LAPSE:2023.19679
Published Article
LAPSE:2023.19679
Automatic Resonance Compensation for Efficient WPT via Magnetic Resonance Coupling Using Flexible Coils
Sousuke Nakamura, Katsuki Baba, Takahiro Miyaura
March 9, 2023
Abstract
With the recent proliferation of mobile and wearable devices, wireless power transfer (WPT) has gained attention as an up-and-coming technology to charge these devices. In particular, WPT via magnetic resonance coupling has attracted considerable interest for day-to-day applications since it is harmless to the human body and has relatively long transmission distance. However, it was difficult to be installed into environment (e.g., utensils and furniture) and flexible objects in the living space since the use of flexible coils leads to the decrease in transmission efficiency due to the collapse of the resonance caused by coil deformation. Therefore, this study proposes an automatic resonance compensation system that automatically compensates the inductance variation caused by coil deformation using a circuit that can electronically control the equivalent capacitance (a capacity control circuit), and thereby maintains the resonant state. An experiment was conducted to verify whether the efficiency was maintained when the coil deformed. The results indicated a transmission efficiency nearly as high as that of the ideal resonant state as well as a highly responsive control, and therefore, the proposed system has a good potential for use in real-world applications.
Keywords
automatic resonance compensation, flexible coil, magnetic resonance coupling, wireless power transfer (WPT)
Subject
Suggested Citation
Nakamura S, Baba K, Miyaura T. Automatic Resonance Compensation for Efficient WPT via Magnetic Resonance Coupling Using Flexible Coils. (2023). LAPSE:2023.19679
Author Affiliations
Nakamura S: Faculty of Science and Engineering, Hosei University, Tokyo 184-1584, Japan [ORCID]
Baba K: Graduate School of Science and Engineering, Hosei University, Tokyo 184-1584, Japan [ORCID]
Miyaura T: Charging System Division, Engineering Department, DAIHEN Corporation, Osaka 532-1852, Japan
Journal Name
Energies
Volume
14
Issue
17
First Page
5254
Year
2021
Publication Date
2021-08-25
ISSN
1996-1073
Version Comments
Original Submission
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PII: en14175254, Publication Type: Journal Article
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LAPSE:2023.19679
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https://doi.org/10.3390/en14175254
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CC BY 4.0
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