Wang Jiajie, Wan Minjie, Cao Xiqing, Zhang Xiaojie, Gu Guohua, Chen Qian
Opt Express. 2022 Dec 19;30(26):46926-46943. doi: 10.1364/OE.474026.
Active polarization imaging is one of the most effective underwater optical imaging methods that can eliminate the degradation of image contrast and clarity caused by macro-molecule scattering. However, the non-uniformity of active illumination and the diversity of object polarization properties may decrease the quality of underwater imaging. This paper proposes a non-uniform illumination-based active polarization imaging method for underwater objects with complex optical properties. Firstly, illumination homogenization in the frequency domain is proposed to extract and homogenize the natural incident light from the total receiving light. Then, the weight values of the polarized and non-polarized images are computed according to each pixel's degree of linear polarization (DoLP) in the original underwater image. By this means, the two images can be fused to overcome the problem of reflected light loss generated by the complex polarization properties of underwater objects. Finally, the fusion image is normalized as the final result of the proposed underwater polarization imaging method. Both qualitative and quantitative experimental results show that the presented method can effectively eliminate the uneven brightness of the whole image and obtain the underwater fusion image with significantly improved contrast and clarity. In addition, the ablation experiment of different operation combinations shows that each component of the proposed method has noticeable enhancement effects on underwater polarization imaging. Our codes are available in Code 1.
主动偏振成像作为最有效的水下光学成像方法之一,能够消除由大分子散射引起的图像对比度和清晰度下降。然而,主动照明的不均匀性以及物体偏振特性的多样性可能会降低水下成像的质量。本文针对具有复杂光学特性的水下物体,提出了一种基于非均匀照明的主动偏振成像方法。首先,提出频域照明均匀化,从总接收光中提取并均匀化自然入射光。然后,根据原始水下图像中每个像素的线性偏振度(DoLP)计算偏振图像和非偏振图像的权重值。通过这种方式,将两幅图像融合,以克服水下物体复杂偏振特性产生的反射光损失问题。最后,对融合图像进行归一化处理,作为所提出的水下偏振成像方法的最终结果。定性和定量实验结果均表明,该方法能够有效消除整个图像的亮度不均匀性,获得对比度和清晰度显著提高提高改善的水下融合图像。此外,不同操作组合的消融实验表明,所提方法的每个组件对水下偏振成像都有显著的增强效果。我们的代码可在代码1中获取。