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Model Predictive Control of Multi-Mirror Adaptive Optics Systems

机译:多镜自适应光学系统的模型预测控制

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In the last decades, large telescopes have been planned and built to explore the universe for fainter objects than ever before. Presently, the largest telescope for optical wavelengths, the Extremely Large Telescope (ELT), is constructed with a primary mirror of 39 m diameter. In order to reduce the total weight of the telescope and due to the enormous size, the optics are mounted on lightweight constructions, which are very sensitive to wind excitations. Therefore, telescope optics and their control have to be considered in the design of the next generation ELT's, where a good vibration compensation is required. To achieve the diffraction limit of the ELT, its optical path is equipped with a deformable mirror and a plane tiptilt mirror for correction. Due to the atmospheric turbulences and structural vibrations, the compensation mirrors can reach their stroke and frequency limitations. Without considering these limitations in the control system the telescope instruments cannot fully reach its optimal performance. Therefore, we propose a solution based on Model Predictive Control (MPC), which can control the mirrors in an optimal way under given constraints. In this paper a model of the Adaptive Optics system, the MPC controller design and an integral control concept for comparison are presented. As a result the residual tip-tilt error can be reduced over a larger frequency range with an MPC controller when considering input constraints.
机译:在过去的几十年中,已经计划并建造了大型望远镜来探索宇宙中比以往任何时候都暗淡的物体。目前,最大的光学波长望远镜,即超大型望远镜(ELT),是用39 m直径的主镜构成的。为了减小望远镜的总重量,并且由于其巨大的尺寸,光学元件安装在对风激励非常敏感的轻型结构上。因此,在下一代ELT的设计中必须考虑望远镜光学及其控制,在这种情况下,需要良好的振动补偿。为了达到ELT的衍射极限,其光路配备了可变形镜和用于校正的平面倾斜镜。由于大气湍流和结构振动,补偿镜可能会达到其行程和频率限制。如果不考虑控制系统中的这些限制,望远镜仪器将无法完全达到其最佳性能。因此,我们提出了一种基于模型预测控制(MPC)的解决方案,该解决方案可以在给定约束下以最佳方式控制反射镜。本文提出了自适应光学系统的模型,MPC控制器设计和用于比较的积分控制概念。结果,当考虑输入约束时,使用MPC控制器可以在较大的频率范围内减小剩余的倾斜误差。

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