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Optimal H_2 and H_∞ Control of Extremely Large Segmented Telescopes

机译:最佳H_2和H_∞控制极大的分段望远镜

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Extremely large telescopes (ELTs) are the next generation of ground-based reflecting telescopes of optical wavelengths. ELTs possess an aperture of more than 20 meters and share a number of common features, particularly the use of a segmented primary mirror and adaptive optics systems. In 2005, the European Southern Observatory introduced a new giant telescope concept, named the European Extremely Large Telescope (E-ELT), which is scheduled for operation in 2018. In 2009, a feasibility study proved the feasibility of the real-time (RT) control system architecture for the E-ELT's primary mirror, which consists of nearly 1,000 mirror segments with 3,000 actuators and 6,000 sensors. The goal of the RT control system was to maintain a perfectly aligned field of mirrors at all times with a loop-time of 1 ms. The study assumed a prescribed controller algorithm. This paper prescribes two such controllers. In this respect, optimal controller designs for the primary mirror, where optimality is formulated in the H_2 and H-∞ frameworks are derived. Moreover, the designed controllers are simulated to show that the desired performance, which is denned in terms of imaging requirements, is met.
机译:极大的望远镜(elts)是下一代基于地面的反射光波长的望远镜。埃特拥有超过20米的孔,并分享了许多共同特征,特别是使用分段的主镜和自适应光学系统。 2005年,欧洲南方天文台推出新的巨型望远镜的概念,命名为欧洲极大望远镜(E-ELT),计划于运行在2018年。2009年,一项可行性研究,证明了实时的可行性(RT )用于E-ELT的主镜的控制系统架构,由近1,000个镜面段组成,带有3,000个执行器和6,000个传感器。 RT控制系统的目标是在始终保持一个完美对齐的镜子领域,其中环绕时间为1 ms。该研究假设规定的控制器算法。本文规定了两个这样的控制器。在这方面,推导出最佳控制器设计,其中在H_2和H-α框架中制定了最优性。此外,模拟了设计的控制器以表明,满足了在成像要求方面被欺骗的所需性能。

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