DocumentCode :
1382387
Title :
Wireless Power Transfer in Loosely Coupled Links: Coil Misalignment Model
Author :
Fotopoulou, Kyriaki ; Flynn, Brian W.
Author_Institution :
Central R&D, NXP Semicond., Leuven, Belgium
Volume :
47
Issue :
2
fYear :
2011
Firstpage :
416
Lastpage :
430
Abstract :
A novel analytical model of inductively coupled wireless power transfer is presented. For the first time, the effects of coil misalignment and geometry are addressed in a single mathematical expression. In the applications envisaged, such as radio frequency identification (RFID) and biomedical implants, the receiving coil is normally significantly smaller than the transmitting coil. Formulas are derived for the magnetic field at the receiving coil when it is laterally and angularly misaligned from the transmitting coil. Incorporating this magnetic field solution with an equivalent circuit for the inductive link allows us to introduce a power transfer formula that combines coil characteristics and misalignment factors. The coil geometries considered are spiral and short solenoid structures which are currently popular in the RFID and biomedical domains. The novel analytical power transfer efficiency expressions introduced in this study allow the optimization of coil geometry for maximum power transfer and misalignment tolerance. The experimental results show close correlation with the theoretical predictions. This analytic technique can be widely applied to inductive wireless power transfer links without the limitations imposed by numerical methods.
Keywords :
biomedical communication; carrier transmission on power lines; coils; equivalent circuits; inductive power transmission; magnetic fields; optimisation; radiofrequency identification; RFID; biomedical domains; coil geometry; coil misalignment; equivalent circuit; inductively coupled wireless power transfer; magnetic field; optimization; receiving coil; transmitting coil; Inductive link; RF coils; RFID; misalignment analysis; wireless power transfer;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2010.2093534
Filename :
5639082
Link To Document :
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