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Closed Loop Optimization of Opto-Mechanical Structure via Mechanical and Optical analysis software

机译:通过机械和光学分析软件闭环优化光机械结构

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This paper will discuss how mechanical and optical analysis software can be used together to optimize an opto-mechanical structure subjected to vibrational loading. Mechanical analysis software output is post processed into Zernike polynomial coefficients and rigid body motions for analysis with optical modeling software. Structural modifications can then be implemented to improve optical performance. A Cassegrain telescope, which can be utilized for laser radar applications, will be used to demonstrate this optimization. Two FEA solution methods are compared. Based on the deformation results of the FEA, Zernike polynomials and rigid body motions are generated and applied to the optical surfaces in CODE V~R. The effect of these deformations on wavefront can then be computed and compared to a required performance.
机译:本文将讨论机械和光学分析软件如何一起使用,以优化经过振动负荷的光机械结构。 机械分析软件输出被处理为Zernike多项式系数和刚性身体运动,用于使用光学建模软件进行分析。 然后可以实现结构修改以提高光学性能。 可以使用可用于激光雷达应用的Cassegrain望远镜,以证明这种优化。 比较两个FEA溶液方法。 基于FEA的变形结果,产生Zernike多项式和刚体运动,并施加到Code V〜R中的光学表面。 然后可以计算这些变形对波前的影响,并与所需的性能进行比较。

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