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Optimum power and efficiency of piezoelectric vibration energy harvesters with sinusoidal and random vibrations

机译:具有正弦和随机振动的压电振动能量采集器的最佳功率和效率

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摘要

Assuming a sinusoidal vibration as input, an inertial piezoelectric harvester designed for maximum efficiency of the electromechanical energy conversion does not always lead to maximum power generation. In this case, what can be gained by optimizing the efficiency of the device? Detailing an answer to this question is the backbone of this paper. It is shown that, while the maximum efficiency operating condition does not always lead to maximum power generation, it corresponds always to maximum power per square unit deflection of the piezoelectric harvester. This understanding allows better optimization of the generated power when the deflection of the device is limited by hard stops. This is illustrated by experimental measurements on vacuum-packaged MEMS harvesters based on AlN as piezoelectric material. The results obtained for a sinusoidal vibration are extended to random vibrations. In this case, we demonstrate that the optimum generated power is directly proportional to the efficiency of the harvester, thus answering the initial question. For both types of studied vibrations, simple closed-form formulas describing the generated power and efficiency in optimum operating conditions are elaborated. These formulas are based on parameters that are easily measured or modeled. Therefore, they are useful performance metrics for existing piezoelectric harvesters.
机译:假定正弦振动为输入,设计用于最大程度地实现机电能量转换效率的惯性压电采集器并不一定总能产生最大的发电量。在这种情况下,通过优化设备效率可以获得什么?详细说明该问题的答案是本文的重点。结果表明,尽管最大效率的运行条件并不总是导致最大的发电量,但它始终与压电收割机每平方单位偏转的最大功率相对应。当设备的偏转受硬限位限制时,这种理解可以更好地优化所产生的功率。这在基于AlN作为压电材料的真空包装MEMS收割机上的实验测量得到了说明。对于正弦振动获得的结果扩展到随机振动。在这种情况下,我们证明了最佳发电功率与收割机的效率成正比,从而回答了最初的问题。对于两种类型的研究振动,阐述了描述最佳运行条件下的发电功率和效率的简单封闭式公式。这些公式基于易于测量或建模的参数。因此,它们是现有压电收集器的有用性能指标。

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