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Diagnosis and Research on Partial Discharge Characteristics of EMU Capacitors with Typical Defects

机译:具有典型缺陷的动车组电容器局部放电特性的诊断研究

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The traction converter supporting capacitor of the EMU provides good support for the operation of the EMU, but due to factors such as the environment and manufacturing process, defects are formed inside the capacitor, which can easily cause partial discharge and threaten the safe operation of the EMU. This paper conducts partial discharge tests between the electrode and the shell on three types of defects including metal particles, insulating oil and water bubbles, which are common in capacitors. After data analysis, the results show that metal particles have the strongest discharge intensity, the largest discharge energy, and insulation oil inflow is next, and bubble defects are the weakest. The maximum similarity of the positive and negative skewness of the PRPD spectrum is calculated to provide a basis for distinguishing the three types of defects.
机译:EMU的支撑电容器的牵引转换器为EMU的操作提供了良好的支持,而是由于诸如环境和制造过程的因素,在电容器内部形成缺陷,这很容易导致部分放电并威胁到安全操作鸸。本文在包括金属颗粒,绝缘油和水泡的三种类型的缺陷之间进行电极和壳之间的局部放电测试,包括金属颗粒,绝缘油和水泡,其在电容器中常见。在数据分析之后,结果表明,金属颗粒具有最强的排出强度,最大放电能量和绝缘油流入是接下来的,并且泡沫缺陷是最弱的。计算PRPD频谱的正负偏斜的最大相似性,以提供区分三种类型的缺陷的基础。

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