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Magnetic Components Dynamic Modeling With Thermal Coupling for Circuit Simulators

机译:电路仿真器的热耦合磁性元件动态建模

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This paper proposes a nonlinear dynamic model of magnetic components for use in circuit simulators. It includes the material's nonlinear hysteresis behavior with accurate modeling of winding and core losses in addition to thermal effects that are not considered by existing models. The model is based on the principle of separation of static and dynamic contributions as well as Bertotti's theory. Very high speed integrated circuits hardware description language-analog and mixed signals is used as a modeling language due to its multi-domain modeling feature, allowing coupling with a thermal model. The thermal model is represented by a temperature source for static thermal conditions or by an equivalent thermal circuit for self-heating conditions. The magnetic component model is implemented in circuit simulation software SIMPLORER and validated by modeling a nanocrystalline-core inductor. The effects of frequency, temperature, and waveform are studied.
机译:本文提出了一种用于电路模拟器的磁性元件非线性动力学模型。它包括材料的非线性滞后行为,以及对绕组和铁心损耗的精确建模,以及现有模型未考虑的热效应。该模型基于静态和动态贡献的分离原理以及Bertotti的理论。超高速集成电路的硬件描述语言-模拟信号和混合信号由于其多域建模功能而被用作建模语言,从而可以与热模型耦合。对于静态热条件,热模型由温度源表示;对于自热条件,由等效热电路表示。磁性元件模型在电路仿真软件SIMPLORER中实现,并通过对纳米晶芯电感器进行建模来验证。研究了频率,温度和波形的影响。

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