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Harmonic Analysis of Arcing Faults and Impacts on System Protection: Copyright Material IEEE, Paper No. PCIC-2018-46

机译:电弧故障的谐波分析及其对系统保护的影响:版权材料IEEE,论文编号PCIC-2018-46

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Transformer protection schemes commonly use percentage restrained differential elements for winding protection, often delayed or desensitized by 2nd and 4th harmonic elements during inrush of LV and MV transformer banks. Differential relays are now commonly applied to smaller transformers and the zone of protection can now include cables, bus duct, circuit breakers, and other components. Harmonic controlled differential relays are seeing wider use for arc flash mitigation, and other harmonic-controlled schemes have also been proposed. Preliminary observations suggest that the harmonic spectra of arcing fault currents can differ substantially, which begs the question - when can harmonic-supervised protection be employed with harmonic restraints set to avoid operation for inrush while still operating quickly for arcing faults? This paper explores this topic by analyzing relay responses to real arcing faults using relays from multiple vendors that employ different harmonic detection algorithms.
机译:变压器保护方案通常使用百分比限制的差动元件来进行绕组保护,通常在LV和MV变压器组涌入时被二次谐波和二次谐波元件延迟或降低灵敏度。差动继电器现在通常应用于较小的变压器,并且保护区域现在可以包括电缆,母线管,断路器和其他组件。谐波控制的差动继电器正在广泛用于减轻电弧闪光,并且还提出了其他谐波控制的方案。初步观察表明,电弧故障电流的谐波频谱可以有很大的不同,这引出了一个问题-何时可以在设置了谐波约束的情况下采用谐波监督保护来避免浪涌运行,同时仍能对电弧故障快速运行?本文通过使用来自多家采用不同谐波检测算法的供应商的继电器来分析继电器对实际电弧故障的响应,从而探索了这一主题。

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