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A Novel AC Power Loss Model for Ferrite Power Inductors

机译:铁氧体功率电感器的新型交流功率损耗模型

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Recent studies have proved that sustainable saturation operation of Ferrite Power Inductors (FPIs) allows reducing the inductor size and increasing the power density in Switch-Mode Power Supply (SMPS) applications. This paper discusses a new behavioral model for reliable prediction of ac power loss in FPIs, including the effects of saturation. The new model has been identified by means of the Genetic Programming (GP) algorithm combined with a Multi-Objective Optimization (MOO) technique, starting from large sets of power loss experimental measurements. The proposed ac power loss model uses as input variables the voltage and switching frequency imposed to the inductor by the SMPS operation, while the dc inductor current is used as a parameter expressing the impact of saturation. Such quantities can be easily determined for whatever converter topology and in real-world switching operation, thus confirming the readiness and the easiness-to-use of the proposed behavioral model. The results of experimental tests presented in this paper prove the reliability of the power loss predictions, also by correctly accounting for the impact of inductors saturation.
机译:最近的研究证明,铁氧体功率电感器(FPI)的可持续饱和运行可以减小开关模式电源(SMPS)应用中的电感器尺寸并提高功率密度。本文讨论了一种新的行为模型,用于可靠预测FPI中的交流功率损耗,包括饱和效应。新模型已经通过遗传编程(GP)算法与多目标优化(MOO)技术相结合的方法进行了鉴定,该方法从大量的功率损耗实验测量开始。拟议的交流功率损耗模型将SMPS操作施加到电感器的电压和开关频率用作输入变量,而直流电感器电流用作表示饱和度影响的参数。对于任何转换器拓扑和实际开关操作,都可以轻松确定此类数量,从而确认了所提出的行为模型的就绪性和易用性。本文提出的实验测试结果也通过正确考虑电感饱和的影响证明了功率损耗预测的可靠性。

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