首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >A Nonlinear Behavioral Ferrite-Core Inductance Model Able to Reproduce Thermal Transients in Switch-Mode Power Supplies
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A Nonlinear Behavioral Ferrite-Core Inductance Model Able to Reproduce Thermal Transients in Switch-Mode Power Supplies

机译:非线性行为铁氧体芯电感模型能够在开关模式电源中重现热瞬变

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More compact Switch-Mode Power Supplies (SMPSs) satisfying typical design specifications can be obtained by exploiting ferrite core inductors working in partial saturation. In this case, the inductance is no longer a constant parameter, since it exhibits a sharp drop as the inductor current increases. A behavioral model was recently proposed, which provides the inductance at steady state as a function of easy-to-measure quantities. Here, a generalization of this model is presented, in order to capture the inductance behavior also during thermal transients. The model fitting to experimental measurements relies on an iterative optimization procedure grounding on accurate SMPS simulations based on shooting analysis. The model validation exploits the envelope analysis method, particularly suitable for slow-fast systems. The obtained fitting results show a good agreement with experimental data both in transient conditions (after sudden variation of the SMPS operating condition) and at steady state. Finally, by partially re-identifying the model based on data measured when the inductor is cooled with a fan, we still obtain a good matching between model and experimental data.
机译:可以通过利用在部分饱和度下工作的铁氧体核心电感来获得满足典型设计规格的更紧凑的开关模式电源(SMPS)。在这种情况下,电感不再是恒定参数,因为它表现出锐度下降,因为电感电流增加。最近提出了一种行为模型,其在稳定状态下提供电感作为易于测量的量。这里,提出了该模型的概括,以便在热瞬变期间捕获电感行为。试验测量模型依赖于基于拍摄分析的精确SMPS模拟接地的迭代优化过程。模型验证利用包络分析方法,特别适用于慢速系统。所获得的拟合结果与瞬态条件(SMPS运行条件的突然变化)和稳定状态下的实验数据显示出良好的一致性。最后,通过使用风扇冷却电感器时部分重新识别基于测量的数据,我们仍然在模型和实验数据之间获得良好的匹配。

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