Shao Mengqi, Zhang Lei, Jia Xuezhi
Appl Opt. 2021 Jan 20;60(3):539-546. doi: 10.1364/AO.409658.
In order to improve the optical quality and lightweight ratio of a mirror, optomechanical analysis and optimization for the primary mirror of a space camera are carried out. The mirror surface performance under multiple load conditions is considered, including static gravity and uniform temperature rise load, as well as nonuniform temperature distribution loads. Sensitivities of the surface performance to the size parameters of the mirror are analyzed. The numerical simulations show that the size parameters obviously affect the performance and which parameters are key. The computed surface performance is analyzed with the help of ray-tracing software, and the contribution of size parameters to system optical performance is further evaluated. A size parameter optimization model is established to optimize the optical quality of the mirror. Finally, engineering analysis and dynamic tests are carried out. The results show that mechanical properties of the mirror are excellent, and the relative error of finite element analysis and dynamic test is within 10%. This verifies the accuracy of the model and the effectiveness of the optimization method.
为了提高反射镜的光学质量和轻量化比例,对空间相机的主反射镜进行了光机分析与优化。考虑了多种载荷条件下的镜面性能,包括静态重力和均匀温升载荷以及非均匀温度分布载荷。分析了表面性能对反射镜尺寸参数的敏感度。数值模拟表明,尺寸参数明显影响性能且哪些参数是关键的。借助光线追迹软件对计算得到的表面性能进行分析,并进一步评估尺寸参数对系统光学性能的贡献。建立尺寸参数优化模型以优化反射镜的光学质量。最后,进行了工程分析和动态测试。结果表明,反射镜的力学性能优异,有限元分析与动态测试的相对误差在10%以内。这验证了模型的准确性和优化方法的有效性。