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基于联合仿真的电润湿三液体透镜结构参数优选方法

黄鹏 宋跃 周斐强 周益航 何国强 谢中毅 张鑫龙

中国光学(中英文)2025,Vol.18Issue(1):78-88,11.
中国光学(中英文)2025,Vol.18Issue(1):78-88,11.DOI:10.37188/CO.2024-0130

基于联合仿真的电润湿三液体透镜结构参数优选方法

Optimizing structural parameters of electrowetting triple-liquid lens based on joint simulation technology

黄鹏 1宋跃 1周斐强 1周益航 1何国强 1谢中毅 1张鑫龙1

作者信息

  • 1. 桂林理工大学机械与控制工程学院广西高校先进制造与自动化技术重点实验室,广西桂林 541006
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摘要

Abstract

The electrowetting triple-liquid lens has excellent zoom performance,but its structural complexity and design difficulty are relatively high.Therefore,we propose a method for optimizing the structural para-meters of the electrowetting triple-liquid lens based on joint simulation.To design a triple-liquid lens,Com-sol and Zemax software are used to establish triple-liquid lens simulation models under different structural parameters,and its focal lengths under different voltages are obtained.The effects of height and taper on zoom range and initial focal length are analyzed,and a set of structural parameters with the maximum zoom range and the longest initial focal length is determined.To verify the method's reliability,we prepare the triple-liquid lens models with different heights and tapers,and conduct zoom experiments.The simulation and experimental results show that the initial focal length of the triple-liquid lens correlates positively with height and taper;the zoom range correlates positively with taper,but height is the main influencing factor.When the height is 12 mm and the taper is 20°,the lens has the most extensive zoom range and the longest initial focal length.When the taper is less than 15°,the simulation and experimental results are highly con-sistent.

关键词

电润湿三液体透镜/联合仿真/变焦实验/参数优选

Key words

electrowetting triple-liquid lens/joint simulation/zoom experiment/parameter optimization

分类

数理科学

引用本文复制引用

黄鹏,宋跃,周斐强,周益航,何国强,谢中毅,张鑫龙..基于联合仿真的电润湿三液体透镜结构参数优选方法[J].中国光学(中英文),2025,18(1):78-88,11.

基金项目

广西科技计划资助项目(No.AB22035041) (No.AB22035041)

梧州市中央引导地方科技发展资金项目(No.202201001) (No.202201001)

桂林理工大学科研启动基金资助(No.GUTQDJJ2016014)Supported by Guangxi Science and Technology Program(No.AB22035041) (No.GUTQDJJ2016014)

Wuzhou Central Leading Local Science and Technology Development Fund(No.202201001) (No.202201001)

Guilin University of Technology Scientific Re-search Startup Fundation(No.GUTQDJJ2016014) (No.GUTQDJJ2016014)

中国光学(中英文)

OA北大核心

2095-1531

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