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Path Loss Variation Characteristics at 26GHz Band in Street Microcell Environment.

, , , and . IEICE Trans. Commun., 98-B (5): 783-789 (2015)

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5G Radio Access Experiments on Distributed MIMO Deployment for Straightly Traveling Mobile Station with Beamforming in 28-GHz Frequency Band., , , , , , , , , and 1 other author(s). WCNC Workshops, page 1-6. IEEE, (2019)Time-Varying Path-Shadowing Model for Indoor Populated Environments., , and . IEEE Trans. Vehicular Technology, 59 (1): 16-28 (2010)Study on Characteristics of Human Body Shadowing in High Frequency Bands: Radio Wave Propagation Technology for Future Radio Access and Mobile Optical Networks., , and . VTC Fall, page 1-5. IEEE, (2014)Polarization Dispersion Characteristics of Propagation Paths in Urban Mobile Communication Environment., and . VTC Fall, page 1-5. IEEE, (2011)Cluster Power Variation Characteristics for 3GHz-Band MIMO Communication System in a Crowded Indoor Environment., , , and . IEICE Trans. Commun., 99-B (5): 1131-1142 (2016)Polarization Dispersion Characteristics of Propagation Paths in Urban Mobile Communication Environment., and . IEICE Trans. Commun., 96-B (10): 2380-2388 (2013)Radio Propagation Prediction Method Using Point Cloud Data Based on Hybrid of Ray-Tracing and Effective Roughness Model in Urban Environments., , , , , and . IEICE Trans. Commun., 102-B (1): 51-62 (2019)Frequency Dependency of Path Loss Between Different Floors in An Indoor Office Environment at UHF and SHF Bands., , , , , , , and . IEICE Trans. Commun., 101-B (2): 373-382 (2018)Path Loss Model for Outdoor-to-Indoor Corridor Up to 40GHz Band in Microcell Environments., , , , , , , , and . IEICE Trans. Commun., 100-B (2): 242-251 (2017)Path Loss Model Considering Blockage Effects of Traffic Signs Up to 40GHz in Urban Microcell Environments., , , , , , , and . IEICE Trans. Commun., 101-B (8): 1891-1902 (2018)