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Information optimized extended depth-of-field imaging systems

机译:信息优化扩展景深成像系统

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摘要

Classical optical design techniques are oriented toward optimizing imaging system response at a single image plane. Recently, researchers have proposed to greatly extend the imaging system depth of field, by introducing large deformations of the optical wavefront, coupled with subsequent post-detection image restoration. In one case, a spatially separable cubic phase plate is placed at the pupil plane of an imaging system to create an extremely large effective depth of field. The price for this extended performance is noise amplification in the restored imagery relative to a perfectly focused image. In this paper we perform a series of numerical design studies based on information theoretic analyses to determine when a cubic phase system is preferable to a standard optical imaging system. The amount of optical path difference (OPD) associated with the cubic phase plate is directly related to the amount of achievable depth of field. A large OPD allows greater depth of field at the expense of greater noise in the restored image. The information theory approach allows the designer to study the effect of the cubic phase OPD for a given depth of field requirement.
机译:经典光学设计技术朝向单个图像平面优化成像系统响应。最近,研究人员通过引入光学波前的大变形,加上随后的检测后图像恢复来大大地扩展成像系统景深。在一个情况下,将空间可分离的立方相板放置在成像系统的瞳孔平面上,以产生极大的有效景深。这种扩展性能的价格是相对于完美聚焦图像的恢复图像中的噪声放大。在本文中,我们基于信息理论分析执行一系列数值设计研究,以确定当立方相位系统优于标准光学成像系统。与立方板相关联的光路径(OPD)的量与可实现的景深的量直接相关。大型OPD在恢复图像中牺牲更大的噪声允许更大的景深。信息理论方法允许设计人员研究立方相OPD对给定深度的影响。

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