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http://dx.doi.org/10.9714/psac.2015.17.1.040

Characteristics simulation of wireless power transfer system considering shielding distance  

Lee, Yu-Kyeong (Chosun University)
Choi, Hyo-Sang (Chosun University)
Jung, Byung Ik (Chosun University)
Jeong, In-Sung (Chosun University)
Publication Information
Progress in Superconductivity and Cryogenics / v.17, no.1, 2015 , pp. 40-43 More about this Journal
Abstract
Wireless power transfer technology is using the magnetic resonance recently drawing increased attention. It uses the resonance between transmitter and receiver coils to transfer power. Thus, it can improve the transfer distance and efficiency compared with the existing magnetic induction technique. The authors found from the previous study that the application of the superconductor coil to the magnetic resonance wireless power transfer system improved its efficiency. Its application to real life, however, requires the additional study on the effects of adjacent materials. In this study, the two resonance coils made by superconductor coils were used to aluminum and plastic shielding materials was placed between the coils. S-parameters were analyzed according to the position of the shielding material between the transmitter and receiver coils. As a result, the plastic of shielding material had no effect, but the aluminum of shielding material affected the wireless power transfer due to the shielding effectiveness.
Keywords
Aluminum; Wireless power transmission; Superconductor coil; Plastic; Shielding distance;
Citations & Related Records
Times Cited By KSCI : 4  (Citation Analysis)
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