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Genetic algorithm based wireless vibration control of multiple modal for a beam by using photostrictive actuators

机译:光致伸缩致动器的基于遗传算法的光束多模态无线振动控制

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摘要

The lanthanum-modified lead zirconate titanate (PLZT) actuator, which are capable of converting photonic energy to mechanical motion, have great potential in applications of remote structural vibration control of smart structures and machines. In this paper, a novel genetic algorithm based controlling algorithm for multi-modal vibration control of beam structures via photostrictive actuators is proposed. Two pairs of photostrictive actuators are laminated with the beams and the alternation of light irradiation is in accordance with the changing of the corresponding modal velocity direction. The modal force indexes for beams with different boundary conditions are derived and a binary-coded GA is used to optimize the locations and sizes of photostrictive actuators to maximize the modal force index and guarantee the overall modal force index induced by two pairs of photostrictive actuators is positive. The control effect of multiple vibration modes of beams under irradiation of set/variable light intensity is analyzed. Numerical results demonstrate that the method is robust and efficient, and the use of strategically positioned actuator patches can effectively control the first two bending modes that dominate the structural vibration.
机译:镧改性的钛酸锆钛酸铅(PLZT)致动器能够将光子能转换为机械运动,在智能结构和机器的远程结构振动控制应用中具有巨大的潜力。提出了一种基于遗传算法的光致伸缩梁结构多模态振动控制算法。两对光致伸缩致动器与光束层叠在一起,并且光照射的交替根据相应的模态速度方向的变化而变化。推导了具有不同边界条件的梁的模态力指标,并使用二进制编码的遗传算法优化了光致伸缩致动器的位置和尺寸,以最大化模态力指标并确保由两对光致伸缩致动器诱导的总模态力指标为正。分析了在设定/可变光强度的照射下光束的多种振动模式的控制效果。数值结果表明,该方法是鲁棒且有效的,并且使用策略性定位的执行器补片可以有效地控制控制结构振动的前两个弯曲模式。

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