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Preventing substation tripping

机译:防止变电站跳闸

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This article describes an actual case history of substation nuisance tripping caused by a transformer differential relay due to rolled-out current-transformer (CT) connections. One set of differential relay CTs was installed averse order, and it's wiring was installed as if the CTs were stalled in the correct order. It was after several weeks of substation initial energization, when all plant auxiliary loads, such as lighting and small 480-V equipment, were in operation, the substation main transformer tripped on a line-to-ground arcing fault on the 480 V-system. Transformer differential relay settings, which caused tripping of the transformer for this through fault, were suspected to be in error. It was thought that perhaps arcing ground fault on the 480-V system contained a relatively higher magnitude of harmonic currents. Relay-setting calculations, especially the harmonic restraint, percent slope, tap ratio adjustment, and percent mismatch were reviewed and found to be within acceptable ranges. After thorough checking of relay settings and visual inspection of the substation transformer and switchgear, the field crew reenergized the substation while the technical investigation by the author was still in progress.
机译:本文介绍了由于电流互感器(CT)展开导致的变压器差动继电器引起的变电站讨厌跳闸的实际案例历史记录。一组差动继电器CT的安装顺序相反,并且其接线的安装就像CT按正确的顺序停转一样。变电站初次通电几周后,所有工厂辅助负载(例如照明设备和小型480 V设备)都在运行,变电站主变压器因480 V系统上的线对地电弧故障而跳闸。怀疑是由于错误导致变压器跳闸的变压器差动继电器设置。人们认为,在480-V系统上电弧接地故障可能包含相对较高的谐波电流。审查了继电器设置计算,特别是谐波抑制,斜率百分比,抽头比率调整和不匹配百分比,发现它们在可接受的范围内。在对继电器设置进行了彻底检查并对变电站变压器和开关设备进行了目视检查之后,在作者进行技术调查的过程中,现场工作人员为变电站重新通电。

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