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Boundary control of a thin rectangular plate with clamped-clamped-clamped-free boundary conditions

机译:具有自由边界条件的矩形薄板的边界控制

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This paper investigates a boundary control aiming at vibration suppression for a Kirchhoff plate with clamped-clamped-clamped-free boundary conditions. We use the deflection, deflection rate, slope, and slope rate at the free edge as feedback signals and show that the closed-loop system is marginally stable by using the Lyapunov's direct method. Numerical simulations are carried out to demonstrate the performance of vibration suppression of the proposed controller. The simulation results illustrate that the boundary controller with relatively small feedback gains can suppress the vibration including high order vibration modes. In contrast, the boundary controller with extremely high gains changes the mode shapes of the closed-loop system and deteriorate the controller performance.
机译:本文研究了一种边界控制,其目标是抑制具有边界约束的Kirchhoff板的振动。我们使用自由边缘的挠度,挠度,斜率和斜率作为反馈信号,并通过使用Lyapunov的直接方法证明了闭环系统在一定程度上是稳定的。进行了数值模拟,以证明所提出的控制器的振动抑制性​​能。仿真结果表明,具有相对较小反馈增益的边界控制器可以抑制包括高阶振动模式在内的振动。相反,具有极高增益的边界控制器会改变闭环系统的模式形状,并降低控制器性能。

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