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Hybrid DC Circuit Breaker Feasibility Study

机译:混合直流断路器可行性研究

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摘要

Recently, a growing number of dc systems exist based on the development of electrical energy consumption. For low-voltage dc grids, switching devices are needed that have to meet technically sophisticated requirements. These devices have to handle fault currents of several hundred amperes and system voltages up to 1000 V. A typical dc circuit breaker has to provide low on-state losses, light weight, and small volume. On the way toward fulfilling these requirements, hybrid circuit breakers can represent the optimal solution. A hybrid dc circuit breaker combines the advantages of mechanical contacts and semiconductors. In this paper, such a device has been designed and constructed using a commercial switch and electronic components in the laboratory. The breaking performance of this experimental prototype has been investigated, and thus the interruption of the nominal and failure currents in the case of different time constants can be identified. The investigated hybrid switching device has been optimized in order to maximize the switching capacity and the protection of the semiconductors.
机译:近来,基于电能消耗的发展,存在越来越多的直流系统。对于低压直流电网,需要开关设备,这些开关设备必须满足技术复杂的要求。这些设备必须处理几百安培的故障电流和高达1000 V的系统电压。典型的直流断路器必须提供低的导通损耗,重量轻和体积小。在满足这些要求的过程中,混合断路器可以代表最佳解决方案。混合式直流断路器结合了机械触点和半导体的优点。在本文中,已经使用实验室中的商用开关和电子组件设计和构造了这种设备。已经研究了该实验原型的断裂性能,因此可以确定在不同时间常数的情况下标称电流和故障电流的中断。为了使开关容量和半导体保护最大化,已对所研究的混合开关器件进行了优化。

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