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UTD-PO Solution for Estimating the Propagation Loss due to the Diffraction at the Top of a Rectangular Obstacle When Illuminated From a Low Source

机译:UTD-PO解决方案,用于估算从低光源照射时由于矩形障碍物顶部的衍射引起的传播损耗

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摘要

A new method based on a hybrid uniform theory of diffraction-physical optics (UTD-PO) formulation for the analysis of the propagation loss due to the diffraction that takes place at the top of a rectangular obstacle that is illuminated from a low source (i.e., the transmitter height is smaller than the obstacle height) is presented. The receiver is considered to be located at the shadow boundary of the second wedge of the plateau so that the solution is valid to estimate the mentioned diffraction loss in order to be incorporated into more general propagation models. In such models, for example, both the free space losses and the typical urban final diffraction loss down to street level (occurring at the receiving point due to an eventual final diffracting obstacle) will be considered. In this sense, it should be noted that the proposed formulation is not a general formalism to estimate radiowave propagation over plateaux (as the receiver is not arbitrarily located). The method, which is mathematically less complex than existing techniques, applies Babinet's principle, and is validated through the solid agreement obtained with measurements at 60 GHz and the comparison with a method which is based on the evaluation of a Fresnel surface integral.
机译:一种新的基于衍射物理光学混合均匀理论(UTD-PO)公式的新方法,用于分析由于在从低光源(即低光源)照亮的矩形障碍物顶部发生的衍射引起的传播损耗,表示发射器高度小于障碍物高度)。接收器被认为位于高原第二楔形的阴影边界,因此该解决方案对于估计上述衍射损耗是有效的,以便将其合并到更通用的传播模型中。例如,在这样的模型中,将考虑自由空间损耗和低至街道水平的典型城市最终衍射损耗(由于最终的最终衍射障碍而在接收点发生)。从这个意义上讲,应该注意的是,提出的公式并不是估算无线电波在高原上传播的一般形式(因为接收机并非任意放置)。该方法在数学上没有现有技术复杂,它采用了Babinet原理,并通过在60 GHz下的测量获得的固体一致性以及与基于菲涅耳表面积分评估的方法进行比较而得到验证。

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