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A Light Transport Framework for Lenslet Light Field Cameras

机译:小透镜光场相机的光传输框架

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Light field cameras capture full spatio-angular information of the light field, and enable many novel photographic and scientific applications. It is often stated that there is a fundamental trade-off between spatial and angular resolution, but there has been limited understanding of this trade-off theoretically or numerically. Moreover, it is very difficult to evaluate the design of a light field camera because a new design is usually reported with its prototype and rendering algorithm, both of which affect resolution. In this article, we develop a light transport framework for understanding the fundamental limits of light field camera resolution. We first derive the prefiltering model of lenslet-based light field cameras. The main novelty of our model is in considering the full space-angle sensitivity profile of the photosensor-in particular, real pixels have nonuniform angular sensitivity, responding more to light along the optical axis rather than at grazing angles. We show that the full sensor profile plays an important role in defining the performance of a light field camera. The proposed method can model all existing lenslet-based light field cameras and allows to compare them in a unified way in simulation, independent of the practical differences between particular prototypes. We further extend our framework to analyze the performance of two rendering methods: the simple projection-based method and the inverse light transport process. We validate our framework with both flatland simulation and real data from the Lytro light field camera.
机译:光场相机捕获光场的完整的空间角度信息,并实现许多新颖的摄影和科学应用。人们经常说,空间分辨率和角度分辨率之间存在根本的权衡,但是从理论上或数值上对这种权衡的理解仍然有限。此外,评估光场相机的设计非常困难,因为通常会通过其原型和渲染算法来报告新设计,而这两者都会影响分辨率。在本文中,我们开发了一种光传输框架,用于了解光场相机分辨率的基本限制。我们首先得出基于小透镜的光场相机的预滤波模型。我们模型的主要新颖之处在于考虑了光电传感器的整个空间角度灵敏度曲线,特别是,实际像素具有不均匀的角度灵敏度,对沿光轴而不是掠射角的光的响应更多。我们表明,完整的传感器配置文件在定义光场相机的性能方面起着重要作用。所提出的方法可以对所有现有的基于小透镜的光场相机进行建模,并允许在仿真中以统一的方式比较它们,而与特定原型之间的实际差异无关。我们进一步扩展了框架,以分析两种渲染方法的性能:基于投影的简单方法和逆光传输过程。我们通过平地模拟和Lytro光场相机的真实数据验证了我们的框架。

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