首页> 外文会议>Conference on Sensors and Smart Structures Technologies for Civil, Mechanical, and Aerospace Systems >Energy harvesting by magnetostrictive material (MsM) for powering wireless sensors in SHM
【24h】

Energy harvesting by magnetostrictive material (MsM) for powering wireless sensors in SHM

机译:通过磁致伸缩材料(MSM)的能量收获用于在SHM中供电无线传感器

获取原文

摘要

A new class of vibrational energy harvester based on Magnetostrictive material (MsM) Metglas 2605SC is deigned, developed, and tested in building practical energy harvesting wireless sensor networks. Compared to piezoelectric material, Metglas 2605SC offers advantages including ultra-high energy conversion efficiency, high power density, longer life cycles without depolarization issue, and flexibility to operate in strong ambient vibrations. To enhance the energy conversion efficiency and shrink the size of the harvester, Metglas is annealed in the direction normal to the axial strain direction without the need of electromagnet for applying bias (static) magnetic field. To seamlessly integrate with a newly developed wireless sensor at NC State1, a prototype design for the MsM harvester is proposed. An analytical model is developed for the harvesting using an equivalent electromechanical circuit. The model resulting in achievable output performances of the harvester powering a resistive load and charging a capacitive energy storage device, respectively, is quantitatively derived. An energy harvesting module, which powers a wireless sensor, stores excess energy in an ultracapacitor is designed on a printed circuit board (PCB) with dimension 25mm x 35mm. The main functionalities of the circuit include a voltage quadrupler, a 3F ultracapacitor, and a smart regulator. The output DC voltage from the PCB can be adjusted within 2.0~5.5V. In experiments, the maximum output power and power density on the resistor can reach 200 μW and 900 μW/cm3, respectively. For a working prototype, the average power and power density during charging the ultracapacitor can achieve 576 μW and 606 μW/cm3 respectively, which are much higher than those of most piezo-based harvesters.
机译:基于磁致伸缩材料(MSM)Metglas 2605SC的新一类振动能量收割机在建立实际能量收集无线传感器网络时进行了俯卧撑,开发和测试。与压电材料相比,Metglas 2605SC提供了包括超高能量转换效率,高功率密度,寿命循环的优点,而无需去极化问题,并且在强环境振动中操作的灵活性。为了增强能量转换效率并收缩收割机的尺寸,Metglas在正常到轴向应变方向上的方向上退火而不需要电磁铁来施加偏置(静态)磁场。为了在NC State1中与新开发的无线传感器无缝集成,提出了MSM收割机的原型设计。利用等效机电电路开发了分析模型。定量地导出导致收割机的可实现电阻负载和充电电容能量存储装置的收割机的可实现性能的模型。为无线传感器提供供电的能量收集模块在超级电路板(PCB)上设计在UltraCapacitor中的过量能量,尺寸为25mm x 35mm。电路的主要功能包括电压四倍夹,3F超容器和智能调节器。来自PCB的输出直流电压可在2.0〜5.5V内调节。在实验中,电阻上的最大输出功率和功率密度分别可以达到200μW和900μW/ cm3。对于工作原型,在充电期间的平均功率和功率密度分别可以实现576μW和606μW/ cm 3,远高于大多数基于压电的收割机。

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