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Adaptive robust boundary control of coupled bending-torsional vibration of beams with only one axis of symmetry

机译:仅具有一个对称轴的梁的弯扭耦合振动的自适应鲁棒边界控制

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摘要

In control design for vibration of beams in literature, the beam section is considered to have two axes of symmetry so that the bending and torsional vibrations are uncoupled; thus, the bending vibration is controlled independently without twisting the beam. However, if the cross section of a beam has only one axis of symmetry, the bending and torsional vibrations become coupled and the beam will undergo twisting in addition to bending. This paper addresses Lyapunov-based boundary control of coupled bending-torsional vibration of beams with only one axis of symmetry. The control strategy is based on applying a transverse force and a torque at the free end of the beam. The control design is directly based on the system partial differential equations (PDEs) so that spillover instabilities that are a result of model truncation are avoided. Three cases are investigated. Firstly, it is shown that when exogenous disturbances do not affect the beam, a linear boundary control law can exponentially stabilize the coupled bending-torsional vibration. Secondly, a nonlinear robust boundary control is established that exponentially stabilizes the beam in the presence of boundary and spatially distributed disturbances. Thirdly, to rule out the need for prior knowledge of disturbances upper-bound, the proposed robust control is redesigned to achieve an adaptive robust control that stabilizes the beam in the presence of disturbances with unknown upper-bound. The efficacy of the proposed controls is illustrated by simulation results. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:在文献中的梁振动控制设计中,梁截面被认为具有两个对称轴,因此弯曲振动和扭转振动是不耦合的。因此,弯曲振动得到独立控制,而不会扭曲光束。但是,如果梁的横截面只有一个对称轴,则弯曲和扭转振动会耦合在一起,并且梁会在弯曲的同时发生扭曲。本文研究了基于Lyapunov的仅具有一个对称轴的梁耦合弯曲扭转振动的边界控制。控制策略基于在梁的自由端施加横向力和扭矩。控制设计直接基于系统偏微分方程(PDE),从而避免了由于模型截断而引起的溢出不稳定性。调查了三种情况。首先,表明当外来干扰不影响梁时,线性边界控制定律可以成指数地稳定耦合的扭转扭转振动。其次,建立了非线性鲁棒边界控制,该控制在存在边界和空间分布扰动的情况下以指数方式稳定了光束。第三,为了排除对干扰上限的先验知识的需求,重新设计了所提出的鲁棒控制以实现自适应鲁棒控制,该鲁棒控制在存在未知上限的干扰的情况下稳定光束。仿真结果说明了所提出控件的有效性。版权所有(c)2016 John Wiley&Sons,Ltd.

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