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Minoru Inomata
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2020 – today
- 2024
- [c10]Nobuaki Kuno, Koshiro Kitao, Takahiro Tomie, Satoshi Suyama, Mitsuki Nakamura, Minoru Inomata, Wataru Yamada:
Analysis of Propagation Channel Characteristics in an Indoor Office Environment at 160 GHz. VTC Spring 2024: 1-6 - [c9]Takahiro Tomie, Satoshi Suyama, Koshiro Kitao, Nobuaki Kuno, Minoru Inomata, Wataru Yamada, Motoharu Sasaki:
Performance of Color Images Method for Path Loss Estimation in High Frequency Bands. VTC Spring 2024: 1-5 - 2022
- [c8]Tetsuro Imai, Wataru Yamada, Minoru Inomata, Nobuaki Kuno:
Radio Propagation Analysis Using Quantum Annealing. GLOBECOM 2022: 5813-5818 - 2021
- [j7]Osamu Kagaya, Yasuo Morimoto, Takeshi Motegi, Minoru Inomata:
Transparent Glass Quartz Antennas on the Windows of 5G-Millimeter-Wave-Connected Cars. IEICE Trans. Commun. 104-B(1): 64-72 (2021)
2010 – 2019
- 2019
- [j6]Minoru Inomata, Tetsuro Imai, Koshiro Kitao, Yukihiko Okumura, Motoharu Sasaki, Yasushi Takatori:
Radio Propagation Prediction Method Using Point Cloud Data Based on Hybrid of Ray-Tracing and Effective Roughness Model in Urban Environments. IEICE Trans. Commun. 102-B(1): 51-62 (2019) - [j5]Daisuke Kitayama, Kiichi Tateishi, Daisuke Kurita, Atsushi Harada, Minoru Inomata, Tetsuro Imai, Yoshihisa Kishiyama, Hideshi Murai, Shoji Itoh, Arne Simonsson, Peter Ökvist:
High Speed Mobility Experiments on Distributed MIMO Beamforming for 5G Radio Access in 28-GHz Band. IEICE Trans. Commun. 102-B(8): 1418-1426 (2019) - [j4]Mitsuki Nakamura, Motoharu Sasaki, Wataru Yamada, Naoki Kita, Takeshi Onizawa, Yasushi Takatori, Masashi Nakatsugawa, Minoru Inomata, Koshiro Kitao, Tetsuro Imai:
Path Loss Model in Crowded Outdoor Environments Considering Multiple Human Body Shadowing of Multipath at 4.7GHz and 26.4GHz. IEICE Trans. Commun. 102-B(8): 1676-1688 (2019) - [c7]Minoru Inomata, Tetsuro Imai, Toshiki Sayama, Osamu Kagaya, Shoji Itoh, Hideshi Murai, Daisuke Kitayama, Hideaki Shoji, Shoichi Takeuchi, Kiyoshi Nobuoka, Arne Simonsson, Peter Ökvist:
Downlink Performance Using Vehicle Glass Mounted Antenna for 28-GHz Band in High Mobility Environment. VTC Spring 2019: 1-5 - [c6]Koshiro Kitao, Tetsuro Imai, Minoru Inomata, Yukihiko Okumura, Takehiro Nakamura, Kiyoshi Yanagisawa, Taro Eichler, Wilhelm Keusgen:
Study on Path Identification at 40 GHz Band in NLOS Urban Street Cell Environment. WCNC 2019: 1-4 - [c5]Daisuke Kitayama, Arne Simonsson, Peter Ökvist, Daisuke Kurita, Minoru Inomata, Kiichi Tateishi, Atsushi Harada, Tetsuro Imai, Yoshihisa Kishiyama, Shoji Itoh, Hideshi Murai:
5G Radio Access Experiments on Distributed MIMO Deployment for Straightly Traveling Mobile Station with Beamforming in 28-GHz Frequency Band. WCNC Workshops 2019: 1-6 - 2018
- [j3]Motoharu Sasaki, Minoru Inomata, Wataru Yamada, Naoki Kita, Takeshi Onizawa, Masashi Nakatsugawa, Koshiro Kitao, Tetsuro Imai:
Frequency Dependency of Path Loss Between Different Floors in An Indoor Office Environment at UHF and SHF Bands. IEICE Trans. Commun. 101-B(2): 373-382 (2018) - [j2]Motoharu Sasaki, Minoru Inomata, Wataru Yamada, Naoki Kita, Takeshi Onizawa, Masashi Nakatsugawa, Koshiro Kitao, Tetsuro Imai:
Path Loss Model Considering Blockage Effects of Traffic Signs Up to 40GHz in Urban Microcell Environments. IEICE Trans. Commun. 101-B(8): 1891-1902 (2018) - 2017
- [j1]Minoru Inomata, Motoharu Sasaki, Wataru Yamada, Takeshi Onizawa, Masashi Nakatsugawa, Nobutaka Omaki, Koshiro Kitao, Tetsuro Imai, Yukihiko Okumura:
Path Loss Model for Outdoor-to-Indoor Corridor Up to 40GHz Band in Microcell Environments. IEICE Trans. Commun. 100-B(2): 242-251 (2017) - [c4]Motoharu Sasaki, Mitsuki Nakamura, Minoru Inomata, Wataru Yamada, Naoki Kita, Koshiro Kitao, Tetsuro Imai, Yasushi Takatori:
Frequency Dependence of Path Loss with Wide Dynamic Range in Urban Macro Cells between 2 and 26 GHz. GLOBECOM Workshops 2017: 1-6 - [c3]Motoharu Sasaki, Mitsuki Nakamura, Minoru Inomata, Wataru Yamada, Naoki Kita, Yasushi Takatori, Koshiro Kitao, Tetsuro Imai:
Frequency dependence of site-specific path loss in urban macro cell environments between 2 and 66 GHz bands. PIMRC 2017: 1-5 - 2015
- [c2]Koshiro Kitao, Tetsuro Imai, Ngochao Tran, Nobutaka Omaki, Yukihiko Okumura, Minoru Inomata, Motoharu Sasaki, Wataru Yamada:
Path loss prediction model for 800 MHz to 37 GHz in NLOS microcell environment. PIMRC 2015: 414-418 - 2014
- [c1]Minoru Inomata, Tomoaki Ogawa, Shuichi Yoshino:
Material transmission loss modeling for indoor propagation modeling. PIMRC 2014: 722-726
Coauthor Index
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