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用于红外微扫描光学系统的超分辨率成像

Super-resolution imaging for infrared micro-scanning optical system.

作者信息

Zhang X F, Huang W, Xu M F, Jia S Q, Xu X R, Li F B, Zheng Y D

出版信息

Opt Express. 2019 Mar 4;27(5):7719-7737. doi: 10.1364/OE.27.007719.

Abstract

The image super-resolution (SR) reconstruction technology based on the micro-scanning system is one of the best methods for realizing high-resolution infrared imaging. Thus, in this work, we first present a frequency domain phase-based projection onto convex sets SR reconstruction algorithm. This method takes advantage of the texture details and contrast-independent feature of the phase information in the frequency domain and can be used to realize image denoising and SR reconstruction for the infrared image simultaneously. We also propose the use of an image quality assessment metric based on the frequency domain phase spectrum. Second, we design and realize an infrared micro-scanning optical system to obtain sub-pixel low-resolution images for SR reconstruction. The infrared micro-scanning optical system we constructed can realize controllable sub-pixel micro-scanning of an arbitrary step size. Furthermore, we can realize sub-pixel low-resolution image collection by moving two light and compact pieces instead of moving the entire lens, sensor array, or sample-as in the traditional method. Thus, the precision of the sub-pixel movements can be greatly improved. Using our proposed algorithm and infrared micro-scanning optical system, we realize infrared SR imaging in both simulations and experiments.

摘要

基于微扫描系统的图像超分辨率(SR)重建技术是实现高分辨率红外成像的最佳方法之一。因此,在本工作中,我们首先提出一种基于频域相位的凸集投影SR重建算法。该方法利用了频域中相位信息的纹理细节和对比度无关特性,可用于同时实现红外图像的去噪和SR重建。我们还提出了一种基于频域相位谱的图像质量评估指标。其次,我们设计并实现了一种红外微扫描光学系统,以获取用于SR重建的亚像素低分辨率图像。我们构建的红外微扫描光学系统可以实现任意步长的可控亚像素微扫描。此外,我们可以通过移动两个轻巧的部件来实现亚像素低分辨率图像采集,而不是像传统方法那样移动整个镜头、传感器阵列或样本。因此,可以大大提高亚像素运动的精度。使用我们提出的算法和红外微扫描光学系统,我们在模拟和实验中都实现了红外SR成像。

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