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首页> 外文期刊>IEEE Transactions on Power Electronics >Modeling Frequency-Dependent Core Loss of Ferrite Materials Using Permeance–Capacitance Analogy for System-Level Circuit Simulations
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Modeling Frequency-Dependent Core Loss of Ferrite Materials Using Permeance–Capacitance Analogy for System-Level Circuit Simulations

机译:使用磁导-电容模拟在系统级电路仿真中对铁氧体材料随频率变化的铁损进行建模

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摘要

Ferrite core materials are preferred for magnetic components in power electronic converters considering their low cost and high permeability. Thanks to their negligible electrical conductivity, core loss is dominated by the frequency-independent hysteresis effect in most operating conditions. In the applications of high switching frequency under a certain modulation scheme, however, the core loss of ferrite materials do exhibit obvious frequency dependence, known as relaxation effect, which is strongly influenced by the magnetic flux's rate of change and cannot be ascribed to material conductivity. In order to incorporate the core loss including both frequency-dependent and frequency-independent effects into system-level simulation environment of power converters so that the system efficiency can be pre-evaluated during the design phase as a reference for optimization, dynamic model that is physically intuitive and easy to parameterize is desired. This paper proposes an approach to model the core loss of ferrite materials combining both frequency-dependent relaxation effect and frequency-independent hysteresis, which can be flexibly applied for various operation conditions with good accuracy.
机译:考虑到铁氧体磁芯材料的低成本和高导磁率,它们是电力电子转换器中磁性部件的首选。由于它们的电导率可忽略不计,因此铁芯损耗在大多数工作条件下受频率无关的磁滞效应的支配。但是,在某些调制方案下的高开关频率应用中,铁氧体材料的磁芯损耗确实表现出明显的频率依赖性,即弛豫效应,它受磁通量变化率的强烈影响,不能归因于材料的电导率。 。为了将包括与频率相关和与频率无关的影响在内的核心损耗纳入功率转换器的系统级仿真环境中,以便可以在设计阶段预先评估系统效率,以作为优化,动态模型的参考。需要物理上直观且易于参数化。本文提出了一种结合频率相关的弛豫效应和频率无关的磁滞来模拟铁氧体材料的磁芯损耗的方法,该方法可以灵活,准确地应用于各种工作条件。

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