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 Conference Papers (Available on Advance Programs)  (Sort by: Date Descending)
 Results 1 - 20 of 21  /  [Next]  
Committee Date Time Place Paper Title / Authors Abstract Paper #
CNR, BioX 2024-02-29
13:30
Tokyo NHK Science & Technology Research Laboratories
(Primary: On-site, Secondary: Online)
Design of Aerial dialing PIN code input authentication system using deep learning hand shape authentication
Jun Wang, Bo Wu, Kiminori Sato (TUT) BioX2023-70 CNR2023-37
With the continuous development of modern technology, the demand for contactless authentication is increasing, and a sim... [more] BioX2023-70 CNR2023-37
pp.1-6
EST 2022-05-19
15:45
Tokyo Kikai-Shinko-Kaikan Bldg.
(Primary: On-site, Secondary: Online)
High-precision heart rate measurement for multiple people using array radar imaging and principal component analysis
Itsuki Iwata, Takuya Sakamoto (Kyoto Univ.) EST2022-7
Millimeter-wave radar, which has a wide frequency bandwidth and a large number of array elements, has become increasingl... [more] EST2022-7
pp.34-37
MICT, EMCJ
(Joint)
2022-03-04
09:05
Online Online A Study on Non-contact Blood Pressure Estimation Method based on Subject Classification by Machine Learning
Shuzo Ishizaka, Kohei Yamamoto, Tomoaki Ohtsuki (Keio Univ.) MICT2021-101
Non-contact Blood Pressure (BP) measurement is receiving a lot of interest for BP measurement on a daily basis.
To rea... [more]
MICT2021-101
pp.1-6
MI, MICT [detail] 2021-11-05
14:05
Online Online Alzheimer Dementia Detection Based on Unstable Sinusoidal Component Extracted from Circadian Rhythm of Heart Rate by Trigonometric Approximation
Naoya Matsuda, Iko Nakari, Keiki Takadama (UEC) MICT2021-37 MI2021-35
We have proposed two Alzheimer dementia (AD) detection methods to establish a methodology using non-contact mattress sen... [more] MICT2021-37 MI2021-35
pp.43-48
MICT, MI 2020-11-04
14:20
Online Online Non-contact Blood Pressure Measurement using Doppler Radar based on Waveform Analysis by LSTM
Shuzo Ishizaka, Kohei Yamamoto, Tomoaki Ohtsuki (Keio Univ.) MICT2020-15 MI2020-41
Recently, non-contact blood pressure measurement is receiving a lot of interests because it is suitable
for the blood p... [more]
MICT2020-15 MI2020-41
pp.36-41
EA, US
(Joint)
2020-01-22
10:30
Kyoto Doshisha Univ. [Poster Presentation] Stirring for liquid in small container by aerial ultrasonic wave -- Some consideration on stirring principle --
Hayato Ueda, Ayumu Osumi, Youiti Itou (Nihon Univ.) US2019-73 EA2019-86
In this study, we investigated a non-contact stirring method for liquid in a small cell by high-intensity aerial ultraso... [more] US2019-73 EA2019-86
pp.17-21
EMCJ, IEE-EMC, IEE-MAG 2018-11-22
09:30
Overseas KAIST Study of Non-contact Heartbeat Sensing Method using EM Waves Passing through the Human Body
Kazutaka Mitsui, Jianqing Wang, Daisuke Anzai (NIT), Takashi Saito, Hiroyuki Mori, Shunsuke Shibata (SOKEN), Kouichi Yamada (DENSO) EMCJ2018-57
To prevent serious accidents caused by a driver getting sick, it is required to continuously monitor the driver’s health... [more] EMCJ2018-57
pp.3-5
EMCJ, MICT
(Joint)
2018-03-16
14:50
Tokyo Kikai-Shinko-Kaikan Bldg. Non-Contact Biometric authentication using Microwave Doppler Sensor
Takaaki Okano, Shintaro Izumi, Hiroshi Kawaguchi, Masahiko Yoshimoto (Kobe Univ.) MICT2017-54
In this paper, we propose a non-contact biometric authentication method using a microwave Doppler sensor. In the propose... [more] MICT2017-54
pp.17-20
US, EA
(Joint)
2018-01-23
13:00
Osaka   [Poster Presentation] Imaging of multiple defects in shallow layer of solid material under high-intensity aerial ultrasonic wave of wide-range irradiation
Yuriko Mukaiyama, Ayumu Osumi, Youichi Ito (Nihon Univ.) US2017-89
We have developed a non-contact and non-destructive inspection technology in solid materials using high-intensity aerial... [more] US2017-89
pp.39-43
US 2017-08-31
14:50
Kanagawa   All-in-one prototype of non-contact ultrasound thickness gauge
Kazuki Abukawa, Tomoo Sato (PARI), Akihiro Kobayashi (Micro Design), Toshinari Tanaka, Kazuhiro Shirai, Sayuri Matsumoto (PARI) US2017-54
It is important to check the steel-thickness of the coastal structure, such as the steel-pile quay wall and the pipe-pil... [more] US2017-54
pp.41-46
US 2017-02-21
16:25
Ibaraki   Thickness Reduction Detecting by Non-contact Resonance Method Using Air-coupled Ultrasonic
Yuusuke Tanaka, Yasuhiro Ohashi, Yukio Ogura (Japan Probe) US2016-127
The thickness of the specimen was measured by noncontact air-coupled ultrasonic. The thickness of the specimen was measu... [more] US2016-127
pp.37-42
MI, MICT 2016-09-16
16:40
Tokyo Koganei Campus, Tokyo University of Agriculture and Technology Improving Accuracy of Real-time Sleep Stage Estimation by Considering Personal Sleep Feature
Tomohiro Harada (Ritsumeikan Univ.), Takahiro Kawashima, Morito Morishima (Yamaha Corp.), Keiki Takadama (UEC) MICT2016-47 MI2016-61
This research proposes a novel method to estimate the sleep stage in real-time by heat rate obtained with a non-contact ... [more] MICT2016-47 MI2016-61
pp.63-68
US 2016-02-29
13:20
Tokyo Instiute of Industrial Science, the University of Tokyo Thinning Detection by Resonance Method Using Air-coupled Ultrasonic
Yuusuke Tanaka, Yasuhiro Ohashi, Yukio Ogura (Japan Probe) US2015-112
We developed measuring technique for thickness of structure by resonance method from one side without contacting. Ultras... [more] US2015-112
pp.23-27
US 2015-07-31
17:00
Osaka Nippon Paint Holdings Glass melting viscosity measurement under ultra-high temperature with open-type EMS system
Masanori Yasuda (Kyoto Electronics Manufacturing), Taichi Hirano, Keiji Sakai (Univ. of Tokyo) US2015-36
Electro-Magnetically Spinning (EMS) system applies remote torque to the probe in the sample in a non-contact manner, and... [more] US2015-36
pp.45-48
US 2013-07-29
00:20
Fukuoka Chikushi Campus, Kyushu University High accuracy measurement of low viscosity using Electromagnetically Revolving System
Yuhei Ohta, Yusuke Matsuura, Taichi Hirano, Keiji Sakai (Univ. of Tokyo) US2013-23
Recently, We developed new method to measure viscosity, ElectroMagnetically Spinning (EMS) viscometer. In this method, a... [more] US2013-23
pp.5-8
EMD 2012-12-21
16:10
Tokyo Kikai-Shinko-Kaikan Bldg. A study of non-contact measurements for PIM using Standing-Wave Coaxial Tube Method
Ming Wang, Daijiro Ishibashi, Nobuhiro Kuga (Yokohama Nat'l Univ.) EMD2012-96
In this study, in the standing-wave coaxial tube method, the sensitivity of a passive intermodulation (PIM) measurement ... [more] EMD2012-96
pp.33-36
US 2012-07-26
15:30
Kyoto KEM [Special Talk] Development of viscometer by Electro-Magnetically Spinning method.
Masanori Yasuda, Nami Kurauchi, Miki Nakamura (Kyoto Electronics Manufacturing), Maiko Hosoda (TDU), Taichi Hirano, Keiji Sakai (Univ. of Tokyo) US2012-24
Viscosity is one of the most important mechanical properties of liquid material referred to in various industrial proces... [more] US2012-24
pp.25-28
MBE, NC
(Joint)
2012-03-15
11:30
Tokyo Tamagawa University Simple Non-contact Respiration Measurement Using Active 3-D Sensor
Hirooki Aoki (Hiroshima City Univ.), Masaki Miyazaki, Hidetoshi Nakamura (Keio Univ.), Ryo Furukawa (Hiroshima City Univ.), Ryusuke Sagawa (AIST), Hiroshi Kawasaki (Kagoshima Univ.) MBE2011-126
We have examined a non-contact respiration measurement using the Kinect, that is 3D sensor based on structured light, in... [more] MBE2011-126
pp.101-106
US 2011-07-28
14:35
Kyoto Kyoto Electronics Manufacturing Co., Ltd. Variety of viscosity measurement of Electro-Magnetically Spinning system
Masanori Yasuda, Nami Kurauchi, Miki Nakamura (Kyoto Electronics Manufacturing), Taichi Hirano, Keiji Sakai (Univ. of Tokyo) US2011-29
By use of the Electro-Magnetically Spinning (EMS) method, we constructed a system that enables high accuracy measurement... [more] US2011-29
pp.39-41
US 2010-07-22
15:00
Tokyo Institute of Industrial Science, the University of Tokyo Application of viscosity measurement by Electro-Magnetically Spinning method
Masanori Yasuda, Nami Kurauchi, Miki Nakamura (Kyoto Electronics Manufacturing), Taichi Hirano, Keiji Sakai (Univ. of Tokyo) US2010-35
Viscosity is an essential mechanical property for the industrial use of liquid materials. The measurement technique of t... [more] US2010-35
pp.19-22
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