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All Technical Committee Conferences (Searched in: All Years)
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Search Results: Conference Papers |
Conference Papers (Available on Advance Programs) (Sort by: Date Descending) |
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Committee |
Date Time |
Place |
Paper Title / Authors |
Abstract |
Paper # |
EMT, IEE-EMT |
2024-05-27 13:55 |
Tokyo |
The Institute of Electrical Engineers of Japan (Tokyo) |
Performance evaluation of non-destructive diagnosis of reinforced concrete using UWB radar Masahiko Nishimoto (Kumamoto Univ.), Yoshihiro Naka (Miyazaki Univ.), Kohichi Ogata (Kumamoto Univ.) EMT2024-4 |
[more] |
EMT2024-4 pp.19-23 |
EMT, IEE-EMT |
2023-11-10 09:30 |
Yamaguchi |
Kaikyo Messe Shimonoseki (Yamaguchi) |
Investigation of features for estimating the degree of corrosion of rebar using UWB radar Masahiko Nishimoto (Kumamoto Univ.), Yoshihiro Naka (Univ. Miyazaki), Kohichi Ogata (Kumamoto Univ.) EMT2023-75 |
[more] |
EMT2023-75 pp.70-74 |
EMT, IEE-EMT |
2022-11-18 10:20 |
Tokyo |
Kikai-Shinko-Kaikan Bldg. (Tokyo, Online) (Primary: On-site, Secondary: Online) |
Simulation of radar response from a non-uniformly corroded rebar Masahiko Nishimoto (Kumamoto Univ.), Yoshihiro Naka (Univ. Miyazaki), Kohichi Ogata (Kumamoto Univ.) EMT2022-55 |
[more] |
EMT2022-55 pp.65-68 |
EMT, IEE-EMT |
2021-11-05 10:50 |
Online |
Online (Online) |
Corrosion state estimation by a phase shift parameter of radar response Masahiko Nishimoto, Budiman Rohman (Kumamoto Univ.), Yoshihiro Naka (Univ. Miyazaki), Kohichi Ogata (Kumamoto Univ.) EMT2021-42 |
[more] |
EMT2021-42 pp.71-75 |
EMT, IEE-EMT |
2019-11-07 16:55 |
Saga |
Hotel Syunkeiya (Saga) |
Modeling of corroded rebar in concrete Masahiko Nishimoto, Budiman P. A. Rohman, Dion Hayu Fandiantoro, Kohichi Ogata (Kumamoto Univ.) EMT2019-60 |
[more] |
EMT2019-60 pp.141-144 |
SP |
2014-11-14 09:50 |
Fukuoka |
Kyushu Univ. Chikushi Campus (Fukuoka) |
Application of a vocal tract mapping interface to inverse estimation of vocal tract shapes Kohichi Ogata, Tayuto Kodama, Tomohiro Hayakawa (Kumamoto Univ.) SP2014-99 |
This paper describes the application of a vocal tract mapping interface to inverse estimation of vocal tract shapes. The... [more] |
SP2014-99 pp.53-58 |
SP |
2012-11-08 16:30 |
Miyagi |
Ichibancho Lobby, Tohoku Institute of Technology (Miyagi) |
One-click vocal tract mapping interface and its applications to signal conversion Kohichi Ogata, Kentaro Yamashita (Kumamoto Univ.) SP2012-81 |
This paper describes the development of a vocal tract mapping interface to produce vowel sounds. The interface is a kind... [more] |
SP2012-81 pp.55-60 |
SP |
2010-06-17 15:15 |
Fukuoka |
Kyushu University (Fukuoka) |
Education in signal processing using learning management system Kohichi Ogata, Tsuyoshi Usagawa (Kumamoto Univ.) SP2010-24 |
This paper introduces education in signal processing using a learning management system in the Department of Computer Sc... [more] |
SP2010-24 pp.13-18 |
SP |
2008-10-23 14:00 |
Kumamoto |
Kumamoto Univ. (Kumamoto) |
Speech synthesis based on a transmission line model
-- Development of an adjustment function for phoneme duration -- Mamio Hokazono, Kohichi Ogata (Kumamoto Univ.) SP2008-58 |
A speech synthesis system that simulates speech production process; generation of sound source, articulation and radiati... [more] |
SP2008-58 pp.13-18 |
EMT, OPE, MW |
2007-08-02 14:55 |
Hokkaido |
Muroran Institute of Technology (Hokkaido) |
GPR signal analysis for classification of buried objects
-- Application of Support Vector Machines for target classification -- Masahiko Nishimoto, Hikaru Kitajima, Yuuki Nishina, Kohichi Ogata (Kumamoto Univ.) MW2007-52 OPE2007-39 |
Identification of shallowly buried landmines using ground penetrating radar (GPR) data is studied. Three kinds of featur... [more] |
MW2007-52 OPE2007-39 pp.59-63 |
MBE |
2006-01-27 11:40 |
Kumamoto |
(Kumamoto) |
Quantitative evaluation of finger-nose test by using a 3-D motion capture system Tadashi Toume, Kohichi Ogata, Toshitaka Kawasoe, Hitomi Nakazato (Kumamoto Univ.), Ryoji Nakanishi (Kumamoto Kinoh Hospital) |
This paper describes quantitative evaluation of finger-nose test by using a 3-D motion capture system developed by the a... [more] |
MBE2005-111 pp.17-20 |
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