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Design optimization of piezoelectric actuator patterns for static shape control of smart plates

机译:用于智能板静态形状控制的压电致动器模式的设计优化

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摘要

This paper presents an investigation into design optimization of actuator patterns for static shape control of composite plates with piezoelectric actuator patches. An energy optimization based method for finding the optimal control voltages that can actuate a structure shape close to the desired one within a given error is described. Moreover, a voltage limitation for each actuator is also imposed to keep its control voltage within a practical range. An evolutionary actuator pattern optimization scheme is presented in which trivial actuators with the smallest voltages are electrically or physically removed step by step until the given tolerable error is reached. Finally, illustrative examples are given to demonstrate the effectiveness of the present equivalent element and the design optimization scheme. Numerical results show that satisfactory static shape control can be achieved even after a number of actuators are removed.
机译:本文提出了对带有压电致动器贴片的复合板的静态形状控制的致动器模式设计优化的研究。描述了一种基于能量优化的方法,用于找到可以在给定误差内驱动接近所需形状的结构形状的最佳控制电压。此外,还对每个致动器施加电压限制以将其控制电压保持在实际范围内。提出了一种进化的执行器模式优化方案,其中逐步将具有最小电压的琐碎的执行器电气或物理移除,直到达到给定的可容忍误差。最后,给出了说明性示例,以演示当前等效元素和设计优化方案的有效性。数值结果表明,即使拆除了许多执行器,也可以实现令人满意的静态形状控制。

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