Jung Gyu Suk, Won Yong Hyub
Opt Express. 2021 Oct 25;29(22):36417-36429. doi: 10.1364/OE.440835.
Direct light field acquisition method using a lens array requires a complex system and has a low resolution. On the other hand, the light fields can be also acquired indirectly by back-projection of the focal stack images without lens array, providing a resolution as high as the sensor resolution. However, it also requires the bulky optical system design to fix field-of-view (FOV) between the focal stacks, and an additional device for sensor shifting. Also, the reconstructed light field is texture-dependent and low-quality because it uses either a high-pass filter or a guided filter for back-projection. This paper presents a simple light field acquisition method based on chromatic aberration of only one defocused image pair. An image with chromatic aberration has a different defocus distribution for each R, G, and B channel. Thus, the focal stack can be synthesized with structural similarity (SSIM) 0.96 from only one defocused image pair. Then this image pair is also used to estimate the depth map by depth-from-defocus (DFD) using chromatic aberration (chromatic DFD). The depth map obtained by chromatic DFD is used for high-quality light field reconstruction. Compared to existing light field indirect acquisition, the proposed method requires only one pair of defocused images and can clearly reconstruct light field images with Blind/Referenceless Image Spatial Quality Evaluator (BRISQUE) scores lowered by 17%-38% and with Perception-Based Image Quality Evaluator (PIQE) scores lowered by 19%-45%. A defocused image pair is acquired by our customized compact optical system consisting of only three lenses, including a varifocal lens. Image processing and image quality evaluation are all performed using MATLAB.
使用透镜阵列的直接光场采集方法需要复杂的系统且分辨率较低。另一方面,也可以通过对无透镜阵列的焦堆栈图像进行反投影来间接采集光场,其提供的分辨率与传感器分辨率一样高。然而,它还需要庞大的光学系统设计来固定焦堆栈之间的视场(FOV),以及用于传感器移动的附加装置。此外,重建的光场依赖于纹理且质量较低,因为它在反投影时使用了高通滤波器或引导滤波器。本文提出了一种基于仅一对散焦图像的色差的简单光场采集方法。具有色差的图像在每个R、G和B通道上具有不同的散焦分布。因此,仅从一对散焦图像就可以合成结构相似性(SSIM)为0.96的焦堆栈。然后,这对图像还用于通过使用色差的离焦深度(DFD)(色差DFD)来估计深度图。通过色差DFD获得的深度图用于高质量的光场重建。与现有的光场间接采集相比,该方法仅需要一对散焦图像,并且可以清晰地重建光场图像,其盲/无参考图像空间质量评估器(BRISQUE)分数降低了17%-38%,基于感知的图像质量评估器(PIQE)分数降低了19%-45%。一对散焦图像由我们定制的仅由三个透镜组成的紧凑型光学系统采集,包括一个变焦透镜。图像处理和图像质量评估均使用MATLAB进行。