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首页> 外文期刊>Smart structures and systems >Stochastic vibration suppression analysis of an optimal bounded controlled sandwich beam with MR visco-elastomer core
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Stochastic vibration suppression analysis of an optimal bounded controlled sandwich beam with MR visco-elastomer core

机译:MR粘弹性芯的最优有界可控夹层梁的随机振动抑制分析。

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摘要

To control the stochastic vibration of a vibration-sensitive instrument supported on a beam, the beam is designed as a sandwich structure with magneto-rheological visco-elastomer (MRVE) core. The MRVE has dynamic properties such as stiffness and damping adjustable by applied magnetic fields. To achieve better vibration control effectiveness, the optimal bounded parametric control for the MRVE sandwich beam with supported mass under stochastic and deterministic support motion excitations is proposed, and the stochastic and shock vibration suppression capability of the optimally controlled beam with multi-mode coupling is studied. The dynamic behavior of MRVE core is described by the visco-elastic Kelvin-Voigt model with a controllable parameter dependent on applied magnetic fields, and the parameter is considered as an active bounded control. The partial differential equations for horizontal and vertical coupling motions of the sandwich beam are obtained and converted into the multi-mode coupling vibration equations with the bounded nonlinear parametric control according to the Galerkin method. The vibration equations and corresponding performance index construct the optimal bounded parametric control problem. Then the dynamical programming equation for the control problem is derived based on the dynamical programming principle. The optimal bounded parametric control law is obtained by solving the programming equation with the bounded control constraint. The controlled vibration responses of the MRVE sandwich beam under stochastic and shock excitations are obtained by substituting the optimal bounded control into the vibration equations and solving them. The further remarkable vibration suppression capability of the optimal bounded control compared with the passive control and the influence of the control parameters on the stochastic vibration suppression effectiveness are illustrated with numerical results. The proposed optimal bounded parametric control strategy is applicable to smart visco-elastic composite structures under deterministic and stochastic excitations for improving vibration control effectiveness.
机译:为了控制支撑在梁上的振动敏感仪器的随机振动,将梁设计为具有磁流变粘弹性体(MRVE)芯的夹心结构。 MRVE具有动态特性,如刚度和阻尼,可通过施加磁场进行调节。为了获得更好的振动控制效果,提出了在随机和确定性支撑运动激励下具有受支撑质量的MRVE夹层梁的最优有界参数控制,并研究了多模耦合最优控制梁的随机和冲击振动抑制能力。 。 MRVE磁芯的动态行为由粘弹性Kelvin-Voigt模型描述,该模型具有可控制的参数,该参数取决于所施加的磁场,并且该参数被视为主动有界控制。得到了夹层梁水平和垂直耦合运动的偏微分方程,并根据Galerkin方法,利用有界非线性参数控制将其转换为多模耦合振动方程。振动方程和相应的性能指标构成了最优有界参数控制问题。然后根据动态规划原理推导了控制问题的动态规划方程。最优有界参数控制律是通过求解有界控制约束的编程方程而获得的。通过将最优有界控制代入振动方程并求解,可以得到MRVE夹层梁在随机和冲击激励下的受控振动响应。数值结果说明了最优限界控制与被动控制相比的显着抑振能力以及控制参数对随机抑振效果的影响。所提出的最优有界参数控制策略适用于确定性和随机激励下的智能粘弹复合结构,以提高振动控制效果。

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