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An H2 norm approach for the actuator and sensor placement in vibration control of a smart structure

机译:H2规范方法用于智能结构的振动控制中的执行器和传感器放置

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In active vibration control of smart structures, the actuator and sensor placement is a key point of the control system design. Even the most robust control logics could easily make a structure unstable if the actuators and sensors were not correctly positioned. The objective of this paper is to propose an H_2 norm approach for the actuator and sensor placement. Unlike most modal H_2 norm actuator and sensor placement methodologies, this work aims not only to maximize the norms of the controlled modes but also to reduce spillover problems by taking into account the residual modes and minimizing their H_2 norms. It discusses the optimal actuator and sensor configuration in a finite element model of a square plate fixed on three sides with piezoelectric patch actuators and acceleration sensors. Finally, downstream of the actuator and sensor positioning, IMSC, PPF and NDF controls have been tested and discussed.
机译:在智能结构的主动振动控制中,执行器和传感器的位置是控制系统设计的关键。如果执行器和传感器的位置不正确,即使是最强大的控制逻辑也很容易使结构不稳定。本文的目的是为执行器和传感器的位置提出一种H_2规范方法。与大多数模态H_2规范执行器和传感器放置方法不同,这项工作不仅旨在最大化受控模式的规范,而且还通过考虑剩余模式并最小化其H_2规范来减少溢出问题。它讨论了在压电式贴片执行器和加速度传感器固定在三个侧面的方形板的有限元模型中的最佳执行器和传感器配置。最后,在执行器和传感器定位的下游,对IMSC,PPF和NDF控件进行了测试和讨论。

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