Session Details

[B-2]宇宙・航行エレクトロニクス

Tue. Mar 5, 2024 1:45 PM - 5:00 PM JST
Tue. Mar 5, 2024 4:45 AM - 8:00 AM UTC
School of Engineering 117(HIROSHIMA UNIVERSITY Higashi-Hiroshima campus)
Chair:YOSHIHIKO AKAMINE, YOSHIKI TAKAHASHI

[B-2-01]Estimation and verification of respiration and heartbeat waveforms using mmWave MIMO FM-CW Radar

○Toshifumi Moriyama1, Mie Mie ko (1. Nagasaki University)
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[B-2-02]Evaluation of the effect of phase rotation of reflection points on angle spread estimation by BASE

○Yoshiki Takahashi1, Ryuhei Takahashi1, Tadashi Oshima1, Yasuhide Nonaka1 (1. Mitsubishi Electric)
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[B-2-03]Destination Inference for Radar Moving Target Using Identification of Ship Type

○Yasushi Obata1, Toshihiro Ito1 (1. Mitsubishi Electric Corp.)
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[B-2-04]Accuracy Verification of the Near-field to Far-field Transformation with a Multiple Reflection Target

○Toru TAKAKUMA1, Yoshihiko AKAMINE1, Takuma WATANABE2, Kazuya MATSUBAYASHI1, Makoto HIRANO1 (1. Acquisition, Technology & Logistics Agency, 2. Fujitsu System Integration Laboratories Ltd. (currently University of Toyama))
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[B-2-05]Spurious Signal Reduction in an Interference Environment Using Compressive Sensing

○Hozumi Okawa1, Takayuki Shimizu1 (1. ATLA)
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Break time

[B-2-06]Design of orthogonal waveforms on ResNet autoencoder for MIMO radar systems

○Ryota Sekiya1, Hiroki Mori1, Hiromi Hashimoto2, Junicihiro Suzuki2 (1. Research and Development Center, Toshiba Corporation, 2. Defense & Electronic Systems Division, Toshiba Infrastructure Systems & Solutions Corporation)
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[B-2-07]Actual equipment verification of the effectiveness ResNet autoencoder for MIMO radar

○Hiromi Hashimoto1, Koji Fujita1, Ryota Sekiya2, Hiroki Mori2, Junichiro Suzuki1 (1. Toshiba Infrastructure Systems & Solutions, 2. Toshiba)
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[B-2-08]A Basic Study on Improving Aircraft Target Detection Performance
Using Keystone Transform and Doppler Walk Correction in Ocean Radar

○Akira Matsuda1, Hiroyoshi Yamada1, Satoshi Fujii 2, Yasunori Osana3, Toru Uno 4, Arima Takuji4 (1. Niigata University, 2. University of the Ryukyus , 3. Kumamoto University, 4. Tokyo University of Agriculture and Technology)
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[B-2-09]Method of Maximum Bistatic Angle Estimation in Quasi-monostatic System Depending on Distance between Radar and Target

○Yoshihiko Akamine1, Takashi Tomura1, Jiro Hirokawa1 (1. Tokyo Institute of Technology)
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[B-2-10]Array Configuration Optimization Method Specifying Human Body Imaging for Millimeter Wave Radar

○Seungjae Lee1, Shouhei Kidera1 (1. The University of Electro-Communications)
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[B-2-11]CFAR based on Median Filter for Multiple Target Detection

○Yoshihiko Takeuchi1, Masahiro Umehira1, Akihiro Notake1, Shinjiro Obata1, Xiaoyan Wang2 (1. Nanzan University, 2. Ibaraki University)
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[B-2-12]Radar demonstration experiment for short-range ocean tide level measurement

○Yuichiro KoKogi1, Atsushi Mase1 (1. Fukuoka Institute of Technology)
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