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Electrical Aging of the Insulation of Low-Voltage Machines: Model Definition and Test With the Design of Experiments

机译:低压机器绝缘的电老化:模型定义和实验设计测试

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The aim of this paper is to present a method for modeling the life span of insulation materials in a partial discharge regime. Based on the design of experiments, it has many advantages: It reduces the number of time-consuming experiments, increases the accuracy of the results, and allows life span modeling under various stress conditions, including coupling effects between the factors. Accelerated aging tests are carried out to determine the life span of these materials. The resulting model presents an original relationship between the logarithm of the insulation life span and that of electrically applied stress and an exponential form of the temperature. Results show that the most influential factors can be identified according to their effects on the insulation life span. Moreover, the life span model validity is tested either with additional points which have not been used for modeling or through statistical tests. Finally, it is shown that fractional plans are not suitable to reduce the number of experiments. This application of the experimental design is best used during the initial phase, before the final drive has been built and any online diagnosis.
机译:本文的目的是提出一种在局部放电状态下模拟绝缘材料寿命的方法。基于实验的设计,它具有许多优点:它减少了耗时的实验次数,提高了结果的准确性,并允许在各种应力​​条件(包括因素之间的耦合效应)下进行寿命建模。进行加速老化测试以确定这些材料的寿命。所得模型表示绝缘寿命的对数与电应力和温度的指数形式之间的原始关系。结果表明,可以根据它们对绝缘寿命的影响来确定最有影响力的因素。此外,可以使用尚未用于建模的其他点或通过统计测试来测试寿命模型的有效性。最后,表明分数计划不适合减少实验次数。实验设计的这种应用最适合在初始阶段,最终驱动器建立之前和任何在线诊断之前使用。

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