Improved 3D Resolution Analysis of N-Ocular Imaging Systems with the Defocusing Effect of an Imaging Lens

Min-Chul Lee, Kotaro Inoue, M. Cho
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Abstract

In this paper, we propose an improved framework to analyze an N-ocular imaging system under fixed constrained resources such as the number of image sensors, the pixel size of image sensors, the distance between adjacent image sensors, the focal length of image sensors, and field of view of image sensors. This proposed framework takes into consideration, for the first time, the defocusing effect of the imaging lenses according to the object distance. Based on the proposed framework, the Nocular imaging system such as integral imaging is analyzed in terms of depth resolution using two-point-source resolution analysis. By taking into consideration the defocusing effect of the imaging lenses using ray projection model, it is shown that an improved depth resolution can be obtained near the central depth plane as the number of cameras increases. To validate the proposed framework, Monte Carlo simulations are carried out and the results are analyzed.
具有成像透镜散焦效应的n眼成像系统的改进三维分辨率分析
在本文中,我们提出了一个改进的框架来分析固定约束资源(如图像传感器数量、图像传感器像素大小、相邻图像传感器之间的距离、图像传感器的焦距和图像传感器的视场)下的n眼成像系统。该框架首次考虑了成像透镜根据物体距离产生的离焦效应。在此基础上,利用两点源分辨率分析方法对积分成像等光学成像系统进行了深度分辨率分析。采用射线投影模型考虑成像透镜的离焦效应,结果表明,随着摄像机数量的增加,在中心深度平面附近的深度分辨率有所提高。为了验证所提出的框架,进行了蒙特卡洛仿真,并对结果进行了分析。
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