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首页> 外文期刊>Optics and Lasers in Engineering >Experimental demonstration of imaging hidden objects in opaque liquid-based media by fusion of single-shot multiview polarized and unpolarized speckle images
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Experimental demonstration of imaging hidden objects in opaque liquid-based media by fusion of single-shot multiview polarized and unpolarized speckle images

机译:通过融合单镜头多视图偏振和非偏振斑点图像对不透明液体介质中的隐藏对象进行成像的实验演示

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Turbid water-based liquids are common scattering media within which imaging objects is challenging, since scattering particles of various origins and sizes may cause severe image degradation; resulting in poor object recovery and resolution. Therefore, counteracting the nontrivial effects of light scattering is a primary challenge, limiting the utility of optical imaging within liquid media. In this work, we sought to circumvent the optical degradation in turbid liquid media and to recover high-quality images of hidden objects by averaging polarized speckle images projected from several directions through a lens array. Inspired by astronomy imaging techniques, the averaging process utilized a Shift-and-Add (SAA) algorithm developed to reconstruct atmospherically-degraded solar images. Both linear and circular polarization strategies were then applied to further improve image reconstruction. Experiments were carried out using two targets, each having a distinct geometrical shape, embedded within turbid liquid media comprising a range of dilutions of commercially available cow's milk in seawater. The media were irradiated with a polarized laser beam, after which multiple polarized speckled images were captured with a CCD camera. Offline, images were first shifted to a common center and then fused, using the SAA algorithm, to yield reconstructed images of each hidden object. Quantitative image quality metrics, including SNR, entropy, and sharpness were applied to evaluate quality of the reconstructed images. The reconstructed images obtained demonstrate successful adaptation of our methodology for the identification of hidden objects within turbid media. To the best of our knowledge, this is the first report to demonstrate successful imaging of hidden object images within turbid liquid media by averaging multiple polarized speckle projections.
机译:浑浊的水基液体是常见的散射介质,成像对象极富挑战性,因为各种来源和大小的散射颗粒可能会导致严重的图像退化;导致对象恢复和分辨率差。因此,抵消光散射的非平凡影响是主要挑战,这限制了光学成像在液体介质中的实用性。在这项工作中,我们试图避开混浊液体介质中的光学降解,并通过平均从多个方向通过透镜阵列投影的偏振散斑图像来恢复隐藏对象的高质量图像。受天文学成像技术的启发,平均过程采用了“移位加法”(SAA)算法,该算法用于重建大气退化的太阳影像。然后,将线性和圆偏振策略都应用于进一步改善图像重建。实验使用两个靶标进行,每个靶标具有不同的几何形状,并嵌入混浊的液体介质中,该介质包括一系列在海水中可稀释的市售牛奶。用偏振激光束照射介质,然后用​​CCD相机捕获多个偏振斑点图像。在离线状态下,首先将图像移到一个公共中心,然后使用SAA算法进行融合,以生成每个隐藏对象的重建图像。定量图像质量指标(包括SNR,熵和清晰度)用于评估重建图像的质量。所获得的重建图像证明了我们方法在识别浑浊介质内隐藏物体方面的成功应用。据我们所知,这是第一份通过平均多个偏振散斑投影来证明在浑浊的液体介质中隐藏的对象图像成功成像的报告。

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