Millimeter wave propagation through foliage: Comparison of models

Hairani Maisarah Rahim, C. Leow, T. Abd. Rahman
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引用次数: 18

Abstract

Foliage attenuation is one of the key impairments in millimeter wave propagation. Existing literature shows that the foliage attenuation is a function of a multitude of parameters, including frequency, foliage depth, tree types, foliage thickness, leaf density, leaf size, branches, trunks, humidity, wind speed, height of the tree relative to the antenna heights, path length through foliage, etc. This paper surveys the current development in the foliage attenuation study in millimeter wave bands and reviews the established propagation models. Numerical simulations are presented to assess and compare the existing empirical models. The results show that the Weissberger model provides the most optimistic estimate (the lowest attenuation) while the FITU-R model delivers the most pessimistic estimate (the highest attenuation). The results also reveal that the ITU-R model has the highest rate of increase in foliage attenuation as a function of foliage depth.
毫米波在树叶中的传播:模型的比较
叶面衰减是毫米波传播的关键缺陷之一。现有文献表明,树叶衰减是多种参数的函数,包括频率、树叶深度、树木类型、树叶厚度、树叶密度、树叶大小、树枝、树干、湿度、风速、树木相对于天线高度的高度、通过树叶的路径长度等。本文综述了毫米波波段叶片衰减研究的最新进展,并对已建立的传播模型进行了综述。给出了数值模拟来评估和比较现有的经验模型。结果表明,Weissberger模型提供了最乐观的估计(最低的衰减),而FITU-R模型提供了最悲观的估计(最高的衰减)。结果还表明,ITU-R模型的叶面衰减随叶面深度的变化速率最高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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