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A Novel Bidirectional Solid-State Circuit Breaker for DC Microgrid

机译:用于直流微电网的新型双向固态断路器

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摘要

DC microgrid has attracted more and more attention due to its unique characteristics, but the development of a dcmicrogrid is also facing some challenges, such as interruption and isolation of short-circuit fault currents. Therefore, the dc circuit breaker plays an important role in ensuring the normal work of a dc microgrid. In this paper, a novel bidirectional dc solid-state circuit breaker is proposed to realize the bidirectional flow of energy, which ensures the higher operating efficiency of the dc microgrid. Compared with other solid-state circuit breakers, the proposed novel topology has simpler structure, common ground, and fewer components. First, this paper makes a detailed analysis of the different working stages of the circuit when the fault occurs in combination with simulation results of the circuit topology. Then, the standard of selecting the components through the calculation and analysis of the circuit is given in this paper. Finally, the performance of the novel bidirectional solid-state circuit breaker is verified by experiments.
机译:直流微电网因其独特的特性而受到越来越多的关注,但是直流微电网的发展也面临着一些挑战,例如中断和隔离短路故障电流。因此,直流断路器在确保直流微电网的正常工作中起着重要作用。本文提出了一种新型的双向直流固态断路器来实现能量的双向流动,从而确保了直流微电网的更高运行效率。与其他固态断路器相比,该新型拓扑结构更简单,共用接地且组件更少。首先,结合电路拓扑的仿真结果,对发生故障时电路的不同工作阶段进行了详细分析。然后,给出了通过计算和分析电路选择元件的标准。最后,通过实验验证了新型双向固态断路器的性能。

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