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Topology of current-limiting and energy-transferring DC circuit breaker for DC distribution networks

机译:用于直流配电网的电流限制和能量传输直流断路器的拓扑

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摘要

With the development of power electronic technologies and distributed power generation, DC distribution networks attract increasing attention due to their various advantages compared with traditional AC distribution networks. However, DC fault protection is one of the major issues in DC distribution networks. To improve their reliability and protect the semiconductor devices under DC faults, a current-limiting and energy-transferring DC circuit breaker topology is proposed in this paper. By applying passive components and thyristors, the proposed topology is capable of quickly limiting the fault current and transferring the faulty energy. The working principle, mathematical model and parameter designing method of the proposed topology are presented in this paper. The simulation results verify that the proposed DC circuit breaker could effectively limit the fault current and quickly interrupt the fault current. Cost and conduction power loss evaluation proves the practicality of the proposed topology in medium-voltage DC distribution networks.
机译:随着电力电子技术的发展和分布式发电,与传统的AC分配网络相比,DC分配网络由于各种优势而引起了越来越关注。但是,DC故障保护是直流分配网络中的主要问题之一。为了提高其可靠性并保护DC故障下的半导体器件,本文提出了电流限制和能量转移的直流断路器拓扑。通过应用被动元件和晶闸管,所提出的拓扑能够快速限制故障电流并传输故障的能量。本文提出了所提出的拓扑的工作原理,数学模型和参数设计方法。仿真结果验证所提出的直流断路器可以有效地限制故障电流并快速中断故障电流。成本和传导功率损耗评估证明了中压直流配电网中提出的拓扑的实用性。

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