Department of Electrical Engineering, École de Technologie Supérieure, Montréal, QC H3C 1K3, Canada.
Sensors (Basel). 2018 May 16;18(5):1584. doi: 10.3390/s18051584.
Piezoelectric energy harvesters have proven to have the potential to be a power source in a wide range of applications. As the harvester dimensions scale down, the resonance frequencies of these devices increase drastically. Proof masses are essential in micro-scale devices in order to decrease the resonance frequency and increase the strain along the beam to increase the output power. In this work, the effects of proof mass geometry on piezoelectric energy harvesters are studied. Different geometrical dimension ratios have significant impact on the resonance frequency, e.g., beam to mass lengths, and beam to mass widths. A piezoelectric energy harvester has been fabricated and tested operating at a frequency of about 4 kHz within the audible range. The responses of various prototypes were studied, and an optimized T-shaped piezoelectric vibration energy harvester design is presented for improved performance.
压电能量收集器已被证明在广泛的应用中具有成为电源的潜力。随着收集器尺寸的缩小,这些设备的共振频率会急剧增加。在微尺度设备中,质量块对于降低共振频率和增加沿梁的应变以增加输出功率是必不可少的。在这项工作中,研究了质量块几何形状对压电能量收集器的影响。不同的几何尺寸比对共振频率有显著影响,例如梁与质量块的长度比和梁与质量块的宽度比。已经制造和测试了一个在大约 4 kHz 的频率下工作的压电能量收集器,该频率在可听范围内。研究了各种原型的响应,并提出了一种优化的 T 形压电振动能量收集器设计,以提高性能。