大型分段望远镜的分布式控制

Shengxiang Jiang, P. Voulgaris, L.E. Holloway, L. Thompson
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引用次数: 30

摘要

本文对大型分段望远镜主镜的控制进行了初步的研究。这项工作的动机是天文学家需要研究宇宙结构的发展。首先,我们介绍了大型分段望远镜的一些背景和我们在大型望远镜上的合作研究计划。其次,建立了主镜系统的状态空间模型。第三,我们使用H2方法为一个七段式系统设计了一个集中控制器,该系统为我们计划建造的实验室类型的单元建立了最佳的性能特征。显示仿真结果。最后,我们将空间不变的分布式控制技术应用于一个近似于大镜子的无限分段系统。通过H2范数,我们计算了具有空间不变无限控制器或截断局部控制器的相邻段之间相对位移的上界。并给出了截断局部控制器应用于19段系统的仿真结果。在所有情况下,结果表明可以达到所需的10-8 m精度
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed control of large segmented telescopes
In this paper we conduct a preliminary study of controlling the primary mirror of a large segmented telescope. This work is motivated by the need of astronomers to study the development of structure in the Universe. First, we present some background about large segmented telescopes and our collaborative research program on large telescopes. Second, we formulate a model of the primary mirror system in state space. Third, we design a centralized controller using H2 methods for a seven-segment system which establishes the best possible performance characteristics for a laboratory-type of unit that we plan to build. Simulation results are displayed. Finally, we apply spatially-invariant distributed control techniques to an infinite segmented system that approximates a large mirror. Through the H2 norm, we calculate upper bounds for the relative displacements between adjacent segments with either a spatially-invariant infinite controller or a truncated local controller. Simulation results are also presented with a truncated local controller applied to a 19-segment system. In all cases, the results indicate that the required accuracy of 10-8 m can be achieved
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