{"title":"Partial Discharge Features of Insulation for Power Electronic Transformers Under Time-Temperature Ageing","authors":"Wenqian Zhang;Jun Jiang;Bo Li;Zhan Shen;Guoming Ma;Chaohai Zhang","doi":"10.24295/CPSSTPEA.2023.00028","DOIUrl":null,"url":null,"abstract":"Under the combination of temperature and high frequency electrical stress, partial discharge (PD) intensity will increase at the insulation system of power electronic transformer (PET), which leads to premature insulation failure, and finally threatens the reliability of PET. In order to obtain PD features under high frequency square wave voltage combined with high temperature, and different aging time of insulation system in PET. A combined electric-thermal experiment platform is established to simulate the discharge characteristics of typical insulation dielectric films (polyimide, PI) under temperature from 80∼155 °C and ageing time from 0∼50 h respectively. The variation trend of discharge repetition rate, average discharge amplitude and the shape of phase resolved partial discharge (PRPD) spectrum are considered, and then the discharge mechanism is analyzed. The experimental results show that the rise of temperature contribute to the augmentation of discharge repetition rate and the average discharge amplitude, with an increase in amplitude from 0.3 V to 0.6 V, and the phase of the discharge signal widens. As the ageing time goes up, the discharge repetition rate and the average discharge amplitude increase too, but the change is most obvious in the early aging period, leaping from 0.2 V to 0.32 V. It is of practical value to reveal the mechanism of high frequency electro-thermal stress and improve the operation reliability of power electronic transformer.","PeriodicalId":100339,"journal":{"name":"CPSS Transactions on Power Electronics and Applications","volume":"8 4","pages":"363-371"},"PeriodicalIF":0.0000,"publicationDate":"2023-03-10","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=10122806","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"CPSS Transactions on Power Electronics and Applications","FirstCategoryId":"1085","ListUrlMain":"https://ieeexplore.ieee.org/document/10122806/","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Under the combination of temperature and high frequency electrical stress, partial discharge (PD) intensity will increase at the insulation system of power electronic transformer (PET), which leads to premature insulation failure, and finally threatens the reliability of PET. In order to obtain PD features under high frequency square wave voltage combined with high temperature, and different aging time of insulation system in PET. A combined electric-thermal experiment platform is established to simulate the discharge characteristics of typical insulation dielectric films (polyimide, PI) under temperature from 80∼155 °C and ageing time from 0∼50 h respectively. The variation trend of discharge repetition rate, average discharge amplitude and the shape of phase resolved partial discharge (PRPD) spectrum are considered, and then the discharge mechanism is analyzed. The experimental results show that the rise of temperature contribute to the augmentation of discharge repetition rate and the average discharge amplitude, with an increase in amplitude from 0.3 V to 0.6 V, and the phase of the discharge signal widens. As the ageing time goes up, the discharge repetition rate and the average discharge amplitude increase too, but the change is most obvious in the early aging period, leaping from 0.2 V to 0.32 V. It is of practical value to reveal the mechanism of high frequency electro-thermal stress and improve the operation reliability of power electronic transformer.
在温度和高频电应力的共同作用下,电力电子变压器(PET)绝缘系统的局部放电(PD)强度会增加,从而导致绝缘过早失效,最终威胁 PET 的可靠性。为了获得 PET 绝缘系统在高频方波电压、高温和不同老化时间下的局部放电特征。建立了一个电热联合实验平台,分别模拟典型绝缘介质薄膜(聚酰亚胺,PI)在温度为 80∼155 °C、老化时间为 0∼50 h 条件下的放电特性。考虑了放电重复率、平均放电振幅和相位分辨局部放电(PRPD)光谱形状的变化趋势,并分析了放电机理。实验结果表明,温度的升高有助于提高放电重复率和平均放电幅度,放电幅度从 0.3 V 增至 0.6 V,放电信号的相位变宽。随着老化时间的延长,放电重复率和平均放电幅值也随之增大,但在老化初期变化最为明显,从 0.2 V 跃升到 0.32 V,这对揭示高频电热应力机理、提高电力电子变压器的运行可靠性具有重要的实用价值。