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FAILURE PREDICTION MODEL AND ESR MODELING OF ELECTROLYTIC CAPACITOR WITH APPLICATION TO PREDICTIVE MAINTENANCE

机译:电解电容器的故障预测模型和ESR建模及其在预测维修中的应用

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Being one of the most used passive components in power electronics, electrolytic capacitors have the shortest life span due to their wear-out failure which is mainly caused by vaporization and deterioration of capacitor electrolyte. Knowing these two phenomena increase Equivalent Series Resistance (ESR) of the capacitor, tracking ESR value over the system operating time can be a good indicator for state of health of an electrolytic capacitor. In order to set the maintenance schedule, various ESR monitoring algorithms computing remaining time before failure have been investigated in literature. These real-time algorithms use classical models for ESR and life-time estimation which are not precise enough and leads the maintenance program to be either risky if the prediction is more than the actual life-time or more expensive if it is much less than the actual life span. This paper presents a generalized equivalent model using fractional order element for electrolytic capacitor to estimate the ESR and impedance of faultless running capacitor. Unlike other existing fractional order models, proposed model considers a fractional order dynamic only in the dielectric losses and the terminal capacitor remains integer order as observed in actual capacitor's behavior. Furthermore, a novel failure predictive model using Mittage-Leffler function is proposed to track the ESR increment due to aging of the capacitor and estimate the failure time based on the information which are provided through ESR monitoring system. Using this model increase the life-time prediction accu- racy. Hence the predictive maintenance of the system with capacitors nearing their failure time can be set more precisely. These two fractional order models are compared against classical ESR and life-time prediction models to illustrate the enhanced performances of the proposed models.
机译:作为电力电子器件中最常用的被动元件之一,电解电容器由于其磨损故障而具有最短的寿命,主要是由电容器电解质的蒸发和劣化引起的。知道这两个现象增加了电容器的等效串联电阻(ESR),在系统工作时间上跟踪ESR值可以是电解电容器健康状态的良好指标。为了设置维护计划,在文献中研究了在失败之前计算剩余时间的各种ESR监测算法。这些实时算法使用了ESR和寿命时间估计的经典模型,这不足以足够精确,如果预测超过实际寿命或更昂贵,则导致维护程序是有风险的,如果它远低于实际的寿命。本文呈现了一种广义等效模型,使用用于电解电容器的分数级元件来估计反向运行电容器的ESR和阻抗。与其他现有的分数阶模型不同,所提出的模型仅考虑仅在介电损耗中的分数阶动态,并且终端电容保持在实际电容器行为中观察到的整数顺序。此外,提出了一种新颖的故障预测模型,其使用电容器的老化而导致的ESR增量,并基于通过ESR监控系统提供的信息来估计故障时间。使用此模型提高了寿命预测突触。因此,可以更准确地设定具有接近其故障时间的电容器的系统的预测性维护。将这两个分数阶模型与古典ESR和救生时间预测模型进行比较,以说明所提出的模型的增强性能。

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