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首页> 外文期刊>Journal of intelligent material systems and structures >Semi-active vibration suppression for smart structures with sliding-mode control
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Semi-active vibration suppression for smart structures with sliding-mode control

机译:带有滑模控制的智能结构的半主动振动抑制

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摘要

A semi-active vibration suppression system is developed for flexible structures. The vibration suppression system comprises bimorph piezoelectric ceramic tiles shunted by a resistor-inductor electrical circuit with a switching component. The vibration suppression control is designed by tuning the optimal resistance and inductance parameters of the shunted resistor-inductor network. In this article, we propose a semi-active vibration control technique to improve the damping effect while maintaining the stability of the passive control system. The proposed control law is similar to a sliding-mode control that accelerates the convergence of the system using switching functions. This study shows that the resonant circuit functions as a type of dynamic damper for mechanical systems and that the sliding-mode control is very effective for damping the multi-mode responses. The results of the numerical simulations of a cantilevered beam show that a semiactive vibration control system is more effective in damping vibrations than a passive control system. A hardware demonstration based on a laboratory model has also been carried out. The preliminary results of the experiment show that the system is sensitive to the noise, and improved implementation of the switching circuit is needed for practical application.
机译:开发了一种用于柔性结构的半主动减振系统。该振动抑制系统包括由具有开关部件的电阻器-电感器电路分流的双压电晶片压电陶瓷砖。振动抑制控制是通过调整分流电阻器-电感器网络的最佳电阻和电感参数来设计的。在本文中,我们提出了一种半主动振动控制技术,以在保持被动控制系统稳定性的同时提高阻尼效果。所提出的控制规律类似于滑模控制,该滑模控制使用开关功能来加速系统的收敛。这项研究表明,谐振电路可以用作机械系统的动态阻尼器,并且滑模控制对于阻尼多模响应非常有效。悬臂梁的数值模拟结果表明,半主动振动控制系统在阻尼振动方面比被动控制系统更有效。还基于实验室模型进行了硬件演示。实验的初步结果表明,该系统对噪声敏感,实际应用中需要改进开关电路的实现。

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