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A Novel Low-Loss Bidirectional T-Source Circuit Breaker With Physical Isolation for Low-Voltage DC Distribution Network

Yuan Song, Fei Liu, Xiaoguang Diao, Yizhan Zhuang, Xiaoming Zha

2021IEEE Transactions on Industrial Electronics14 citationsDOI

Abstract

The development of a low-voltage dc distribution network has advanced the research on dc circuit breakers. Compared with the Z-source circuit breakers, T-source circuit breakers offer more advantages and greater research value. However, the existing bidirectional Z-source and T-source circuit breakers still suffer from limitations, such as high conduction loss, complex topology, and no physical isolation. Therefore, to solve these limitations, in this article, a novel low-loss bidirectional T-source circuit breaker with physical isolation is proposed. The proposed circuit breaker employs mechanical switches to reduce conduction loss, realize physical isolation, and change the power-flow direction. Since mechanical switches do not need to operate in the fault-clearing stage, the novel circuit breaker does not generate a dc arc and retains the fast self-shut <sc xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">-off</small> characteristic of T-source circuit breakers. Moreover, soft-starting circuit and manual-tripping circuit are integrated into the proposed circuit breaker. The detailed analysis and design equations of the circuit breaker are provided. Finally, the capabilities of the novel circuit breaker are verified by simulation and experiment.

Topics & Concepts

Circuit breakerTransient recovery voltageElectrical engineeringArc-fault circuit interrupterLow voltageComputer scienceFault (geology)High voltageFuse (electrical)Topology (electrical circuits)EngineeringElectronic engineeringVoltageVoltage sourceShort circuitSeismologyDropout voltageGeologyHVDC Systems and Fault ProtectionSilicon Carbide Semiconductor TechnologiesElectrical Fault Detection and Protection