Escárate Pedro, Carvajal Rodrigo, Close Laird, Males Jared, Morzinski Katie, Agüero Juan C
Appl Opt. 2017 Jul 1;56(19):5388-5397. doi: 10.1364/AO.56.005388.
In this paper, we address the design of a minimum variance controller (MVC) for the mitigation of vibrations in modern telescope adaptive optics (AO) systems. It is widely accepted that a main source of non-turbulent perturbations is the mechanical resonance induced by the wind or the instrumentation systems, such as fans and cooling pumps. To adequately mitigate vibrations, the application of frequency-based controllers has been considered in the past decade. In this work, we express the system model in terms of the tracking of a zero-input signal via the MVC. We show that the MVC is an equivalent representation of the linear quadratic Gaussian (LQG) controller for the AO system. We also show that by developing the MVC, we can obtain different expressions, in terms of transfer functions, that offer insights into the behavior and expected performance of the controller in the frequency domain. In addition, we analyze the impact of the accuracy of the system and perturbations model on the mitigation of vibrations.
在本文中,我们致力于设计一种最小方差控制器(MVC),用于减轻现代望远镜自适应光学(AO)系统中的振动。人们普遍认为,非湍流扰动的一个主要来源是由风或仪器系统(如风扇和冷却泵)引起的机械共振。为了充分减轻振动,在过去十年中已经考虑应用基于频率的控制器。在这项工作中,我们通过MVC将系统模型表示为对零输入信号的跟踪。我们表明,MVC是AO系统线性二次高斯(LQG)控制器的等效表示。我们还表明,通过开发MVC,我们可以获得不同的传递函数表达式,这些表达式能让我们深入了解控制器在频域中的行为和预期性能。此外,我们分析了系统和扰动模型的精度对振动减轻的影响。