Circuit design for an impact-type piezoelectric system for micro-wind energy harvesting

Nan Chen, T. Wei, D. Ha
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引用次数: 4

Abstract

In this paper, a power management circuit with sleep mode for impact-type piezoelectric micro-wind energy harvesting system was proposed. Based on the analysis of the output characteristics of impact-type piezoelectric energy harvester, a new resistive matching impedance strategy was proposed to obtain maximum power. Besides, a low-power oscillator was presented to realize sectionalized frequencies. Finally, experimental results show that the controller for sectionalized matching impedance consumes 9.9% of the harvested power when the input average power is 0.9mW, and only 3.7% when the input average power is 2.1mW. The efficiency of the proposed sectionalized matching impedance energy harvesting circuit is around 76 %, which is increased by 59% and 22% at the strike frequency of 0.5Hz, as compared with the constant resistive matching circuit and with the constant resistive matching circuit having sleep mode, respectively.
一种用于微型风能收集的冲击式压电系统电路设计
提出了一种具有休眠模式的冲击式压电微型风能收集系统电源管理电路。在分析冲击式压电能量采集器输出特性的基础上,提出了一种新的电阻匹配阻抗策略以获得最大功率。此外,还提出了一种低功耗振荡器来实现频率分段。最后,实验结果表明,分段匹配阻抗控制器在输入平均功率为0.9mW时消耗9.9%的功率,在输入平均功率为2.1mW时仅消耗3.7%的功率。所提出的分段匹配阻抗能量收集电路的效率约为76%,在0.5Hz的打击频率下,与恒阻匹配电路和具有休眠模式的恒阻匹配电路相比,效率分别提高了59%和22%。
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