Fast diffraction-pattern matching for object detection and recognition in digital holograms

M. Seifi, L. Denis, C. Fournier
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Abstract

A digital hologram is a 2-D recording of the diffraction fringes created by 3-D objects under coherent lighting. These fringes encode the shape and 3-D location information of the objects. By simulating re-lighting of the hologram, the 3-D wave field can be reconstructed and a volumetric image of the objects recovered. Rather than performing object detection and identification in this reconstructed volume, we consider direct recognition of diffraction-patterns in in-line holograms and show that it leads to superior performance. The huge variability of diffraction patterns with object shape and 3-D location makes diffraction-pattern matching computationally expensive. We suggest the use of a dimensionality reduction technique to circumvent this limitation and show good detection and recognition performance both on simulated and experimental holograms.
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用于数字全息图中目标检测和识别的快速衍射模式匹配
数字全息图是三维物体在相干光照下产生的衍射条纹的二维记录。这些条纹编码了物体的形状和三维位置信息。通过模拟全息图的再照明,可以重建三维波场并恢复物体的体像。而不是执行对象检测和识别在这个重建的体积,我们考虑直接识别衍射模式的在线全息图,并表明它导致优越的性能。衍射图随物体形状和三维位置的巨大变异性使得衍射图匹配的计算成本很高。我们建议使用降维技术来规避这一限制,并在模拟和实验全息图上显示良好的检测和识别性能。
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