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Optimal distribution of PZT actuators with P-TFE

机译:带P-TFE的PZT执行器的最佳分配

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Aim of this study is to present a contribution to the problem concerning with the optimal distribution of PZT actuators for the controllability of the static response of a Bernoulli-Euler beam under different boundary conditions. Following the assumptions relative to the Pin-Force model the actuation of a single PZT on the beam is considered equivalent to two concentrated moments with opposite signs acting at the edges of the couple of piezoelectric patches. To find the deflection of the beam the methodology founded on the concept of transfer finite elements (TFF) was adopted. Each element is activated by a single actuator and the objective is to undo the effects due to an uniform loading. An index that represents the electrical energy of the actuation has been introduced and the influence of the length the the number of the actuators to minimize that index was investigated. Furthermore simple optimization problems concerning with the choice of the number and size of the actuators are presented.
机译:这项研究的目的是为解决在不同边界条件下伯努利-欧拉梁的静态响应的可控性提供与PZT执行器的最佳分布有关的问题。遵循相对于Pin-Force模型的假设,对梁上单个PZT的驱动被认为等效于两个集中的力矩,两个相反的符号作用在压电片对的边缘。为了找到梁的挠度,采用了基于传递有限元(TFF)概念的方法。每个元件都由单个执行器激活,目的是消除由于均匀负载而产生的影响。已经引入了代表致动电能的指标,并且研究了长度的影响,致动器的数量以最小化该指标。此外,提出了与致动器的数量和尺寸的选择有关的简单优化问题。

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