arXiv · 1902.06798
Propagation Modeling Through Foliage in a Coniferous Forest at 28 GHz
Abstract
The goal of this article is to investigate the propagation behavior of 28-GHz millimeter wave in coniferous forests and model its basic transmission loss. Field measurements were conducted with a custom-designed sliding correlator sounder. Relevant foliage regions were extracted from high-resolution LiDAR data and satellite images. Our results show that traditional foliage analysis models for lower-frequency wireless communications fail to consistently output correct path loss predictions. Novel fully automated site-specific models are proposed to resolve this issue, yielding 0.9 dB overall improvement and up to 20 dB regional improvement in root mean square errors.
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Yaguang Zhang, Christopher R. Anderson, Nicolo Michelusi, David J. Love, Kenneth R. Baker, James V. Krogmeier. 2019-02-18. Propagation Modeling Through Foliage in a Coniferous Forest at 28 GHz. https://doi.org/10.1109/lwc.2019.2899299
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