2015Unpublished venueRequires access

Coil structure optimization method for improving coupling coefficient of wireless power transfer

Hongchang Li, Kangping Wang, Lang Huang, Jie Li, Xu Yang

Open publisher page 31 citations

Abstract

The low coupling coefficient is the main reason that results in difficulties to design a high performance mid-range wireless power transfer (WPT) system which uses magnetic resonant coupling. The advantages of improving the coupling coefficient are quantitatively discussed in this paper. It is highlighted that improving coupling coefficient is the only method to reduce the sensitivity to frequencies. Furthermore, this paper proposes a method that improves the coupling coefficient by optimizing the structure of the coils. The optimization of a pair of spiral coils is presented. The method has much lower computation cost than finite element analysis (FEA) and its accuracy is sufficient for design procedures.

About this research paper

What this paper is about

The low coupling coefficient is the main reason that results in difficulties to design a high performance mid-range wireless power transfer (WPT) system which uses magnetic resonant coupling. The advantages of improving the coupling coefficient are quantitatively discussed in this paper. It is highlighted that improving coupling coefficient is the only method to reduce the sensitivity to frequencies. Furthermore, this paper proposes a method that improves the coupling coefficient by optimizing the structure of the coils. The optimization of a pair of spiral coils is presented. The method has much lower computation cost than finite element analysis (FEA) and its accuracy is sufficient for design procedures.

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OpenAlex reports 31 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The low coupling coefficient is the main reason that results in difficulties to design a high performance mid-range wireless power transfer (WPT) system which uses magnetic resonant coupling. The advantages of improving the coupling coefficient are quantitatively discussed in this paper. It is highlighted that improving coupling coefficient is the only method to reduce the sensitivity to frequencies. Furthermore, this paper proposes a method that improves the coupling coefficient by optimizing the structure of the coils. The optimization of a pair of spiral coils is presented. The method has much lower computation cost than finite element analysis (FEA) and its accuracy is sufficient for design procedures.

Key concepts: Coupling coefficient of resonators, Wireless power transfer, Electromagnetic coil, Coupling (piping), Finite element method, Sensitivity (control systems), Spiral (railway), Computation

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