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Modeling and control of massively actuated, magnetically levitated, adaptive mirrors

机译:大型驱动磁悬浮自适应反射镜的建模和控制

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The successful design of non contact, magnetically levitated, massively actuated deformable mirrors and their control system requires the use of medium to high fidelity hybrid multidisciplinary simulation models, encompassing: deformable structures, fluid dynamics of the air film interposed between the mirror and its reference backplane, sensor and actuator dynamics, the control system. Such models must serve the diverse needs for the analysis, design and verification of a fully decentralized control solution and to simulate all of on the field operational phases including initial feedback design, the identification of the static feed-forward matrix and control self tuning. The paper presents the related modeling techniques along with a few results and experimental correlations validating various aspects of the presented capabilities.
机译:非接触,磁悬浮,大促动可变形反射镜及其控制系统的成功设计需要使用中高保真混合多学科仿真模型,其中包括:可变形结构,介于反射镜及其参考背板之间的气膜的流体动力学,传感器和执行器动力学,控制系统。这样的模型必须满足对完全分散的控制解决方案进行分析,设计和验证的各种需求,并且必须模拟包括初始反馈设计,静态前馈矩阵的识别和控制自整定在内的所有现场操作阶段。本文介绍了相关的建模技术,以及一些结果和实验相关性,验证了所提供功能的各个方面。

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