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Actuator Placement And Configuration Direction Optimation In Plate Structure Vibration Control System

机译:板结构振动控制系统中的致动器放置和配置方向优化

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Most previous research is only focus on the actuators placement problem in structures vibration control,however the acting force's effect direction awalys has been ignored, obviously, if piezoelectric actuator can effect in a better direction, a better effective result would be taken. The problem of piezoelectric actuators locations and corresponding configuration directions optimization in plate structure for vibration control is considered. Optimal actuator locations and corresponding configuration directions in large plate structures is a formidable task due to the combinatorial nature of the problem. In this paper, the performances of two algorithms are used and compared to determine their effectiveness in solving this design problem. The selected algorithms are SATSP(Simulated Annealing for the TSP) algorithm and HTTSP (Hopfield-Tank for the TSP ) algorithm. In addition, in order to achieve better optimization result among variables of vibration response deformation precision , control energy and number of actuators, optimization control algorithm is used. The results show that SATSP can handle the actuator locations and corresponding configuration directions optimization problem better than HTTSP.
机译:最先前的研究仅关注结构振动控制中的执行器放置问题,但是,作用力的效果方向被忽略,显然,如果压电致动器可以在更好的方向上效果,则将采取更好的有效结果。考虑了压电致动器位置和相应的配置方向优化在振动控制的板结构中的问题。由于问题的组合性质,大板结构中的最佳致动器位置和相应的配置方向是一个强大的任务。在本文中,使用了两种算法的性能,并进行了比较,以确定它们在解决这种设计问题方面的有效性。所选算法是SATSP(用于TSP的模拟退火)算法和HTTSP(用于TSP的Hopfield-Tank)算法。另外,为了在振动响应变形精度,控制能量和执行器的数量之间实现更好的优化结果,使用优化控制算法。结果表明,SATSP可以优于HTTSP处理执行器位置和相应的配置方向优化问题。

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