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 Conference Papers (Available on Advance Programs)  (Sort by: Date Descending)
 Results 1 - 20 of 74  /  [Next]  
Committee Date Time Place Paper Title / Authors Abstract Paper #
PN, NS, OCS
(Joint)
2021-06-24
10:45
Online   Study of underwater optical wireless communication system using data-rate adaptive time-domain hybrid PAM
Kobori Fumiya, Muhamad Aizat, Keita Tanaka (Kagawa Univ.), Yoshiaki Inoue (Osaka Univ.), Tomotaka Kimura (Doshisha Univ.), Masahiko Jinno, Takahiro Kodama (Kagawa Univ.)
(To be available after the conference date) [more]
RCS 2021-06-24
13:30
Online Online Comparison of Differential OFDM Systems Employing Multiple Differential Detection with Channel Prediction in Doubly Selective Channels
Taichi Fujita, Kota Iwamoto, Hiroshi Kubo (Ritsumeikan Univ.)
(To be available after the conference date) [more]
RCS 2021-06-24
13:40
Online Online A Transmission Efficiency Improvement Scheme for Software Acoustic MODEMs of Differential OFDM
Koki Toyoda, Hiroshi Kubo (Ritsumeikan Univ.)
(To be available after the conference date) [more]
UWT
(2nd)
2021-06-15
13:30
Online   [Invited Talk] Experiment on Radio Communications under Seawater
Ryotaro Suga, Takizawa Kenichi, Matsuda Takashi (NICT)
In recent years, the use of radio waves in seawater has become attractive research fields regarding remote sensing, wire... [more]
SIS 2021-03-04
09:40
Online Online Development of underwater sound wave propagation simulator handling sound source movement and element directivity
Kouhei Suzuki, Shingo Yoshizawa (Kitami Inst. of Tech.) SIS2020-37
Communication performance and position accuracy in underwater acoustic communication and localization are affected by so... [more] SIS2020-37
pp.11-14
OCS, CS
(Joint)
2021-01-14
16:10
Online Online Performance degradation induced by Floating Matters in Underwater Wireless Optical Communication Systems
Ryoko Yoshino, Keiko Fujii (Japan Women's Univ. High School), Takayuki Yoshino (Tokyo Denki Univ.) OCS2020-33
This research is concerning technology of underwater wireless optical communication systems and aimed to reveal the effe... [more] OCS2020-33
pp.33-36
ITS, WBS, RCC 2020-12-14
15:15
Online Online A study of CSK constellation point design for Underwater SLIPT using Time Splitting receiver
Takuma Kogo, Yusuke Kozawa, Hiromasa Habuchi (Ibaraki Univ.) WBS2020-19 ITS2020-15 RCC2020-22
Simultaneous light wave information and power transfer (SLIPT) plays an important role in constructing a flexible underw... [more] WBS2020-19 ITS2020-15 RCC2020-22
pp.61-66
RCS, AP, UWT
(Joint)
2020-11-26
11:20
Online Online [Invited Lecture] Adaptive digital down-conversion for underwater acoustic communication
Mitsuyasu Deguchi, Yukihiro Kida, Takuya Shimura (JAMSTEC) AP2020-86 RCS2020-125
In underwater acoustic communication, effects of the Doppler shift is much larger than that of the radio communication i... [more] AP2020-86 RCS2020-125
pp.72-77(AP), pp.87-92(RCS)
RCS, AP, UWT
(Joint)
2020-11-26
11:45
Online Online [Invited Lecture] Undersea optical wireless communication technology and its expansion to novel networks
Takahiro Kodama (Kagawa Univ.), Yoshiaki Inoue (Osaka Univ.), Tomotaka Kimura (Doshisya Univ.) AP2020-87 RCS2020-126
Research and development of underwater optical wireless communication, which is excellent in large-capacity communicatio... [more] AP2020-87 RCS2020-126
pp.78-82(AP), pp.93-97(RCS)
RCS, AP, UWT
(Joint)
2020-11-27
09:25
Online Online Differential OFDM Employing Joint Detection for Underwater Acoustic Communications
Hiroshi Kubo, Yuka Tanaka, Yui Nakai, Tetsuro Kubo, Haruka Toyota, Yoshitaka Yamamoto, Kouki Toyoda (Ritsumeikan Univ.) AP2020-89 RCS2020-131
his paper discusses differential orthogonal frequency division multiplexing (OFDM) employing joint detection (JD) for un... [more] AP2020-89 RCS2020-131
pp.84-89(AP), pp.116-121(RCS)
MIKA
(3rd)
2020-10-09
13:30
Niigata
(Primary: On-site, Secondary: Online)
[Invited Talk] Research and Development of 3 Acoustic OFDM Underwater Communication systems and their applications
Tomohisa Wada (Ryukyu Univ.)
This report shows three underwater OFDM acoustic communication systems. The first is deep sea to surface vertical commun... [more]
SIS, ITE-BCT 2020-10-01
14:50
Online Online Experimental Evaluation of Transmit Beamforming Using Retrodirective System in Underwater Acoustic Communication
Aoi Nagano, Shingo Yoshizawa (Kitami Inst. Tech.) SIS2020-18
Beamforming is a technology that concentrates wave energy in a specific direction by using an element array. It enables ... [more] SIS2020-18
pp.44-47
CQ, CS
(Joint)
2020-06-26
14:50
Online Online [Special Invited Talk] An initial study of seafloor optical wireless access/core network
Takahiro Kodama (Kagawa Univ.), Yoshiaki Inoue (Osaka Univ.), Tomotaka Kimura (Doshisya Univ.) CS2020-13 CQ2020-20
Seafloor optical wireless networks will become necessary in the development of undersea exploration technologies such as... [more] CS2020-13 CQ2020-20
pp.53-58(CS), pp.97-102(CQ)
NS, IN
(Joint)
2020-03-06
13:00
Okinawa Royal Hotel Okinawa Zanpa-Misaki
(Cancelled but technical report was issued)
5G Experiment for Remote Control System of Underwater Drone Using 28GHz Band
Yuki Hokazono, Noriaki Minamida, Yuji Aburakawa (NTT DOCOMO), Ping Du, Akihiro Nakao (UTokyo) NS2019-241
In November 2019, NTT DOCOMO and Nakao Laboratory, Graduate School of Interdisciplinary Information Studies, The Univers... [more] NS2019-241
pp.359-364
NS, IN
(Joint)
2020-03-06
13:20
Okinawa Royal Hotel Okinawa Zanpa-Misaki
(Cancelled but technical report was issued)
Implementation of Heterogeneous High-bandwidth and Low-latency Mobile Applications with Low-cost Commercial Equipment for 5G networks
Yujie Zhen, Ping Du, Akihiro Nakao (UT), Yuki Hokazono, Noriaki Minamida, Yuji Aburakawa (docomo) NS2019-242
There is a consensus that 5G wireless system supports three types
of services classified as enhanced mobile broadband (... [more]
NS2019-242
pp.365-370
IT, SIP, RCS 2020-01-24
12:35
Hiroshima Hiroshima City Youth Center Differential Orthogonal Frequency-Division Multiplexing Employing AFC for Time-Varying Doppler Shifts in Underwater Acoustic Communications
Yui Nakai, Yuka Tanaka, Hiroshi Kubo (Ritsumeikan Univ.) IT2019-70 SIP2019-83 RCS2019-300
This paper proposes differential orthogonal frequency division multiplexing (OFDM) employing automatic frequency control... [more] IT2019-70 SIP2019-83 RCS2019-300
pp.197-202
IT, SIP, RCS 2020-01-24
13:00
Hiroshima Hiroshima City Youth Center Performance of Doubly Differential OFDM Employing an Intercarrier Interference Self-Canceller for Underwater Acoustic Communications
Yuka Tanaka, Yui Nakai, Hiroshi Kubo (Ritsumeikan Univ.) IT2019-71 SIP2019-84 RCS2019-301
This paper proposes doubly differential orthogonal frequency division multiplexing (OFDM) for underwater acoustic commun... [more] IT2019-71 SIP2019-84 RCS2019-301
pp.203-208
NS, RCS
(Joint)
2019-12-19
15:40
Tokushima Tokushima Univ. [Invited Lecture] Toward the Realization of the Physical Infrastructure of Seafloor Optical Wireless Communication Networks
Takahiro Kodama (Kagawa Univ.), Yoshiaki Inoue (Osaka Univ.), Tomotaka Kimura (Doshisha Univ.) NS2019-146 RCS2019-249
The spread of information and communication terminals for seabed resource exploration and seafloor topography observatio... [more] NS2019-146 RCS2019-249
pp.63-67
NS, RCS
(Joint)
2019-12-19
16:05
Tokushima Tokushima Univ. Optimal Relay Placement for Seafloor Optical Wireless Networks
Yoshiaki Inoue (Osaka Univ.), Takahiro Kodama (Kagawa Univ.), Tomotaka Kimura (Doshisha Univ.) NS2019-147 RCS2019-250
For underwater communications, acoustic wireless channels have conventionally been regarded as main media because of the... [more] NS2019-147 RCS2019-250
pp.69-74
SIS 2019-12-12
13:30
Okayama Okayama University of Science Acoustic Propagation Modeling with Time Varying Elements for Simulations in Underwater Acoustic Communication
Shun Sakamoto, Kohei Suzuki, Shingo Yoshizawa (Kitami Inst. of Tech.), Tomoya Tsukui (IHI), Takashi Saito (Mitsubishi Electric TOKKI) SIS2019-23
Underwater acoustic communication is used for remote control and information transmission in remotely operated vehicle (... [more] SIS2019-23
pp.1-4
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