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Combined feedback/feedforward active control of vibration of beams with ACLD treatments: Numerical simulation

机译:采用ACLD处理的组合振动的反馈/前馈主动控制:数值模拟

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摘要

This paper concerns the numerical simulation of feedback, adaptive feedforward and hybrid (combined feedback/feedforward) control systems on the active control of vibrations of beams with Active Constrained Layer Damping (ACLD) treatments. For the simulation a 1-D beam finite element (FE) model with an arbitrary number of elastic, piezoelectric and viscoelastic layers attached to both sides of the beam is utilized. The damping behavior of the viscoelastic layers is considered by a Laplace transformed Anelastic Displacement Fields (ADF) method. The analyzed case study regards the disturbance rejection of an aluminium beam with a pair of surface mounted ACLD patches. In the design and simulation of the control system a Single-Input Single-Output (SISO) configuration with the output being the velocity at one point of the beam and the input being the control voltage applied into the piezoelectric constraining layers is considered. The case study allows to assess and discuss the outcomes and drawbacks of the feedback and feedforward controllers when used individually and the advantages of the hybrid controller.
机译:本文涉及对采用主动约束层阻尼(ACLD)处理的梁振动进行主动控制的反馈,自适应前馈和混合(组合反馈/前馈)控制系统的数值模拟。为了进行仿真,使用一维梁有限元(FE)模型,该模型具有连接到梁两侧的任意数量的弹性,压电和粘弹性层。通过拉普拉斯变换非弹性位移场(ADF)方法考虑了粘弹性层的阻尼行为。分析的案例研究涉及带有一对表面安装的ACLD贴片的铝梁的干扰抑制。在控制系统的设计和仿真中,考虑了单输入单输出(SISO)配置,其中输出是梁的一点的速度,输入是施加到压电约束层的控制电压。该案例研究可以评估和讨论单独使用时反馈和前馈控制器的结果和缺点以及混合控制器的优点。

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