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 Conference Papers (Available on Advance Programs)  (Sort by: Date Descending)
 Results 21 - 40 of 57 [Previous]  /  [Next]  
Committee Date Time Place Paper Title / Authors Abstract Paper #
MW, WPT 2018-04-27
13:05
Tokyo Kikai-Shinko-Kaikan Building Comparison of Soft-Starting Methods for Suppressing Start-up Current Overshoot in Wireless Power Transfer via Magnetic Resonance Coupling
Katsuhiro Hata, Takehiro Imura, Hiroshi Fujimoto, Yoichi Hori (Univ. of Tokyo) WPT2018-1 MW2018-1
Although in-motion wireless charging of electric vehicles has attracted a great deal of attention, its transient charact... [more] WPT2018-1 MW2018-1
pp.1-4
WPT
(2nd)
2017-12-09
- 2017-12-11
Overseas National University of Singapore(AWPT2017) Design and Analysis of Data Transmission System using Magnetic Resonance Wireless Power Transfer
Kouki Nakanishi, Masaki Ishii, Masahiro Sasaki (SIT)
We describes data transmission system using magnetic resonance wireless power transfer (MR-WPT). In MR-WPT, when the dri... [more]
WPT, EMCJ
(Joint)
2017-11-21
10:00
Tokyo Kikai-Shinko-Kaikan Bldg. Influence of a Feeding Antenna Position on the Power Transmission Efficiency of Magnetic Resonance Coupling type Wireless Power Transfer
Tatsuya Maruyama, Shota Yodogawa, Mimpei Morishita (Kogakuin Univ.) WPT2017-46
In order to widen the feeding range, we are studying a magnetic resonance coupling type wireless power transfer system u... [more] WPT2017-46
pp.11-14
NS, ASN, RCC, RCS, SR
(Joint)
2017-07-20
10:05
Hokkaido Hokkaido Univ. Three-dimensional Position Estimation Using Ellipse Approximation of the Magnetic Coupled Receiver
Takeru Miwa, Yuichi Miyaji, Hideyuki Uehara (Toyohashi Univ. of tech) ASN2017-26
The magnetic resonance coupling (MRC) method has been attracting attention as a technique of wireless power transfer (W... [more] ASN2017-26
pp.77-82
WPT 2017-06-12
14:50
Kagoshima Kagoshima Univ. Design of Output Power Characteristic and Maximization of Transmission Efficiency Considering Waiting Loss for Multi-Paralleled Dynamic Wireless Power Transfer
Kodai Takeda, Takafumi Koseki (Univ. of Tokyo) WPT2017-12
Electric Vehicle (EV) has a drawback such as short driving range. Dynamic wireless power transfer (DWPT) for EV has been... [more] WPT2017-12
pp.23-28
AP, WPT
(Joint)
2017-01-19
10:30
Hiroshima Hiroshima Institute of Technology Dual Wireless Power Transmission using Magnetic resonance coupling
Tatsuya Komukai, Wataru Takahashi, Ryo Sakano, Ryouichi Baba, Tamami Maruyama (National Institute of Technology, Hakodate College) WPT2016-46
This paper achieve dual wireless power transmission using magnetic resonance coupling using that magnetic energy yield s... [more] WPT2016-46
pp.23-26
AP, WPT
(Joint)
2017-01-19
10:50
Hiroshima Hiroshima Institute of Technology Examination of a Rectangular Coil Withstanding a Position Gap
Yuji Sakayanagi, Yoshihiko Kuwahara (Shizuoka Univ.) WPT2016-47
We examined a wireless power transmission using the rectangle coil which devised how to place on the transmission and re... [more] WPT2016-47
pp.27-32
EE, WPT
(Joint)
2016-10-06
11:05
Kyoto   An efficiency control technology of the magnetic field resonance type WPT system which optimizes storage battery charge
Yuto Honda, Yoshiki Tsuchida, Masahiro Fukui (Ritsumeikan Univ.) WPT2016-20
This paper describes the optimum magnetic field resonance type wireless power transmission system to the charging of the... [more] WPT2016-20
pp.1-6
WPT 2016-03-08
11:15
Kyoto Kyoto Univ. Uji Campus Measurement and Analysis of Ice and Snow Effect for Magnetic Resonance Wireless Power Transmission
Wataru Takahashi, Kenta Furuta, Shun Endo, Kazuki Nunokawa, Ryouichi Baba, Tamami Maruyam (National Institute of Technology, Hakodate College) WPT2015-90
Recently, wireless power transmission (WPT) to electric vehicles (EVs) in motion is attracting attention. When applying ... [more] WPT2015-90
pp.77-80
ICD, MW 2016-03-02
15:45
Hiroshima Hiroshima University [Special Talk] Distance Adaptation Method for Magnetic Resonance Coupling -- Active tuning in Variable Capacitor Loaded Parallel Wire Coils --
Kengo Sasaki (TCRDL), Shinya Sugiura (TUAT), Hideo Iizuka (TCRDL) MW2015-183 ICD2015-106
A range adaptive wireless transmission system via magnetic resonance coupling is proposed. The proposed system consists ... [more] MW2015-183 ICD2015-106
pp.55-59
AP, RCS, WPT, SAT
(Joint)
2015-11-05
14:00
Okinawa Okinawa Prefectural Museum & Art Museum Magnetic resonance wireless power transmission using a three-dimensional fractal loop
Hiroki Ishikawa, Yoshihiko Kuwahara (Shizuoka Univ.) WPT2015-56
Magnetic resonance wireless transmission using a fractal loop of the three-dimensional structure, was evaluated by simul... [more] WPT2015-56
pp.51-54
EE, WPT, IEE-SPC
(Joint) [detail]
2015-07-06
15:30
Kyoto   Application of Wireless Electromagnetic Resonance Power Transmission Technology to Rotary Transformer Used in Ultrasonic Spindle
Yafei Gao, Myoungsik Nam, Masahito Shoyama (Kyushu Univ.), Hideaki Fujita (Oriimec) WPT2015-39
Rotary transformer is used to supply power to non-contact ultrasonic spindle. For solving the problem that low voltage c... [more] WPT2015-39
pp.19-23
WPT 2015-06-12
17:50
Tokyo Univ. of Tokyo Receiver Localization Method Using TX/RX Power Resonators for a Wireless Power Transfer System with a 2D Resonator Array
Arata Hashizume, Yoshiaki Narusue, Yoshihiro Kawahara, Tohru Asami (UTokyo) WPT2015-33
Our goal is to realize a two-dimensional wireless power transmission system, which provides electrical power to all devi... [more] WPT2015-33
pp.69-74
WPT, MW 2015-04-17
09:30
Tokyo Kikai-Shinko-Kaikan Bldg. Wireless power transmission into the metal tube with axial slit
Kohei Shimamura (Univ. Tsukuba), Kimiya Komurasaki (UT) WPT2015-8 MW2015-8
Wireless power transfer using a metallic tube with axially slit was attempted to demonstrate WPT using magnetic resonanc... [more] WPT2015-8 MW2015-8
pp.39-44
EE, WPT
(Joint)
2014-11-19
10:25
Kyoto Doshisha University A Novel 6.78MHz Experimental Results of a ZVS Push-pull Class-E Direct-Current-Resonance Wireless Power Transfer
Toru Yoshikawa (Doshisha Univ.), Tatsuya Hosotani (Murata Manufacturing), Koji Fujiwara (Doshisha Univ.) WPT2014-58
The direct current resonance is a new technology that makes it possible to convert DC electric energy into electromagnet... [more] WPT2014-58
pp.43-48
AP, WPT
(Joint)
2014-10-15
15:20
Hokkaido Hokkaido University, Clark Memorial Student Center Study on Efficiency Improvement by Input Voltage Control for Wireless Power Transmission Using Magnetic Resonance
Yoshiaki Narusue, Yoshihiro Kawahara, Tohru Asami (Tokyo Univ.) WPT2014-36
Variations of a mutual inductance and a load resistance decrease power efficiency dramatically.
As a solution for this ... [more]
WPT2014-36
pp.5-10
EE 2014-01-23
14:20
Miyazaki MIYAZAKI KANKO HOTEL Analysis of Influence of the Harmonics in the Wireless Power Transmission Using a Rectangular-Wave Power Supply
Yuki Inoue, Yusuke Kawamura, Masahito Shoyama (Kyushu Univ.) EE2013-33
Research on wireless power transmission technologies have been attracting more attention after MIT introduced magnetic c... [more] EE2013-33
pp.13-18
WPT
(2nd)
2013-11-22
13:25
Kanagawa Yokosuka Research Park Behavior analysis when added a pulse and the square pulse voltage to a magnetic-coupled coil with the resonance
Hideaki Abe, Toshihiro Akiyama, Mamor Ozaki, Hiroshi Kohara, Toyohiko Tsujimoto, Hitoshi Kudo, Akira Yabuta (Panasonic)
In the field of wireless power transfer using electromagnetic induction, study approach is pushed forward in a variety o... [more]
WPT
(2nd)
2013-11-22
14:50
Kanagawa Yokosuka Research Park Experiment of Power Division Method for Multiple Receivers Using Excitation Loop-coil
Akiro Shimada, Yuichi Miyaji, Hideyuki Uehara, Takashi Ohira (Toyohashi Tech.)
In this paper, we study a power division on multi-hop wireless power transfer via magnetic resonant coupling to two rece... [more]
WPT
(2nd)
2013-11-22
15:50
Kanagawa Yokosuka Research Park Analysis of Effects from Proximate Objects of Coupling Coils for Magnetic Resonated Wireless Power Transfer
Masaya Ishida, Toshiaki Watanabe (TOYOTA CRDL)
In a wireless power transfer system via magnetic coupling resonance, the resonant frequency of the coils and the couplin... [more]
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