DocumentCode :
56845
Title :
An Investigation Into the Use of Orthogonal Winding in Loosely Coupled Link for Improving Power Transfer Efficiency Under Coil Misalignment
Author :
Chow, Jeff Po Wa ; Nan Chen ; Chung, Henry Shu Hung ; Chan, Leanne Lai Hang
Author_Institution :
Centre for Smart Energy Conversion & Utilization Res., City Univ. of Hong Kong, Kowloon, China
Volume :
30
Issue :
10
fYear :
2015
fDate :
Oct. 2015
Firstpage :
5632
Lastpage :
5649
Abstract :
It is sometimes unavoidable to use loosely coupled coils in applications, like biomedical devices, for transferring electric energy wirelessly. However, coil misalignment causes degradation of the power transfer efficiency. It is well known that the power transfer efficiency of classical parallel coils is primarily determined by the quality factors of the coils and the coupling coefficient between the coils, and is maximized by choosing an optimal turns-ratio between the coils. Changing the number of turns of the coils cannot effectively overcome such misalignment effect. This paper presents a structure that comprises two orthogonally placed windings for lessening the variation of the coupling coefficient due to the coil misalignment. An output current summing technique that keeps the windings concurrently energized and combines the output currents of the windings will be studied. A canonical model will also be derived to describe the interactions between the coils. An experimental prototype has been built and evaluated on a test bed, which allows different degrees of lateral and angular misalignments. Results reveal that the proposed structure can effectively increase the minimum efficiency zone, allowing more lateral and angular misalignments. These investigations lay the foundation for future understanding more complex loosely coupled winding structures.
Keywords :
Q-factor; coils; inductive power transmission; transformer windings; angular misalignment; canonical model; coil misalignment; complex loosely coupled winding structures; current summing; lateral misalignment; loosely coupled coils; loosely coupled link; orthogonal winding; orthogonally placed windings; parallel coils; power transfer efficiency; quality factors; Coils; Couplings; Magnetic flux; Receivers; Transmitters; Windings; Wireless communication; Coil misalignments; Wireless inductive link; coil misalignments; winding structure; wireless inductive link; wireless power transfer;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2014.2374651
Filename :
6966763
Link To Document :
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