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A low-power circuit for piezoelectric vibration control by synchronized switching on voltage sources

机译:通过同步接通电压源进行压电振动控制的低功耗电路

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摘要

In the paper, a vibration clamping system powered by harvested energy with implementation of the so-called SSDV (synchronized switch clamping on voltage source) technique is designed and investigated. In the semi-passive approach, the piezoelectric element is intermittently switched from open-circuit to specific impedance synchronously with the structural vibration. Due to this switching procedure, a phase difference appears between the strain induced by vibration and the resulting voltage, thus creating energy dissipation. By supplying the energy collected from the piezoelectric materials to the switching circuit, a new low-power device using the SSDV technique is proposed. Compared with the original self-powered SSDI (synchronized switch damping on inductor), such a device can significantly improve its performance of vibration control. Its effectiveness in the single-mode resonant damping of a composite beam is validated by the experimental results. (C) 2010 Elsevier B.V. All rights reserved.
机译:在本文中,设计并研究了一种通过采用所谓的SSDV(电压源上的同步开关钳位)技术来实现的,由能量采集驱动的振动钳位系统。在半无源方法中,压电元件与结构振动同步地间歇地从开路切换到特定阻抗。由于这种切换过程,在由振动引起的应变与所产生的电压之间会出现相位差,从而产生能量耗散。通过将从压电材料收集的能量提供给开关电路,提出了一种使用SSDV技术的新型低功耗器件。与原始的自供电SSDI(电感上的同步开关阻尼)相比,这种设备可以显着提高其振动控制性能。实验结果验证了其在复合梁单模共振阻尼中的有效性。 (C)2010 Elsevier B.V.保留所有权利。

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