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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Generation of non-Kolmogorov atmospheric turbulence phase screen using intrinsic embedding fractional Brownian motion method
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Generation of non-Kolmogorov atmospheric turbulence phase screen using intrinsic embedding fractional Brownian motion method

机译:使用内在嵌入分数褐色运动方法产生非Kolmogorov大气湍流相屏

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摘要

Generating phase screens to replace phase fluctuation caused by atmospheric turbulence is essential for simulation of light propagation through the atmosphere. Error between power spectral density of actual turbulence and traditional Kolmogorov model illustrates the importance of generating non-Kolmogorov phase screen. Meanwhile, methods used to generate phase screen at present show different kinds of disadvantages respectively. In this paper, we adopt a new method named "intrinsic embedding fractional Brownian motion (IE-FBM)". First, relationship between phase screen and FBM is analyzed. Next, principle of IE-FBM is clarified. We expand the correlation matrix and generate a stationary Gaussian surface through two fast Fourier transforms, which is the principle of intrinsic embedding. After that, we adjust the Gaussian surface into an FBM surface. Finally, simulation results demonstrate that IE-FBM combines advantages of traditional methods. Phase structure function becomes closer to theoretical value no matter how we set parameters of phase screen. Besides, both low and high frequency components of phase screen are sufficient and creases don't exist. In addition, time consumption reduces apparently. In conclusion, our method is comprehensively optimal choice to generate phase screen.
机译:产生相位屏幕以更换由大气湍流引起的相波动对于通过大气模拟光传播是必要的。实际湍流的功率谱密度与传统kolmogorov模型之间的误差表示生成非Kolmogorov阶段屏幕的重要性。同时,目前用于产生相屏的方法分别显示不同类型的缺点。在本文中,我们采用了一个名为“内在嵌入分数棕色运动(IE-FBM)”的新方法。首先,分析相屏和FBM之间的关系。接下来,澄清IE-FBM的原理。我们通过两个快速傅里叶变换来扩展相关矩阵并产生固定高斯表面,这是内在嵌入的原理。之后,我们将高斯表面调整为FBM表面。最后,仿真结果表明IE-FBM结合了传统方法的优点。无论我们如何设置相位屏幕的参数,相位结构函数变得更接近理论值。此外,相位屏幕的低频和高频分量都足够并且不存在折痕。此外,时间消耗明显减少。总之,我们的方法是全面的最佳选择来产生阶段屏幕。

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