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Energy-based comparative analysis of optimal active control schemes for clustered tensegrity structures

机译:集群张力结构最优主动控制方案的能量比较分析

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摘要

This study performs a series of numerical investigations of a novel energy-based control approach for effective vibration control of clustered tensegrity structures via different optimal active control algorithms. The comparative study among different control algorithms of clustered tensegrities are often challenging due to the geometrical non-linearity, complex loading conditions and assemblage uncertainties of structural components. In order to overcome these technical difficulties, an actuator input energy-based method is herein implemented to assess the optimal dynamic performances of clustered tensegrity structures via distinct optimal active control schemes. As a quantification tool, the structural displacement and elemental forces monitored from both the whole structure level and the elemental level were applied to assess control efficiency based on the same amount of actuator energy input. Specifically, the control efficiency comparisons are realized by setting identical energy input to actuated elements via linear-quadratic-Gaussian (LQG) and H algorithms. Different actuator placements of clustered cables and struts are considered and the control efficiency coefficients of the proposed method are examined through a spatial clustered tensegrity beam. The outcomes from the illustrative example indicate that the proposed method is efficient and reliable in comparative analyzing of different optimal active control schemes for clustered tensegrity structures, which implies the prospect of the investigated approach in analyzing and solving actual engineering problems.
机译:这项研究对新型的基于能量的控制方法进行了一系列的数值研究,该方法通过不同的最佳主动控制算法对簇状张紧结构进行有效的振动控制。由于几何非线性,复杂的载荷条件和结构部件的装配不确定性,对簇状张力的不同控制算法之间的比较研究常常具有挑战性。为了克服这些技术难题,本文实施了基于致动器输入能量的方法,以通过不同的最优主动控制方案来评估群集张紧结构的最优动态性能。作为定量工具,从整个结构水平和元素水平两个方面监视的结构位移和元素力均基于相同量的执行器能量输入而用于评估控制效率。具体而言,通过使用线性二次高斯(LQG)和H算法将相同的能量输入设置到执行元件上,可以实现控制效率的比较。考虑了成束的电缆和支柱的不同致动器位置,并通过空间成束的张紧梁检查了该方法的控制效率系数。说明性例子的结果表明,所提出的方法在比较分析簇状结构的不同最优主动控制方案时是有效而可靠的,这意味着所研究方法在分析和解决实际工程问题方面的前景。

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