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期刊信息
  • 主管单位:
  • 中国科学技术协会
  • 主办单位:
  • 中国仪器仪表学会、上海光学仪器研究所、中国光学学会工程光学专业委员会
  • 主  编:
  • 庄松林
  • 地  址:
  • 上海市军工路516号上海理工大学《光学仪器》编辑部
  • 邮政编码:
  • 200093
  • 联系电话:
  • 021-55270110
  • 电子邮件:
  • gxyq@usst.edu.cn
  • 国际标准刊号:
  • 1005-5630
  • 国内统一刊号:
  • 31-1504/TH
  • 邮发代号:
  • 单  价:
  • 15.00
  • 定  价:
  • 90.00
应用多个非球面优化鱼眼镜头的方法
A method for optimizing fisheye lenses by applying multiple aspheric surfaces
投稿时间:2021-12-28  
DOI:10.3969/j.issn.1005-5630.2022.03.007
中文关键词:  非球面优化  光学设计  波像差  鱼眼镜头  平面对称光学系统
英文关键词:aspheric optimization  lens design  wave aberration  fisheye lens  plane symmetric optical system
基金项目:国家自然科学基金(61975111)
作者单位E-mail
高冰冰 上海大学 精密机械系,上海 200072  
吕丽军 上海大学 精密机械系,上海 200072 lulijun@shu.edu.cn 
曾涛 上海大学 精密机械系,上海 200072  
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全文下载次数: 2156
中文摘要:
      对于鱼眼镜头一类光学系统,其超大视场的物点对于光学系统的成像,是符合平面对称光学系统的成像规律的。应用LU发展的平面对称光学系统的波像差理论,研究如何在鱼眼镜头光学系统中应用非球面对成像系统进行优化设计。首先,通过计算各个光学面的非球面系数对超大视场光学系统波像差的影响,找到受非球面系数变化影响最大的几个光学面;然后,以这几个面的非球面系数为变量,以光学系统调制传递函数作为评价函数,应用自适应归一化实数编码遗传算法,优化设计鱼眼镜头光学系统;最后,通过实例验证了所提出方法的有效性。所提出的方法可以有效地确定一个或多个最佳非球面的位置,对优化设计鱼眼镜头系统具有指导意义。
英文摘要:
      For optical systems such as fisheye lenses, the object point of the super-large field of view conforms to the imaging law of the plane-symmetric optical system. This paper applies the wave aberration theory of plane symmetry optical system developed by LU to study how to optimize the aspheric imaging system in the optical system of the fisheye lens. First, by calculating the influence of the aspheric coefficients of each optical surface on the wave aberration of the super-large field of view optical system, the several optical surfaces that are mostly affected by the changes in the aspheric coefficients are found. Then ,the aspheric coefficients of these surfaces as variables and the modulation transfer function of the optical system as the evaluation function are used, and the adaptive normalized real-coded genetic algorithm is applied to optimize the fisheye lens optical system. Based on the verification of examples, the method in this paper can effectively determine the position of one or more optimal aspheric surfaces, which has guiding significance for optimizing the fisheye lens system.
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