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Modeling of domestic induction heating systems with non-linear saturable loads

机译:非线性饱和负荷的家用感应加热系统的建模

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In this work, a model for induction heating cooktops with non-linear loads is presented. The model includes both the electronic converter and the inductor-pot system, which is usually modeled by its frequency-dependent equivalent impedance. Due to the non-linear relation between the magnetic field and the magnetic flux density in ferromagnetic media, the equivalent impedance of the inductor-pot system is significantly dependent on the excitation level. In this direction, two common materials have been experimentally characterized by their permeability curve for a wide range of excitation levels. Once the magnetic properties of the materials are known, a simulation model was developed including the non-linear behavior. By means of the simulation model, the equivalent impedance is obtained as a function of the excitation frequency and level. The modeled non-linear load is finally introduced in the power converter model from which the main waveforms can be extracted. Finally, the model was experimentally verified. The system was tested under real working conditions showing good concordance with the simulations.
机译:在这项工作中,提出了一种带有非线性负载的感应加热炉灶面的模型。该模型既包括电子转换器,又包括电感器-锅系统,通常通过其频率相关的等效阻抗来建模。由于铁磁介质中磁场与磁通量密度之间存在非线性关系,因此电感-锅系统的等效阻抗极大地取决于激励水平。在这个方向上,两种常见的材料已经在宽范围的激发水平上通过其磁导率曲线进行了实验表征。一旦了解了材料的磁性能,便建立了包括非线性行为的仿真模型。借助于仿真模型,获得等效阻抗作为激励频率和电平的函数。最后,将建模的非线性负载引入功率转换器模型,从中可以提取主要波形。最后,对该模型进行了实验验证。该系统在真实的工作条件下进行了测试,显示出与仿真的良好一致性。

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