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Performance Enhancement of Piezoelectric Energy Harvesters Using Multilayer and Multistep Beam Configurations

机译:使用多层和多步光束配置的压电能量收集器的性能增强

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摘要

Low-power requirements of contemporary sensing technology attract research on alternate power sources that can replace batteries. Energy harvesters absorb ambient energy and function as power sources for sensors and other low-power devices. Piezoelectric bimorphs have been demonstrating the preeminence in converting the mechanical energy in ambient vibrations into electrical energy. Improving the performance of these harvesters is pivotal as the energy in ambient vibrations is innately low. In this paper, we focus on enhancing the performance of piezoelectric harvesters through a multilayer and, in particular, a multistep configuration. Partial coverage of piezoelectric material in steps along the length of a cantilever beam results in a multistep piezoelectric energy harvester. We also discuss obtaining an approximate deformation curve for the beam with multiple steps in a computationally efficient manner. We find that the power generated by a multistep beam is almost 90 more than that by a multilayer harvester made out of the same volume of polyvinylidinefluoride ( PVDF), further corroborated experimentally. Improvements observed in the power generated prove to be a boon for weakly coupled low profile piezoelectric materials. Thus, in spite of the weak piezoelectric coupling observed in PVDF, its energy harvesting capability can be improved significantly using it in a multistep piezoelectric beam configuration.
机译:当代传感技术的低功耗要求吸引了对替代电池的替代电源的研究。能量收集器吸收环境能量,并用作传感器和其他低功耗设备的电源。压电双晶型在将环境振动中的机械能转化为电能方面具有卓越性。提高这些收割机的性能至关重要,因为环境振动中的能量天生就很低。在本文中,我们重点关注通过多层,特别是多步骤配置来增强压电收割机的性能。压电材料沿悬臂梁长度的步进部分覆盖导致多步压电能量收集器。我们还讨论了以计算高效的方式通过多个步骤获得梁的近似变形曲线。我们发现,多级光束产生的功率几乎比由相同体积的聚氟乙烯 (PVDF) 制成的多层收割机产生的功率高 90%,这在实验中得到了进一步证实。在产生的功率方面观察到的改进被证明是弱耦合薄型压电材料的福音。因此,尽管在PVDF中观察到弱压电耦合,但在多步压电束配置中使用它可以显着提高其能量收集能力。

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