Comparative Study of AC-DC Rectifiers for Vibration Energy Harvesters

Kholoud Hamza, Ghada Bouattour, A. Fakhfakh, F. Derbel, O. Kanoun
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引用次数: 1

Abstract

Energy harvesting systems (EH) have attracted a lot of interest in recent years due to their important role in different applications. Typically, the output of vibrations EH is an alternating current (AC) that requires rectification to supply the electronic load. The rectifier architectures and selection of components have an influence on the energy harvesting system performance in terms of extracted output power and conversion efficiency. In this paper, comparisons between different self-powered rectifier architectures that are composed of diodes and MOSFETs are investigated with simulation and experimental evaluations. This study considers the effect of the load impedance as well as the input voltage levels on the system output power and efficiency. The investigated rectifiers are namely, diode bridge, 4P-MOSFET(4PR), 4N-MOSFET(4NR), 2N-MOSFET-2 diodes (ND), and Negative Voltage Rectifier (NVR). The experimental results show that at 2.5 V input voltage the NVR architecture has the highest output power and efficiency with 119.5 mW and 70.4%, respectively. At 2.5 V of the input voltage, the diode bridge rectifier exhibits an output power of 4S.51mWwhere76.SmW, 6S.93mW, and SO.2 mW are delivered by the 4NR, 4PR, and ND architectures. In terms of conversion efficiency, the diode bridge delivers 40.32 % whereas 4NR, 4PR, and ND architectures show an efficiency of 46.3 %, 44.32 %, and 55.97%, respectively.
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振动能量采集器用交直流整流器的比较研究
能量收集系统(EH)由于其在不同应用中的重要作用,近年来引起了人们的广泛关注。通常,EH振动的输出是交流电流(AC),需要整流来提供电子负载。整流器的结构和元件的选择对能量收集系统的输出功率和转换效率都有影响。本文通过仿真和实验评估,对由二极管和mosfet组成的不同自供电整流器结构进行了比较。本研究考虑了负载阻抗和输入电压对系统输出功率和效率的影响。所研究的整流器分别是二极管桥、4P-MOSFET(4PR)、4N-MOSFET(4NR)、2N-MOSFET-2二极管(ND)和负电压整流器(NVR)。实验结果表明,在2.5 V输入电压下,NVR架构的输出功率和效率最高,分别为119.5 mW和70.4%。在2.5 V的输入电压下,二极管桥式整流器的输出功率为4s .51 mwhwh76。南都,6 s。4NR、4PR和ND架构分别提供93mW和so2 mW。在转换效率方面,二极管桥的转换效率为40.32%,而4NR、4PR和ND架构的转换效率分别为46.3%、44.32%和55.97%。
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