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publication name An Integrated Characterization Model and Multi-objective Optimization for the Design of an EV Charger’s Circular Wireless Power Transfer Pads
Authors Abla O. Hariri, Ahmed T. Elsayed, Osama Mohammed
year 2017
keywords Coils, Optimization, Analytical models, Mathematical model, Linear programming, Magnetic cores, Wires
journal IEEE Transactions on Magnetics
volume 53
issue 6
pages Not Available
publisher IEEE
Local/International International
Paper Link http://ieeexplore.ieee.org/document/7837629/
Full paper download
Supplementary materials Not Available
Abstract

A good magnetic design of a wireless electric vehicle (EV) charging system requires accurate characterization of the equivalent circuit parameters. This is while considering the effect of the magnetic core and the conductive shielding layers. In the literature, such an analysis is done using 3-D finite element analysis, which makes the design and optimization process time-consuming and computationally expensive. In this paper, an integrated analytical model for the characterization of a circular wireless power transfer EV pads is utilized. This analytical model provides a valuable tool to optimize the design process. This model is utilized when evaluating the objective function for each individual in the multiobjective Pareto Optimality optimization algorithm. The objective is optimizing the pads with three decision variables and four constraints.

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