Automated design of zoom riflescope with extended parameters

V. Sokurenko
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Abstract

Sokurenko V. M., Sokurenko O. M. AUTOMАТED DESIGN OF ZOOM RIFLESCOPE WITH EXTENDED PARAMETERS Background. Designing an arbitrary afocal zoom optical system is a complex and multidimensional problem. It cannot be solved analytically and requires the essential experience and efforts of the designer. Objective. The purpose of the paper is to present and verify by simulation the method and means to perform an automated design of complex multi-lens afocal zoom optical systems having variable parameters and characteristics. Methods. Using the developed specialized software with implemented modification of the adaptive Cauchy differential evolution algorithm for the parametric synthesis of multi-component optical systems of zoom riflescopes with extended functional parameters. Results. The developed optical system of the riflescope provides the 5× magnification ratio and the angular field of view in the object space from 3.26° to 0.83°. It has a reticle located in the first focal plane, the entrance pupil diameter of 60 mm, the eye relief within the range 106...111 mm, and the maximum system length of 390 mm. The riflescope contains 13 lenses in 10 components. The performed simulations showed that the time interval required for direct automated design of the riflescope’s optical system is about 30 hours for the total number of unknown parameters (variables) equal to 91. The root-mean-square values ​​of the angular aberrations of axial beams in all (five) configurations of the synthesized zoom system do not exceed 1.25 arc minute in the whole spectral range. The algorithm helps to determine the prescription data of optical systems, taking into account the technical requirements and restrictions specified by the designer. Conclusions: Computer simulations of the development of the zoom riflescope with the magnification of 5-25×, the entrance pupil diameter of 60 mm, and the reticle located in the first focal plane have confirmed the effectiveness of the proposed algorithm to design automatically complex multi-lens optical systems with variable parameters. The obtained results proved the high image quality of the generated 13-lens riflescope with the long eye relief. The implemented modification of the adaptive Cauchy differential evolution method can be considered a powerful tool that helps to automate the parametric synthesis of multicomponent optical systems of zoom riflescopes, taking into account the requirements set by the designer. Future research should test the feasibility of automated design of other riflescopes containing more lenses and providing extreme performances.
扩展参数变焦步枪镜的自动化设计
Sokurenko V.M.,Sokurenco O.M.在扩展参数背景下自动设计变焦步枪。任意无焦变焦光学系统的设计是一个复杂的多维问题。它无法通过分析解决,需要设计者的基本经验和努力。客观的本文的目的是提出并通过仿真验证具有可变参数和特性的复杂多透镜无焦变焦光学系统的自动设计方法和手段。方法。使用开发的专用软件,对自适应柯西微分进化算法进行了修改,用于具有扩展函数参数的变焦步枪多分量光学系统的参数合成。后果已开发的步枪镜光学系统提供了5倍的放大率和3.26°至0.83°的物体空间角视场。它有一个位于第一焦平面的分划板,入射瞳孔直径为60毫米,眼睛起伏在106…111毫米范围内,最大系统长度为390毫米。步枪镜包含10个组件中的13个透镜。所进行的模拟表明,在未知参数(变量)总数等于91的情况下,步枪镜光学系统的直接自动化设计所需的时间间隔约为30小时。均方根值​​在合成变焦系统的所有(五)配置中的轴向光束的角像差的总和在整个光谱范围内不超过1.25弧分。该算法有助于确定光学系统的处方数据,同时考虑到设计者指定的技术要求和限制。结论:对放大倍数为5-25×、入射光瞳直径为60mm、分划板位于第一焦平面的变焦步枪镜的研制进行了计算机仿真,验证了该算法在变参数自动设计复杂多透镜光学系统中的有效性。实验结果证明了所生成的13透镜长眼后凸步枪镜具有较高的成像质量。自适应柯西微分进化方法的实施修改可以被认为是一种强大的工具,有助于在考虑设计师设定的要求的情况下,自动进行变焦步枪多组分光学系统的参数合成。未来的研究应该测试其他包含更多透镜并提供极端性能的步枪镜的自动化设计的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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