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Active Vibration Control of Elastically Connected Double-Beam Systems

机译:弹性连接的双光束系统的主动振动控制

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This paper presents an active control structure and corresponding active control algorithm to suppress the vibration and reduce the dynamic response of an elastically connected double-beam system subjected to excitation loads. Because the double-beam system consists of two beams with an elastic layer in between, a distributed control structure is proposed, which adopts actuators along the elastic layer and acts on the two beams at the same time. An active control algorithm that synthesizes independent modal space control (IMSC) and a linear quadratic regulator (LQR) is developed for the proposed active control structure. The application of IMSC transfers the coupling equations of motion for the double-beam system with active control to the decoupled equations in modal space and makes the vibration control act on each mode. The adoption of LQR allows calculation of the active control forces in the modal domain, which further determines the applied control force in the physical space. Numerical examples are demonstrated to verify the efficiency of the proposed active control, which has great potential for application in future engineering practices. (C) 2017 American Society of Civil Engineers.
机译:本文介绍了一个主动控制结构和相应的主动控制算法,以抑制振动,降低经受激励负载的弹性连接的双光束系统的动态响应。因为双梁系统由两个具有弹性层的两个光束组成,所以提出了一种分布式控制结构,所以提出了一种分布式控制结构,其采用沿着弹性层的致动器并同时在两个梁上作用。为所提出的主动控制结构开发了合成独立模态空间控制(IMSC)和线性二次调节器(LQR)的有源控制算法。 IMSC的应用将双梁系统的耦合方程传送到模态空间中的断开的方程,并使振动控制作用在每种模式下。 LQR的采用允许计算模型域中的主动控制力,这进一步确定了物理空间中的应用控制力。证明了数值例子以验证所提出的主动控制的效率,这在未来的工程实践中具有很大的应用潜力。 (c)2017美国土木工程师协会。

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