论文标题
基于非刚性比对的高分辨率太阳图像重建
High-resolution Solar Image Reconstruction Based on Non-rigid Alignment
论文作者
论文摘要
抑制大气湍流的干扰并以高空间分辨率获得观察数据是要紧急解决地面观测的问题。解决此问题的一种方法是对短期暴露斑点图像进行统计重建。本文提出了一种新颖的重建算法-NASIR(基于非刚性比对的太阳图像重建),本文结合了偏移-ADD的速度和斑点掩盖的准确性。 NASIR通过在几何变形和强度分布之间构建一个计算模型来重建对象图像的相位,并通过斑点干涉测定法上对象图像的模量在对齐的斑点图像上重建了对象图像的模量。我们通过使用NVST获得的处理数据(1M新真空太阳能望远镜)中的处理数据中使用相关系数,功率谱和强度曲线变化(CVOIP)变化系数分析了NASIR的性能。重建实验和分析结果表明,纳西尔重建的图像的质量接近斑点掩盖,而当看见良好时,当看到情况变得更糟时,nasir具有出色的鲁棒性。此外,纳西尔(Nasir)在一个GO中并行重建整个视野,而无需相位递归和逐个块重建,因此其计算时间小于斑点掩蔽的一半。因此,我们认为NASIR是一种强大且高质量的快速重建方法,可以作为数据过滤和快速外观的有效工具。
Suppressing the interference of atmospheric turbulence and obtaining observation data with a high spatial resolution is an issue to be solved urgently for ground observations. One way to solve this problem is to perform a statistical reconstruction of short-exposure speckle images. Combining the rapidity of Shift-Add and the accuracy of speckle masking, this paper proposes a novel reconstruction algorithm-NASIR (Non-rigid Alignment based Solar Image Reconstruction). NASIR reconstructs the phase of the object image at each frequency by building a computational model between geometric distortion and intensity distribution and reconstructs the modulus of the object image on the aligned speckle images by speckle interferometry. We analyzed the performance of NASIR by using the correlation coefficient, power spectrum, and coefficient of variation of intensity profile (CVoIP) in processing data obtained by the NVST (1m New Vacuum Solar Telescope). The reconstruction experiments and analysis results show that the quality of images reconstructed by NASIR is close to speckle masking when the seeing is good, while NASIR has excellent robustness when the seeing condition becomes worse. Furthermore, NASIR reconstructs the entire field of view in parallel in one go, without phase recursion and block-by-block reconstruction, so its computation time is less than half that of speckle masking. Therefore, we consider NASIR is a robust and high-quality fast reconstruction method that can serve as an effective tool for data filtering and quick look.