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How to include frequency dependent complex permeability Into SPICE models to improve EMI filters design?

机译:如何将频率相关的复杂渗透率包括进入Spice模型,以改善EMI过滤器设计?

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Electromagnetic interference (EMI) filters design is a rather difficult task where engineers have to choose adequate magnetic materials, design the magnetic circuit and choose the size and number of turns. The final design must achieve the attenuation requirements (constraints) and has to be as compact as possible (goal). Alternating current (AC) analysis is a powerful tool to predict global impedance or attenuation of any filter. However, AC analysis are generally performed without taking into account the frequency-dependent complex permeability behaviour of soft magnetic materials. That’s why, we developed two frequency-dependent complex permeability models able to be included into SPICE models. After an identification process, the performances of each model are compared to measurements made on a realistic EMI filter prototype in common mode (CM) and differential mode (DM) to see the benefit of the approach. Simulation results are in good agreement with the measured ones especially in the middle frequency range.
机译:电磁干扰(EMI)过滤器设计是一个相当困难的任务,工程师必须选择适当的磁性材料,设计磁路并选择尺寸和匝数。最终设计必须达到衰减要求(约束),并且必须尽可能紧凑(目标)。交替的电流(AC)分析是一种强大的工具,可以预测任何过滤器的全局阻抗或衰减。然而,通常进行AC分析,而不考虑软磁材料的频率依赖性复合渗透性行为。这就是为什么,我们开发了两个能够包含在Spice模型中的频率相关的复杂渗透性模型。在识别过程之后,将每个模型的性能与在共模(CM)和差分模式(DM)中的现实EMI滤波器原型上进行的测量进行比较,以便看到该方法的益处。仿真结果与测量的结果吻合良好,特别是在中频范围内。

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