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利用介电弹性体驱动的阿尔瓦雷兹透镜实现连续光学变焦复眼成像

Continuous Optical Zoom Compound Eye Imaging Using Alvarez Lenses Actuated by Dielectric Elastomers.

作者信息

Chen Chuanxun, Hao Qun, Liu Lin, Cao Jie, Qiao Zhibo, Cheng Yang

机构信息

Key Laboratory of Biomimetic Robots and Systems, Ministry of Education, Beijing Institute of Technology, Beijing 100081, China.

Yangtze Delta Region Academy of Beijing Institute of Technology, Jiaxing 314003, China.

出版信息

Biomimetics (Basel). 2024 Jun 20;9(6):374. doi: 10.3390/biomimetics9060374.

Abstract

The compound eye is a natural multi-aperture optical imaging system. In this paper, a continuous optical zoom compound eye imaging system based on Alvarez lenses is proposed. The main optical imaging part of the proposed system consists of a curved Alvarez lens array (CALA) and two Alvarez lenses. The movement of the CALA and two Alvarez lenses perpendicular to the optical axis is realized by the actuation of the dielectric elastomers (DEs). By adjusting the focal length of the CALA and the two Alvarez lenses, the proposed system can realize continuous zoom imaging without any mechanical movement vertically to the optical axis. The experimental results show that the paraxial magnification of the target can range from ∼0.30× to ∼0.9×. The overall dimensions of the optical imaging part are 54 mm × 36 mm ×60 mm (L × W × H). The response time is 180 ms. The imaging resolution can reach up to 50 lp/mm during the optical zoom process. The proposed continuous optical zoom compound eye imaging system has potential applications in various fields, including large field of view imaging, medical diagnostics, machine vision, and distance detection.

摘要

复眼是一种天然的多孔径光学成像系统。本文提出了一种基于阿尔瓦雷兹透镜的连续光学变焦复眼成像系统。该系统的主要光学成像部分由一个曲面阿尔瓦雷兹透镜阵列(CALA)和两个阿尔瓦雷兹透镜组成。CALA和两个阿尔瓦雷兹透镜垂直于光轴的移动通过介电弹性体(DEs)的驱动来实现。通过调整CALA和两个阿尔瓦雷兹透镜的焦距,该系统可以在不进行任何垂直于光轴的机械移动的情况下实现连续变焦成像。实验结果表明,目标的近轴放大倍数范围为0.30×至0.9×。光学成像部分的整体尺寸为54 mm×36 mm×60 mm(长×宽×高)。响应时间为180 ms。在光学变焦过程中,成像分辨率可达50 lp/mm。所提出的连续光学变焦复眼成像系统在包括大视场成像、医学诊断、机器视觉和距离检测等各个领域都有潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9890/11202164/fe892197a452/biomimetics-09-00374-g001.jpg

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