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Blur-metric-based resolution enhancement of computationally reconstructed integral images

机译:基于模糊度量的计算重建积分图像的分辨率增强

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摘要

A computational integral imaging reconstruction technique can reconstruct a set of plane images of three-dimensional (3-D) objects along the output plane, in which only the plane object image (POI) reconstructed on the right planes where the objects were positioned is highly focused, whereas the other POIs reconstructed away from these planes are unfocused and blurred. In fact, these blurred POIs act as additional noises to other object images reconstructed on different output planes, so that the resolution of reconstructed object images should be considerably deteriorated. In this paper, a novel approach is proposed to effectively reduce the blurred images occurring in the focused POIs by employing a blur metric. From the estimated blur metric of each reconstructed POI, the right output planes where the objects were located can be detected. In addition, with an estimated blur metric, focused POIs can be adaptively eroded by a simple gray level erosion operation because it reduces regional expansion caused by the blur effect. The gray values of the eroded POIs are then finally remapped by referencing the original POIs. Some experiments revealed an average increase of 1.95 dB in the peak signal-to-noise ratio in the remapped POIs compared with that of the originally reconstructed POIs, and that the original forms of the object images in the remapped POIs could be preserved even after they had gone through an erosion operation. This feasibility test of the proposed scheme finally suggests a possibility of its application to robust detection and recognition of 3-D objects in a scene.
机译:计算积分成像重建技术可以沿输出平面重建一组三维(3-D)对象的平面图像,其中只有在放置对象的右侧平面上重建的平面对象图像(POI)高度聚焦,而远离这些平面重建的其他POI则未聚焦且模糊。实际上,这些模糊的POI对在不同输出平面上重建的其他目标图像起到了额外的噪声的作用,因此重建的目标图像的分辨率应大大降低。在本文中,提出了一种新颖的方法来通过采用模糊度量来有效减少聚焦POI中出现的模糊图像。根据每个重建的POI的估计模糊度量,可以检测到对象所在的正确输出平面。另外,利用估计的模糊度量,可以通过简单的灰度腐蚀操作来自适应地腐蚀聚焦的POI,因为它可以减少由模糊效应引起的区域扩展。然后最终通过参考原始POI重新映射侵蚀的POI的灰度值。一些实验表明,与原始重建的POI相比,重新映射的POI的峰值信噪比平均增加1.95 dB,并且即使重新映射的POI仍可以保留对象图像的原始形式。经历了腐蚀操作提出的方案的可行性测试最终表明了将其应用于场景中3D对象的鲁棒检测和识别的可能性。

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