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Improved resolution three-dimensional integral imaging using optimized irregular lens-array structure

机译:使用优化的不规则透镜阵列结构提高分辨率的三维积分成像

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摘要

A rigorous approach is proposed to improve the resolution of integral imaging (InI) by finding the appropriate form of irregularity in the arrangement of the InI lenslets. The improvement of the resolution is achieved through redistribution of the sampling points in a uniform manner. The optimization process for finding the optimum pattern of the lens-array irregularity is carried out by minimizing a cost function, whose mathematical closed-form expression is provided. The minimization of the proposed cost function ensures the uniform distribution of sampling points and thus improves the resolution within the desired depth of field (DOF) and field of view (FOV). A set of standard resolution charts is used to demonstrate the improvement of the quality of the three-dimensional (3D) images obtained by using the optimized irregular lens array. It is shown that the overall level of the lateral and depth resolutions is improved at the same time.
机译:通过在InI小透镜的排列中找到合适的不规则形式,提出了一种严格的方法来提高积分成像(InI)的分辨率。通过以统一的方式重新分配采样点可以实现分辨率的提高。通过使成本函数最小化来执行寻找透镜阵列不规则性的最佳图案的优化过程,该成本函数提供了数学上的封闭形式。所建议的成本函数的最小化确保了采样点的均匀分布,从而提高了所需景深(DOF)和视场(FOV)内的分辨率。一组标准分辨率图表用于演示通过使用优化的不规则透镜阵列获得的三维(3D)图像质量的提高。结果表明,横向分辨率和深度分辨率的总体水平同时得到了提高。

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