折射率梯度变化对视线百分比间隙和单刃衍射损失的影响分析

Dan Eduediuyai, Johnson Enyenihi, I. Markson
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引用次数: 1

摘要

本文分析了折射率梯度变化对视线百分比间隙和单刃衍射损失的影响。给出了相关的数学表达式和分析方法。利用c波段5.5 GHz频率和ku波段11 GHz频率、路径长度为15 Km的地面瞄准线(LOS)微波通信链路的路径剖面样本数据进行了研究,以验证本文思想的应用。结果表明,最小LOS百分比间隙的临界点出现在距离发射机8.89 Km处。在此基础上,建立了折射率梯度与有效土k因子、土凸起、LOS百分比间隙和单刃LOS百分比间隙的回归模型。该结果的含义是,鉴于在任何地点,折射梯度随温度、压力和相对湿度等主要大气参数的变化而变化,因此大气中对信号造成的衍射损失的量将以不同的速率变化,这取决于折射梯度所依赖的大气参数的普遍值。此外,除了参考折射率梯度为39.25 N单位/km外,不同频率的衍射损耗量也不同。折射率梯度对不同频率的具体影响取决于主流折射率梯度是高于还是低于参考折射率梯度39.25 N单位/km。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the Effect of Variations in Refractivity Gradient on Line of Sight Percentage Clearance and Single Knife Edge Diffraction Loss
In this paper, analysis of the effect of variations in refractivity gradient on line of sight percentage clearance and single knife edge diffraction loss is presented. Relevant, mathematical expressions and approaches for the analyses are presented. Sample path profile data of terrestrial line of sight (LOS) microwave communication links operating at C-band 5.5 GHz frequency and Ku-band 11 GHz frequency with 15 Km path length are used in the study to demonstrate the application of the ideas presented in this paper. The results showed that the critical point of minimum LOS percentage clearance occurred at a distance of 8.89 Km from the transmitter. Based on the results regression models were derived for relating the refractivity gradient to the effective earth K-factor, earth bulge, LOS percentage clearance and single knife edge LOS percentage clearance. The implication of the result is that, given that for any location the refractivity gradient varies with the primary atmospheric parameters like temperature, pressure and relative humidity, the amount of diffraction loss posed to the signal in the atmosphere will be varying at different rates depending on the prevailing values of the atmospheric parameters upon which refractivity gradient depends. Also, apart from the reference refractivity gradient of 39.25 N units/km, different frequencies will experience different amount of diffraction loss. The specific impact of the refractivity gradient on different frequencies depends on whether the prevailing refractivity gradient is above or below the reference refractivity gradient of 39.25 N units/km.
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