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Characteristics of Energy Storage Devices in Piezoelectric Energy Harvesting Systems

机译:压电能量收集系统中能量存储设备的特性

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Using piezoelectric elements to harvest energy from ambient vibration has been of great interest recently. As the power harvested from the piezoelectric element is relatively low, energy storage devices are needed to accumulate the energy for intermittent use. In this study, the energy storage devices considered include rechargeable batteries and super-capacitors. The traditional electrolytic capacitors are not considered due to their low energy density. The charge/discharge efficiencies of the energy storage devices are of major concern. The equivalent circuit model of the energy storage devices is investigated. It is found that the leakage resistances of the energy storage devices are the dominant factor that influences the charge/discharge efficiency in the piezoelectric energy harvesting systems. A quick test method is proposed to experimentally study the charge/discharge efficiencies of the energy storage devices. The experimental results verify our findings. Adaptability, lifetime, and charging protection circuit of the energy storage devices are also discussed. It can be concluded that supercapacitors are suitable and more desirable than the rechargeable batteries to store the energy in the piezoelectric energy harvesting systems.
机译:最近,使用压电元件从环境振动中收集能量非常受关注。由于从压电元件收集的功率相对较低,因此需要能量存储装置来累积能量以间歇使用。在这项研究中,考虑的储能设备包括可充电电池和超级电容器。由于其低能量密度,因此未考虑传统的电解电容器。储能装置的充电/放电效率是主要关注的问题。研究了储能装置的等效电路模型。已经发现,能量存储装置的泄漏电阻是影响压电能量收集系统中的充电/放电效率的主要因素。提出了一种快速测试方法来通过实验研究储能装置的充电/放电效率。实验结果证实了我们的发现。还讨论了储能装置的适应性,寿命和充电保护电路。可以得出结论,超级电容器比可再充电电池更适合并且更需要在压电能量收集系统中存储能量。

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