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Arcing-fault models for low-voltage power systems

机译:低压电力系统的电弧故障模型

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摘要

An arcing fault is a dangerous form of short circuit that may have a low current magnitude. In the case of such faults, the magnitude of the current is limited by the resistance of the arc and may also be limited by the impedance of a ground path. This lower level fault current is often insufficient to immediately trip overcurrent devices, resulting in the escalation of the arcing fault, increased system damage, tremendous release of energy, and threat to human life. Despite modern advances in system protection, people are critically injured or killed each year when they are in the vicinity of an arcing fault that is either accidentally physically initiated or initiated through a glow-to-arc transition. The initial phase of an ongoing arcing-fault research project was to review the pioneering work, dating back to the 1920s. The historical evolution of arc modeling for low-voltage systems and a summary of the electrical aspects and the physics involved in arcing faults were reviewed in a companion paper (1999). After a comprehensive literature search was completed, today's better analytical tools facilitated the development of new arc models with current-dependent arc voltages. A current-dependent arc voltage better represents the arcing phenomenon than the assumed arc voltage associated with previous instantaneous arc models.
机译:电弧故障是短路的危险形式,可能具有较低的电流强度。在此类故障的情况下,电流的大小受电弧电阻的限制,也可能受到接地路径的阻抗的限制。这种较低水平的故障电流通常不足以立即使过电流设备跳闸,从而导致电弧故障升级,系统损坏增加,能量大量释放以及对人类生命的威胁。尽管在系统保护方面已取得了现代进步,但人们每年在电弧放电故障附近还是会严重受伤或丧生,电弧放电是偶然物理触发或通过辉光到电弧过渡触发的。正在进行的电弧故障研究项目的初始阶段是回顾可追溯到1920年代的开拓性工作。伴随论文(1999年)回顾了低压系统电弧建模的历史演变,以及电弧故障中涉及的电气方面和物理的摘要。在完成全面的文献搜索之后,当今更好的分析工具促进了与电流相关的电弧电压的新电弧模型的开发。与电流有关的电弧电压比与先前的瞬时电弧模型相关的假定电弧电压更好地表示了电弧现象。

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