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Wireless Power Feeding with Strongly Coupled Magnetic Resonance for a Flying Object 被引量:1
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作者 Masayoshi Koizumi Kimiya Komurasaki +1 位作者 yoshihiro mizuno yoshihiro Arakawa 《Wireless Engineering and Technology》 2012年第2期86-89,共4页
Wireless power feeding was examined with strongly coupled magnetic resonance for an object moving in 3-D space. Electric power was transmitted from the ground to an electrically powered toy helicopter in the air. A li... Wireless power feeding was examined with strongly coupled magnetic resonance for an object moving in 3-D space. Electric power was transmitted from the ground to an electrically powered toy helicopter in the air. A lightweight receiver resonator was developed using copper foil. High Q of greater than 200 was obtained. One-side impedance matching the transmitter side was proposed to cope with high transmission efficiency and the receiver’s weight reduction. Results show that the efficiency drop near the ground was drastically improved. Moreover, the measured efficiency showed good agreement with theoretical predictions. A fully equipped helicopter of 6.56 g weight was lifted up with source power of about 5 W to an altitude of approximately 10 cm. 展开更多
关键词 WIRELESS POWER Transmission Coupling Coefficient IMPEDANCE Matching Quality Factor RESONATOR
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Wireless Power Transmission into a Space Enclosed by Metal Walls Using Magnetic Resonance Coupling
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作者 Masato Yamakawa yoshihiro mizuno +2 位作者 Jun Ishida Kimiya Komurasaki Hiroyuki Koizumi 《Wireless Engineering and Technology》 2014年第1期19-24,共6页
In this paper, a wireless power transmission system using magnetic resonance coupling was proposed and demonstrated for supplying power at high efficiency to electrical devices in a space enclosed by metal walls. This... In this paper, a wireless power transmission system using magnetic resonance coupling was proposed and demonstrated for supplying power at high efficiency to electrical devices in a space enclosed by metal walls. This is applicable to power supply to electrical sensors or devices working in the area surrounded by metal walls. Proposed magnetic resonance coupling system is driven at a resonance frequency of 50 Hz, which is selected to avoid eddy current loss on the surrounding metals. Firstly, resonator designs and its performance limitation were described. Secondly, the equivalent circuits and theoretical transmission efficiency were presented. Finally, power transmission was experimentally demonstrated and transmission efficiency was measured in some conceivable situations. As a result, electric power of 3 W was supplied to LEDs over a stainless steel wall. When the stainless steel wall thickness was 10 mm, transmission efficiency of approximately 40% was achieved over the transmission distance of 12 cm. Moreover, in the demonstration of transmission through a metal pipe, 1.2 W of power was transmitted to LEDs in a 10 mm thick metal pipe. 展开更多
关键词 Magnetic SHIELDING EDDY Current LOSS AC 50 HZ Standard DEPTH of PENETRATION
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