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Control algorithm and performance of the active optics system of the Giant Magellan telescope

机译:巨磁场望远镜主动光学系统的控制算法与性能

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The GMT active optics (AcO) control problem is unique because the primary and secondary mirrors are both segmented. This paper describes the AcO control algorithms and assesses their performance for the Natural Seeing observing modes of the GMT. In this case, there are wavefront sensors in four off-axis probes, which are used to control the position and rotation of each of the seven primary and seven secondary mirror segments, as well as the bending modes of the primary mirror. The segmentation of both mirrors leads to a number of unsensed modes (e.g., segment piston and a rotation of the segment around the telescope optical axis) and poorly sensed modes (e.g., Ml segment translations compensated with the corresponding M2 segment translation). Uncertainties in the location of the probes and guide star coordinates also lead to blind modes. In this paper, we first introduce the GMT optical design in the context of the AcO system. The modes of the telescope controlled by the AcO system, and their counterparts in the wavefront sensing space, are presented next, including field-dependent and blind modes. The control architecture is then outlined along with a description of the singular modes of the system. Finally, performance results are provided with respect to various error terms.
机译:GMT主动光学器件(ACO)控制问题是唯一的,因为主镜像都是分段的。本文介绍了ACO控制算法,并评估了他们对GMT的自然观察模式的性能。在这种情况下,在四个轴外探针中存在波前传感器,其用于控制​​七个初级和七次镜段中的每一个的位置和旋转,以及主镜的弯曲模式。两个反射镜的分割导致多种不饱白的模式(例如,区段活塞和围绕望远镜光轴的段的旋转),并且对应于相应的M2段翻译补偿的模式不良的模式(例如,ML段翻译)。探针位置的不确定性和导向星坐标也导致盲目模式。在本文中,我们首先在ACO系统的上下文中介绍GMT光学设计。接下来,由ACO系统控制的望远镜的模式及其在波前传感空间中的对应物,包括现场依赖和盲模式。然后概述控制架构以及系统的奇异模式的描述。最后,对各种错误术语提供了性能结果。

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