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一种用于消除图像失准对分段式主动光学系统共相测量精度影响的高效校正算法。

An Efficient Correction Algorithm for Eliminating Image Misalignment Effects on Co-Phasing Measurement Accuracy for Segmented Active Optics Systems.

作者信息

Yue Dan, Xu Shuyan, Nie Haitao, Wang Zongyang

机构信息

Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

PLoS One. 2016 Mar 2;11(3):e0148872. doi: 10.1371/journal.pone.0148872. eCollection 2016.

Abstract

The misalignment between recorded in-focus and out-of-focus images using the Phase Diversity (PD) algorithm leads to a dramatic decline in wavefront detection accuracy and image recovery quality for segmented active optics systems. This paper demonstrates the theoretical relationship between the image misalignment and tip-tilt terms in Zernike polynomials of the wavefront phase for the first time, and an efficient two-step alignment correction algorithm is proposed to eliminate these misalignment effects. This algorithm processes a spatial 2-D cross-correlation of the misaligned images, revising the offset to 1 or 2 pixels and narrowing the search range for alignment. Then, it eliminates the need for subpixel fine alignment to achieve adaptive correction by adding additional tip-tilt terms to the Optical Transfer Function (OTF) of the out-of-focus channel. The experimental results demonstrate the feasibility and validity of the proposed correction algorithm to improve the measurement accuracy during the co-phasing of segmented mirrors. With this alignment correction, the reconstructed wavefront is more accurate, and the recovered image is of higher quality.

摘要

使用相位多样性(PD)算法时,记录的聚焦和失焦图像之间的不对准会导致分段式有源光学系统的波前检测精度和图像恢复质量急剧下降。本文首次论证了图像不对准与波前相位的泽尼克多项式中的倾斜项之间的理论关系,并提出了一种高效的两步对准校正算法来消除这些不对准效应。该算法对不对准图像进行空间二维互相关处理,将偏移量修正到1或2个像素,并缩小对准搜索范围。然后,通过在失焦通道的光学传递函数(OTF)中添加额外的倾斜项,无需亚像素精细对准即可实现自适应校正。实验结果证明了所提出的校正算法在分段镜共相位期间提高测量精度的可行性和有效性。通过这种对准校正,重建的波前更精确,恢复的图像质量更高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/478b/4775047/519665e97628/pone.0148872.g001.jpg

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