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University Exhibition

Booth No. U-25
University Exhibition 25

Kyoto Inst. of Tech., Microwave Engineering Lab.

Contact of Lab.
Matsugasaki, Sakyo-ku, Kyoto, Kyoto 606-8585, JAPAN
TEL : +81(75)724-7469  E-mail : simasaki@kit.ac.jp
[ Graduate School of Science and Tech., Dept. of Electronics, Microwave Engineering Lab. ]
Title
* Antenna Design for IoT and Wearable Devices
* Wave Propagation Characteristics on Farms and Underground Antennas
Highlight
Recent progress on wearable antennas using conductive textiles, antennas for wireless modules loaded on machine parts, underground antennas for wireless sensor networks, and wave propagation characteristics on farms, will be presented.
Booth No. U-26
University Exhibition 26

Aoyama Gakuin Univ., Suga Lab.

Contact of Lab.
5-10-1 Fuchinobe, Chuo-ku, Sagamihara-shi, Kanagawa 252-5258, JAPAN
TEL : +81(42)759-6526  E-mail : rsuga@ee.aoyama.ac.jp
[ College of Science and Engineering, Dept. of Electrical Engineering and Electronics, Suga Lab. ]
Title
* Rust Detection System for Reinforced Concrete wall
* Wave Absorber
* Permittivity Measurement in Millimeter-Wave Band
Highlight
The research results on the rust detection system developed to detect the deterioration of reinforced concrete buildings, the latest ultra-thin radio wave absorber, and dielectric constant measurement in the millimeter wave band will be exhibited.
Booth No. U-27
University Exhibition 27

Ryukoku Univ., Ishizaki Lab.

Contact of Lab.
1-5 Yokotani, Seta Oe-cho, Otsu, Shiga 520-2194, JAPAN
TEL : +81(77)543-7798  E-mail : ishizaki@rins.ryukoku.ac.jp
[ Faculty of Advanced Science and Tech., Dept. of Electronics, Ishizaki Lab. ]
Title
* Microwave Filter Technology
* High-Efficiency GaN Power Amplifier Technology
* Wireless Power Transfer Technology
* Millimeter-Wave Device and Circuit Technology
Highlight
We are comprehensively researching passive to active microwave devices used in mobile phone terminals and base stations. Also, we are researching wireless power transfer systems. Our goal is to provide total solutions that make future life convenient and have a great impact on society.
Booth No. U-28
University Exhibition 28

Tokyo City Univ., Integrated System Lab.

Contact of Lab.
1-28-1 Tamazutsumi, Setagaya-ku, Tokyo 158-8557, JAPAN
TEL : +81(3)5707-0104  E-mail : tshibata@tcu.ac.jp
[ Faculty of Engineering, Electrical, Dept. of Electronics and Communication Engineering, Integrated System Lab. ]
Title
* Wireless Power Transmission
* Position Estimation System using Machine Learning
* Swarm Intelligence Applied Circuit Optimization Technology
Highlight
In our laboratory, we are researching advanced circuit design of circuits and systems using machine learning and meta-heuristic optimization search methods. We will introduce these recent results.
Booth No. U-29
University Exhibition 29

Gifu Univ., Waseda Univ., Chiba Inst. of Tech.

Contact of Lab.
E-mail : secretary@sh-research-lab.com
Gifu Univ.
1-1 Yanagido, Gifu City, Gifu 501-1112, JAPAN
TEL : +81(58)293-2732
[ Dept. of Electrical, Electronic and Computer Engineering, Hisatake Lab. ]
Waseda Univ.
1-104 Totsukacho, Shinjuku-ku, Tokyo 169-0071, JAPAN
TEL : +81(3)5286-3386
[ School of Fundamental Science and Engineering, Dept. of Electronics and Physical System, Kawanishi Lab. ]
Chiba Inst. of Tech.
2-17-1 Tsudanuma, Narashino-shi, Chiba 275-0016, JAPAN
TEL : +81(47)478-0358
[ Dept. of information and Communication Systems Engineering, Hirata Lab. ]
Title
* Japan-EU Research on 300GHz THz Networks
Highlight
We are developing weatherproof terahertz transmitter/receiver that can operate outdoors and conducting long-term terahertz wireless communication experiments using them. In this exhibition, we would like to introduce the results obtained so far.
Booth No. U-30
University Exhibition 30

Kyoto Univ., Research Inst. for Sustainable Humanosphere, Shinohara Lab.

Contact of Lab.
Gokasho, Uji, Kyoto, 611-0011, JAPAN
TEL : +81(774)38-3807  E-mail : mitani.tomohiko.3u@kyoto-u.ac.jp
[ Research Inst. for Sustainable Humanosphere, Shinohara Lab. ]
Title
* Microwave Wireless Power Transfer and Microwave Heating
Highlight
Microwave wireless power transfer systems including antennas, magnetrons, rectifiers etc. and microwave heating systems are introduced.
Booth No. U-31
University Exhibition 31

Mie Univ. Graduate School of Engineering, High-Frequency Photonics Lab.

Contact of Lab.
1577 Kurima-Machiya-Cho, Tsu-City 514-8507, JAPAN
TEL : +81(59)231-6294  E-mail : otagaki@elec.mie-u.ac.jp
[ Graduate School of Engineering, Area of Electric and Electronic Engineering, High-Frequency Photonics Lab. ]
Title
* Wireless-Photonic Fusion Devices and Signal Processing Techniques for Beyond-5G Wireless Communications
* Non-Destructive Inspection for Underground Pipelines Utilizing Radio-Over-Fiber (RoF) and Radio-Over-Pipe (RoP) Techniques
* Millimeter-Wave Imaging Using Dielectric Lens for Security Applications
Highlight
We present our recent studies on wireless-optical signal conversion devices and low-latency signal processing techniques for 5G / Beyond-5G wireless communication systems, non-destructive inspection utilizing microwave guided-modes and radio-over-fiber schemes for underground pipelines, and imaging using W-band millimeter wave and dielectric lens for security applications.
Booth No. U-32
University Exhibition 32

Tohoku Univ., Suematsu Lab. / IT-21 Center

Contact of Lab.
2-1-1 Katahira, Aoba-ku, Sendai 980-8577, JAPAN
TEL : +81(22)217-5532  E-mail : tomoyuki.furuichi.b2@tohoku.ac.jp
[ Research Inst. of Electrical Communication, Suematsu Lab. and IT-21 Center ]
Title
* Direct Digital RF Technology and its Applications
Highlight
We have studied Direct digital RF technology beyond Nyquist frequency utilized high order Nyquist zone. In this exhibit, the principles of direct digital RF technology will be explained and its applications will be presented.
Booth No. U-33
University Exhibition 33

Tokyo Inst. of Tech., Takada Lab.

Contact of Lab.
S6-4, 2-12-1, O-okayama, Meguro-ku, Tokyo 152-8552, JAPAN
TEL : +81(3)5734-2551  E-mail : song.h.ac@m.titech.ac.jp
[ School of Environment and Society, Dept. of Transdisciplinary Science and Engineering, Takada Lab. ]
Title
* Detection of the Person Falling with the Wi-Fi Wireless LAN Signal
* Measurement of the Permittivity by Utilizing the mmWave Radar
Highlight
* A simplified 3D model representing the human body is constructed, and CSI is modeled using a radar scattering simulation method to investigate the micro Doppler shift during the person falling.
* The permittivity measurement system using the FMCW radar is developed. The measurement performance is evaluated with the acrylic board.
Booth No. U-34
University Exhibition 34

Toyohashi Univ. of Tech., Electromagnetic Wave Engineering Lab.

Contact of Lab.
1-1 Hibarigaoka, Tempakucho, Toyohashi, Aichi 441-8580, JAPAN
TEL : +81(532)44-6825  E-mail : tamura@ee.tut.ac.jp
[ Faculty of Engineering, Dept. of Electrical and Electronic Information Engineering, Electromagnetic Wave Engineering Lab. ]
Title
* Introduction of Wireless Power Transmission and Communication Technologies in Various Environments
Highlight
We will introduce the followings:
* Wireless power and data for smart factories.
* Wireless power and data transmission technology that can transmit power and information efficiently underwater and in vivo.
* Next-generation analog cancellation circuits for full-duplex communication.
Booth No. U-35
University Exhibition 35

Hiroshima Univ. Kameda Lab.

Contact of Lab.
1-4-2 Kagamiyama, Higashi-Hiroshima, Hiroshima 739-8527, JAPAN
TEL : +81(82)424-6268  E-mail : kameda3@hiroshima-u.ac.jp
[ Faculty of Research Inst. for Nanodevices, Kameda Lab. ]
Title
* Massive Connect IoT: Highly Efficient Wireless Communication Systems Using Space-Time Synchronization
Highlight
In our laboratory, two research projects for wireless communication systems using space-time synchronization are currently underway: (1) Innovative communication devices and their applications based on the ultimate time synchronization funded by NEDO, and (2) Integrated local B5G/6G for information and power transmission in an indoor environment funded by NICT.

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