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Phase and gain control policies for robust active vibration control of flexible structures

机译:相位和增益控制策略,用于对柔性结构进行可靠的主动振动控制

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The interest of this paper is to develop a general and systematic robust control methodology for active vibration control of flexible structures. For this purpose, first phase and gain control policies are proposed to impose qualitative frequency-dependent requirements on the controller to consider a complete set of control objectives. Then the proposed control methodology is developed by employing phase and gain control policies in the dynamic output feedback H∞ control: according to the set of control objectives, phase and gain control policies incorporate necessary weighting functions and determine them in a rational and systematic way; on the other hand, with the appropriate weighting functions efficient H∞ control algorithms can automatically realize phase and gain control policies and generate a satisfactory H∞ controller. The proposed control methodology can be used for both SISO and MIMO systems with collocated or non-collocated sensors and actuators. In this paper, it is validated on a non-collocated piezoelectric cantilever beam. Both numerical simulations and experimental results demonstrate the effectiveness of the proposed control methodology.
机译:本文的目的是为柔性结构的主动振动控制开发一种通用的系统鲁棒控制方法。为此,提出了第一阶段和增益控制策略,以对控制器施加定性的频率相关要求,以考虑一套完整的控制目标。然后通过在动态输出反馈H∞控制中采用相位和增益控制策略来开发所提出的控制方法:根据控制目标集,相位和增益控制策略合并必要的加权函数,并以合理,系统的方式确定它们。另一方面,通过适当的加权函数,高效的H∞控制算法可以自动实现相位和增益控制策略,并生成令人满意的H∞控制器。所提出的控制方法可用于带有并置或未并置传感器和执行器的SISO和MIMO系统。本文在非共置压电悬臂梁上进行了验证。数值模拟和实验结果都证明了所提出的控制方法的有效性。

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