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Modelling tropospheric ducting effects on VHF/UHF propagation

机译:对流层导管对VHF / UHF传播的影响建模

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摘要

The application of the parabolic equation method to range-independent and range-dependent tropospheric propagation modelling problems is demonstrated. The parabolic equation is an approximation to the Helmholtz wave equation which allows progressive calculation of the propagated electromagnetic field as solution is stepped out in range. The solution method described is derived from a technique developed by R.H. Hardin and F.D. Tappert (1973) for application to underwater acoustics problems. This split step Fourier solution involves the discretization of the field with respect to height and the use of the fast Fourier transform at successive range points. The solution is stable, with errors being dependent on wavenumber, range step size, and the gradients of refractive index with respect to height and range. Advantages of this method over other methods used to evaluate the effects of ducting layers on tropospheric propagation are discussed.
机译:证明了抛物线方程方法在距离无关和距离相关的对流层传播建模问题中的应用。抛物线方程是Helmholtz波方程的近似值,当溶液在范围内逐步扩展时,该方程允许逐步计算传播的电磁场。所描述的解决方法是从R.H. Hardin和F.D. Tappert(1973)应用于水下声学问题。这种分步傅里叶解决方案涉及场相对于高度的离散化以及在连续距离点处使用快速傅里叶变换的情况。该解决方案是稳定的,其误差取决于波数,范围步长以及相对于高度和范围的折射率梯度。讨论了该方法相对于其他用于评估管道层对流层传播影响的方法的优势。

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