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使用有机光电转换膜进行高分辨率光场摄影的双分辨率光场成像概念。

Concept of dual-resolution light field imaging using an organic photoelectric conversion film for high-resolution light field photography.

作者信息

Sugimura Daisuke, Kobayashi Suguru, Hamamoto Takayuki

出版信息

Appl Opt. 2017 Nov 1;56(31):8687-8698. doi: 10.1364/AO.56.008687.

Abstract

Light field imaging is an emerging technique that is employed to realize various applications such as multi-viewpoint imaging, focal-point changing, and depth estimation. In this paper, we propose a concept of a dual-resolution light field imaging system to synthesize super-resolved multi-viewpoint images. The key novelty of this study is the use of an organic photoelectric conversion film (OPCF), which is a device that converts spectra information of incoming light within a certain wavelength range into an electrical signal (pixel value), for light field imaging. In our imaging system, we place the OPCF having the green spectral sensitivity onto the micro-lens array of the conventional light field camera. The OPCF allows us to acquire the green spectra information only at the center viewpoint with the full resolution of the image sensor. In contrast, the optical system of the light field camera in our imaging system captures the other spectra information (red and blue) at multiple viewpoints (sub-aperture images) but with low resolution. Thus, our dual-resolution light field imaging system enables us to simultaneously capture information about the target scene at a high spatial resolution as well as the direction information of the incoming light. By exploiting these advantages of our imaging system, our proposed method enables the synthesis of full-resolution multi-viewpoint images. We perform experiments using synthetic images, and the results demonstrate that our method outperforms other previous methods.

摘要

光场成像是一种新兴技术,可用于实现多种应用,如多视点成像、焦点改变和深度估计。在本文中,我们提出了一种双分辨率光场成像系统的概念,以合成超分辨率多视点图像。本研究的关键创新点在于使用有机光电转换膜(OPCF),它是一种将特定波长范围内入射光的光谱信息转换为电信号(像素值)的器件,用于光场成像。在我们的成像系统中,我们将具有绿色光谱灵敏度的OPCF放置在传统光场相机的微透镜阵列上。OPCF使我们能够仅在中心视点以图像传感器的全分辨率获取绿色光谱信息。相比之下,我们成像系统中的光场相机光学系统在多个视点(子孔径图像)捕获其他光谱信息(红色和蓝色),但分辨率较低。因此,我们的双分辨率光场成像系统使我们能够同时以高空间分辨率捕获目标场景的信息以及入射光的方向信息。通过利用我们成像系统的这些优势,我们提出的方法能够合成全分辨率多视点图像。我们使用合成图像进行实验,结果表明我们的方法优于其他先前的方法。

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