IEICE Technical Committee Submission System
Conference Schedule
Online Proceedings
[Sign in]
Tech. Rep. Archives
    [Japanese] / [English] 
( Committee/Place/Topics  ) --Press->
 
( Paper Keywords:  /  Column:Title Auth. Affi. Abst. Keyword ) --Press->

All Technical Committee Conferences  (Searched in: All Years)

Search Results: Conference Papers
 Conference Papers (Available on Advance Programs)  (Sort by: Date Descending)
 Results 41 - 60 of 123 [Previous]  /  [Next]  
Committee Date Time Place Paper Title / Authors Abstract Paper #
EA, SIP, SP 2019-03-15
15:15
Nagasaki i+Land nagasaki (Nagasaki-shi) A Basic Study on Azimuth Estimation Model of Sound Image in Car Cabin by Using a Gammachirp Auditory Filterbank
Koji Sakamoto (Denso Ten Technology), Masashi Nakamura, Masanobu Maeda (Denso Ten) EA2018-159 SIP2018-165 SP2018-121
Accuracy verification of azimuth estimation of sound image was performed by applying the frequency domain binaural model... [more] EA2018-159 SIP2018-165 SP2018-121
pp.353-358
EMM 2019-03-13
15:15
Okinawa TBD [Poster Presentation] Study on inaudible audio information hiding using linear-time variant IIR filter based on cochlear delay characteristics
Candy Olivia Mawalim, Masashi Unoki (JAIST) EMM2018-108
In this paper, an inaudible audio information hiding based on cochlear delay (CD) characteristics is developed by using ... [more] EMM2018-108
pp.89-94
PN, EMT, OPE, EST, MWP, LQE, IEE-EMT [detail] 2019-01-18
11:40
Osaka Osaka University Nakanoshima Center Dual-Parallel Electro-Optic Modulator Integrated with Microwave Hybrid Circuit for Compensation of Third-Order Inter Modulation Distortion
Yuta Kashiwagi, Daichi Furubayashi, Tadashi Kawai, Akira Enokihara (Univ. of Hyogo), Yukako Takizawa (Hyogo Pref. Inst. Tech.), Naokatsu Yamamoto (NICT), Tetsuya Kawanishi (Waseda Univ.) PN2018-59 EMT2018-93 OPE2018-168 LQE2018-178 EST2018-106 MWP2018-77
A new optical compensation method of the third-order intermodulation distortion (IMD3) was proposed, we considered to mi... [more] PN2018-59 EMT2018-93 OPE2018-168 LQE2018-178 EST2018-106 MWP2018-77
pp.161-165
EMM 2019-01-11
09:30
Miyagi Tohoku Univ. Study on audio information hiding using linear-time variant IIR filter based on cochlear delay characteristics
Candy Olivia Mawalim, Masashi Unoki (JAIST) EMM2018-85
This paper proposes a method of blind detection on audio information hiding technique based on the characteristics of th... [more] EMM2018-85
pp.19-24
WIT, SP 2018-10-27
16:50
Fukuoka Kyushu Institute of Technology(Kitakyushu) Implementation of hearing impairment simulator based on the gammachirp auditory filterbank and its educational application
Toshie Matsui (TUT), Hideki Banno (Meijo Univ.), Ryuichi Nisimura, Toshio Irino (Wakayama Univ.) SP2018-38 WIT2018-26
We have developed and improved a hearing impairment (HI) simulator that allows normal hearing people to experience diffi... [more] SP2018-38 WIT2018-26
pp.31-36
IEE-CMN, EMM, LOIS, IE, ITE-ME [detail] 2018-09-28
13:40
Oita Beppu Int'l Convention Ctr. aka B-CON Plaza Study on speech representation for speech fingerprint using perceptual matching-pursuit algorithm
Dung Kim Tran, Huy Quoc Nguyen, Masashi Unoki (JAIST) LOIS2018-20 IE2018-40 EMM2018-59
Recent studies have revealed the weakness of audio fingerprinting methods in speech signals. The problem is that spectro... [more] LOIS2018-20 IE2018-40 EMM2018-59
pp.71-76
MWP
(2nd)
2018-08-06 Shimane Shimane Prefectural Convention Center (Matsue City) Parallel Mach-Zehnder Modulator Characterization Method using Simultaneous Transcendental Equations
Hugo S. C. Freire (Waseda Univ.), Keizo Inagaki (NICT), Tetsuya Kawanishi (Waseda Univ.)
Parallel Mach-Zehnder optical modulators have imperfections that affect the generation of high-order modulation signals.... [more]
EA, ASJ-H, ASJ-AA 2018-07-24
13:00
Hokkaido Hokkaido Univ. [Poster Presentation] Study on power saving audio playback consider auditory characteristics -- Subjective evaluation under noisy environments --
Mitsuhiro Nakagawara (Panasonic), Tsukasa Nakashima, Mizumachi Mitsunori (KIT) EA2018-8
Music appreciation can be achieved with a variety of manners such as smartphones, portable music players, car audio, and... [more] EA2018-8
pp.41-46
PN 2018-03-06
11:20
Kagoshima Minami Tanemachi Shoko Kaikan Optical Regenerator using frequency chirp in a QD-SOA
Genma Ito, Motoharu Matsuura (UEC) PN2017-107
Recently, with the demand for high-speed network, optical regenerator is an essential function for supporting high-speed... [more] PN2017-107
pp.105-110
ICD, MW 2018-03-02
13:50
Shiga The University of Shiga Prefecture An identification method of interference signals by phase shift of chirp signal in FMCW radar using PLL
Hideyuki Nakamizo, Kenichi Tajima (Mitsubishi Electric Corporation) MW2017-195 ICD2017-119
It is difficult for a receiver of FMCW radar to distinguish a desired reflected FMCW signal from undesired interference ... [more] MW2017-195 ICD2017-119
pp.103-107
SAT, SANE
(Joint)
2018-02-22
10:25
Yamaguchi The Yamaguchi Chamber of Commerce and Industry Target Ranging Method Using the Non-uniformly Spaced Frequency Band
Kazuaki Maniwa, Satoshi Kageme, Teruyuki Hara (MELCO) SANE2017-109
Synthetic bandwidth radar system, which receive target signals with different center frequencies and synthesizes the rec... [more] SANE2017-109
pp.1-5
SANE 2018-01-25
17:00
Nagasaki Nagasaki Prefectural Art Museum Co-channel Interference among FMCW Radars Using Various Chirp Rates
Yuya Makino, Takuya Nozawa, Masahiro Umehira, Xiaoyan Wang, Shigeki Takeda (Ibaraki Univ.), Hiroshi Kuroda (HiAMS Ltd.) SANE2017-96
Research and development of ADAS (Advanced Driver Assistance Systems) and automatic driving technologies have been condu... [more] SANE2017-96
pp.59-64
MWP, OPE, EMT, MW, EST, IEE-EMT [detail] 2017-07-21
09:00
Hokkaido Obihiro Chamber of Commerce and Industry Optical frequency comb generation by electro-optic chirp modulator integrated with microwave power splitter circuit
Naoki Maeda, Ryota Nakamura, Tadashi Kawai, Akira Enokihara (Univ. of Hyogo), Naokatsu Yamamoto (NICT), Tetsuya Kawanishi (Waseda Univ.) EMT2017-27 MW2017-52 OPE2017-32 EST2017-29 MWP2017-29
The generation conditions of the frequency comb signals that are composed of relatively small number, seven or nine, of ... [more] EMT2017-27 MW2017-52 OPE2017-32 EST2017-29 MWP2017-29
pp.111-116
NS, ASN, RCC, RCS, SR
(Joint)
2017-07-21
13:20
Hokkaido Hokkaido Univ. Demodulation Method of LPWA (Chirp Spread Spectrum)Signals and Multi-hop Transmisson Method -- Proposal of a Packet Collision Avoidance of CSS Signals and CSS-Packet Forwarding Method --
Yoshihiko Takeuchi (JRC), Chun-Hao Liao, Makoto Suzuki, Hiroyuki Morikawa (The Univ. of Tokyo) RCC2017-46 NS2017-63 RCS2017-138 SR2017-61 ASN2017-54
In this work, we investigate a LPWA communication system that combines the chirp spread spectrum (CSS) and M-ary FSK mod... [more] RCC2017-46 NS2017-63 RCS2017-138 SR2017-61 ASN2017-54
pp.179-184(RCC), pp.169-174(NS), pp.233-238(RCS), pp.191-196(SR), pp.205-210(ASN)
LQE, LSJ 2017-05-25
15:40
Ishikawa   [Invited Talk] Ultra-high intensity, repetitive J-KAREN-P laser system at QST
Hiromitsu Kiriyama, Mamiko Nishiuchi, Alexander Pirozhkov, Yuji Fukuda, Hironao Sakaki, Akito Sagisaka, Nicholas Dover, Kotaro Kondo, Keita Nishitani, Koichi Ogura, Michiaki Mori, Yasuhiro Miyasaka, Masaki Kando, Kiminori Kondo (QST) LQE2017-5
The OPCPA/Ti:sapphire hybrid laser system (named J-KAREN-P laser system) at QST is an infrastructure aiming to realize e... [more] LQE2017-5
pp.21-23
PN 2017-03-07
14:15
Okinawa Ohama Nobumoto Memorial Hall (Okinawa) Optical Quantization Using Frequency Chirp in a QD-SOA
Norihiko Ninomiya, Shohei Amemiya, Hiroki Hoshino, Motoharu Matsuura (UEC) PN2016-104
We present a novel optical quantization method using frequency chirp in a quantum-dot semiconductor optical amplifier. A... [more] PN2016-104
pp.119-123
MW, ICD 2017-03-02
14:25
Okayama Okayama Prefectural Univ. Linearity Improvement Method of Fast-Chirp Signal for PLL by Using Frequency Detector and Division Ratio Modification
Osamu Wada, Hiroyuki Mizutani, Hideyuki Nakamizo, Kenichi Tajima (Mitsubishi Electric corp.) MW2016-197 ICD2016-127
A fast-chirp signal generated by a PLL is distorted by its transient characteristic and it has overshooting around turn-... [more] MW2016-197 ICD2016-127
pp.51-54
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
SANE 2016-11-25
10:00
Overseas National Taipei University of Technology (NTUT) FPGA-Based Chirp Signals Generator for Synthetic Aperture Radar (SAR) Applications
Ren-Bang Lin, Chieh-Fu Chang, Ming-Hwang Shie (NARL- NSPO) SANE2016-89
This paper introduces the design and development of a FPGA-based chirp signals generator in NSPO, Taiwan, for SAR applic... [more] SANE2016-89
pp.199-202
MWP 2016-11-14
15:45
Tokyo Kikai-Shinko-Kaikan Bldg. Compensation of Third-Order Inter Modulation Distortion of Electro-Optic Modulator by Using Frequency Chirp Modulation
Kousuke Takase, Sachiko Maeda, Tadashi Kawai, Akira Enokihara (Univ. Hyogo), Yukako Takizawa (HITec), Naokatsu Yamamoto (NICT), Tetsuya Kawanishi (Waseda Univ.) MWP2016-51
A new method where the third-order intermodulation distortion (IMD3) is optically compensated by using the frequency-chi... [more] MWP2016-51
pp.47-50
 Results 41 - 60 of 123 [Previous]  /  [Next]  
Choose a download format for default settings. [NEW !!]
Text format pLaTeX format CSV format BibTeX format
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)


[Return to Top Page]

[Return to IEICE Web Page]


The Institute of Electronics, Information and Communication Engineers (IEICE), Japan