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Robust Control for Microgravity Vibration Isolation using Fixed Order, Mixed H2/Mu Design

机译:使用固定顺序,混合H2 / Mu设计的微重力振动隔离的鲁棒控制

摘要

Many space-science experiments need an active isolation system to provide a sufficiently quiescent microgravity environment. Modern control methods provide the potential for both high-performance and robust stability in the presence of parametric uncertainties that are characteristic of microgravity vibration isolation systems. While H2 and H(infinity) methods are well established, neither provides the levels of attenuation performance and robust stability in a compensator with low order. Mixed H2/H(infinity), controllers provide a means for maximizing robust stability for a given level of mean-square nominal performance while directly optimizing for controller order constraints. This paper demonstrates the benefit of mixed norm design from the perspective of robustness to parametric uncertainties and controller order for microgravity vibration isolation. A nominal performance metric analogous to the mu measure, for robust stability assessment is also introduced in order to define an acceptable trade space from which different control methodologies can be compared.
机译:许多太空科学实验都需要一个主动隔离系统来提供足够静态的微重力环境。在存在微重力隔振系统特有的参数不确定性的情况下,现代控制方法为高性能和鲁棒稳定性提供了潜力。尽管H2和H(无穷大)方法已经很好地建立了,但是在低阶补偿器中都无法提供衰减性能和鲁棒稳定性的水平。混合H2 / H(无穷大)控制器提供了一种方法,可以在给定的均方名义性能水平下最大化鲁棒稳定性,同时直接针对控制器顺序约束进行优化。本文从鲁棒性到参数不确定性以及微重力振动隔离的控制器阶数的角度证明了混合规范设计的好处。还引入了类似于mu度量的名义性能度量,用于鲁棒稳定性评估,以便定义一个可以比较不同控制方法的可接受的交易空间。

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    Whorton Mark;

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  • 年度 2003
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