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Design and analysis of a unimorph piezoceramic generator with cantilever structure in a low-frequency environment

机译:低频环境下悬臂结构单压电晶片发生器的设计与分析

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摘要

Piezoelectric materials have the electromechanical capability of converting mechanical vibration energy into electrical energy and are utilized in sensors, generators, and actuator applications. However, with regard to compact-dimension applications, piezoelectric generators have to overcome some shortcomings, such as high voltage, low current, and relatively low power output. This article presents a design method of which the loading-weight vibration on the piezoelectric material can be transferred into an external force, and, additionally, an equivalent electric circuit method is used to calculate the electrical characteristics of piezoelectric material. Compared to the measurement, in a 4 Hz vibration environment with a 30 g loading mass, which is equivalent to a 0.5 N external force, the piezoelectric plate can generate an electric voltage of 19.8V. A 2.7 per cent error rate of the output voltage in the equivalent force conversion is achieved. Finally, in order to demonstrate the accuracy of the theoretical analysis, a prototype hand-shaking piezoelectric generator is proposed, which is used to drive a wireless-switch device (5V driving voltage). Experimental results show that the average electrical power of the handshaking piezoelectric generator is approximately 50 (iW, and a 7 per cent stored power error rate is achieved when comparing the measurement and theoretical estimation.
机译:压电材料具有将机械振动能转换为电能的机电性能,并用于传感器,发电机和执行器应用中。但是,对于紧凑型应用,压电发电机必须克服一些缺点,例如高电压,低电流和相对较低的功率输出。本文提出了一种设计方法,该方法可以将压电材料上的负载振动传递给外力,此外,还使用等效电路方法来计算压电材料的电特性。与测量相比,在具有30 g负载质量(相当于0.5 N外力)的4 Hz振动环境中,压电板可以产生19.8V的电压。在等效力转换中,输出电压的误差率为2.7%。最后,为了证明理论分析的准确性,提出了一种原型握手式压电发电机,用于驱动无线开关设备(驱动电压为5V)。实验结果表明,握手型压电发电机的平均电功率约为50(iW),将测量值与理论估计值进行比较时,可实现7%的存储功率错误率。

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