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Simultaneous Precision Positioning and Vibration Suppression of Smart Structures - Adaptive Control Methods and Comparisons

机译:智能结构的同步精密定位和振动抑制 - 自适应控制方法和比较

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This paper focuses on adaptive control of smart structures with simultaneous precision positioning and vibration suppression capabilities. First, the structure, manufacturing, and test of an Active Composite Panel (ACP) with surface-mounted piezoelectric ceramic patches are introduced. Three adaptive control schemes are then presented, which are adaptive feedforward control (AFC), adaptive internal model control (AIMC), and hybrid adaptive control (HAC) schemes. The advantages and disadvantages of each scheme are discussed. Finally, the three adaptive control schemes are experimentally verified on the ACP, and comparisons are made. For vibration suppression, the AFC and HAC can eventually suppress the entire vibration, with the HAC generating a faster reduction. The AIMC can provide the fastest vibration reduction but some small residual vibration still remains. For simultaneous precision positioning and vibration suppression, the AFC, AIMC, and HAC sequentially produce more accurate positioning, and the HAC makes the best tradeoff between the fastness of the positioning and vibration suppression as well as the accuracy of the position.
机译:本文重点介绍了具有同时精密定位和振动抑制能力的智能结构的自适应控制。首先,引入了具有表面上安装的压电陶瓷贴片的有源复合面板(ACP)的结构,制造和测试。然后呈现了三种自适应控制方案,其是自适应前馈控制(AFC),自适应内部模型控制(AIMC)和混合自适应控制(HAC)方案。讨论了每个方案的优点和缺点。最后,在ACP上实验验证了三种自适应控制方案,并进行了比较。对于振动抑制,AFC和HAC最终可以抑制整个振动,HAC产生更快的减少。 AIMC可以提供最快的减振,但仍然存在一些小的残余振动。对于同时精密定位和振动抑制,AFC,AIMC和HAC顺序地产生更准确的定位,HAC使定位和振动抑制的牢度以及位置的精度使得最佳折衷。

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