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Demonstrating the effects of elastic support on power generation and storage capability of piezoelectric energy harvesting devices

机译:演示弹性支撑对压电能量采集装置发电和存储能力的影响

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摘要

This study represents effects of an elastic support on the power generation and storage capability of piezoelectric energy harvesting devices. The governing equations were derived and solved for a piezoelectric energy harvesting device made of elastic support, multilayer piezoelectric beam, and a proof mass at its free end. Furthermore, a Thevenin model for a rechargeable battery was considered for storage of the produced power of the piezoelectric energy harvesting device. Analyzing the time-domain and frequency-domain responses of the piezoelectric energy harvesting device on an elastic support shows that the elastic deformation of the support significantly reduces the power generation and storage capability of the device. It was also found that the power generation and storage capability of the piezoelectric energy harvesting device can be enhanced by choosing appropriate physical parameters of the piezoelectric beam even if the elastic properties of the support are poor relative to elastic properties of the piezoelectric beam. These results provide an insightful understanding for designing and material selection for the support in order to reach the highest possible power generation and storage capability for piezoelectric energy harvesting devices.
机译:这项研究代表了弹性支撑对压电能量收集装置的发电和存储能力的影响。推导并求解了由弹性支撑,多层压电梁及其自由端的质量块制成的压电能量收集装置的控制方程。此外,考虑了用于可再充电电池的戴维宁模型来存储压电能量收集装置的产生的功率。分析在弹性支撑件上的压电能量收集装置的时域和频域响应表明,支撑件的弹性变形显着降低了装置的发电和存储能力。还发现即使支撑件的弹性性质相对于压电梁的弹性性质较差,也可以通过选择适当的压电梁物理参数来增强压电能量收集装置的发电和存储能力。这些结果为支撑件的设计和材料选择提供了深刻的理解,以便使压电能量收集设备达到最大可能的发电和存储能力。

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