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ACTIVE VIBRATION CONTROL OF A RECTANGULAR FLEXIBLE WALL OF AN EMPTY AND FLUID-FILLED TANK

机译:空和流体填充罐的矩形柔性壁的主动振动控制

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A rectangular plate bolted to a thick Plexiglas rectangular container is investigated in the case of empty and water-filled tank. A modal analysis is firstly realized in order to verify the effects of different water levels and of the free surface waves on the modal parameters and on the modal shapes. A filtered-x LMS (least mean square) adaptive feedforward algorithm is then applied to the perturbed system realizing structural vibration control in linear field with a SISO approach. Five piezoelectric PZT actuators apply the secondary control input in a nearly-collocated configuration. Their positioning is based on the knowledge on the deformation energy of the plate. The present study investigates primarily the control of the first vibration mode, but second and third modes are also experimentally studied. Satisfactory reductions (up to about 45 dB on the second mode measured on Channel 4) are reached for vibration amplitude of the three modes investigated in absence of water. For each modal shape, a particular effectiveness of the optimally placed actuators clearly appears. The introduction of water in the tank reduces the effectiveness of control of the first mode (maximum 5.5 dB of reduction of the vibration amplitude), but the five control channels show a more global uniform effectiveness.
机译:在空填充油箱的情况下,研究了螺栓固定到厚的有机玻璃矩形容器的矩形板。首先实现模态分析,以验证不同水位和自由表面波对模态参数和模态形状的影响。然后将滤波器XLMS(最小均方)自适应前馈算法应用于具有SISO方法的线性场中实现结构振动控制的扰动系统。五个压电PZT致动器以近乎铺设的配置应用二次控制输入。他们的定位是基于板块变形能量的知识。本研究主要研究了第一振动模式的控制,但是,还在实验研究了第二种和第三种模式。达到在没有水的情况下研究的三种模式的振动幅度达到令人满意的减少(在通道4上测量的第二模式上的第二模式)。对于每个模态形状,最佳放置的致动器的特定有效性清楚地出现。罐中的水引入降低了对第一模式的控制的有效性(最大5.5 dB减小振动幅度),但五个控制通道显示出更全球均匀的效果。

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