Multimode vibration damping as a result of piezoelectric energy harvesting

Hui Shen, Fengsheng Zhang, J. Qiu, Yixiang Bian
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引用次数: 1

Abstract

Energy harvesting systems are interesting for use in remote power supplies. Many such systems utilize the motion or deformation associated with vibration, converting the mechanical energy to electrical energy, and supplying power to other electronic devices. In terms of energy harvesting from mechanical vibrations, piezoelectric conversion has received much attention as it can directly convert applied strain energy into useable electric energy and easily be integrated into a microsystem. The removal of mechanical energy from a vibrating structure necessarily leads to a damping effect. This paper addresses the damping associated with a piezoelectric energy harvesting system which is called the adaptive synchronized switching harvesting (ASSH) technique. Furthermore, a self-powered circuit which implements the technique (ASSH) is proposed, which validates that the new technique can be truly self-powered. Experimental results show that the vibration amplitudes of the first two modes are reduced by about 9.27 dB and 0.96 dB in the case of the exciting signal of same amplitude ratio (3:3), respectively. Compared with other self-powered vibration damping technique, this technique not only shows its robustness, but also harvests the energy and supply power to other electronic circuits.
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压电能量收集的多模态减振
能量收集系统用于远程电源是很有趣的。许多这样的系统利用与振动相关的运动或变形,将机械能转换为电能,并为其他电子设备供电。在从机械振动中获取能量方面,压电转换因其可以直接将施加的应变能转换为可用的电能,并且易于集成到微系统中而备受关注。从振动结构中去除机械能必然导致阻尼效应。本文讨论了与压电能量收集系统相关的阻尼,该系统被称为自适应同步开关收集(ASSH)技术。此外,提出了实现该技术的自供电电路(ASSH),验证了新技术可以真正实现自供电。实验结果表明,在相同幅值比(3:3)的激励信号下,前两种模态的振动幅值分别降低了约9.27 dB和0.96 dB。与其他自供电减振技术相比,该技术不仅具有鲁棒性,而且可以获取能量并为其他电子电路供电。
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