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Dependent modal space control: Experimental test rig

机译:依赖模态空间控制:实验试验台

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This article presents the experimental validation of a new control technique for reducing vibration in flexible structures: Dependent modal space control. While the classic independent modal space control allows only the frequency and the damping of the controlled modes to be changed, dependent modal space control can also impose the controlled mode shapes. Depending on the kind and number of sensors and actuators available for control, the mode shape can be imposed in both a direct and an indirect way. Owing to the need for modal sensors and actuators for direct mode shape imposition, the second methodology is often preferred in many engineering applications. In the indirect method, the optimal closed loop mode shapes set is computed with an optimization algorithm in order to minimize an Input-Output Performance Index. The worsening spillover effects due to errors in the estimates of the system state variables are considered when computing the gain matrix and play an important role in the entire control logic. Experimental validation on a cantilevered beam shows the effectiveness of the dependent modal space control and a good match between the numerical and the experimental results.
机译:本文提出了一种新的控制技术,用于减少柔性结构中振动的新控制技术:依赖模态空间控制。虽然经典的独立模态空间控制仅允许改变的受控模式的频率和阻尼,但是依赖模态空间控制也可以施加受控模式形状。根据可用于控制的传感器和执行器的种类和数量,可以以直接和间接方式施加模式形状。由于需要模态传感器和用于直接模式形状拼版的致动器,在许多工程应用中通常是优选的第二种方法。在间接方法中,使用优化算法计算最佳闭环模式形状集,以便最小化输入输出性能索引。在计算增益矩阵时,考虑由于系统状态变量的估计估计而导致的溢出效应恶化并在整个控制逻辑中发挥重要作用。悬臂梁上的实验验证显示了依赖模态空间控制的有效性和数值和实验结果之间的良好匹配。

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