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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 #
SANE 2023-12-08
15:30
Overseas Surakarta, Indonesia
(Primary: On-site, Secondary: Online)
Development of Reconfigurable NLFM Chirp Generator using FPGA
Muhammad Hamka Ibrahim, Subuh Pramono (UNS), Josaphat Tetuko Sri Sumantyo (Chiba Univ) SANE2023-88
Nonlinear frequency modulation (NLFM) has advantages of suppressing the sidelobes. In this paper, the development of NLF... [more] SANE2023-88
pp.153-155
SANE, SAT
(Joint)
2023-03-02
10:10
Okinawa
(Primary: On-site, Secondary: Online)
Interference Detection Technique Using Index Calculated from Range Spectrum in Fast FMCW Radar
Yusuke Kitsukawa, Takahiro Horiguchi, Noriyuki Fukui, Eiji Taniguchi (Mitsubishi Electric) SANE2022-109
A Frequency Modulated Continuous Wave (FMCW) radar with fast-chirp can identify multi-target. This FMCW radar is require... [more] SANE2022-109
pp.60-63
EMCJ, MICT
(Joint)
2021-03-05
09:45
Online Online Improvement Method for False Detection caused by Electromagnetic Noise using Comparison of Received Signals in FMCW Radar
Yusuke Kitsukawa, Takahiro Horiguchi, Koichi Furuya, Noriyuki Fukui, Naofumi Yoneda (Mitsubishi Electric Corp.) EMCJ2020-74
A Frequency Modulated Continuous Wave (FMCW) radar with fast-chirp can identify multi-target. In this radar, the beat fr... [more] EMCJ2020-74
pp.13-16
SAT, SANE
(Joint)
2020-02-19
10:00
Okinawa   Multi-bit Δ-Σ Modulator Based DSP Transceiver for High Dynamic Range Chirp Radar System
Tomoki Abe, Yamao Yasushi (UEC) SANE2019-97
This paper proposes a novel digital signal processing (DSP) radar transceiver that consists of a multi-bit quadrature Δ-... [more] SANE2019-97
pp.1-6
SANE 2019-01-24
15:15
Nagasaki Nagasaki Prefectural Art Museum An Interference Suppression Technique in Fast-Chirp FMCW Radar by Transmission Signals with Random Repetition Interval
Yusuke Kitsukawa, Masashi Mitsumoto, Hiroyuki Mizutani, Noriyuki Fukui, Chiharu Miyazaki (Mitsubishi Electric Corp.) SANE2018-95
(To be available after the conference date) [more] SANE2018-95
pp.31-34
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
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
ITS, WBS, RCC 2017-12-15
14:20
Okinawa Tiruru/Okinawa Jichikaikan A Novel Iterative Inter-radar Interference Suppression Technique for Automotive FMCW Radars
Takuya Nozawa, Yuya Makino, Xiaoyan Wang, Masahiro Umehira (Ibaraki Univ.), Hiroshi Kuroda (Hitachi Automotive Systems) WBS2017-75 ITS2017-52 RCC2017-91
Research and development of advanced driver assistance and automated driving technologies have been actively conducted a... [more] WBS2017-75 ITS2017-52 RCC2017-91
pp.227-232
SR 2017-05-26
10:00
Tokyo Tokyo big sight [Technology Exhibit] Multi-Object Micro-Displacement Measurement by Multi-Spectral-Peak Radar Interferometry using Spectrum Phase Information
Kazumine Ogura, Shingo Yamanouchi, Daisuke Matsuo, Masayuki Ariyoshi (NEC) SR2017-21
We propose an approach to identify multiple objects based on Multi-Spectral-Peak Radar Interferometry using spectrum pha... [more] SR2017-21
pp.123-126
MWP 2017-05-11
15:35
Tokyo Kikai-Shinko-Kaikan Bldg. Interference Reduction by Frequency Chirp Speed Difference of FM-CW Linear Cell Radar
Kei Akama (Waseda Univ.), Keizo Inagaki (NICT), Kunihisa Jitsuno (Waseda Univ.), Atsushi Kanno (NICT), Tetsuya Kawanishi (Waseda Univ.) MWP2017-5
Linear cell radar systems can monitor large areas by using of many radar-units where interference between them would imp... [more] MWP2017-5
pp.25-29
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
MW 2016-05-20
11:10
Kyoto Kyoto Univ. A Fast Chirp Generation PLL-IC using Polarity Switching Loop Filter
Koji Tsutsumi, Eiji Taniguchi (Mitsubishi Electric) MW2016-19
A PLL (Phase Locked Loop) is used to generate frequency chirp signal for FMCW radars. The chirp generator using PLL has ... [more] MW2016-19
pp.47-50
MWP 2016-04-21
14:55
Tokyo Kikai-Shinko-Kaikan Bldg. broadband multi-cycle frequency-chirped terahertz pulse generation from PPLN
Junichi Hamazaki, Yoh Ogawa, Norihiko Sekine, Akifumi Kasamatsu, Atsushi Kanno, Naokatsu Yamamoto, Iwao Hosako (NICT) MWP2016-4
For light sources of broadband FM-CW radars in terahertz frequency region, structure-designed periodically poled lithium... [more] MWP2016-4
pp.13-17
LQE, EST, OPE, EMT, PN, MWP, IEE-EMT, PEM [detail] 2016-01-29
09:25
Hyogo   300-GHz FM-CW radar system by radio over fiber technique
Atsushi Kanno, Norihiko Sekine, Yoshinori Uzawa, Iwao Hosako (NICT), Tetsuya Kawanishi (Waseda Univ.) PN2015-87 EMT2015-138 OPE2015-200 LQE2015-187 EST2015-144 MWP2015-113
We demonstrate FM-CW radar system in 300-GHz band, which has possible broad bandwidth in radio domain, by radio over fib... [more] PN2015-87 EMT2015-138 OPE2015-200 LQE2015-187 EST2015-144 MWP2015-113
pp.331-334
US 2015-02-27
11:30
Kanagawa IHI Yokohama Efficient Realization of Super Resolution FM-Chirp Correlation Method Using Synthetic Aperture Scheme
Takayuki Wada, Kan Okubo, Norio Tagawa (Tokyo Metro. Univ.), Yoshiyasu Hirose (ITOCHU Techno-Solutions Corp.) US2014-97
This study addresses the efficient realization of super resolution FM-chirp correlation method (SCM) using synthetic ape... [more] US2014-97
pp.19-22
MWP 2014-04-17
10:45
Hokkaido Sapporo Convention Center W-band high-speed and broadband FM-CW signal generation using optical frequency quadrupling technique
Atsushi Kanno, Tetsuya Kawanishi (NICT) MWP2014-4
We configure and demonstrate broadband signal generation at 90-GHz band using optical modulation technologies. The frequ... [more] MWP2014-4
pp.17-20
US 2014-02-21
11:30
Tokyo Chofu Aerospace Center, Aerodrome Branch, JAXA FDA compensation of tissue harmonic imaging by AM modulation of FM chirp transmission signal
Takuya Hiraoka, Norio Tagawa, Kan Okubo (Toyko Metropolitan Univ.), Iwaki Akiyama (Doshisha Univ.) US2013-98
High definition of medical ultrasound images is strongly required. Recently, study of ultrasonic imaging using a second ... [more] US2013-98
pp.25-30
ED 2013-10-23
10:50
Hokkaido Enreisou, Hokkaido Univ. Performance of electronic frequency tuning magnetron and simulation result of radar detecting capability with this magnetron
Hideyuki Obata, Kuniyoshi Furumoto, Naoki Tsuji (New Japan Radio) ED2013-61
A technological development in the design of electronic frequency tuning pulsed magnetron has the potential to dramatica... [more] ED2013-61
pp.47-52
MW 2012-12-13
15:15
Yamanashi Univ. of Yamanashi Spurious level reduction method for FMCW signal source using PLL
Hideyuki Nakamizo, Kenichi Tajima, Kenji Kawakami (Mitsubishi Electric Corp.) MW2012-130
(To be available after the conference date) [more] MW2012-130
pp.19-23
US 2010-05-20
15:50
Tokyo Kikai-Shinko-Kaikan Bldg. A Stady of Band Expansion of Receiving Signal by Using Non Linear Frequency Modulated Signal
Dai Chimura, Ryo Toh, Seiichi Motooka (CIT) US2010-12
An approach of band expansion of receiving signal for measurement by ultrasonic is discussed. To acquire a receiving sig... [more] US2010-12
pp.27-30
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