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Journal ArticleDOI

High-Frequency Planar Transformer Parameter Estimation

TLDR
The comparison showed that the predictions of magnetizing inductance by the two numerical analyses are accurate and comparable with that of the DE-based estimation method, however, the series resistance and leakage inductance determined by the DE algorithm tend to be higher, as predicted by thetwo numerical methods.
Abstract
This paper presents different methods to determine the parameters for the equivalent electrical circuit model of a high-frequency planar transformer. The first method is implemented in the circuit simulation software utilizing a 1-D electromagnetic analysis. The second method uses a 3-D electromagnetic analysis and is implemented in a finite-element analysis software. The third method is a differential evolution (DE)-based algorithm using the experimental transformer data. The first two methods are useful in the design stage to predict the performance of a planar transformer, while the third one can be applied to validate the design. The performance and accuracy of the three methods are assessed by comparing each method’s parameter estimate of an actual planar transformer. The comparison showed that the predictions of magnetizing inductance by the two numerical analyses are accurate and comparable with that of the DE-based estimation method. However, the series resistance and leakage inductance determined by the DE algorithm tend to be higher, as predicted by the two numerical methods, due to the nonconsideration of the measuring leads impedance in the numerical models.

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Citations
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Journal ArticleDOI

Application of DIP to Detect Power Transformers Axial Displacement and Disk Space Variation Using FRA Polar Plot Signature

TL;DR: A new approach for the FRA technique is presented through incorporating the magnitude and phase angle plots that can be measured using any commercial frequency response analyzer into one polar plot that will facilitate the use of digital image processing (DIP) techniques to improve the detection accuracy, standardize, and automate the Fra interpretation process.
Journal ArticleDOI

Transformer Current Ringing in Dual Active Bridge Converters

TL;DR: To quantify the influence of the magnetic tank, its impedance model is thoroughly modeled by considering all the parasitic components and it is found that the parasitic capacitors of the magnetics do not equally affect the current ringing, and thereby the critical one is addressed.
Journal ArticleDOI

Multi-Winding Configuration Optimization of Multi-Output Planar Transformers in GaN Active Forward Converters for Satellite Applications

TL;DR: In this article, a full gallium nitride (GaN) active clamp forward converter with self-driven synchronous rectifiers (SRs) is presented with complete mode analysis.
Proceedings ArticleDOI

Computationally efficient leakage inductance calculation for a high-frequency core-type transformer

TL;DR: In this paper, a new method to estimate core-type transformer leakage inductance using a combination of analytical and numerical analysis is proposed, using a two-dimensional magnetic analysis using Biot-Savart law and the method of images.
Journal ArticleDOI

Parasitic Parameter Extraction and Identification Method for HFT Based on DC-DC Converter in EV Application

TL;DR: In this paper , the authors proposed a novel parasitic parameter identification method for the high-frequency transformer (HFT) based on DAB converter, which is more cost-effective than the conventional way to measure via impedance (IMDP) analyzer, requires shorter simulation time than the traditional finite element analysis (FEA) method, while it is also more accurate has fast convergence than a traditional forgetting factor recursive least square (FFRLS) identification algorithm.
References
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Book

Differential Evolution: A Practical Approach to Global Optimization (Natural Computing Series)

TL;DR: This volume explores the differential evolution (DE) algorithm in both principle and practice and is a valuable resource for professionals needing a proven optimizer and for students wanting an evolutionary perspective on global numerical optimization.
Book

Differential Evolution: A Practical Approach to Global Optimization

TL;DR: The differential evolution (DE) algorithm is a practical approach to global numerical optimization which is easy to understand, simple to implement, reliable, and fast as discussed by the authors, which is a valuable resource for professionals needing a proven optimizer and for students wanting an evolutionary perspective on global numerical optimisation.
Book

High-Frequency Magnetic Components

TL;DR: In this paper, the authors present a complete study of the fundamental concepts in magnetic theory, including the skin effect and proximity effect, for high-frequency applications including switching-mode power supplies (SMPS) and resonant circuits.
Journal ArticleDOI

Optimal Design and Tradeoff Analysis of Planar Transformer in High-Power DC–DC Converters

TL;DR: An improved interleaving structure with optimal behaviors is proposed, which constructs the top layer paralleling with the bottom layer and then in series with the other turns of the primary, so that a lower magnetomotive force ratio m can be obtained, as well as minimized ac resistance, leakage inductance, and even stray capacitance.
Journal ArticleDOI

Parameter Identification of the Jiles–Atherton Hysteresis Model Using Differential Evolution

TL;DR: In this article, the parameters of the Jiles-Atherton (J-A) hysteresis model are identified using a stochastic search algorithm called differential evolution (DE).
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