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UHF Method on PD Detection and Breakdown Characteristics of Metallic Particle in Oil Insulation

机译:用UHF方法对绝缘油中金属颗粒的PD进行检测和击穿特性。

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Partial discharge is a discharge phenomenon in spark form between two electrodes between insulation, which should not be connected. When the phenomenon is sustained, it may cause insulation failure depended on insulation strength. The presence of contaminants decreases the dielectric strength of the insulation. The contaminant itself is produced by equipment that needs oil in its operation, such as transformers. The metal particle may float due to the random movement of the oil particles. This study conducts experiments in detecting PD with a UHF method by using the monopole antenna to analyze the effect of floating metal particles on the breakdown characteristics of oil insulation. HFCT will validate the detected signal. This study focused on two variables, the particle sizes and the distance between contaminant and electrodes. The test showed that the distance of the contaminant influences partial discharge occurrence. Breakdown voltage results on 5 mm and 10 mm distance were 66 and 76 kV. The size of the contaminant affects the value of inception and breakdown voltage of oil insulation. Average Breakdown Voltage of 5 mm and 10 mm contaminant at 10 mm distance were 69.5 and 71.4 kV. The bigger the contaminant, the higher the inception and breakdown voltage.
机译:局部放电是在绝缘体之间的两个电极之间以火花形式产生的放电现象,不应将其连接。当这种现象持续存在时,可能会导致绝缘失效,具体取决于绝缘强度。污染物的存在降低了绝缘体的介电强度。污染物本身是由运行中需要机油的设备(例如变压器)产生的。金属粒子可能会由于油粒子的随机运动而漂浮。这项研究进行了实验,通过使用单极天线通过UHF方法检测PD,分析了浮动金属颗粒对绝缘油击穿特性的影响。 HFCT将验证检测到的信号。这项研究集中在两个变量上,即颗粒大小和污染物与电极之间的距离。试验表明,污染物的距离影响局部放电的发生。在5 mm和10 mm距离上的击穿电压结果分别为66和76 kV。污染物的大小会影响绝缘油的初始值和击穿电压。 5 mm和10 mm污染物在10 mm距离处的平均击穿电压分别为69.5和71.4 kV。污染物越大,起始电压和击穿电压越高。

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