Inductor design methodology for power electronics applications

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Universidade Federal de Minas Gerais

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In this work, a methodology is presented that allows the automatization of the inductor design, estimating copper losses, considering skin and proximity effects and also core losses through improved generalized Steinmetz equation. The inductors designed with this methodology were tested in a Buck converter, comparing the calculation of losses with measurements through a calorimeter.

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Inductors , Mathematical model , Wires , Loss measurement , Windings , Inductance , Estimation, Inductor Design , Core Losses , IGSE , Calorimeter , Loss measurement, Inductor Design , Proximity Effect , Skin Depth , Copper Loss , Core Loss , Buck Converter , Impedance , Magnetic Field , Switching Frequency , Relative Permeability , Magnetic Flux , Ventilation System , Loss Estimation , Projection Values , Harmonic Components , Inductance Value , Sinusoidal Waveform , Voltage Vector , Number Of Wires , Curves Of Materials , Conductivity Resistance , Wide Bandgap Semiconductor , Internal Chamber

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https://ieeexplore.ieee.org/document/9065867

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