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Modelling and vibration control for a flexible string system in three-dimensional space

机译:三维空间中柔性弦系统的建模与振动控制

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In this study, the control design and stability analysis are presented for a three-dimensional (3D) string system with the payload dynamics. A set of partial differential equations and ordinary differential equations (PDEs–ODEs) are developed to describe the motion of the 3D string system. The dynamic model considers the comprehensive effects of environmental loads, which are critical for the design of a string system. Based on the Lyapunov's direct method and the properties of the string system dynamics, three boundary control inputs are applied at the boundary to suppress the vibrations of the system under the external loads. Uniform boundedness of the 3D dynamics with the proposed control is achieved. Exponential stability is proved via the Lyapunov's direct method when there is no distributed load. Simulation examples are provided by using the finite difference method, and some useful conclusions are drawn.
机译:在这项研究中,提出了具有有效载荷动力学的三维(3D)弦系统的控制设计和稳定性分析。开发了一组偏微分方程和常微分方程(PDEs-ODEs)来描述3D弦系统的运动。动态模型考虑了环境载荷的综合影响,这对于弦系统的设计至关重要。基于Lyapunov的直接方法和弦系统动力学特性,在边界处应用了三个边界控制输入,以抑制系统在外部载荷下的振动。利用所提出的控制,可以实现3D动力学的一致有界性。当没有分布载荷时,通过李雅普诺夫的直接方法证明了指数稳定性。通过有限差分法提供了仿真实例,并得出了一些有用的结论。

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