Zhou Dong, Cao Jie, Cui Huan, Hao Qun, Chen Bing-Kun, Lin Kai
Key Laboratory of Biomimetic Robots and Systems, School of Optics and Photonics, Beijing Institute of Technology, Beijing 100081, China.
Beijing Fisheries Research Institute, Beijing 100068, China.
Sensors (Basel). 2021 Sep 30;21(19):6544. doi: 10.3390/s21196544.
Single-pixel imaging, with the advantages of a wide spectrum, beyond-visual-field imaging, and robustness to light scattering, has attracted increasing attention in recent years. Fourier single-pixel imaging (FSI) can reconstruct sharp images under sub-Nyquist sampling. However, the conventional FSI has difficulty balancing imaging quality and efficiency. To overcome this issue, we proposed a novel approach called complementary Fourier single-pixel imaging (CFSI) to reduce the number of measurements while retaining its robustness. The complementary nature of Fourier patterns based on a four-step phase-shift algorithm is combined with the complementary nature of a digital micromirror device. CFSI only requires two phase-shifted patterns to obtain one Fourier spectral value. Four light intensity values are obtained by loading the two patterns, and the spectral value is calculated through differential measurement, which has good robustness to noise. The proposed method is verified by simulations and experiments compared with FSI based on two-, three-, and four-step phase shift algorithms. CFSI performed better than the other methods under the condition that the best imaging quality of CFSI is not reached. The reported technique provides an alternative approach to realize real-time and high-quality imaging.
单像素成像具有光谱范围广、超视场成像以及对光散射具有鲁棒性等优点,近年来受到了越来越多的关注。傅里叶单像素成像(FSI)能够在亚奈奎斯特采样下重建清晰图像。然而,传统的FSI在平衡成像质量和效率方面存在困难。为了克服这个问题,我们提出了一种名为互补傅里叶单像素成像(CFSI)的新方法,以在保持其鲁棒性的同时减少测量次数。基于四步相移算法的傅里叶图案的互补特性与数字微镜器件的互补特性相结合。CFSI仅需要两个相移图案即可获得一个傅里叶光谱值。通过加载这两个图案获得四个光强值,并通过差分测量计算光谱值,其对噪声具有良好的鲁棒性。与基于二步、三步和四步相移算法的FSI相比,通过仿真和实验验证了所提出的方法。在未达到CFSI最佳成像质量的条件下,CFSI的性能优于其他方法。所报道的技术为实现实时高质量成像提供了一种替代方法。