On Magnetically Coupled Coils Parameter Calculation

Author:

Bobaru Lavinia Maria1,Stănculescu Marilena1,Niculae D.1,Iordache M.1

Affiliation:

1. University Politehnica of Bucharest , Spl. Independentei, Romania , Electrical Engineering Faculty / Dept. of Electrical Engineering ,

Abstract

Abstract ANSYS Q3D Extractor tool (AQ3DE), using the quasi-static solvers (method of moments, integral equations and FEMs), is very efficient for computing and simulating two- and three-dimensional electromagnetic field. This simulation is used to extract parameters of interest, such as: resistance (R), conductance (G), self-inductance (L), mutual inductance (M) and capacitance (C). These parameters can be further used to optimize and to obtain automatically the design of a wireless power transfer systems (WPTS). The resulting matrices allow the generation of new matrices for any selected parameters. To complete the analysis, the model which is computed will be exported as an equivalent circuit. In this paper, starting from a given WPTS, using AQ3DE tool, the parameters of interest (R, G, L, M, C) were automatically calculated, and the SPICE equivalent circuit was obtained. The analysis was performed for two different distances between the emitter and the receiver. The electrical circuit theory was used for the system analysis of magnetically coupled coil (MCC) system. Starting from the parameters extracted by the AQ3DE tool, the performance of the WPTS has been analysed both in time and frequency domain.

Publisher

Walter de Gruyter GmbH

Reference18 articles.

1. [1] Ansoft Q3D Extractor, User Guide, www.ansoft.com.

2. [2] http://www.ansys.com/Products/Simulation+Technology/Systems+&+Embedded+Softwhare/ANSYS+Simplorer.

3. [3] A. Karalis, J.D. Joannopoulos, M. Soljačić, “Efficient wireless non-radiative mid-range energy transfer”, Annals of Physics, Vol. 323, January 2008, pp. 34-48.10.1016/j.aop.2007.04.017

4. [4] J. I. Agbinya (Editor), Wireless Power Transfer, River Publishers Series in Communications, Denmark, 2012, ISBN: 978-87-92329-23.

5. [5] Ki Young Kim, Wireless Power Transfer – Principles and Engineering Explorations, Published by InTech Janeza Trdine 9, 51000 Rijeka, Croatia, 2011.

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