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Modeling and Simulation of an Active Vibration Control System for a Flexible Structure Using Finite Difference Method

机译:利用有限差分法实现柔性结构有源振动控制系统的建模与仿真

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This paper is focused on modeling and simulation of an active vibration control (AVC) system for a rectangular flexible thin plate with all clamped edge through the use of position feedback. The plate system was first modeled using Finite Difference (FD) approach. Then, the validity of the obtained model was investigated through comparative studies between the plate natural frequencies predicted by the model and the exact values of resonance modes. The control algorithm was then implemented within the FD simulation platform. Different types of disturbances were applied to excite the plate system at excitation point and the performance of the controller in reducing the unwanted vibration was evaluated. Results of the study demonstrate the effectiveness of the proposed control strategy to attenuate the unwanted vibrations of the flexible thin plate system.
机译:本文集中于通过使用位置反馈,矩形柔性薄板的主动振动控制(AVC)系统的建模和仿真,通过使用位置反馈。首先使用有限差异(FD)方法建模板系统。然后,通过模型预测的板自然频率与共振模式的确切值之间的比较研究来研究获得模型的有效性。然后在FD仿真平台内实现控制算法。应用了不同类型的扰动,在激发点处激发板系统,并评估控制器在减少不需要的振动时的性能。该研究的结果证明了所提出的控制策略的有效性,以衰减柔性薄板系统的不需要的振动。

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