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Modeling over the Sea Surface within Elevated Duct

机译:在升高的管道内造型

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Modeling marine environment is a rapidly evolving field expected to gain more concentration in wide aspects. Sea environment duct accounted as analytical comparative study utilizing super high frequencies SHF to investigate different parameters affect the signal propagation, which consider nonuniform nature in term of variation of electromagnetic prosperities in the duct causes different phenomena such as refraction and bending. This paper takes into account the matter via focus in elevated duct to compare with sea surface and model the refractivity profiles utilizing parabolic equation. The key goal of the work is to present fading phenomenon affect, which is caused by various atmospheric parameters and proof it does not exclusively influence the path loss, but also the sea specification itself could play a vital role in term of propagation factor such as electric field which is different from sea to another. So, this proofing would helps researchers which are working in the area to design and select appropriate model and give a reliable wireless communication when consider the coastal link budget. This work result emphasized the versa correlation between the coverage area and frequency in sea environment, and makes sure that the reduction due to several common parameters becomes clear at higher gigahertz frequencies. Overall the proposal considers the coastal ducts from refractive profiles viewpoint to ensure reliable link over the sea.
机译:建模海洋环境是一种快速发展的领域,预计在广泛方面获得更多的集中。海环境导管占作为分析比较研究利用超高频SHF调查不同的参数影响的信号传播,这考虑不均匀性质在电磁景气荣枯的变动术语在管道导致不同的现象,例如折射和弯曲。本文通过升高的管道中的焦点考虑了此事,以与海面进行比较,并利用抛物线方程模拟折射率型材。该工作的关键目标是呈现褪色现象影响,这是由各种大气参数和证据引起的,它不完全影响路径损失,而且海面规范本身可以在诸如电气等传播系数期间发挥重要作用与大海不同的领域。因此,这种校对将有助于研究领域的研究人员在考虑沿海链路预算时选择适当的模型,并在考虑沿海链路预算时提供可靠的无线通信。这项工作结果强调了海洋环境中的覆盖区域和频率之间的相关性,并确保在较高的GigaHertz频率下透明导致的若干常见参数。总体而言,该提案考虑了屈光剖视图的沿海管道,以确保在海上的可靠联系。

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