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Q-type非球面技术在超短焦全景镜头设计中的应用
引用本文:郑玮,林峰.Q-type非球面技术在超短焦全景镜头设计中的应用[J].光子学报,2012,41(11):1317-1320.
作者姓名:郑玮  林峰
作者单位:福建师范大学物理与光电信息科技学院,医学光电科技与技术教育部重点实验室,福州 350007
基金项目:福建省教育厅高校产学研合作项目(No. JA10061)资助
摘    要:介绍了Q-type新型非球面多项式算法及其相比于传统非球面多项式在加工、制造方面的优势.引入超短焦全景镜头焦距与分辨率的关系,利用Q-type非球面技术,设计了一款焦距0.657mm,焦距像高比≤0.184的全景镜头.该镜头由7组8片透镜组成,包含4面非球面透镜.设计结果表明:在空间频率为227 lp/mm处,调制传递函数值大于0.3,接近衍射极限;在垂直半视场角45°~90°的环景边缘区域,图像角分辨率达到了1.163 7 mm/(°),使得环景展开后有较高分辨率,表明Q-type非球面技术在超短焦全景镜头设计中有一定优越性.

关 键 词:光学设计  全景镜头  Q-type非球面  分辨率
收稿时间:2012/5/31

Application of Q-type Asphere in the Design of Super Short-focus Panoramic Lens
ZHENG Wei , LIN Feng.Application of Q-type Asphere in the Design of Super Short-focus Panoramic Lens[J].Acta Photonica Sinica,2012,41(11):1317-1320.
Authors:ZHENG Wei  LIN Feng
Abstract:The Q-type novel aspherical polynomials and its advantages are introduced in the aspect of algorithm, fabrication and manufacturing relative to the traditional aspherical polynomial-based aspheres. The Q-type formulation is applied to design a panoramic lens based on the relationship of super short-focus panoramic lens′ focus and resolution. The designed panoramic lens′ focus is 0.657 mm and ratio of focus and image height is less than 0.184, which includes 4 aspheric surface. This result shows that the spatial pixel of scenic circle area with half vertical field 45°~90° is up to 1.163 7 mm/(°), and the modulation transformation function is greater than 0.3 at the spatial frequency of 227 lp/mm. The result demonstrates the Q-type formulations is certain advantages in super short-focus panoramic lens.
Keywords:Optical design  Panoramic lens  Q-type asphere  Resolution
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