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Influence of DC Power System Parameters on Fault Interruption Characteristics of Electronically Assisted Circuit Breaker (EACB)

机译:直流电力系统参数对电子辅助断路器故障中断特性的影响(EACB)

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This paper investigates the influence of DC power system parameters such as L/R time constant and available fault current on the fault interruption time of a newly developed Electronically Assisted Circuit Breaker (EACB). Unlike other HCB concepts in the literature, the EACB uses a conventional thermal-magnetic MCCB baseline design with minimal modification of its actuation mechanism, and an electronic commutation circuit which is activated at a reduced fault current for a very short time duration, both contributing to significant cost savings. The fault interruption time of EACB mainly depends on the fault current limiting process of the MCCB which is related to the DC power system parameters. In this paper, fault interruption time of EACB in PV systems with different system parameters is studied. The interruption time is mapped out based on arc modeling analysis. Finally, prototypes are designed and demonstrated, experimentally showing the influence of system parameters on the fault interruption time of EACB.
机译:本文研究了DC电力系统参数(如L / R时间常数和可用故障电流)对新开发的电子辅助断路器(EACB)的故障中断时间的影响。与文献中的其他HCB概念不同,EACB使用传统的热磁性MCCB基线设计,其致动机构的最小修改,以及在减小的故障电流下激活的电子换向电路,这两种持续时间很短,都有助于显着节省成本。 EACB的故障中断时间主要取决于与DC电力系统参数相关的MCCB的故障电流限制过程。在本文中,研究了具有不同系统参数的PV系统中EACB的故障中断时间。基于电弧建模分析映射中断时间。最后,设计和展示了原型,实验地显示了系统参数对EACB故障中断时间的影响。

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