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Vibration Energy harvesting using single and comb-shaped piezoelectric beam structures: Modeling and Simulation

机译:采用单梳形压电梁结构的振动能量收获:建模与仿真

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Of late, many have shown great interests in the area of energy harvesting or energy scavenging. Researchers have been venturing into methods that can generate acceptable level of voltage since decades ago. In line with the spirit of green technology, energy harvesting will be a major contributor towards saving our environment in near future. Vibration energy harvesting, specifically, is getting more and more attention nowadays. With the abundant sources, this type of energy harvesting can generate desired voltage to power any low power devices and wireless sensor; and subsequently high power devices in the future. In this research, unimorph piezoelectric energy harvester is chosen to harvest wideband mechanical energy. The derivation of the mathematical modelling is based on the Euler-Bernoulli beam theory. MATLAB and COMSOL Multiphysics software are used to study the influence of the structure in generating output voltage due to base excitations. Finally, the results of the frequency response are displayed in the form of voltage within frequency range of 0 to 3500 Hz, at which the comb-shaped piezoelectric beam structure shows better performance as there exist more natural frequencies in the specified range of frequency.
机译:最近,许多人在能量收集或能源清除的领域表现出极大的兴趣。研究人员一直冒险成几十年前可以产生可接受的电压水平的方法。符合绿色技术的精神,能源收获将是在不久的将来拯救环境的主要贡献者。具体而言,振动能量收获现在越来越多地关注。利用丰富的源,这种类型的能量收集可以产生所需的电压以供电任何低功耗器件和无线传感器;随后未来的高功率器件。在这项研究中,选择单身压电能量收割机收获宽带机械能。数学建模的推导是基于Euler-Bernoulli光束理论。 MATLAB和COMSOL Multiphysics软件用于研究由于基本激发引起的结构在产生输出电压时的影响。最后,频率响应的结果以0到3500Hz的频率范围内的电压形式显示,在该频率范围内的梳形压电束结构显示出更好的性能,因为在指定的频率范围内存在更多的自然频率。

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