用于图像模拟的任意场的透镜psf估计

Sangmin Kim, Daekwan Kim, Ki-Chung Chung, J. Yim
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引用次数: 1

摘要

在移动智能手机相机中,由于高CRA(主光线角),图像质量在图像传感器的边缘会更差。估计这种影响的原因是至关重要的,因为图像质量在图像外围因亮度衰减和PSF(点扩散函数)的扩大而下降。为了预测从相机输出的中心到边缘的图像质量,我们提出了一种在任何特定图像场估计镜头psf的方法。该方法采用泽尼克多项式来考虑透镜像差,同时具有任意的空间采样。此外,还采用了根据光场估计瞳孔形状的方法。该方法分为两个步骤:1)瞳孔形状和Zernike多项式系数的估计,2)用估计的参数生成PSF。用典型的移动镜头对该方法进行了实验,评估了在0°f和0.8°f下PSF估计的性能。此外,利用估计的psf生成西门子星图,比较图像中心和边缘的分辨率。结果表明,边缘图像的MTF(调制传递函数)比中心图像差,表明边缘图像质量评估对于移动相机的预评估具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Estimation of any fields of lens PSFs for image simulation
In a mobile smartphone camera, image quality is more degraded towards the edges of an image sensor due to high CRA (Chief Ray Angle). It is critical to estimate the cause of this effect since image quality is degraded at image periphery from attenuating illuminance and broadening PSF (point spread function). In order to predict image quality from the center to the edge of the camera output, we propose a method to estimate lens PSFs at any particular image field. The method adopts Zernike polynomials to consider lens aberrations while having an arbitrary spatial sampling. Also, it employs estimating a pupil shape in accordance with an optical field. The proposed method has two steps: 1) estimation of a pupil shape and Zernike polynomial coefficients, and 2) generation of a PSF with estimated parameters. The method was experimented with a typical mobile lens to evaluate the performance of the PSF estimation at 0.0F and 0.8F. In addition, Siemens star images were generated with the estimated PSFs to compare resolutions at the center and the edge of an image. The results show that the image of the edge is worse than that of the center in terms of MTF (Modulation Transfer Function), showing the importance of assessing image quality at the edge for pre-evaluation of a mobile camera.
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