...
首页> 外文期刊>Energy Conversion & Management >Hybrid vibration and wind energy harvesting using combined piezoelectric and electromagnetic conversion for bridge health monitoring applications
【24h】

Hybrid vibration and wind energy harvesting using combined piezoelectric and electromagnetic conversion for bridge health monitoring applications

机译:使用压电和电磁转换相结合的振动和风能混合采集,用于桥梁健康监测应用

获取原文
获取原文并翻译 | 示例
           

摘要

In this paper a novel multimodal hybrid bridge energy harvester (HBEH) using combined piezoelectric and electromagnetic conversion is reported. The architecture, fabrication, and characterization of the harvester is discussed. The devised HBEH consists of a permanent magnet, a wound coil, a piezoelectric plate, an airfoil, and two cantilever beams attached to a base support frame. The upper cantilever is holding a permanent magnet and an airfoil as tip mass. A piezoelectric plate is bonded on this beam near its fixed end. On the other hand, the lower beam holds a wound coil. The coil is adjusted in such a way that it is in-line and close to the permanent magnet. The harvester is capable of converting bridge vibrations and ambient wind energy into useful electrical energy to operate wireless sensor nodes (WSNs) for the health monitoring of bridges. Experimentally, the HBEH operated at three, low frequency resonant modes, ranging from 11 to 45 Hz, concentrated around 11, 38 and 43 Hz. Moreover, under sinusoidal base acceleration of 0.6 g, the harvester produced a maximum power of 2214.32 mu W across a matching impedance of 28 Omega from its electromagnetic portion at 1st resonance (11.1 Hz). However, a peak power of 155.7 mu W was generated by the harvester from its piezoelectric part under 0.4 g base excitation across 130 k Omega load resistance. Furthermore, at 6 m/s pulsating wind speed, the harvester generated load voltages of 25 mV and 114 mV from its electromagnetic and piezoelectric portions when connected to optimum load impedance of 28 Omega and 130 k Omega respectively.
机译:本文报道了一种结合压电和电磁转换的新型多峰混合桥式能量采集器(HBEH)。讨论了收割机的结构,制造和特性。所设计的HBEH由永磁体,绕制线圈,压电板,翼型件和两个悬臂梁组成,这些悬臂梁连接至基础支撑框架。上悬臂保持着一块永磁体和一个翼型作为尖端质量。压电板在其梁的固定端附近粘合。另一方面,下梁保持绕制的线圈。线圈的调整方式应使其成一直线并靠近永磁体。收割机能够将桥梁的振动和周围的风能转换为有用的电能,以操作无线传感器节点(WSN)来监测桥梁的健康状况。实验上,HBEH在11至45 Hz的三种低频谐振模式下工作,集中在11、38和43 Hz左右。此外,在0.6 g的正弦基本加速度下,收割机在其1次共振(11.1 Hz)处的电磁部分产生的最大阻抗为2214.32μW,匹配阻抗为28Ω。但是,在0.4 g的基础激发下,采集器的压电部分在130 kΩ的负载电阻下产生了155.7μW的峰值功率。此外,在脉动风速为6 m / s时,收割机分别连接到28 Omega和130 k Omega的最佳负载阻抗时,会从其电磁和压电部分产生25 mV和114 mV的负载电压。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号