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Segmented impact-type piezoelectric energy harvester for self-start impedance matching circuit

机译:用于自启动阻抗匹配电路的分段冲击式压电能量收割机

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摘要

This paper proposes a segmented impact-type piezoelectric energy harvester (PEH) for self-start impedance matching circuit. Generally, an oscillator in an impedance matching circuit requires a separate power supply. Considering randomness and intermittence of wind energy, a design of a smart power controller is essential for efficient and timely power supply to the oscillator. The proposed segmented impact-type PEH is designed to achieve an ultra-low power consumption for an impedance matching circuit operation. The proposed harvester consists of a main piezoelectric material (PZT1) to power the main application such as wireless sensor node, and a sub-piezoelectric material (PZT2) to power the impedance matching circuit. The size of PZT2 is determined to meet the power requirement of the impedance matching circuit, and the self-start circuit is proposed to supply the power from PZT2 to the impedance matching circuit. Experimental results indicate that the proposed self-start circuit with PZT2 successfully operates the impedance matching circuit with extremely low power consumption of 45 mu W, which is 30%-70% compared to the existing impact-type PEH circuits.
机译:本文提出了一种用于自启动阻抗匹配电路的分段冲击式压电能量收割机(PEH)。通常,阻抗匹配电路中的振荡器需要单独的电源。考虑到风能的随机性和间歇性,智能电力控制器的设计对于振荡器的高效和及时供电是必不可少的。所提出的分段冲击式PEH旨在实现阻抗匹配电路操作的超低功耗。所提出的收割机由主压电材料(PZT1)组成,用于为诸如无线传感器节点的主应用和副压电材料(PZT2)供电,以供电阻抗匹配电路。确定PZT2的大小以满足阻抗匹配电路的功率要求,并且提出自启动电路以将来自PZT2的电力提供给阻抗匹配电路。实验结果表明,与PZT2的建议的自启动电路成功地操作了45μW的极低功耗的阻抗匹配电路,与现有的冲击式PEH电路相比为30%-70%。

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