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《Proceedings of the CSEE》 2009-04
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Modeling and Optimizing of a New Contactless ICPT System With Constant Primary Winding Current

YANG Min-sheng, WANG Yao-nan, OUYANG Hong-lin (College of Electric and Information Engineering, Hunan University, Changsha 410082, Hunan Province, China)  
A new contactless inductively coupled power transfer (ICPT) system was proposed in this paper. The primary coil was tuned with an inductor/capacitor/capacitor (LCC) resonant tank, and the second coil was parallel tuned with a compensation capacitor. Based on mutual inductance theorem, the pick-up load equivalent model and primary circuit equivalent model were derived separately. With sinusoidal AC analysis, closed-form expressions of circuit elements in the resonant tank were deduced and equations about output power and voltage were derived too. The LCC resonant tank elements were optimized in the design for minimizing the size and lowering the cost. Constant primary winding current independent of load level is inherent in the proposed system so that power could be transmitted from power source to load in a stable manner. Superior part-load efficiency is another virtue in the proposed system, for the input current of the resonant tank is decreased with the decrescence of load. PSpice simulations are provided to illustrate the superiority of the proposed system.
【Fund】: Project Supported by National Natural Science Foundation of China(60775047)~~
【CateGory Index】: TM72
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