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Optical design of an athermalised dual field of view step zoom optical system in MWIR

机译:MWIR中非热化双视场步进变焦光学系统的光学设计

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In this paper, the optical design of an athermalised dual field of view step zoom optical system in MWIR (3.7μm -4.8μm) is described. The dual field of view infrared optical system is designed based on the principle of passive athermalization method not only to achieve athermal optical system but also to keep the high image quality within the working temperature between -40℃ and +60℃. The infrared optical system used in this study had a 320 pixel x 256 pixel resolution, 20μm pixel pitch size cooled MWIR focal plane array detector. In this study, the step zoom mechanism, which has the axial motion due to consisting of a lens group, is considered to simplify mechanical structure. The optical design was based on moving a single lens along the optical axis for changing the optical system's field of view not only to reduce the number of moving parts but also to athermalize for the optical system. The optical design began with an optimization process using paraxial optics when first-order optics parameters are determined. During the optimization process, in order to reduce aberrations, such as coma, astigmatism, spherical and chromatic aberrations, aspherical surfaces were used. As a result, athermalised dual field of view step zoom optical design is proposed and the performance of the design using proposed method was verified by providing the focus shifts, spot diagrams and MTF analyzes' plots.
机译:在本文中,描述了在MWIR(3.7μm-4.8μm)中无热双视场步距变焦光学系统的光学设计。基于被动消热方法原理设计了双视场红外光学系统,不仅实现了消热光学系统,而且在-40℃至+ 60℃的工作温度范围内保持了较高的图像质量。本研究中使用的红外光学系统具有320像素x 256像素的分辨率,20μm像素间距尺寸的冷却MWIR焦平面阵列检测器。在这项研究中,由于镜头组组成而具有轴向运动的步进变焦机构被认为可以简化机械结构。光学设计基于沿光轴移动单个透镜,以改变光学系​​统的视场,不仅减少了移动部件的数量,而且使光学系统消热。光学设计从确定一阶光学参数时使用近轴光学的优化过程开始。在优化过程中,为了减少像差,例如彗差,像散,球面和色差,使用了非球面。结果,提出了一种非热化双视场步距变焦光学设计,并通过提供焦点偏移,点图和MTF分析图来验证使用所提出方法的设计性能。

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