Title :
Mutual Inductance Calculation of Movable Planar Coils on Parallel Surfaces
Author :
Su, Y.P. ; Liu, Xun ; Hui, S. Y Ron
Author_Institution :
Dept. of Electron. Eng., City Univ. of Hong Kong, Kowloon
fDate :
4/1/2009 12:00:00 AM
Abstract :
Recent developments of the wireless battery charging platform have prompted requirements to investigate the mutual inductance between a movable planar coil and the fixed planar coil on the charging platform. The wireless battery charging platform must allow the load to be placed anywhere on the charging surface. Therefore, the relative position between the movable energy-receiving coil and the energy-transmitting coils on the charging platform must be flexible. In this paper, an extended formula is proposed for the mutual inductance calculation for two coaxial or noncoaxial planar spiral windings sandwiched between two double-layer substrates. It can quickly determine the mutual coupling of two planar windings that can have different relative positions and distance between them. This new calculation method provides a new and useful tool for determining the mutual inductance of a movable planar coil and the fixed planar coil on the wireless battery charging platform. The theory has been favorably tested and compared with practical measurements and also with finite-element analysis.
Keywords :
battery chargers; coils; finite element analysis; inductance; transformer windings; energy-receiving coil; energy-transmitting coils; finite element analysis; fixed planar coil; movable planar coils; mutual inductance; parallel surfaces; planar windings; spiral windings; wireless battery charging; Contactless battery charging platform; impedance formula; noncoaxial; planar spiral inductor;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2008.2009757