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Concept, modeling, and performance prediction of a low-cost, large deformable mirror

机译:低成本大变形镜的概念,建模和性能预测

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摘要

While it is attractive to integrate a deformable mirror (DM) for adaptive optics (AO) into the telescope itself rather than using relay optics within an instrument, the resulting large DM can be expensive, particularly for extremely large telescopes. A low-cost approach for building a large DM is to use voice-coil actuators connected to the back of the DM through suction cups. Use of such inexpensive voice-coil actuators leads to a poorly damped system with many structural modes within the desired bandwidth. Control of the mirror dynamics using electro-mechanical sensors is thus required for inte- gration within an AO system. We introduce a distributed control approach, and we show that the "inner" back sensor control loop does not need to function at low frequencies, leading to significant cost reduction for the sensors. Incorporating realistic models of low-cost actuators and sensors together with an atmo- spheric seeing model, we demonstrate that the low-cost mirror strategy is feasible within a closed-loop AO system.
机译:虽然将自适应光学器件(AO)的可变形反射镜(DM)集成到望远镜本身而不是在仪器内部使用中继光学器件很有吸引力,但最终的大型DM可能非常昂贵,特别是对于超大型望远镜。建造大型DM的一种低成本方法是使用通过吸盘连接到DM背面的音圈致动器。这种便宜的音圈致动器的使用导致在期望的带宽内具有许多结构模式的阻尼差的系统。因此,需要将机电传感器控制反射镜动力学,以将其集成到AO系统中。我们介绍了一种分布式控制方法,我们证明了“内部”后传感器控制回路无需在低频下运行,从而显着降低了传感器的成本。结合低成本执行器和传感器的现实模型以及大气观测模型,我们证明了低成本镜像策略在闭环AO系统中是可行的。

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