论文标题
带有傅立叶域正则化的差异实时单像素成像 - 应用于Vis-IR成像和极化成像
Differential real-time single-pixel imaging with Fourier domain regularization -- applications to VIS-IR imaging and polarization imaging
论文作者
论文摘要
单金成像(SPI)的速度和质量从根本上受图像调制频率以及光学噪声和压缩噪声的水平的限制。在接近这些限制的方法中,我们引入了一种固有差异的SPI技术,并包括一种测量图像的零空间频率并利用采样模式的各种阈值的新方法。通过提出的采样,与标准SPI方案相比,检测信号的熵增加。图像重建是用单个矩阵矢量产物获得的,因此重建方法的成本与测量样品数量成比例。重建中包括一个差分运算符,并且遵循该方法是基于在傅立叶域中使用正则化的修改后测量矩阵的广义反转。我们使用两个偏振或光谱通道以可见的和近红外波长范围的价格展示了$ 256 \ times 256 $ spi,最高可达$ 17〜 $ Hz。具有交流电耦合的低位分辨率数据采集设备可以在测量中使用,表明该方法将改进的噪声鲁棒性与信号的直流电流组件的差分去除结合在一起。
The speed and quality of single-pixel imaging (SPI) are fundamentally limited by image modulation frequency and by the levels of optical noise and compression noise. In an approach to come close to these limits, we introduce a SPI technique, which is inherently differential, and comprises a novel way of measuring the zeroth spatial frequency of images and makes use of varied thresholding of sampling patterns. With the proposed sampling, the entropy of the detection signal is increased in comparison to standard SPI protocols. Image reconstruction is obtained with a single matrix-vector product so the cost of the reconstruction method scales proportionally with the number of measured samples. A differential operator is included in the reconstruction and following the method is based on finding the generalized inversion of the modified measurement matrix with regularization in the Fourier domain. We demonstrate $256 \times 256$ SPI at up to $17~$Hz at visible and near-infrared wavelength ranges using two polarization or spectral channels. A low bit-resolution data acquisition device with alternating-current-coupling can be used in the measurement indicating that the proposed method combines improved noise robustness with a differential removal of the direct current component of the signal.