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Comparison Between Single-Aperture and Multi-Aperture Approaches to Computer Correction of Images

机译:单孔径与多孔校正近孔径的比较

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The effectiveness of the reconstruction of images formed by single- and multi-aperture systems and distorted by an atmospheric turbulence is analyzed in this work. Based on numerical simulation, we show that the use of multi-aperture observation systems for the computer correction of atmospheric distortions under anisoplanar conditions can significantly reduce the exposure time. Main distortions are well corrected during image synthesis for a short exposure time, which corresponds to a “frozen” turbulence. The time required for the correction of residual small-scale distortions is an order of magnitude shorter than in the case of synthesis of long-exposure images with the use of traditional single-aperture observation systems.
机译:通过单孔和多孔系统形成的图像重建并通过大气湍流扭曲的图像的有效性进行了分析。基于数值模拟,我们表明,使用多孔观测系统,用于在近距离条件下对大气畸变的计算机校正可以显着降低曝光时间。在图像合成期间曝光时间短校正主要扭曲,这对应于“冷冻”湍流。校正剩余小规模畸变所需的时间是与使用传统的单孔观察系统合成长曝光图像的情况短的数量级。

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