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首页> 外文期刊>Journal of intelligent material systems and structures >Optimal switch timing for piezoelectric-based semi-active vibration reduction techniques
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Optimal switch timing for piezoelectric-based semi-active vibration reduction techniques

机译:基于压电的半主动减振技术的最佳开关时序

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摘要

Piezoelectric-based semi-active vibration reduction techniques typically rely on rapid changes in the electrical boundary conditions or corresponding stiffness state. Approaches such as state switching and synchronized switch damping on a resistor or an inductor require four switching events per vibration cycle, with switch timing associated with displacement extrema. Any deviation from this switch timing affects the performance of these techniques. Typical harmonic forcing analyses focus on the energy dissipation and only evaluate the performance at resonance. This study evaluates displacement reduction for harmonic excitation, both at resonance and for frequencies near resonance. Furthermore, it examines the effect of sub-optimal switch timings. Numerical simulations of a non-dimensional model are performed, and an analytical solution is derived for any switch time. This analysis shows that the optimal switch timing depends on the forcing frequency relative to the natural frequency of the structure. Thus, the classical switch time at peak displacement is only optimal when the excitation is exactly at resonance. Even when the optimal switch timing is known, uncertainties in vibration sensing cannot guarantee that switches will occur at the desired moment. Therefore, this work characterizes the degradation in vibration reduction performance when switching away from the optimal switch time based on global, non-dimensional parameters.
机译:基于压电的半主动减振技术通常依赖于电边界条件或相应刚度状态的快速变化。在电阻器或电感器上进行状态切换和同步开关阻尼之类的方法,每个振动周期需要四个开关事件,而开关时序与位移极值相关。切换时间的任何偏差都会影响这些技术的性能。典型的谐波强迫分析专注于能量耗散,仅评估共振时的性能。这项研究评估了共振和接近共振频率下谐波激励的位移减小。此外,它还研究了次优开关时序的影响。进行了无量纲模型的数值模拟,并得出了任何切换时间的解析解。该分析表明,最佳开关时序取决于相对于结构固有频率的强制频率。因此,仅当激发恰好在共振时,峰值位移的经典切换时间才是最佳的。即使知道最佳开关时序,振动检测的不确定性也不能保证开关会在所需的时刻发生。因此,这项工作的特点是,当基于全局无量纲参数从最佳切换时间切换离开时,减振性能会下降。

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