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A Direct Spectral Domain Method for Near-ground Microwave Radiation by a Vertical Dipole above Earth in the Presence of Atmospheric Refractivity

机译:存在大气折射率的地上垂直偶极子近地微波辐射的直接光谱域方法

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A spectral domain method is presented to calculate the potential of a vertical dipole in a multilayered medium as a model of long-range radio propagation. The spectral domain Green's function (SDGF) for structures with up to hundreds of thousands of layers is calculated using an efficient matrix formulation, thus enabling simulation of continuously stratified media. The SDGF is sampled to perform pole/residue-extraction using contour quadratures and to perform a novel asymptotic Filon-Clenshaw-Curtis (FCC) quadrature to calculate the far-field Green's functions. The near-fields are directly calculated using an adaptive Clenshaw-Curtis quadrature without pole-extraction. Results of numerical simulations are presented in the case of a graded-index waveguide and an atmospheric gradient-layer above a realistic lossy ground.
机译:提出了一种频谱域方法来计算多层介质中垂直偶极子的电势,作为远程​​无线电传播的模型。使用有效的矩阵公式,可以计算多达数十万层结构的光谱域格林函数(SDGF),从而可以模拟连续分层的介质。对SDGF进行采样,以使用轮廓求积法执行极/残差提取,并执行新颖的渐近Filon-Clenshaw-Curtis(FCC)求积法以计算远场格林函数。使用自适应Clenshaw-Curtis正交无需极点提取即可直接计算近场。在渐变折射率波导和实际有损耗地面上方的大气梯度层的情况下,给出了数值模拟的结果。

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