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High-Frequency Behavioral Ring Core Inductor Model

机译:高频行为环形铁芯电感器模型

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The switching of the power semiconductors in static converters is the main source of electromagnetic interferences (EMI). To meet with electromagnetic compatibility standards, it is necessary to reduce the level of the conducted emissions. This reduction can be achieved by different techniques including the EMI filters whose design is mainly based on the use of ring core inductors. This element is a key point for designing efficient EMI filters, requiring then accurate inductor high-frequency (HF) models. Therefore, this paper deals with the development of an HF behavioral model of inductors, based on electrical equivalent circuit, for an implementation in circuit simulation software. The aim is to provide a robust and adjustable model under small-signal operating conditions for frequencies up to 100 MHz. The proposed model considers the frequency-dependent properties of the magnetic core material and also includes the parameterization of the electrical equivalent circuit elements with the number of winding turns and dimension of the magnetic core. Simulations results using the obtained inductor model are validated by impedance measurements with two types of magnetic materials: ferrite and nanocrystalline.
机译:静态转换器中功率半导体的开关是电磁干扰(EMI)的主要来源。为了满足电磁兼容性标准,有必要降低传导辐射的水平。这种降低可以通过包括EMI滤波器在内的各种技术来实现,这些滤波器的设计主要基于使用环形磁芯电感器。该元件是设计高效EMI滤波器的关键,因此需要精确的电感器高频(HF)模型。因此,本文研究了基于等效电路的电感器HF行为模型的开发,以在电路仿真软件中实现。目的是在小信号工作条件下提供高达100MHz频率的强大且可调整的模型。提出的模型考虑了磁芯材料的频率相关特性,并且还包括等效电气元件的参数化以及绕组匝数和磁芯尺寸。通过使用两种类型的磁性材料(铁氧体和纳米晶)进行阻抗测量,可以验证使用获得的电感器模型进行的仿真结果。

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