The Analysis of Low-Voltage DC Arc behavior on Three Interrupting Phases Based on AC Black-box Arc model

Kyu-Hoon Park, Ho-Yun Lee, Bang-wook Lee
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引用次数: 2

Abstract

Among many low voltage power electrical devices, Low-voltage (LV) dc circuit breaker (DCCB) is one of the most essential components and is widely used to protect the overall LV dc distribution system. Therefore, many research institutes and manufacturers have been concentrating a lot of research and interest in LV DCCB in recent years. LV dc arc simulation modeling technique using computational methods is being studied. However, dc arc modeling technique using only finite element method is studied among various modeling methods, and there are no existing researches of dynamic arc-circuit interaction analysis using a black-box model. In this paper, LV dc arc is modeled by using the proposed black-box model as the ac arc modeling technique. The existing LV DCCB has air arc characteristics according to the interrupting topology, and the corresponding LV dc arc interrupting phases can be divided into arc commutation, arc motion, and arc splitting. Arc modeling was performed on three interrupting phases, based on the typical waveform of a LV dc arc and actual experimental data. The black-box model uses the schwarz model, which is known to be best suited for representing the small current and large current regions of the arc. As a result, the applicability of the dc arc was evaluated using the existing ac black-box model, and the behavior of the dc arc for each interrupting phase was described.
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基于交流黑箱电弧模型的低压直流电弧三相断流行为分析
在众多低压电力电气设备中,低压直流断路器(DCCB)是最重要的部件之一,广泛用于保护整个低压直流配电系统。因此,近年来许多研究机构和生产厂家对LV DCCB进行了大量的研究和关注。利用计算方法对低压直流电弧仿真建模技术进行了研究。然而,在各种建模方法中,只研究了基于有限元法的直流电弧建模技术,目前还没有基于黑盒模型的动态弧回路相互作用分析研究。本文采用所提出的黑盒模型作为交流电弧的建模技术,对低压直流电弧进行建模。现有的低压DCCB根据开弧拓扑结构具有气弧特性,相应的低压直流开弧相位可分为电弧换相、电弧运动相和电弧分裂相。根据低压直流电弧的典型波形和实际实验数据,对三个断相进行电弧建模。黑箱模型使用史瓦兹模型,这是已知的最适合表示电弧的小电流和大电流区域。利用已有的交流黑箱模型对直流电弧的适用性进行了评估,并描述了直流电弧在各中断相下的行为。
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