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Optimal actuator locations and precision micro-control actions on free paraboloidal membrane shells

机译:自由抛物面膜壳上的最佳致动器位置和精确的微控制作用

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摘要

Flexible paraboloidal shells, as key components, are increasingly utilized in antennas, reflectors, optical systems, aerospace structures, etc. To explore precise shape and vibration control of the paraboloidal membrane shells, this study focuses on analysis of microscopic control actions of segmented actuator patches laminated on the surface of a free paraboloidal membrane shell. Governing equations of the membrane shell system and modal control forces of distributed actuator patches are presented first, and followed by the analysis of dominating micro-control actions based on various natural modes, actuator locations and geometrical parameters. Finally, according to the parametric analysis, simulation data reveal main factors significantly influencing active control behavior on smart free-floating paraboloidal membrane shell systems, thus providing design guidelines to achieve optimal control of paraboloidal shell systems.
机译:柔性抛物面壳作为关键组件,越来越多地用于天线,反射镜,光学系统,航空航天结构等中。为研究抛物面膜壳的精确形状和振动控制,本研究着重分析分段致动器贴片的微观控制作用层压在自由抛物面膜壳的表面上。首先介绍了膜壳系统的控制方程和分布的致动器贴片的模态控制力,然后基于各种自然模式,致动器位置和几何参数,分析了主要的微控制动作。最后,根据参数分析,仿真数据揭示了主要影响智能自由浮动抛物面膜壳系统主动控制行为的主要因素,从而为实现抛物面壳系统的最佳控制提供了设计指导。

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