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Methods of image correction formed on horizontal long paths

机译:在水平长路径上形成的图像校正方法

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The possibilities of forming optical images on horizontal extended atmospheric paths are explored. Two different methods for improving image quality are analyzed. It is known that at the present time the solution of the problem of long-range vision with super-high resolution is conducted along several independent lines, firstly, on the development of methods based on the classical technique of adaptive optics, i.e., by correcting the distorted wavefront itself, and, secondly, on the use of digital post-detection techniques, as well as. on the way to attract purely engineering solutions. These methods are applied, both for terrestrial systems, and for astronomical instruments. They can be instrumental (for example, adaptive correction, the use of polarization filters, receiver gating, etc.). mixed (adaptive correction and subsequent processing of images on computers or special processors) or program-algorithmic only. The analysis is carried out for systems operating on horizontal paths. This, first of all, is due to the fact that any horizontal path by the strength of turbulence far exceeds any astronomical one. On extended horizontal paths, in addition to phase distortions that cause the effects of jitter and blurring of the image, there are fluctuations in the intensity of the received radiation, which leads to the appearance of flickering effects of the image, as well as to the manifestation of ambiguity in describing the phase distortions of the optical wave. Numerical and analytical calculations are performed. Experiments were carried out on the atmospheric paths from 160 m to 3.2 km long in city conditions.
机译:探索了在水平延伸的大气路径上形成光学图像的可能性。分析了两种改善图像质量的方法。众所周知,目前,解决超远距离视觉问题的方法是沿着几条独立的路线进行的,首先是在基于自适应光学经典技术的方法的开发上,即通过校正失真的波前本身,其次,以及在使用数字后检测技术方面的优势。吸引纯粹的工程解决方案。这些方法适用于地面系统和天文仪器。它们可以发挥作用(例如,自适应校正,偏振滤波器的使用,接收器选通等)。混合(自适应校正和在计算机或特殊处理器上对图像进行的后续处理)或仅程序算法。分析是针对在水平路径上运行的系统进行的。首先,这是由于以下事实:由于湍流的作用,任何水平路径都远远超过了任何天文路径。在扩展的水平路径上,除了会引起抖动和图像模糊的相位失真外,接收到的辐射强度也会出现波动,这会导致图像出现闪烁效果,并导致图像闪烁。在描述光波的相位畸变时表现出模棱两可。进行数值和分析计算。在城市条件下,在从160 m到3.2 km长的大气路径上进行了实验。

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