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Simulation of Transient Response Characteristics in Coaxial Electrodes with Non-linear Insulating Dielectrics

机译:非线性绝缘电介质同轴电源瞬态响应特性的仿真

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Under the step voltage, the non-linear conductivity dielectrics have the function of grading the electric field. But such materials have been applied extensively under AC electric field, and insulating materials damaged mostly under impulse voltage. The research on the AC response characteristic presents the foundations for the development and application of non-linear insulation dielectrics. In this paper, the coaxial electrodes structure filled with non-linear conductivity dielectrics is taken as main research object, and the finite element method (FEM) software ElecNet is adopted to simulate transient electric field distribution in the non-linear conductivity dielectrics under AC voltage. The result indicates that under AC, according to the theory of space charge limited field, the capability of the non-linear dielectrics in grading field is determined by the dominator of resistive current and capacitive current. When resistive current is larger than capacitive current, the non-linear conductivity dielectrics have the function of grading the electric field, vice versa.
机译:在步骤电压下,非线性电导率电介质具有分级电场的功能。但是这种材料已在交流电场下广泛应用,并且绝缘材料在脉冲电压下大多损坏。对AC响应特性的研究介绍了非线性绝缘电介质的开发和应用的基础。在本文中,填充有非线性电导率电介质的同轴电源结构作为主要研究对象,采用有限元方法(FEM)软件ElecNet在AC电压下模拟非线性电导介质中的瞬态电场分布。结果表明,根据空间电荷有限公地的理论,在AC下,分级场中的非线性电介质的能力由电阻电流和电容电流的偏移量决定。当电阻电流大于电容电流时,非线性电导率电介质具有对电场进行分级的功能,反之亦然。

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