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Active vibration control of a composite plate

机译:复合板的主动振动控制

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摘要

A new active vibration control methodology is proposed and experimentally tested. The technique is applied to a honeycomb panel having a carbon-fiber reinforced polymer (CFRP) outer skins and a polymer-paper core, subjected to an orthogonal disturbance, due to an electrodynamics exciter. The control is carried out by means of Macro Fibre Composite (MFC) actuators and sensors. MFC parches consist of rectangular piezoceramic rods sandwiched between layers of adhesive, electrodes and polyamide film. The MFC actuators and sensors are controlled by a programmable digital dSPACER controller board. The control algorithm proposed in this paper is based on the Positive Position Feedback (PPF) technique, Single Input - Single Output, MultiSISO and Multi Input Multi Output controls are applied in order to control the first four normal modes. The control appears to be robust and efficient in reducing vibration in linear (small amplitude) and nonlinear (large amplitude) vibrations regimes, although the structure under investigation exhibits a relativity high modal density, i.e. four resonances in a range of about 100Hz. The control strategy allows to effectively control each resonance both individually or simultaneously.
机译:提出了一种新的主​​动振动控制方法,并进行了实验测试。该技术应用于具有碳纤维增强聚合物(CFRP)外皮的蜂窝面板和聚合物 - 纸芯,其由于电动力激励器而受到正交干扰的。通过宏观纤维复合物(MFC)致动器和传感器进行控制。 MFC橡皮泥由夹在粘合剂,电极和聚酰胺膜的层之间夹在夹层之间的矩形压电蛋白棒。 MFC执行器和传感器由可编程数字DSPacer控制器控制器控制。本文提出的控制算法基于正位置反馈(PPF)技术,单个输入 - 单输出,多机构和多输入多输出控制以控制前四种正常模式。在降低线性(小幅度)和非线性(大幅度)振动方案中,控制似乎是稳健和有效的,尽管正在研究的结构表现出相对性高模态密度,即在约100Hz范围内的四个共振。控制策略允许有效地或同时控制每个共振。

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