利用振动压电设计一种整流存储电压的低压能量收集电路

M. Sarker, S. Ali, M. Othman, M. Islam
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引用次数: 17

摘要

本文设计了一种利用振动压电元件产生整流电压的低压能量收集电路。采用DC-DC降压变换器技术设计低电压能量的低功耗电路。该方法功耗极低,特别适用于环境采集功率极低的环境。能量收集电路由二极管桥式交流-直流整流器和具有输出电容的能量存储装置、电化学电池和控制进入电池的能量流的开关模式dc-dc转换器组成。本文将在考虑低电压存储装置的情况下,对能量收集电路效率的重要问题进行研究。通过PSPICE仿真验证了具有交直流整流器、存储装置和负载的压电元件模型。结果表明,压电元件模型采用交直流整流器180mV,负载效率高达85%。最后,dc-dc(降压)变换器产生20mV。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Designing a low voltage energy harvesting circuits for rectified storage voltage using vibrating piezoelectric
This paper presents a designing of a low voltage energy harvesting circuits for generating rectified voltage into storage devices using vibrating piezoelectric element. A technique (i.e., DC-DC Step-Down converter) has chosen for designing the low-power circuit with low voltage energy. The proposed method consumes very little power, and is especially suitable for the environments, where ambient harvested power is very low. The energy harvesting circuit consists of diode bridge ac-dc rectifier and an energy storage device with an output capacitor, an electrochemical battery, and a switch-mode dc-dc converter that control the energy flow into the battery. This paper will study results these important issues regarding the efficiencies of the energy harvesting circuits considering the storage device low voltage. For the piezoelectric element model with ac-dc rectifier, storage device and load verified by PSPICE simulation. The results show piezoelectric element model with ac-dc rectifier of 180mV, and load higher efficiency of 85%. Finally, dc-dc (Step-down) converter generates 20mV.
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