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SHAPE DESIGN OPTIMIZATION OF SHIELDING ELECTRODES FOR REDUCING RADIO INTERFERENCE OF HV DEVICES

机译:屏蔽电极的形状设计优化,降低高压器件无线电干扰

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Developments in computational methods for solving boundary value problems, coupled with the advances in computer hardware, has led to the commercial availability of very efficient computer aided engineering (CAE) tools. The aim of this work is to define a suitable criterion for the shape design optimization of HV shielding electrodes for reducing the radio interference. The experimental part of the investigation consists in standard Radio Interference Voltage (RIV) measurements on test geometries with different sized toroidal and spherical electrodes. A detailed 3D modelling of the test geometries has been carried out using a BEM based commercial code, in order to precisely compute the electric field distribution near the electrode surfaces. It has been observed that, despite the different geometries and applied voltages, a unique electric field value is attained in all configurations in correspondence to the RIV threshold voltage. Therefore, this value can be used as a design parameter for CAE tools once the field distribution near the HV device is computed. The proposed approach may greatly improve the efficiency of HV shield design, which nowadays is normally based on empirical considerations.
机译:求解边值问题的计算方法的开发,与计算机硬件的进步相结合,导致了非常有效的计算机辅助工程(CAE)工具的商业可用性。这项工作的目的是为HV屏蔽电极的形状设计优化来定义合适的标准,以降低无线电干扰。调查的实验部分包括标准无线电干扰电压(RIV)测量,用于具有不同尺寸环形和球形电极的测试几何形状。使用基于BEM的商业代码进行了测试几何形状的详细建模,以便精确地计算电极表面附近的电场分布。已经观察到,尽管几何形状和施加电压,但在对应于RIV阈值电压的所有配置中实现了唯一的电场值。因此,一旦计算了HV设备附近的现场分布,该值可以用作CAE工具的设计参数。所提出的方法可以大大提高HV屏蔽设计的效率,现在基于经验考虑。

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