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10 years maintaining MACAO-VLTI units in operation, in the Very Large Telescope at Paranal Observatory

机译:在Paranal天文台的超大型望远镜中,使MACAO-VLTI装置保持运行10年

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More than 10 years have already passed since the first Multiple Application Curvature Adaptive Optics (MACAO) facilities got the first light in UT2 the 18th of April, 2003, in the Very Large Telescope (VLT) at Paranal Observatory. The achievable image sharpness of a ground-based telescope is normally limited by the effect of atmospheric turbulence. However, with Adaptive Optics (AO) techniques, this major drawback can be overcome so that the telescope produces images that are as sharp as theoretically possible, i.e., as if they were taken from space. The intention of this document is summarize in few pages some highlights related with the activities needed to keep MACAO units in operation. Some statistics of problems based in Action Remedy tool is included, showing how through these years the number of problems has been reduced, even when there are still some unsolved ones. Some lessons have been learned and there are others one to learn. Corrective and predictive maintenance performed are shown too like the current measurements, transfer functions measurements, thermography pictures, health checks measuring interaction matrix and flat vectors to detect dead APDs or short circuits in the DM, etc. Some forced interventions are included as well like the removal of the cabinets from Coude rooms to avoid that acoustic noise and vibrations perturb the operations, the deformable mirrors reached by cooling leaks and a mirror that got rusty are shown too. Well knowledge of the system, good interaction between different disciplines groups to perform corrective and preventive maintenance seems to be key aspects of keeping it under control and operative during all these years leading to this good result.
机译:自2003年4月18日,第一个多用途曲率自适应光学(MACAO)设施在帕拉纳尔天文台的超大型望远镜(VLT)首次亮相UT2以来,已经过去了10多年。地面望远镜的可达到的图像清晰度通常受到大气湍流的影响。但是,利用自适应光学(AO)技术,可以克服这一主要缺点,从而使望远镜产生的图像在理论上尽可能清晰,即好像是从太空拍摄的一样。本文件的目的是在几页中概述一些要点,这些要点与使MACAO机组正常运行所需的活动有关。其中包括一些基于“动作补救”工具的问题统计信息,显示了这些年来如何减少了问题的数量,即使仍然存在一些未解决的问题也是如此。已经吸取了一些教训,还有一些教训需要学习。还显示了执行的纠正性和预测性维护,例如电流测量,传递函数测量,热成像图片,测量交互矩阵的健康检查以及用于检测DM中死APD或短路的平面向量等。还包括一些强制性干预,例如为了避免声噪和振动干扰操作,将柜子从Coude房间移开,还显示了由于冷却泄漏而导致的可变形镜面和生锈的镜面。这些年来,对系统的充分了解,不同学科组之间进行良好的交互以执行纠正性和预防性维护似乎是保持其受控和可操作性的关键方面,从而取得了良好的效果。

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