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Robust design method and thermostatic experiment for multiple piezoelectric vibration absorber system

机译:多压电减振器系统的鲁棒设计方法和恒温实验

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This paper examines the effects of connecting multiplexing shunt circuits composed of inductors and resistors to piezoelectric transducers so as to improve the robustness of a piezoelectric vibration absorber (PVA). PVAs are well known to be effective at suppressing the vibration of an adaptive structure; their weakness is low robustness to changes in the dynamic parameters of the system, including the main structure and the absorber. In the application to space structures, the temperature-dependency of capacitance of piezoelectric ceramics is the factor that causes performance reduction. To improve robustness to the temperature-dependency of the capacitance, this paper proposes a multiple-PVA system that is composed of distributed piezoelectric transducers and several shunt circuits. The optimization problems that determine both the frequencies and the damping ratios of the PVAs are multi-objective problems, which are solved using a real-coded genetic algorithm in this paper. A clamped aluminum beam with four groups of piezoelectric ceramics attached was considered in simulations and experiments. Numerical simulations revealed that the PVA systems designed using the proposed method had tolerance to changes in the capacitances. Furthermore, experiments using a thermostatic bath were conducted to reveal the effectiveness and robustness of the PVA systems. The maximum peaks of the transfer functions of the beam with the open circuit, the single-PVA system, the double-PVA system, and the quadruple-PVA system at 20 degrees C were 14.3 dB, -6.91 dB, -7.47 dB, and -8.51 dB, respectively. The experimental results also showed that the multiple-PVA system is more robust than a single PVA in a variable temperature environment from -10 degrees C to 50 degrees C. In conclusion, the use of multiple PVAs results in an effective, robust vibration control method for adaptive structures.
机译:本文研究了将由电感器和电阻器组成的多路并联电路连接到压电换能器的效果,以提高压电减振器(PVA)的鲁棒性。众所周知,PVA可有效抑制自适应结构的振动。它们的缺点是对系统动态参数(包括主体结构和吸收器)的变化的鲁棒性较低。在空间结构的应用中,压电陶瓷电容的温度依赖性是导致性能下降的因素。为了提高对电容温度依赖性的鲁棒性,本文提出了一种由分布式压电换能器和几个并联电路组成的多PVA系统。确定PVA的频率和阻尼比的优化问题是多目标问题,本文使用实数编码遗传算法解决。在模拟和实验中考虑了带有四组压电陶瓷的夹紧铝梁。数值模拟表明,使用所提出的方法设计的PVA系统具有容抗电容变化的能力。此外,进行了使用恒温浴的实验,以揭示PVA系统的有效性和耐用性。开路,单PVA系统,双PVA系统和四重PVA系统在20°C时光束的传递函数的最大峰值分别为14.3 dB,-6.91 dB,-7.47 dB和分别为-8.51 dB。实验结果还表明,在从-10摄氏度到50摄氏度的可变温度环境中,多PVA系统比单个PVA更具鲁棒性。总之,使用多个PVA可以产生有效,鲁棒的振动控制方法用于适应性结构。

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