首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >High resolution optical image restoration for ground-based large telescope using phase diversity speckle
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High resolution optical image restoration for ground-based large telescope using phase diversity speckle

机译:利用相位分集散斑的地面大型望远镜高分辨率光学图像复原

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摘要

Phase diversity speckle (PDS) is an image restoration technique which is based on the idea of phase diversity (PD). It uses multi-frame short-exposure image sequence to calculate their corresponding wave-front information. Each image pair consists of two images collected by two cameras at the same time with one in focus and the other with known defocus value. Multi-frame processing can significantly improve the target signal to noise ratio, and decrease noise influence. In this paper, based on the principle of pupil Fourier imaging, by adjusting the pupil size, we get different scales of the optical point spread function (PSF). Also, we analysis different camera noise distribution channels, location differences and other factors to optimize the objective evaluation function, and this can reduce the computational complexity and improve the processing speed of image restoration. In the indoor environment, we build optical platform, and use multi-frame phase diversity speckle to make experiment under different turbulence conditions. The experimental results show that the image restoration effect of the proposed method is close to the diffraction limit.
机译:相位分集散斑(PDS)是一种基于相位分集(PD)概念的图像恢复技术。它使用多帧短曝光图像序列来计算其相应的波前信息。每个图像对都由两个相机同时采集的两个图像组成,一个聚焦,另一个具有已知的散焦值。多帧处理可以显着提高目标信噪比,并减少噪声影响。本文基于瞳孔傅里叶成像的原理,通过调整瞳孔大小,我们得到了不同比例的光点扩散函数(PSF)。此外,我们分析了不同的相机噪声分布通道,位置差异和其他因素,以优化目标评估功能,从而可以降低计算复杂度并提高图像恢复的处理速度。在室内环境下,我们搭建光学平台,并使用多帧相位分集散斑在不同湍流条件下进行实验。实验结果表明,该方法的图像恢复效果接近衍射极限。

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