Pixel super resolution imaging method based on coded aperture modulation

Bowen Wang, Yan Zou, C. Zuo, Jiasong Sun, Yan Hu
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引用次数: 1

Abstract

In recent years, the development of computational imaging technology provides a new method for the realization of non-scanning super-resolution imaging. In this paper, a pixel super-resolution algorithm based on Fourier ptychographic technology is proposed, and the corresponding integrated and systematic programmable aperture coded super-resolution imaging system is constructed. By modulating the intensity with the coded aperture mask, utilizing different system point spread functions to obtain multiple samples of the original scene, and finally adopting sparse optimization iterative algorithm to reconstruct the original image, the result of super- resolution imaging is more than 3.5 times of Nyquist sampling frequency. In this tutorial, the proposed new super-resolution photoelectric imaging technology innovatively adopts the approach of coded aperture to realize image super-resolution imaging and effectively solve image pixelation. High-resolution images beyond the spatial resolution of the detector are obtained without any physical moving device or scanning mechanism. Compared with the traditional micro-scanning technology, it not only improves the reliability and stability of the system but also greatly reduces the cost and volume weight of the system.
基于编码孔径调制的像素超分辨率成像方法
近年来,计算成像技术的发展为实现非扫描超分辨率成像提供了一种新的方法。本文提出了一种基于傅立叶平面成像技术的像素超分辨率算法,并构建了相应的集成系统可编程孔径编码超分辨率成像系统。利用编码孔径掩模调制强度,利用不同的系统点扩展函数获得原始场景的多个样本,最后采用稀疏优化迭代算法重构原始图像,获得的超分辨率成像结果是奈奎斯特采样频率的3.5倍以上。在本教程中,提出的新型超分辨率光电成像技术创新性地采用编码孔径的方法实现图像超分辨率成像,有效解决图像像素化问题。无需任何物理移动装置或扫描机构即可获得超出探测器空间分辨率的高分辨率图像。与传统的微扫描技术相比,不仅提高了系统的可靠性和稳定性,而且大大降低了系统的成本和体积重量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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