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Characterization of Piezoelectric Cantilever Beams for use in Roadside Vibration Energy Harvesting

机译:用于路边振动能量收集的压电悬臂梁的特性

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This paper investigates a method of characterizing piezoelectric cantilever beams for applications in roadside energy harvesting. Research to date studies piezoelectric harvesting units embedded in pavement, which has a host of logistical issues. Other previous implementations have focused on adhering piezoelectric elements to a substrate that acts as the beam. This paper focuses on an implementation using only the piezoelectric material as the cantilever beam and an initial investigation into the feasibility of harvesting electricity from a cantilever beam system on the roadside. A Piezoelectric element was tested by clamping it to the vibration table and observing the open-circuit voltage over a frequency range of 1 - 200 Hz at approximately 1 G. The test samples had a prominent but narrow-banded resonance at between 20 - 200 Hz, outputting roughly 2.45 - 6.22Vrms, resulting in between 63.6 - 289 μW. These preliminary results show that with the usage of multiple piezoelectric elements and careful considerations in the choice of harvesting circuitry, a usable amount of energy could be generated for some low power applications.
机译:本文研究了一种表征压电悬臂梁的方法,用于路边能量收集。迄今为止,已有研究研究了嵌入路面的压电收割装置,这存在许多后勤问题。其他先前的实现方式集中在将压电元件粘附到充当梁的基板上。本文着重于仅使用压电材料作为悬臂梁的实施方案,并初步研究了在路边从悬臂梁系统中收集电能的可行性。通过将压电元件固定在振动台上并在大约1 G的频率下在1-200 Hz的频率范围内观察开路电压,对压电元件进行了测试。测试样品在20-200 Hz之间具有明显但窄带的谐振,输出大约2.45-6.22V rms ,结果为63.6-289μW。这些初步结果表明,使用多个压电元件以及在选择采集电路时要谨慎考虑,对于某些低功率应用,可能会产生可用的能量。

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