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一种大孔径高分辨率紧凑型双通道全景环形透镜的设计。

Design of a compact dual-channel panoramic annular lens with a large aperture and high resolution.

作者信息

Gao Shaohua, Tsyganok Elena A, Xu Xiping

出版信息

Appl Opt. 2021 Apr 10;60(11):3094-3102. doi: 10.1364/AO.418976.

Abstract

We propose a compact dual-channel panoramic annular lens (PAL) with a large aperture and high resolution to solve three major shortcomings of conventional PAL systems: resolution, imaging quality, and compactness. Using polarization technology, the system integrates two optical channels to eliminate the central blind area. Using our PAL aperture ray-tracing model, the large aperture PAL system with a low F-number of 2.5 and a diameter ratio of 1.5 is realized. The field of view (FoV) of the front channel is 360×(0-45), and the FoV of the side channel is 360×(45-100). Both channels apply Q-type aspheres. The Airy radii of the front channel and the side channel are 1.801 and 1.798 µm, respectively. It indicates that they match the 1.8 µm pixel sensor and can form a great image on the same sensor. The modulation transfer function at 157 lp/mm is greater than 0.4 over the entire FoV. The F- distortion is less than 5%, and the relative illuminance is higher than 0.78 in the two channels. The excellent imaging results prove the feasibility of our PAL design method and the advantages of the compact dual-channel PAL system for space-constrained scenes.

摘要

我们提出了一种具有大孔径和高分辨率的紧凑型双通道全景环形透镜(PAL),以解决传统PAL系统的三个主要缺点:分辨率、成像质量和紧凑性。该系统采用偏振技术,集成了两个光学通道以消除中央盲区。利用我们的PAL孔径光线追踪模型,实现了低F数为2.5且直径比为1.5的大孔径PAL系统。前通道的视场(FoV)为360×(0 - 45),侧通道的视场为360×(45 - 100)。两个通道均采用Q型非球面。前通道和侧通道的艾里半径分别为1.801和1.798 µm。这表明它们与1.8 µm像素传感器匹配,并且可以在同一传感器上形成高质量图像。在157 lp/mm处的调制传递函数在整个视场内大于0.4。F畸变小于5%,并且两个通道中的相对照度高于0.78。出色的成像结果证明了我们PAL设计方法的可行性以及紧凑型双通道PAL系统在空间受限场景中的优势。

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