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Rejuvenation of a 10-year old AO curvature sensor: combining obsolescence correction and performance upgrade of MACAO

机译:振兴10年的AO曲率传感器:结合过时校正和MACAO性能提升

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The MACAO curvature wavefront sensors have been designed as a generic adaptive optics sensor for the Very Large Telescope. Six systems have been manufactured and implemented on sky: four installed in the UTs Coude train as an AO facility for the VLTI, and two in UT's instruments, SINFONI and CRIRES. The MACAO-VLTI have now been in use for scientific operation for more than a decade and are planned to be operated for at least ten more years. As second generation instruments for the VLTI were planned to start implementation in end of 2015, accompanied with a major upgrade of the VLTI infrastructure, we saw it as a good time for a rejuvenation project of these systems, correcting the obsolete components. This obsolescence correction also gave us the opportunity to implement improved capabilities: the correction frequency was pushed from 420 Hz to 1050 Hz, and an automatic vibrations compensation algorithm was added. The implementation on the first MACAO was done in October 2014 and the first phase of obsolescence correction was completed in all four MACAO-VLTI systems in October 2015 with the systems delivered back to operation. The resuming of the scientific operation of the VLTI on the UTs in November 2015 allowed to gather statistics in order to evaluate the improvement of the performances through this upgrade. A second phase of obsolescence correction has now been started, together with a global reflection on possible further improvements to secure observations with the VLTI.
机译:MACAO曲率波前传感器已被设计为超大型望远镜的通用自适应光学传感器。已经制造并在空中实施了六套系统:四套作为VLTI的AO设备安装在UTs Coude列车上,另外两套则安装在UT的仪器SINFONI和CRIRES中。 MACAO-VLTI现在已经用于科学操作了十多年,并且计划至少再运行十年。随着VLTI的第二代仪器计划于2015年底开始实施,同时对VLTI基础设施进行了重大升级,我们认为现在是对这些系统进行更新改造,纠正陈旧组件的好时机。这种过时的校正还为我们提供了改进功能的机会:校正频率从420 Hz提升到1050 Hz,并添加了自动振动补偿算法。 2014年10月完成了第一个MACAO的实施工作,2015年10月,所有四个MACAO-VLTI系统都完成了过时校正的第一阶段,并将这些系统交付使用。 VLTI在UT上的科学操作于2015年11月恢复运行,从而可以收集统计信息,以评估通过此升级对性能的改进。现在已经开始过时校正的第二阶段,以及对进一步改进以确保使用VLTI进行观测的总体思考。

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