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Aberration correction of zoom lenses using evolutionary programming

机译:使用进化编程的变焦镜头像差校正

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摘要

A systematic approach for the aberration correction of zoom systems is presented. It is assumed that the powers and movements of the components of the zoom systems are known. Each component is considered as a system of thin lenses in contact. An evolutionary algorithm is developed to explore the multivariate hyperspace of design variables formed by spherical aberration, central coma, and longitudinal chromatic aberration of each component for infinite conjugate. The primary aberrations for each component at any zoom position are deduced from three central aberration coefficients of the component for infinite conjugate using conjugate shift formulas. Overall system aberrations of the zoom systems are determined by using stop shift formulas. In most of the zoom lens systems it is important to achieve stability in the primary aberrations of the system over the zoom range. This is facilitated by proper formulation of the merit function for the optimization process. Investigations have been carried out on four-component zoom lenses, and an ab initio structure of a four-component zoom lens is presented.
机译:提出了一种用于变焦系统像差校正的系统方法。假设变焦系统的组件的力量和运动是已知的。每个组件都被视为一个薄透镜接触系统。开发了一种进化算法来探索设计变量的多元超空间,该设计变量是由无限共轭的每个分量的球差,中心彗差和纵向色差形成的。使用共轭位移公式,从无限共轭分量的三个中心像差系数中推导出任何缩放位置上每个分量的基本像差。缩放系统的整体系统像差通过使用停止移位公式确定。在大多数变焦镜头系统中,重要的是要在整个变焦范围内实现系统主像差的稳定性。通过为优化过程正确制定绩效函数,可以促进这一过程。已经对四分量变焦镜头进行了研究,并且提出了四分量变焦镜头的从头开始的结构。

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  • 来源
    《Applied optics》 |2013年第23期|共9页
  • 作者

    Sourav Pal;

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  • 正文语种 eng
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