4.7 Review

Design, Challenges, and Trends of Inductive Power Transfer Couplers for Electric Vehicles: A Review

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JESTPE.2020.3042625

关键词

Optimization; Couplers; Ferrites; Power electronics; Standards; Design methodology; Analytical models; Electric vehicles (EVs); inductive power transfer (IPT) coils; passive shielding; stationary charging; wireless power transfer (WPT)

资金

  1. University of Cape Town
  2. National Research Foundation of South Africa

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The article discusses the importance and design requirements of magnetic couplers in inductive power transfer systems, introduces the challenges and trends in coil design methods and structural optimization, and proposes optimization methods and multi-objective optimization schemes for the coil design process.
The magnetic coupler is the heart of an inductive power transfer (IPT) system, which facilitates wireless power transfer through its air gap. The couplers are designed to maximize efficiency, power density, power transfer distance, and misalignment tolerance while minimizing leakage flux, weight, cost, and volume. The coupler design process becomes complex due to the nonlinear behavior of magnetics, sophisticated geometrical structures, and mandatory design limitations imposed by standards, such as SAE J2954/1, IEC 61980-1:2015, and ISO 19363:2020. Initially, this article reviews the advancements in coil design methodologies and their structures over the last few decades to identify the ongoing challenges and trends. The impacts of the power electronics system, industrial standards, material selection, numerical and analytical modeling methods, and thermal modeling on the coil design process are identified to formalize the design procedure. A coil design example based on finite element analysis (FEA) tools is presented to identify the drawbacks of the existing design and optimization process. A sensitivity analysis, 3-D-Pareto plots, and optimal design selection by considering misalignment variations are proposed to improve the multiobjective optimization process. A generalized guideline for coil design is proposed, which highlights the essential design stages of an IPT coupler. Current trends are identified, and future directions are proposed.

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