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WIDEBAND SATCOM MODEL: EVALUATION OF NUMERICAL ACCURACY AND EFFICIENCY

机译:宽带卫星模型:评估数值准确性和效率

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The spectral method is typically applied as a simple and efficient method to solve the parabolic wave equation in phase screen scintillation models. The critical factors that can greatly affect the spectral method accuracy is the uniformity and smoothness of the input function. This paper observes these effects on the accuracy of the finite difference and the spectral methods applied to a wideband SATCOM signal propagation model simulated in the ultra-high frequency (UHF) band. The finite difference method uses local pointwise approximations to calculate a derivative. The spectral method uses global trigonometric interpolants that achieve remarkable accuracy for continuously differentiable functions. The differences in accuracy are presented for a Gaussian lens and Kolmogorov phase screen. The results demonstrate loss of accuracy in each method when a phase screen is applied, despite the spectral method's computational efficiency over the finite difference method. These results provide meaningful insights when discretizing an interior domain and solving the parabolic wave equation to obtain amplitude and phase of a signal perturbation.
机译:频谱法通常用作求解相屏闪烁模型中的抛物线波动方程的简单有效的方法。可以大量影响光谱法精度的关键因素是输入功能的均匀性和平滑度。本文观察到这些对有限差异的准确性和应用于超高频(UHF)频带中模拟的宽带SATCOM信号传播模型的频谱方法的影响。有限差分方法使用局部点近似来计算衍生物。光谱法使用全局三角嵌段,从而实现了显着的准确性,以实现不断微差的功能。对于高斯镜头和kolmogorov阶段屏幕,提出了准确度的差异。结果表明,在应用相屏时,每种方法中的准确性丢失,尽管频谱法通过有限差分法计算效率。这些结果在离散地区域并求解抛物线波动方程以获得信号扰动的幅度和相位时提供有意义的见解。

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