压电
电压
能量收集
传感器
材料科学
振动
声学
控制理论(社会学)
等效电路
电势能
反演(地质)
压电传感器
功率(物理)
发电机(电路理论)
计算
机械能
电位
电子工程
电气工程
发电机
PMUT公司
能量(信号处理)
物理
电容器
电荷(物理)
作者
Meng Zhou,Yushin Hara,Tianyi Tang,Koyo Mishima,Yu Jia,Yu Shi,Constantinos Soutis,Hiroki Kurita,Fumio Narita,Keisuke Otsuka,Kanjuro Makihara,Meng Zhou,Yushin Hara,Tianyi Tang,Koyo Mishima,Yu Jia,Yu Shi,Constantinos Soutis,Hiroki Kurita,Fumio Narita
标识
DOI:10.1177/1045389x251375743
摘要
The objective of this study is to enhance the output power of a high-electromechanical-coupling piezoelectric vibration energy harvester, incorporating a synchronous inversion and charge extraction (SICE) circuit. The SICE circuit employs charge inversion and charge extraction switches to boost the voltage of the piezoelectric transducer and to extract electrical energy. In cases of weak electromechanical coupling, the SICE circuit is preferred over the synchronized electric charge extraction circuit. However, when a strongly coupled transducer is used within the SICE circuit, harvesting efficiency can decrease. In this study, two novel methods for controlling the SICE circuit were introduced: short-duration switching and phase-shifted switching. An analytical model was developed to examine the relationship between the phase shift required for switching and the output power. The voltage generator model of the piezoelectric transducer was used to illustrate the temporal variation in the piezoelectric charge. The analysis revealed that the piezoelectric charge in the voltage generator model remains constant during the intervals between switching operations. This characteristic is beneficial for the theoretical computation of solutions to the equations of motion. The numerical simulations and experimental results confirmed the effectiveness of the proposed methods, which achieved a 48% improvement in the output power of the SICE circuit, particularly for strongly coupled energy harvesters.
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