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Demonstration of piezoelectric cantilever arrays for broadband vibration harvesting

机译:压电悬臂阵列为宽带振动收割的演示

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Piezoelectric cantilever as a resonant structure can be used both as sensor as well as energy harvester and hence can be integrated as a self-powered system. When excited at a frequency near to its resonant, maximum electrical power is generated, therefore it functions as a micro-power generator. When excited to a frequency which is far from the range of the resonant, the voltage signal generated is comparatively linear at the non-resonant region and proportional to the acceleration level, therefore in this region of frequency it functions as a sensor. This paper demonstrates the application of an array of piezoelectric cantilevers to harvest energy from a broadband vibration source and powering up a op-amp to amplify the signal obtained from a similar but shorter piezoelectric cantilever. The frequency response of the piezoelectric cantilever is characterized by applying different proof masses and altering the cantilever length with the intention to alter the resonant and non-resonant frequency region of the piezoelectric cantilevers into same operating frequency range of 200 Hz to 300 Hz. It is noticed that the self-powered accelerometer works well at an acceleration level above 0.8-g.
机译:作为谐振结构的压电悬臂可以用作传感器以及能量收割机,因此可以作为自动系统集成。当在靠近其谐振的频率下激发时,产生最大电力,因此它用作微发电机。当激发到远离谐振范围的频率时,在非谐振区域处产生的电压信号在非谐振区域处相对线性,并且与加速度水平成比例,因此在该频率区域中用作传感器。本文演示压电悬臂的从宽带振动源的阵列,以收获能量和一个运算放大器来放大从类似的但较短的压电悬臂梁获得的信号加电的应用。压电悬臂的频率响应通过施加不同的检测质量并改变悬臂长度,以改变压电悬臂器的谐振和非共振频率区域与200Hz至300Hz相同的工作频率范围。注意到自动加速度计在0.8-g以上的加速度水平上运行良好。

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