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Optimization methods for thermal modeling of optomechanical systems

机译:光机系统热建模的优化方法

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Numerical techniques for a class of optimization problems associated with the thermal modeling of optomechanical systems are presented. Emphasis is placed on applications where radiation plays a dominant role. This work is motivated by the need for incorporating thermal analysis into integrated modeling of high-precision, space-borne optical systems. The specific problems of interest are thermal control to minimize the wavefront error by application of external heat loads, and the temperature estimation problem of predicting temperatures at arbitrary nodes of the model given noisy measurements on a subset of nodes. The proposed numerical techniques are briefly described and compared to existing algorithms. Their accuracy and robustness are demonstrated through numerical tests with models from ongoing NASX missions.
机译:介绍了与光学机械系统的热建模相关的一类优化问题的数值技术。重点是辐射发挥着主导作用的应用。这项工作是有必要将热分析结合到高精度,空间传播光学系统的集成建模中。感兴趣的具体问题是热控制,以通过应用外部热负荷来最小化波前误差,以及在模型的任意节点处预测温度的温度估计问题给出了节点子集的噪声测量。简要描述并将其与现有算法进行了简要描述了所提出的数值技术。他们的准确性和鲁棒性通过来自正在进行的NASX任务的模型的数值测试来证明。

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