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Lifetime evaluation of high energy density capacitor based experimental investigations

机译:基于高能密度电容器的实验研究的寿命评估

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The high energy density capacitors (HEDC) made of metallized polypropylene film possess characteristics of high reliability and is widely used in the pulsed power systems. In order to achieve a long life characteristic, the HEDC should be designed to age gracefully with a predictable lifetime. Thus there is an urgent demand in evaluating and predicting the lifetime of the HEDC. Lifetime evaluation of HEDC prototype in design is carried out by lifetime test of the HEDC element under relatively high electric field to reduce costs and shorten time. But experimental data show that the lifetime of HED prototype is far shorter than that of the element even under the same conditions. This paper firstly analyzes the different operational factors influencing lifetime performance based on Weibull distribution, such as the voltage, temperatures and so on. Empirically derived functions of lifetime scaling about operational factors are presented. Then lifetime relationship between the HEDC element and prototype is investigated by reliability analysis. At last, the lifetime prediction model is established with the consideration of operational factors and reliability.
机译:由金属化聚丙烯薄膜制成的高能量密度电容器(HEDC)具有高可靠性的特性,并且广泛用于脉冲动力系统。为了实现较长的寿命特性,HEDC应设计为以可预测的寿命优雅地年龄。因此,在评估和预测HEDC的寿命方面存在迫切需求。通过相对高电场下的HEDC元件的寿命试验来实现设计中HEDC原型的寿命评估,以降低成本并缩短时间。但实验数据表明,即使在相同的条件下,均匀的原型的寿命远比元素的寿命较短。本文首先分析了影响寿命性能的不同操作因素,基于Weibull分布,例如电压,温度等。介绍了关于运行因子的终身缩放的经验衍生的函数。然后通过可靠性分析研究了HEDC元件和原型之间的寿命关系。最后,通过考虑操作因素和可靠性来建立寿命预测模型。

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