| Paper Abstract and Keywords |
| Presentation |
2024-01-19 11:20
Equivalent circuit model of Probe With Variable Reactance mounted on Cavity Resonance-Enabled WPT Yuki Tanaka, Yoshinobu Tamura (TUT), Hiromasa Saeki (Murata Manufacturing Co., Ltd.), Tamura Masaya (TUT) WPT2023-34 |
| Abstract |
(in Japanese) |
(See Japanese page) |
| (in English) |
Cavity Resonance-Enabled Wireless Power Transfer(CR-WPT) has been proposed as a method of supplying power to sensors for smart factories.
From our previous work, it is found that high efficiency can be achieved by inserting a reactance probe with a reactance circuit connected to the end of a monopole from the cavity wall and adjusting the reactance value appropriately.
In this report, an equivalent circuit of reactance probes was investigated to improve the efficiency of CR-WPT system design.
Both the power receiver and the reactance probe share identical monopole lengths.
The proposed equivalent circuit model is portrayed as an extension of the conventional equivalent circuit model, encompassing solely a transmitter and a receiver.
Outcomes from electromagnetic field analysis indicate that the model is capable of simulating a specific CR-WPT system.
In future work, a more broadly applicable equivalent circuit model will be constructed. |
| Keyword |
(in Japanese) |
(See Japanese page) |
| (in English) |
Cavity Resonance-Enabled Wireless Power Transfer / Equivalent circuit / Reactance Probe / / / / / |
| Reference Info. |
IEICE Tech. Rep., vol. 123, no. 337, WPT2023-34, pp. 23-27, Jan. 2024. |
| Paper # |
WPT2023-34 |
| Date of Issue |
2024-01-10 (WPT) |
| ISSN |
Online edition: ISSN 2432-6380 |
Copyright and reproduction |
All rights are reserved and no part of this publication may be reproduced or transmitted in any form or by any means, electronic or mechanical, including photocopy, recording, or any information storage and retrieval system, without permission in writing from the publisher. Notwithstanding, instructors are permitted to photocopy isolated articles for noncommercial classroom use without fee. (License No.: 10GA0019/12GB0052/13GB0056/17GB0034/18GB0034) |
| Download PDF |
WPT2023-34 |
| Conference Information |
| Committee |
AP WPT |
| Conference Date |
2024-01-17 - 2024-01-19 |
| Place (in Japanese) |
(See Japanese page) |
| Place (in English) |
Tokimate, Niigata University |
| Topics (in Japanese) |
(See Japanese page) |
| Topics (in English) |
Radio propagation, Wireless transmission technology, Antennas and Propagation |
| Paper Information |
| Registration To |
WPT |
| Conference Code |
2024-01-AP-WPT |
| Language |
Japanese |
| Title (in Japanese) |
(See Japanese page) |
| Sub Title (in Japanese) |
(See Japanese page) |
| Title (in English) |
Equivalent circuit model of Probe With Variable Reactance mounted on Cavity Resonance-Enabled WPT |
| Sub Title (in English) |
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| Keyword(1) |
Cavity Resonance-Enabled Wireless Power Transfer |
| Keyword(2) |
Equivalent circuit |
| Keyword(3) |
Reactance Probe |
| Keyword(4) |
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| Keyword(5) |
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| 1st Author's Name |
Yuki Tanaka |
| 1st Author's Affiliation |
Toyohashi University of Technology (TUT) |
| 2nd Author's Name |
Yoshinobu Tamura |
| 2nd Author's Affiliation |
Toyohashi University of Technology (TUT) |
| 3rd Author's Name |
Hiromasa Saeki |
| 3rd Author's Affiliation |
Murata Manufacturing Company, Limited (Murata Manufacturing Co., Ltd.) |
| 4th Author's Name |
Tamura Masaya |
| 4th Author's Affiliation |
Toyohashi University of Technology (TUT) |
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| Speaker |
Author-1 |
| Date Time |
2024-01-19 11:20:00 |
| Presentation Time |
25 minutes |
| Registration for |
WPT |
| Paper # |
WPT2023-34 |
| Volume (vol) |
vol.123 |
| Number (no) |
no.337 |
| Page |
pp.23-27 |
| #Pages |
5 |
| Date of Issue |
2024-01-10 (WPT) |