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Self-Tuning Mechanism for the Design of Adaptive Secondary Mirror Position Control

机译:自适应副镜位置控制设计的自调整机制

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Deformable mirrors (DMs) are electromechanical devices used in ground-based telescopes to compensate for the distortions caused by the atmospheric turbulence, the main factor limiting the resolution of astronomical imaging. Adaptive secondary mirrors (ASMs) represent a new type of DMs; two of them have been recently installed on the 8-m-class large binocular telescope (LBT). ASMs are able to jointly correct rigid and nonrigid wave-front distortions thanks to the use of force actuators distributed on the overall mirror surface. As an offset, each actuator needs to be piloted by a dedicated controller, whose parameters must be accurately tuned to obtain the desired mirror shape. At the present time, the calibration of the controller parameters is executed manually. This paper presents a novel automatic controller tuning procedure that does not rely on the modeling of the mirror dynamics. The experimental validation on a prototype reproducing the three innermost rings of the LBT ASM is reported.
机译:可变形反射镜(DMs)是用于地面望远镜的机电设备,用于补偿由大气湍流引起的畸变,这是限制天文成像分辨率的主要因素。自适应辅助镜像(ASM)代表了一种新型的DM。最近,他们中的两个安装在8米级大型双筒望远镜(LBT)上。由于使用了分布在整个镜面上的力致动器,ASM能够共同校正刚性和非刚性的波前畸变。作为偏移,每个执行器都需要由专用控制器进行控制,必须对其参数进行精确调整才能获得所需的镜面形状。目前,控制器参数的校准是手动执行的。本文提出了一种新颖的自动控制器调整程序,该程序不依赖于镜像动力学的建模。据报道,该原型在复制LBT ASM的三个最内环的原型上进行了实验验证。

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