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Perfectly correlated phase screen realization using sparse spectrum harmonic augmentation

机译:利用稀疏频谱谐波增强实现完美相关的相位屏幕

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摘要

The split-step Fourier method is commonly used to simulate the propagation of radiation in a turbulent atmosphere using two-dimensional phase screens that have the desired spatial spectral content given by the atmospheric power spectrum. Using existing methodologies, isotropy of the structure function can never be achieved, mainly along the axis of propagation, for several reasons. In this paper, we introduce the sparse spectrum harmonic augmentation method that will address the lack of isotropy along the propagation axis, the limited achievable frequencies, and the limited time development possible using known approaches. Following the methodology described will produce phase screens that are transversely endless, perfectly correlated along the propagation axis, and contain the desired spectral content, including the low frequencies that even though they contain most of the energy, are usually neglected. The methodology presented can be used for many aspects of wave propagation in random media, such as atmospheric propagation, underwater acoustics, radio wave propagation in the ionosphere, and more.
机译:分步傅里叶方法通常用于使用二维相位屏来模拟湍流大气中辐射的传播,该二维相位屏具有大气功率谱给出的所需空间谱含量。使用现有方法,由于几个原因,主要沿着传播轴无法实现结构功能的各向同性。在本文中,我们介绍了一种稀疏频谱谐波增强方法,该方法将解决使用传播途径沿传播轴缺少各向同性,可实现的频率有限以及时间有限的问题。按照所描述的方法,将产生在横向上无限延伸,沿传播轴完美相关的相位屏蔽,并且包含所需的频谱内容,包括即使包含大部分能量但通常被忽略的低频。所介绍的方法可用于随机介质中波传播的许多方面,例如大气传播,水下声学,电离层中的无线电波传播等等。

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