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基于几何的微型、低畸变、广角相机镜头准非球面表面描述与设计方法

Geometrical-based quasi-aspheric surface description and design method for miniature, low-distortion, wide-angle camera lens.

作者信息

Zhuang Zhenfeng, Dallaire Xavier, Parent Jocelyn, Roulet Patrice, Thibault Simon

出版信息

Appl Opt. 2020 Sep 20;59(27):8408-8417. doi: 10.1364/AO.400528.

Abstract

In addition to utilizing traditional aspheric surfaces, complicated geometric curves for meeting stringent design requirements can also be adopted in optical systems. In this paper, we investigate two geometric shape modeling schemes, namely, pedal and cosine curves, which allow for representation of an S-shaped profile for the optical design of a camera lens. To obtain a powerful tool for representing a quasi-aspheric surface (QAS) to resemble the designed form surface, we linearly combine the pedal/cosine function with a base conic section. The detailed parameterization process of representation is discussed in this paper. Subsequently, an existing starting point that has similar specifications to that of the design requirements is selected. During the optimization process, a least-squares fitting algorithm is implemented to obtain the optimal coefficient values of the proposed QAS representation, and then the parameters (radii, air thickness, lens thickness, coefficients, materials, etc.) of the optical system are set to optimize the optical performance, gradually aiming to minimize the predefined merit function. We demonstrate the applicability of the proposed geometric modeling schemes via two design examples. In comparison to a conventional aspheric camera lens of the same specifications, the optical performance with respect to field of view and distortion has been improved due to higher degrees of design freedom. We believe that the proposed technology of geometric modeling schemes promises to improve optical performance due to these higher degrees of freedom and appears to be applicable to many different camera lenses.

摘要

除了使用传统的非球面表面外,光学系统中还可采用复杂的几何曲线来满足严格的设计要求。在本文中,我们研究了两种几何形状建模方案,即垂足曲线和余弦曲线,它们可用于表示相机镜头光学设计中的S形轮廓。为了获得一种强大的工具来表示准非球面表面(QAS)以类似于设计的成型表面,我们将垂足/余弦函数与基本圆锥曲线进行线性组合。本文讨论了表示的详细参数化过程。随后,选择一个与设计要求具有相似规格的现有起始点。在优化过程中,实施最小二乘拟合算法以获得所提出的QAS表示的最佳系数值,然后设置光学系统的参数(半径、空气厚度、透镜厚度、系数、材料等)以优化光学性能,逐步旨在最小化预定义的品质因数。我们通过两个设计示例展示了所提出的几何建模方案的适用性。与相同规格的传统非球面相机镜头相比,由于更高的设计自由度,在视野和畸变方面的光学性能得到了改善。我们相信,所提出的几何建模方案技术由于这些更高的自由度有望改善光学性能,并且似乎适用于许多不同的相机镜头。

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