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Application of Incident Energy Reference Boundary Area Plots in TCCs Considering IEEE 1584-2018 Input Parameter Variability

机译:考虑IEEE 1584-2018输入参数变异性的TCCS中入射能源参考边界区域图的应用

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摘要

A simplified arc-flash analysis technique that allows for the determination of the settings of overcurrent protective devices and selection of arc-rated personal protective equipment (PPE) based on a reference constant incident energy boundary area is presented in this article. The reference areas are created based on the equations of IEEE Standard 1584-2018 [1], taking into consideration potential variation in the input parameters described in the standard. The method presented in this article provides an efficient and straightforward means to simultaneously consider the effects of varying input parameters on arc-flash calculation results by plotting areas of constant incident energy on a time-current plot. Actual power distribution equipment may have multiple electrode configurations, gaps between conductors, operating voltages, as well as a range of available bolted short-circuit currents and variation in the size of equipment enclosures. The multiple combinations require dozens of simulations to determine the worst-case incident energy levels. Unlike previous implementations of incident energy curves, which were typically single line representations of the incident energy, the plotting of bounded areas (C-area plots) allows for multiple parameter sweeps to determine a band of variation within a defined set of parameter combinations.
机译:本文介绍了一种简化的电弧闪光分析技术,其允许确定过电流保护装置的设置以及基于参考恒定入射能源边界区域的选择的电弧额定个人保护设备(PPE)的选择。参考区域是基于IEEE标准1584-2018 [1]的等式创建的,考虑到标准中描述的输入参数的潜在变化。本文中呈现的方法提供了一种有效和简单的装置,以便同时考虑不同输入参数对电弧闪光计算的影响,通过在时间电流图上绘制恒定入射能量的区域。实际配电设备可以具有多个电极配置,导体之间的间隙,操作电压以及一系列可用的螺栓短路电流以及设备外壳尺寸的变化。多种组合需要数十个模拟来确定最坏情况的入射能级。与预先发生的入射能量曲线的实现不同,通常是入射能量的单线表示,有界区域(C区图)的绘图允许多个参数扫描以确定确定的一组参数组合内的变形条带。

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