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A Software based de-rotation algorithm concept for the New Adaptive Optics Module (NAOMI) for the Auxiliary Telescopes of the VLTI

机译:基于软件的基于软件的VLTI辅助望远镜的新自适应光学模块(NAOMI)的去旋转算法概念

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The New Adaptive Optics Module for Interferometry (NAOMI) is the future low order Adaptive optics system to be developed for and installed at the ESO 1.8 m Auxiliary Telescopes (ATs). The four ATs are designed for interferometry which they are essentially dedicated for. The project goal is to equip the telescopes with a low-order Shack-Hartmann system operating in the visible in place of the current tip-tilt correction. The deformable mirror (DM) for NAOMI is rotating with the AT azimuth axis whereas the wavefront sensor (WFS), which signals are used to control the DM, has a fixed position in the telescope basement. It is not co-rotating with the DM. The result is that the projection of the actuator pattern is rotating with respect to the WFS when the telescope is tracking an object on sky. In order to avoid the use of an optical de-rotator we developed an algorithm to de-rotate the commands to the DM in software. This paper outlines the concept of the software de-rotation as well as the performance obtained from end-to-end simulations.
机译:用于干涉测量的新型自适应光学模块(NAOMI)是未来的低阶自适应光学系统,用于在ESO 1.8M辅助望远镜(ATS)上安装。这四个ATS专为他们基本上专用的干涉测量设计而设计。项目目标是装备望远镜,其中望远镜在可见的尖端倾斜校正的可见中运行的低阶棚屋系统。 NaOMi的可变形镜(DM)与处的处方位角轴旋转,而波前传感器(WFS)用于控制DM的波前传感器(WFS)在望远镜地下室具有固定位置。它与DM不同旋转。结果是当望远镜在天空上跟踪物体时,致动器图案的投影相对于WFS旋转。为了避免使用光学脱换器,我们开发了一种算法将命令用软件中的DM旋转。本文概述了软件去旋转的概念以及从端到端模拟中获得的性能。

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