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Space charge distribution synthesis by multiphysics simulation: application to the PWP techniques

机译:多体仿真的空间电荷分布合成:PWP技术应用

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Initially we have implemented a model based on the Finite Element Method (FEM). This model consist in simulate experiments of space charge measurement: the principle of the various experiments consists in forcing the displacement of space charge by a pressure wave, temperature gradient or an electric excitation, and measuring the transitory current thus created at the boundaries of material or the sound emission associated to the generated movement. In this article, we propose an alternative to the traditional exploitation of the Pressure Wave Propagation techniques, based on a quasi-random approach of the space charge distribution by bringing together of the electric answers (experimented and simulated). Adopted methodology consists has to seek a space charge distribution, such as the simulated electric answer reaches a certain similarity with the experimentation. One shows as well as the space charge distribution can be obtained in a completely reversed way. Indeed this new methodology consists in finding the space charge distribution which gives a simulated electric answer nearest to that measured.
机译:最初我们已经基于有限元方法(FEM)实现了模型。该模型组成的空间电荷测量的模拟实验:各种实验的原理包括通过压力波,温度梯度或电激励来强制空间电荷的位移,并测量如此在材料边界处产生的暂时电流或与生成的运动相关的声音发射。在本文中,我们提出了一种替代传统的压力波传播技术的开发,基于空间电荷分布的准随机方法来引入电动答案(实验和模拟)。采用的方法包括寻求空间电荷分配,例如模拟电动答案与实验达到某种相似之处。可以以完全反向的方式获得一个节目以及空间电荷分布。实际上,这种新方法包括找到最接近测量的模拟电动答案的空间电荷分布。

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