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Semi-active vibration control based on unsymmetrical synchronized switch damping : analysis and experimental validation of control performance

机译:基于非对称同步开关阻尼的半主动振动控制:控制性能分析与实验验证

摘要

In semi-active synchronized switch damping (SSD) approaches for structural vibration control, the damping effect is achieved by properly switching the voltage on the piezoelectric actuators. Unsymmetrical SSD switch circuit has been designed in the previous paper to increase the effective voltage range on the PZT actuator for improvement of the control performance. In this study, analysis and experimental validation of control performance of a synchronized switch damping system based on the unsymmetrical switch circuit are carried out. First the model of an unsymmetrical SSD system is presented and the working principle is introduced. The general expression of the switched voltage on the piezoelectric actuator is derived. Based on its periodicity in steady-state control, the harmonic components of the actuator voltage are derived using Fourier series expansion. Next, the displacement response of the system is derived under combined actions of the excitation and switched voltage. Finally, a setup of a flexible beam with unsymmetrical switch circuit is used to demonstrate the control performance under different voltage sources and to verify the theoretical results. The results show that the control performance mainly depends on the voltage range on the PZT. A higher effective voltage range can be generated in unsymmetrical SSDV than in symmetrical SSDV and better control performance can be achieved at the same negative actuator voltage. The unsymmetrical SSDV makes better utilization of the actuator capability.
机译:在用于结构振动控制的半主动同步开关阻尼(SSD)方法中,通过适当地切换压电致动器上的电压来实现阻尼效果。在前一篇论文中设计了非对称SSD开关电路,以增加PZT执行器上的有效电压范围,从而改善控制性能。本文对基于非对称开关电路的同步开关阻尼系统的控制性能进行了分析和实验验证。首先介绍了非对称SSD系统的模型,并介绍了其工作原理。推导了压电致动器上开关电压的一般表达式。根据其在稳态控制中的周期性,使用傅里叶级数展开来导出执行器电压的谐波分量。接下来,在激励和开关电压的组合作用下得出系统的位移响应。最后,通过设置不对称开关电路的柔性梁来演示在不同电压源下的控制性能,并验证理论结果。结果表明,控制性能主要取决于PZT的电压范围。与对称SSDV相比,非对称SSDV可以产生更高的有效电压范围,并且在相同的负致动器电压下可以获得更好的控制性能。非对称SSDV可以更好地利用执行器功能。

著录项

  • 作者

    Ji H; Qiu J; Cheng L; Nie H;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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