Zhang Chi, Guo Shuxu, Cao Junsheng, Guan Jian, Gao Fengli
Opt Express. 2014 Dec 1;22(24):30063-73. doi: 10.1364/OE.22.030063.
We propose a novel method for object reconstruction of ghost imaging based on Pseudo-Inverse, where the original objects are reconstructed by computing the pseudo-inverse of the matrix constituted by the row vectors of each speckle field. We conduct reconstructions for binary images and gray-scale images. With equal number of measurements, our method presents a satisfying performance on enhancing Peak Signal to Noise Ratio (PSNR) and reducing computing time. Being compared with the other existing methods, its PSNR distinctly exceeds that of the traditional Ghost Imaging (GI) and Differential Ghost Imaging (DGI). In comparison with the Compressive-sensing Ghost Imaging (CGI), the computing time is substantially shortened, and in regard to PSNR our method exceeds CGI on grayscale images and performs as well as CGI visually on binary images. The influence of both the detection noise and the accuracy of measurement matrix on PSNR are also presented.
我们提出了一种基于伪逆的鬼成像物体重建新方法,该方法通过计算由每个散斑场的行向量构成的矩阵的伪逆来重建原始物体。我们对二值图像和灰度图像进行了重建。在测量次数相同的情况下,我们的方法在提高峰值信噪比(PSNR)和减少计算时间方面表现出令人满意的性能。与其他现有方法相比,其PSNR明显超过传统鬼成像(GI)和差分鬼成像(DGI)。与压缩感知鬼成像(CGI)相比,计算时间大幅缩短,在灰度图像上我们的方法在PSNR方面超过CGI,在二值图像上视觉效果与CGI相当。还给出了检测噪声和测量矩阵精度对PSNR的影响。