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Frequency analysis and optimization of the diffractive plenoptic camera

机译:衍射压力镜相机的频率分析与优化

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Two different configurations of the Diffractive Plenoptic Camera (DPC), the DPC and the Intermediate Image (Ⅱ) DPC, had previously been built and their performances compared. The DPC couples a diffractive optic with plenoptic camera designs that provide snapshot spectral imaging capabilities but produce rendered images with low pixel count and low spatial resolution. The IIDPC, a modified setup of the DPC, was introduced as a system that could improve the spatial resolution. The IIDPC improved resolution over a narrow centralized spectral range, while the DPC had sustained resolution over a larger spectral range. Further study of both systems was desired to understand what the limiting factor in their performance was. Frequency analysis of both systems was carried out to determine the limiting component of each system. The limiting optic in both systems was determined to be the Microlens Array (MLA).
机译:先前已经构建了两种不同的衍射增压镜相机(DPC),DPC和中间图像(Ⅱ)DPC的配置及其性能。 DPC耦合衍射光学器件,具有增压镜设计,提供快照光谱成像能力,但产生具有低像素计数和低空间分辨率的渲染图像。 IIDPC是DPC的修改设置,作为可以提高空间分辨率的系统。 IIDPC在窄的集中光谱范围内提高了分辨率,而DPC在较大的光谱范围内持续分辨率。期望对两个系统的进一步研究是理解其性能中的限制因素是什么。进行了两个系统的频率分析以确定每个系统的限制部件。两个系统中的限制光学器被确定为微透镜阵列(MLA)。

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