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A piezoelectric six-DOF vibration energy harvester based on parallel mechanism: dynamic modeling, simulation, and experiment

机译:基于并联机制的压电六自由度振动能量收割机:动态建模,仿真和实验

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摘要

Multi-directional and multi-degree-of-freedom (multi-DOF) vibration energy harvesting are attracting more and more research interest in recent years. In this paper, the principle of a piezoelectric six-DOF vibration energy harvester based on parallel mechanism is proposed to convert the energy of the six-DOF vibration to single-DOF vibrations of the limbs on the energy harvester and output voltages. The dynamic model of the piezoelectric six-DOF vibration energy harvester is established to estimate the vibrations of the limbs. On this basis, a Stewart-type piezoelectric six-DOF vibration energy harvester is developed and explored. In order to validate the established dynamic model and the analysis results, the simulation model of the Stewart-type piezoelectric six-DOF vibration energy harvester is built and tested with different vibration excitations by SimMechanics, and some preliminary experiments are carried out. The results show that the vibration of the limbs on the piezoelectric six-DOF vibration energy harvester can be estimated by the established dynamic model. The developed Stewart-type piezoelectric six-DOF vibration energy harvester can harvest the energy of multi-directional linear vibration and multi-axis rotating vibration with resonance frequencies of 17 Hz, 25 Hz, and 47 Hz. Moreover, the resonance frequencies of the developed piezoelectric six-DOF vibration energy harvester are not affected by the direction changing of the vibration excitation.
机译:多方向和多程度自由(多DOF)振动能量收集近年来吸引了越来越多的研究兴趣。在本文中,提出了基于并联机构的压电六-COF振动能量收割机的原理,以将六-DOF振动的能量转换为能量收割机和输出电压的四肢振动。建立了压电六-DOF振动能量收割机的动态模型,以估算肢体的振动。在此基础上,开发和探索了一种斯图尔特型压电六自由度振动能量收割机。为了验证既定的动态模型和分析结果,斯图尔特型压电六-DOF振动能量收割机的仿真模型由兴业机械的不同振动激励建造和测试,并进行了一些初步实验。结果表明,通过建立的动态模型估算压电六-DOF振动能量收割机上的肢体的振动。开发的Stewart型压电六-TOF振动能量收割机可以收集多向线性振动和多轴旋转振动的能量,具有17Hz,25Hz和47 Hz的共振频率。此外,开发的压电六-DOF振动能量收割机的谐振频率不受振动激发方向改变的影响。

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