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Active control of adaptive optics system in a large segmented mirror telescope

机译:大型分段镜望远镜中自适应光学系统的主动控制

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摘要

For a large adaptive optics system such as a large segmented mirror telescope (SMT), it is often difficult, although not impossible, to directly apply common multi-input multi-output (MIMO) controller design methods due to the computational burden imposed by the large dimension of the system model. In this article, a practical controller design method is proposed which significantly reduces the system dimension for a system where the dimension required to represent the dynamics of the plant is much smaller than the dimension of the full plant model. The proposed method decouples the dynamic and static parts of the plant model by a modal decomposition technique to separately design a controller for each part. Two controllers are then combined using the so-called sensitivity decoupling method so that the resulting feedback loop becomes the superposition of the two individual feedback loops of the dynamic and static parts. A MIMO controller was designed by the proposed method using the H_(∞) loop-shaping technique for an SMT model to be compared with other controllers proposed in the literature. Frequency-domain analysis and time-domain simulation results show the superior performance of the proposed controller.
机译:对于大型自适应光学系统(例如大分段镜望远镜(SMT)),由于由激光雷达施加的计算负担,通常很难(尽管并非不可能)直接应用常见的多输入多输出(MIMO)控制器设计方法。系统模型的大尺寸。在本文中,提出了一种实用的控制器设计方法,该方法可显着减小系统的系统尺寸,在这种系统中,代表工厂动态的尺寸远小于整个工厂模型的尺寸。所提出的方法通过模态分解技术将工厂模型的动态和静态部分解耦,从而分别为每个部分设计控制器。然后,使用所谓的灵敏度去耦方法将两个控制器组合在一起,以使最终的反馈回路成为动态和静态部件的两个单独的反馈回路的叠加。使用H_(∞)环路整形技术针对SMT模型,通过提出的方法设计了MIMO控制器,以与文献中提出的其他控制器进行比较。频域分析和时域仿真结果表明了该控制器的优越性能。

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