An integral equation formulation with global series expansion for resonant wireless power transfer
ISSN: 0332-1649
Article publication date: 4 September 2017
Abstract
Purpose
The electromagnetic modeling of inductively coupled, resonant wireless power transfer (WPT) is dealt with. This paper aims to present a numerically efficient simulation method.
Design/methodology/approach
Recently, integral equation formulations have been proposed, using piecewise constant basis functions for the series expansion of the current along the coil wire. In the present work, this scheme is improved by introducing global basis functions.
Findings
The use of global basis functions provides a stronger numerical stability and a better control over the convergence of the simulation; moreover, the associated computational cost is lower than for the previous schemes. These advantages are demonstrated in numerical examples, with special attention to the achievable efficiency of the power transfer.
Practical implications
The method can be efficiently used, e.g., in the optimal design of resonant WPT systems.
Originality/value
The presented computation scheme is original in the sense that global series expansion has not been previously applied to the numerical simulation of resonant WPT.
Keywords
Acknowledgements
This work was supported by the Hungarian Scientific Research Fund under grant K-111987 and by the János Bolyai Research Scholarship of the Hungarian Academy of Sciences.
Citation
Bilicz, S., Pávó, J., Gyimóthy, S. and Badics, Z. (2017), "An integral equation formulation with global series expansion for resonant wireless power transfer", COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, Vol. 36 No. 5, pp. 1474-1487. https://doi.org/10.1108/COMPEL-02-2017-0079
Publisher
:Emerald Publishing Limited
Copyright © 2017, Emerald Publishing Limited