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Design and optimization of piezoelectric impact-based micro wind energy harvester for wireless sensor network

机译:无线传感器网络中基于压电冲击的微型风能采集器的设计与优化

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The purpose of the current study is to design and optimize a piezoelectric impact-based micro wind energy harvester (PIMWEH) as a power source for wireless sensor networks. First, using new PIMWEH design, numerical simulation, and experimental comparison analysis, we determined the most durable PIMWEH shape for application as a power source of WSNs. The experimental results show that the optimized PIMWEH generated 2.8 mW (RMS value) and did not crack within 40 h. Second, to supply power for sensor operation, we performed an experiment using a rectifying circuit, an AC-DC converter, and an electrical charger. The experimental results show a pure DC voltage signal of 3.3 V, and the output power was 1.0 mW (3.1 mW/cm(3)). A charging energy of 0.845 J was obtained in 24 min. Third, we calculated the efficiency of the PIMWEH to evaluate its performance. Using a three-step energy conversion process (using wind turbine, PZT, and LTC3588-1), an overall PIMWEH power conversion efficiency of 3.2% was obtained. For one day, the PIMWEH could supply power that is 6263-25055 times the power requirement of a commercialized ZigBee transmission. In addition, transmitting signals at intervals from 3.4 to 13 s was made possible. (C) 2014 Elsevier B.V. All rights reserved.
机译:当前研究的目的是设计和优化基于压电冲击的微型风能收集器(PIMWEH),作为无线传感器网络的电源。首先,使用新的PIMWEH设计,数值模拟和实验比较分析,我们确定了最耐用的PIMWEH形状,可以用作WSN的电源。实验结果表明,优化后的PIMWEH产生2.8 mW(RMS值)并且在40 h内没有开裂。其次,为了为传感器操作供电,我们使用了整流电路,AC-DC转换器和充电器进行了实验。实验结果表明,纯直流电压信号为3.3 V,输出功率为1.0 mW(3.1 mW / cm(3))。在24分钟内获得0.845 J的充电能量。第三,我们计算了PIMWEH的效率以评估其性能。使用三步能量转换过程(使用风力涡轮机,PZT和LTC3588-1),PIMWEH的总功率转换效率为3.2%。在一天之内,PIMWEH可以提供的功率是商业化ZigBee传输功率需求的6263-25055倍。此外,可以以3.4到13 s的间隔发送信号。 (C)2014 Elsevier B.V.保留所有权利。

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