan Xue,Patrick Wheeler +4 more
Multiport Thyristor-Based DC Solid-State Circuit Breaker with Soft Reclosing Capability
Jin Zhu,Songming He,Qingpeng Zeng,Xu Yang,Mi Zhou,Tongzhen Wei +5 more
TL;DR: A novel multiport thyristor-based DC solid-state circuit breaker (MT-SSCB) is proposed, featuring reduced device count, low cost, and high reliability, with soft reclosing capability and elimination of MOV leakage current, verified through experiment and comparative analysis.
Research on temperature rise prediction model for circuit breaker based on numerical laplace transform
Y L Zhang,Xu Zhang,Xiaoming Qu,Songtao Wang,Xiao-zhi Liu,Zhang Jiang +5 more
TL;DR: This study develops a precise and widely applicable model for predicting circuit breaker temperature rise using numerical Laplace transform, achieving high predictive accuracy and suitability across various circuit breaker structures with an average deviation below industry standards.
A Review of Research Progress on Low-Voltage DC Solid-State Circuit Breakers
Aijie Liu,Baojun Li,Chengjun Lei,Dongwei Zhang,Erdun Gao +4 more
- 17 May 2024
TL;DR: This review paper discusses the advantages of solid-state circuit breakers over mechanical and hybrid breakers in low-voltage DC systems, focusing on power device performance, breaker topology, and working principles, and outlines future development directions.
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TL;DR: An overview of technology related to on-board microgrids for the more electric aircraft, where security of supply and power density represents the main requirements, is presented.
A New Z-Source DC Circuit Breaker
Keith Corzine,Robert W. Ashton +1 more
TL;DR: In this paper, a novel type of circuit breaker is introduced for operation at medium-voltage dc with future naval ship power systems as a targeted application, which utilizes a z-source LC circuit in order to automatically commutate a main-path SCR during a fault.
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Analysis and Design of DC System Protection Using Z-Source Circuit Breaker
TL;DR: In this paper, a modified Z-source breaker topology is introduced to minimize the reflected fault current drawn from a source while retaining a common return ground path, analogous in some respects to a thermal-magnetic breaker.
169
A Z-Source-Based Bidirectional DC Circuit Breaker With Fault Current Limitation and Interruption Capabilities
TL;DR: In this paper, an efficient dc bidirectional fault current limiter and interrupter (FCLI) based on Z-source topology is proposed to overcome some of the challenges in dc microgrids.
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