Measurement and Ray Tracing Simulation with Urban Microcell Environments at 28GHz Band
Hirokazu Yamakura, Gilbert Siy Ching, Yukiko Kishiki, Noboru Sekino, Ichiro Oshima, Tetsuro Imai
Abstract
Hirokazu Yamakura, Gilbert Siy Ching, Yukiko Kishiki, Noboru Sekino, Ichiro Oshima, Tetsuro Imai
Abstract
In this study, we investigate outdoor propagation measurements performed in an industrial park environment at 28.3GHz band. The propagation characteristics were evaluated with the measurement result regarding the path loss characteristics. Ray tracing simulation was also studied and compared with the measurement data to evaluate the quantitative accuracy of ray tracing in millimeter-wave band wireless propagations. Ray tracing, whose accuracy was evaluated based on a comparison with the measurement results, can aid in the theoretical design of the coverage area and deterministic channel modeling.
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In this study, we investigate outdoor propagation measurements performed in an industrial park environment at 28.3GHz band. The propagation characteristics were evaluated with the measurement result regarding the path loss characteristics. Ray tracing simulation was also studied and compared with the measurement data to evaluate the quantitative accuracy of ray tracing in millimeter-wave band wireless propagations. Ray tracing, whose accuracy was evaluated based on a comparison with the measurement results, can aid in the theoretical design of the coverage area and deterministic channel modeling.
Key concepts: Microcell, Ray tracing (physics), Computer science, Path loss, Extremely high frequency, Delay spread, Channel (broadcasting), Wireless