论文标题

plenopticam v1.0:一个光场成像框架

PlenoptiCam v1.0: A light-field imaging framework

论文作者

Hahne, Christopher, Aggoun, Amar

论文摘要

在狭窄的范围深度传感应用中,光摄像机对于丰富的3-D信息检索起着至关重要的作用。由宽容摄像机收集的曝光构成光场的关键障碍是计算校准,对齐和重新安排四维图像数据。已经提出了几项尝试通过调整专用于特定元素摄像机的管道来提高整体图像质量的尝试,并以高度计算负载为代价,以提高观点的一致性。本文提出的框架提高了先前的结果,这要归功于其新型的微图像量表空间分析,用于通用摄像机校准,独立于镜头规格及其视差不变,具有成本效益的视点颜色均衡,从最佳传输理论中。传感器和微透镜网格的伪影以创新的方式进行补偿,以使子孔图图像提取,计算重新集中和scheimpflug呈现功能具有卓越的质量。使用既定图像指标的基准比较表明,在大多数情况下,我们提出的管道优于最先进的工具链。 Wasserstein距离的结果进一步表明,我们的色彩转移超出了现有的传输方法。我们的算法是在开源许可下发布的,提供跨平台兼容性,几乎没有依赖关系和不同的用户界面。这使得对同行研究人员,开发人员,摄影师,数据科学家以及该领域工作的其他摄像机技术进行了繁殖和实验。

Light-field cameras play a vital role for rich 3-D information retrieval in narrow range depth sensing applications. The key obstacle in composing light-fields from exposures taken by a plenoptic camera is to computationally calibrate, align and rearrange four-dimensional image data. Several attempts have been proposed to enhance the overall image quality by tailoring pipelines dedicated to particular plenoptic cameras and improving the consistency across viewpoints at the expense of high computational loads. The framework presented herein advances prior outcomes thanks to its novel micro image scale-space analysis for generic camera calibration independent of the lens specifications and its parallax-invariant, cost-effective viewpoint color equalization from optimal transport theory. Artifacts from the sensor and micro lens grid are compensated in an innovative way to enable superior quality in sub-aperture image extraction, computational refocusing and Scheimpflug rendering with sub-sampling capabilities. Benchmark comparisons using established image metrics suggest that our proposed pipeline outperforms state-of-the-art tool chains in the majority of cases. Results from a Wasserstein distance further show that our color transfer outdoes the existing transport methods. Our algorithms are released under an open-source license, offer cross-platform compatibility with few dependencies and different user interfaces. This makes the reproduction of results and experimentation with plenoptic camera technology convenient for peer researchers, developers, photographers, data scientists and others working in this field.

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