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SELF-POWERED ACTIVE CONTROL FOR AN AEROELASTIC PLATE-LIKE WING USING PIEZOELECTRIC MATERIAL

机译:基于压电材料的气动板状翼自力主动控制

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This paper presents the self-powered active control of elastic and aeroelastic oscillations. A plate-like wing with two piezoelectric layers on the bottom surface and one piezoelectric layer on the top surface is modeled along with an electrical circuit. The direct piezoelectric effect of the bottom layer is used for mechanical to electrical energy conversion. The electrical circuit calculates the control voltage to be applied into the top piezoelectric layer that works as an actuator. The required actuation energy is fully supplied by the harvested energy. The control voltage is obtained from a Linear Quadratic Regulator (LQR) control law. Three cases are investigated. In the first one the harmonic base excitation of the cantilevered wing is considered, the suppression of flutter oscillations is investigated in the second case and the atmospheric turbulence induced vibrations problem is presented in the third case. The performance of the self-powered controller is similar to the performance of a conventional active controller with limited control voltage.
机译:本文提出了弹性和气动弹性振动的自供电主动控制。对一个板状机翼进行了建模,该板状机翼的底面上有两个压电层,顶面上有一个压电层以及电路。底层的直接压电效应用于机械能到电能的转换。电路计算要施加到用作致动器的顶部压电层中的控制电压。所需的致动能量由所收集的能量完全提供。控制电压是根据线性二次调节器(LQR)控制定律获得的。调查了三种情况。在第一个案例中,考虑了悬臂机翼的谐波基础激励,在第二个案例中研究了扑动振动的抑制,在第三个案例中提出了大气湍流引起的振动问题。自供电控制器的性能类似于控制电压受限的传统有源控制器的性能。

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