Hu Hongping, Xue Huan, Hu Yuantai
Department of Mechanics, Huazhong University of Science and Technology, Wuhan 430074, China.
IEEE Trans Ultrason Ferroelectr Freq Control. 2007 Jun;54(6):1177-87. doi: 10.1109/tuffc.2007.371.
A piezoelectric energy harvester consists of a spiral-shaped piezoelectric bimorph to transfer mechanical energy into electric energy, an electrochemical battery to store the scavenged electric energy, and a rectifier together with a step-down dc-dc converter to connect the two components as an integrated system. A spiral-shaped harvesting structure is studied in this paper because it is very useful in the microminiaturization of advanced sensing technology. The aim of employing a step-down dc-dc converter in the storage circuit is to match the optimal output voltage of the piezoelectric bimorph with the battery voltage for efficient charging. In order to raise the output power density of a harvesting element, moreover, we apply a synchronized switch harvesting on inductor (SSHI) in parallel with the piezoelectric bimorph to artificially extend the closed-circuit interval of the rectifier. Numerical results show that the introduction of a dc-dc converter in the storage circuit or a SSHI in the harvesting structure can raise the charging efficiency several times higher than a harvester without a dc-dc converter or an SSHI.
压电能量收集器由一个螺旋形压电双晶片(用于将机械能转换为电能)、一个用于存储收集到的电能的电化学电池以及一个整流器和一个降压式直流-直流转换器组成,该转换器将这两个组件连接成一个集成系统。本文研究了一种螺旋形收集结构,因为它在先进传感技术的微型化方面非常有用。在存储电路中采用降压式直流-直流转换器的目的是使压电双晶片的最佳输出电压与电池电压相匹配,以便进行高效充电。此外,为了提高收集元件的输出功率密度,我们将同步开关电感取电(SSHI)与压电双晶片并联,以人为延长整流器的闭路间隔。数值结果表明,在存储电路中引入直流-直流转换器或在收集结构中引入SSHI,可以使充电效率比没有直流-直流转换器或SSHI的收集器提高几倍。