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Expanded DC Arc Flash Model for 125V Substation Battery Backup Systems

机译:用于125V变电站备用电池系统的扩展DC Arc Flash模型

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摘要

Arc flash is one of two hazards primarily associated with electrical systems. Due to its prevalence, the majority of arc flash research has been dedicated to alternating current (AC) electrical systems. However, direct current (DC) electrical systems are becoming increasingly common, such as electrical storage systems (ESSs), solar photovoltaic (PV) panels, and high-voltage (HV) DC transmission lines. Thus, more research is needed to address the arc flash hazards posed by DC electrical systems. Current DC arc flash models are theoretical and lack empirical data compared with AC arc flash models. This paper presents models developed through empirical testing utilizing low-voltage (LV) station batteries. Furthermore, this paper investigates possible interactions between DC arc flash within LV battery systems and atmospheric conditions, such as temperature and relative humidity. Lastly, the paper provides information regarding the implementation of these models within American Electric Power’s (AEP’s) safety practices regarding batteries and DC panelboards.
机译:电弧闪光是主要与电气系统相关的两种危险之一。由于其流行性,大多数电弧闪光研究一直致力于交流(AC)电气系统。但是,直流(DC)电气系统正变得越来越普遍,例如蓄电系统(ESS),太阳能光伏(PV)面板和高压(HV)DC传输线。因此,需要更多的研究来解决由直流电气系统造成的电弧闪光危害。当前的直流电弧闪光模型是理论上的,与交流电弧闪光模型相比缺乏经验数据。本文介绍了通过使用低压(LV)站电池的经验测试开发的模型。此外,本文研究了低压电池系统中直流电弧闪光与大气条件(例如温度和相对湿度)之间可能的相互作用。最后,本文提供了有关在美国电力(AEP)关于电池和直流配电板的安全实践中这些模型的实施情况的信息。

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