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Investigation of extended depth-of-field f/8 camera with optimized cubic phase mask and digital restoration

机译:具有优化立方相位掩模和数字恢复的扩展景深F / 8摄像头的调查

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An investigation of extended depth-of-field camera with optimized phase mask and digital restoration is presented. The goal of this paper is to implement the wavefront coding technique without affecting much of the original design, and the design has taken the complexity of imaging system into consideration. The optimized strength of cubic phase mask (CPM) is based on the analytical optimal solution for the task-based imaging system [J. Opt. Soc. Am. A 25, 1064 (2008)]. The noisy intermediate images of CPM system with highest spatial frequency of interest can be effectively restored by vector-based Richardson-Lucy algorithm. Restoration from the system with generalized CPM produces precise image position than the system with CPM does. In general, the CPM system procures modulation transfer function higher than 0.195 in the whole depth-of-field, and the mean squared error of the restored images are less than 5 %.
机译:提出了具有优化相位掩模和数字恢复的扩展近场摄像机的研究。本文的目标是实现波前编码技术而不影响大部分原始设计,并且设计考虑了成像系统的复杂性。立方相位掩模(CPM)的优化强度基于基于任务的成像系统的分析最优解[J.选择。 SOC。是。 A 25,1064(2008)]。可以通过基于向量的Richardson-Lucy算法有效地恢复具有最高空间频率的CPM系统的嘈杂中间图像。通过具有广义CPM的系统从系统恢复产生比具有CPM的系统的精确图像位置。通常,CPM系统在整个景深中的调制传递函数高于0.195,恢复图像的平均平方误差小于5%。

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