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Enhanced pointing of telescopes by smart structure concepts based on modal observers

机译:基于模态观察员的智能结构概念增强了望远镜的指示

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Telescopes are pointed to their targets on the sky by the movement of their optical system (reflectors, mirrors) in two or three axes. The achievable pointing accuracy is depending on the quality of the elasto-mechanical system, which is supporting the optics, and the drive system, which is actuating the axes movements, and limited in existing telescopes by the number of sensors and actuators in the axes. With the classical arrangements only the rigid body regime of the structural system can be controlled. Effects in the quasi-static regime and in the flexible body regime of structural deformations are out of influence of the position sensors and drives of the axes and must be handled by other means. With now available smart structure concepts it is possible to overcome these restrictions and to enhance the pointing accuracy of the telescopes by rather inexpensive additional means. In the paper a smart system approach is described, which is based on a modal observer concept. The observer uses the eigenmodes of the structural system to predict the deformation behavior based on the measurements of modal sensors. Results of the achievable improvements are demonstrated by two telescope projects, in which the modal observer enhancement will be realized.
机译:通过两个或三个轴的光学系统(反射器,镜子)的移动,望远镜指向天空上的目标。可实现的指向精度取决于弹性机械系统的质量,该机械系统支撑光学器件和驱动系统,该系统正在致动轴移动,并且通过轴中的传感器和致动器的数量限制在现有的望远镜中。通过经典布置,只能控制结构系统的刚体状态。在准静态方案中的效果和结构变形的柔性体制度是轴的位置传感器和驱动器的影响,并且必须由其他方式处理。随着现在可用的智能结构概念,可以通过相当廉价的附加装置来克服这些限制并增强望远镜的指向精度。在本文中,描述了一种智能系统方法,其基于模态观察者概念。观察者使用结构系统的特征模型来基于模态传感器的测量来预测变形行为。可实现的改进的结果由两个望远镜项目证明,其中将实现模态观测器增强。

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