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Computer correction of turbulent distortions of incoherent optical images using multi-aperture

机译:多孔径计算机校正非相干光学图像的湍流畸变

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Possibilities of enhancing the operational efficiency of optical multiaperture systems in a turbulent atmosphere were studied through numerical simulation. Features of synthesizing an object image as a sum (superposition) of images from every individual aperture were analyzed in the presence of turbulent distortions. The quality of images synthesized by an array of NxN subapertures (N=5-15) was examined. It is shown that turbulent distortions in an image synthesized by many subapertures with allowance made for shifts of subimages at every subaperture are isoplanatic in a wide range of atmospheric conditions. This allows significant improvement of the image quality by means of computer correction. In this case, there is an optimal subaperture size mainly determined by the Fried parameter, which characterizes the degree of turbulent distortions.
机译:通过数值模拟研究了在湍流环境中提高光学多孔径系统的工作效率的可能性。在存在湍流畸变的情况下,分析了将目标图像合成为来自每个孔的图像总和(叠加)的特征。检查了由NxN个子孔径(N = 5-15)阵列合成的图像的质量。结果表明,在许多大气条件下,由许多子孔合成的图像中的湍流畸变在每个子孔处都允许有子图像的偏移,这些湍流畸变是等平面的。这允许通过计算机校正显着改善图像质量。在这种情况下,存在主要由Fried参数确定的最佳子孔径,该参数表征了湍流畸变的程度。

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