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Parametric and non-parametric models for lifespan modeling of insulation systems in electrical machines

机译:用于电机绝缘系统寿命建模的参数和非参数模型

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摘要

This paper describes an original statistical approach for the lifespan modeling of electric machine insulation materials. The presented models aim to study the effect of three main stress factors (voltage, frequency, and temperature) and their interactions on the insulation lifespan. The proposed methodology is applied to two different insulation materials tested in partial discharge regime. Accelerated ageing tests are organized according to experimental optimization methods in order to minimize the experimental cost while ensuring the best model accuracy. In addition to classical parametric models, the life-stress relationship is expressed through original nonparametric and hybrid models that have never been investigated in insulation aging studies before. These two models present the original contribution of this paper. For each material, models are computed from organized sets of experiments and applied on a randomly configured test set for validity checking. The different models are evaluated and compared in order to define their optimal use.
机译:本文介绍了一种用于电机绝缘材料寿命模型的原始统计方法。提出的模型旨在研究三个主要应力因素(电压,频率和温度)及其相互作用对绝缘寿命的影响。所提出的方法应用于在局部放电状态下测试的两种不同的绝缘材料。根据实验优化方法组织加速的老化测试,以最大程度地降低实验成本,同时确保最佳模型精度。除了经典的参数模型外,寿命-应力关系还通过原始的非参数模型和混合模型表示,这些模型以前从未在绝缘老化研究中进行过研究。这两个模型代表了本文的原始贡献。对于每种材料,从有组织的实验集中计算模型,然后将其应用于随机配置的测试集中以进行有效性检查。评估并比较不同的模型,以定义其最佳用途。

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