首页> 外文期刊>Smart Materials & Structures >Modeling and experimental verification of proof mass effects on vibration energy harvester performance
【24h】

Modeling and experimental verification of proof mass effects on vibration energy harvester performance

机译:质量对振动能量采集器性能的影响的建模和实验验证

获取原文
获取原文并翻译 | 示例
           

摘要

An electromechanically coupled model for a cantilevered piezoelectric energy harvester with a proof mass is presented. Proof masses are essential in microscale devices to move device resonances towards optimal frequency points for harvesting. Such devices with proof masses have not been rigorously modeled previously; instead, lumped mass or concentrated point masses at arbitrary points on the beam have been used. Thus, this work focuses on the exact vibration analysis of cantilevered energy harvester devices including a tip proof mass. The model is based not only on a detailed modal analysis, but also on a thorough investigation of damping ratios that can significantly affect device performance. A model with multiple degrees of freedom is developed and then reduced to a single-mode model, yielding convenient closed-form normalized predictions of device performance. In order to verify the analytical model, experimental tests are undertaken on a macroscale, symmetric, bimorph, piezoelectric energy harvester with proof masses of different geometries. The model accurately captures all aspects of the measured response, including the location of peak-power operating points at resonance and anti-resonance, and trends such as the dependence of the maximal power harvested on the frequency. It is observed that even a small change in proof mass geometry results in a substantial change of device performance due not only to the frequency shift, but also to the effect on the strain distribution along the device length. Future work will include the optimal design of devices for various applications, and quantification of the importance of nonlinearities (structural and piezoelectric coupling) for device performance.
机译:提出了具有质量检测的悬臂式压电能量收集器的机电耦合模型。证明质量对于在微型设备中使设备共振移向最佳频率点进行采集至关重要。这类带有证明质量的设备以前没有经过严格的建模。取而代之的是,使用束上任意点的集中质量或集中点质量。因此,这项工作着重于对包括尖端保护块的悬臂式能量收集器设备的精确振动分析。该模型不仅基于详细的模态分析,还基于对可能显着影响设备性能的阻尼比的透彻研究。开发了具有多个自由度的模型,然后将其简化为单模模型,从而生成了方便的闭合形式的设备性能归一化预测。为了验证分析模型,在具有不同几何尺寸的证明质量的大型,对称,双压电晶片压电能量采集器上进行了实验测试。该模型准确地捕获了所测响应的所有方面,包括峰值功率工作点在谐振和反谐振处的位置,以及趋势,例如所采集的最大功率对频率的依赖性。可以观察到,即使是质量质量几何形状的微小变化,不仅由于频率偏移,而且由于对沿器件长度的应变分布的影响,也会导致器件性能的显着变化。未来的工作将包括针对各种应用的器件优化设计,以及量化非线性(结构和压电耦合)对器件性能的重要性。

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