首页> 外文期刊>Thin-Walled Structures >Optimisation of energy harvesting for stiffened composite shells with application to the aircraft wing at structural flight frequency
【24h】

Optimisation of energy harvesting for stiffened composite shells with application to the aircraft wing at structural flight frequency

机译:基于结构飞行频率的飞行复合壳能量收获的优化

获取原文
获取原文并翻译 | 示例

摘要

The conversion of structural dynamic strain into electric power using piezoelectric transducers to power microelectronic devices and wireless sensor nodes for structure health monitoring has been receiving growing attention from academic researchers and industry. Harvesting electric energy from vibration and storing it in an external infinite life-span capacitor is a proposed technique to eliminate the drawbacks of using conventional finite lifespan batteries. Optimisation of the harvested power is an important research topic to ensure an endless power source with sufficient flow of electricity.This paper concerns optimisation of energy harvesting for composite shells stiffened by beams, with discrete flexible composite piezoelectric sensors bonded to the surface and located optimally. A homogenous composite shell stiffened by beams with a bonded piezoelectric transducer connected to an external resistive load is modelled using three-dimensional solid finite elements. An efficient and effective placement methodology is proposed to find the optimal locations of piezoelectric sensors based on the maximisation of average percentage sensor effectiveness as an objective function. This study is firstly verified against published work for a cantilever flat plate and beam, and then implemented to optimise the energy harvesting for a composite aircraft wing at structural frequencies during flight. The results show a high reduction in computational effort and improved effectiveness of the methodology to optimise energy harvesting for complex and large-scale structures compared with alternative methods. Furthermore, the harvesting power obtained from optimal sensor distribution shows promise to be sufficient to activate wireless sensor nodes for health monitoring.
机译:使用压电传感器将结构动态应变转换为电力微电子器件的电力和无线传感器节点的结构健康监测已经从学术研究人员和工业中获得了越来越关注。从振动中收集电能并将其存放在外部无限寿命电容器中是一种提出的技术,用于消除使用传统有限寿命电池的缺点。收获功率优化是一种重要的研究主题,以确保具有充分电力流动的无尽电源。本文涉及梁加固的复合壳的能量收集优化,具有离散的柔性复合压电传感器,最佳地定位。使用三维固体有限元建模的具有连接到外部电阻载荷的粘合压电换能器的束束加固的均匀复合壳。提出了一种高效且有效的放置方法,以基于作为目标函数的平均百分比传感器效果的最大化来找到压电传感器的最佳位置。本研究首先验证了悬臂平板和梁的发布工作,然后实施以优化在飞行期间结构频率的复合飞机机翼的能量收获。结果表现出计算努力的高度降低,并提高了方法的有效性,以优化复杂和大规模结构的能量收集与替代方法。此外,从最佳传感器分布获得的收获功率示出了承诺足以激活无线传感器节点以进行健康监控。

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