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Arcing fault current and the criteria for setting ground fault relays in solidly-grounded low voltage systems

机译:牢固接地的低压系统中的电弧故障电流和接地故障继电器的设置标准

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In the 1960s numerous damages were documented on 480 V, 3-phase, 4-wire power systems due to arcing ground faults, To alleviate this problem, the National Electrical Code (NEC) now requires ground fault protection in low voltage switchgear with continuous current ratings above 1,000 A and operating at more than 150 V phase-to-ground on solidly-grounded systems. However, burn down damage and personal injury continues to occur. This paper provides a simplified technique to accurately estimate this arcing fault current, and discusses its effects on the settings of relays and interrupting devices utilized in low voltage systems. It suggests that the criteria for setting the ground fault sensing devices should be changed to accommodate the maximum allowable exposure of personnel to arc flashes that may occur in the system. This is a much stricter guideline than that currently required by the NEC.
机译:在1960年代,由于电弧接地故障,在480 V三相4线电力系统上记录了许多损坏。为缓解这个问题,美国国家电气法规(NEC)现在要求在具有连续电流的低压开关柜中进行接地故障保护在牢固接地的系统上,额定电流超过1,000 A,并且在相对地超过150 V的条件下运行。但是,烧毁损坏和人身伤害继续发生。本文提供了一种简化的技术来准确估算此电弧故障电流,并讨论其对低压系统中使用的继电器和中断设备的设置的影响。它建议应更改设置接地故障检测设备的标准,以适应人员最大可能暴露于系统中可能发生的弧光的危险。这是一个比NEC当前要求更严格的准则。

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