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Input of optimization techniques for implementing charge transport models in electrical insulation

机译:输入用于在电绝缘中实施电荷传输模型的优化技术

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This work aims at systematizing the determination of physical parameters pertaining to charge transport models for dielectrics through the use of a method based on Levenberg-Marquardt algorithm. Experimental data used are net density of charge as measured by the pulsed electro-acoustic method — PEA — and external charging and discharging current measurements. Simulated data are those produced by a bipolar charge transport model developed for low density polyethylene under dc stress. We show that the optimization tool developed as an interface between the numerical model and the experimental data can readily produce a set of values of physical parameters for the model.
机译:这项工作旨在通过使用基于Levenberg-Marquardt算法的方法来系统化确定与电介质电荷传输模型有关的物理参数。使用的实验数据是通过脉冲电声法PEA测量的净电荷净密度,以及外部充电和放电电流的测量值。模拟数据是由为直流电应力下的低密度聚乙烯开发的双极电荷传输模型产生的数据。我们表明,作为数值模型和实验数据之间的接口开发的优化工具可以轻松地为模型生成一组物理参数值。

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