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Energy Harvesting from Von Karman Vortices in Airflow for Autonomous Sensors

机译:从von Karman漩涡的能量收获在自治传感器的气流中

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In this paper an innovative energy harvesting system based on a piezoelectric converter to extract energy from airflow and use it to power autonomous sensors is presented. The converter is embedded as a part of a flexure beam that is put into vibrations by Von Karman vortices detached from a bluff body placed upstream. The results of experimental characterization show that higher conversion effectiveness is obtained for flow velocities where the frequency of the vortices matches the resonant frequency corresponding to the first flexural mode of the beam. The possibility to power autonomous sensors has been shown by developing an energy management and signal conditioning electronic circuit plus two sensors for the transmission of a RF signal from which temperature and flow velocity can be extracted. A harvested power of about 100 uW with retransmission intervals below 2 min have been obtained.
机译:在本文中,介绍了一种基于压电转换器的创新能源收集系统,以从气流中提取能量并将其用于电力自主传感器。转换器嵌入作为弯曲梁的一部分,该弯曲梁通过从放置在上游的虚张体上拆卸的von Karman涡流投入振动。实验表征的结果表明,对于流速的流速获得更高的转换效果,其中涡流的频率与对应于光束的第一弯曲模式对应的谐振频率匹配。通过开发能量管理和信号调节电子电路以及用于传输RF信号的传感器来示出了电力自治传感器的可能性,可以提取温度和流速的RF信号。已经获得了约100UW的收获功率,并且已经获得了2分钟以下的重致旋转间隔。

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