Department of Electrical Engineering, Technion - Israel Institute of Technology, 32000, Haifa, Israel.
Sci Rep. 2021 Apr 8;11(1):7712. doi: 10.1038/s41598-021-83810-z.
Single-pixel imaging (SPI) enables the visualization of objects with a single detector by using a sequence of spatially modulated illumination patterns. For natural images, the number of illumination patterns may be smaller than the number of pixels when compressed-sensing algorithms are used. Nonetheless, the sequential nature of the SPI measurement requires that the object remains static until the signals from all the required patterns have been collected. In this paper, we present a new approach to SPI that enables imaging scenarios in which the imaged object, or parts thereof, moves within the imaging plane during data acquisition. Our algorithms estimate the motion direction from inter-frame cross-correlations and incorporate it in the reconstruction model. Moreover, when the illumination pattern is cyclic, the motion may be estimated directly from the raw data, further increasing the numerical efficiency of the algorithm. A demonstration of our approach is presented for both numerically simulated and measured data.
单像素成像 (SPI) 通过使用一系列空间调制照明图案,使单个探测器能够对物体进行可视化。对于自然图像,当使用压缩感知算法时,照明图案的数量可能小于像素的数量。然而,SPI 测量的顺序性质要求物体在收集所有所需图案的信号之前保持静止。在本文中,我们提出了一种新的 SPI 方法,该方法可以实现成像场景,其中成像对象或其部分在数据采集期间在成像平面内移动。我们的算法通过帧间互相关来估计运动方向,并将其纳入重建模型中。此外,当照明图案是周期性时,可以直接从原始数据中估计运动,进一步提高算法的数值效率。我们的方法在数值模拟和测量数据中都得到了演示。