Energy Harvesting Performance of Vertically Staggered Rectangle-Through-Holes Cantilevered in Piezoelectric Vibration Energy Harvester

Shanshi Gao, H. Ao, Hongyuan Jiang
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Abstract

Piezoelectric vibration energy harvesting technology has attracted significant attention for its applications in integrated circuits, microelectronic devices and wireless sensors due to high power density, easy integration, simple configuration and other outstanding features. Among piezoelectric vibration energy harvesting structures, cantilevered beam is one of the simplest and most commonly used structures. In this work, a vertically staggered rectangle-through-holes (VS-RTH) cantilevered model of mesoscale piezoelectric energy harvester is proposed, which focuses on the multi-directional vibration collection and low resonant frequency. To verify the output performances of the device, this paper employs basic materials and fabrication methods with mathematical modeling. The simulations are conducted through finite element methods to discuss the properties of VS-RTH energy harvester on resonant frequency and output characteristics. Besides, an energy storage circuit with high power collection rate is adopted as collection system. This harvester is beneficial to the further application of devices working with continuous vibrations and low power requirements.
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垂直交错矩形通孔悬臂式压电振动能量采集器的能量收集性能
压电振动能量收集技术因其功率密度高、易于集成、配置简单等突出特点,在集成电路、微电子器件和无线传感器等领域的应用备受关注。在压电振动能量收集结构中,悬臂梁是最简单、最常用的结构之一。本文提出了一种垂直交错矩形通孔(VS-RTH)悬臂式中尺度压电能量采集器模型,该模型着重于多向振动收集和低谐振频率。为了验证器件的输出性能,本文采用了基本的材料和制作方法,并进行了数学建模。采用有限元方法对VS-RTH能量采集器的谐振频率和输出特性进行了仿真分析。采集系统采用高功率采集速率的储能电路。这种收割机有利于在连续振动和低功率要求下工作的设备的进一步应用。
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