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An experimental study on self-powered vibration control and monitoring system using electromagnetic TMD and wireless sensors

机译:基于电磁TMD和无线传感器的自供电振动控制与监测系统的实验研究

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摘要

This paper proposed and validated a self-powered vibration control and monitoring (SVCM) system which consists of a pendulum-type tuned mass damper (TMD), a rotary electromagnetic (EM) device, an energy harvesting circuit (EHC) and a wireless smart sensor (WSS). As the key element in the system, the regenerative electromagnetic TMD (EMTMD) is able to convert vibration energy of structures to electrical energy, and thus plays dual functions, namely, vibration mitigation and energy harvesting. With the aid of EHC, the electrical energy can be further stored and used to power WSS that closely monitor structural vibration responses. The feasibility of the proposed SVCM system was validated via shaking table tests, in which a single-degree-of-freedom (SDOF) structural model equipped with the SVCM system was tested under random excitations. The functionality of the SVCM system was discussed with regard to the vibration control, energy harvesting and vibration monitoring performance. The experimental results revealed that the proposed regenerative EMTMD device can provide regenerative and economical power to WSS. The harvested power reaches about 312.4 mW under random ground motions with root-mean-square (RMS) acceleration equal to 0.05 g. Meanwhile, the comparison shows that the peak magnitude of the frequency response function of structural displacement is reduced by 10 dB with the aid of the EMTMD. This study demonstrates that the SVCM system provides a novel and promising solution to the power supply problem associated with wireless sensing technology, and will stimulate the integration of vibration control and monitoring system.
机译:本文提出并验证了一种自激式振动控制和监测(SVCM)系统,该系统由摆式调谐质量阻尼器(TMD),旋转电磁(EM)设备,能量收集电路(EHC)和无线智能系统组成传感器(WSS)。作为系统中的关键要素,再生电磁TMD(EMTMD)能够将结构的振动能量转换为电能,从而起到减振和能量收集的双重功能。借助EHC,电能可以进一步存储并用于为WSS供电,WSS可以密切监视结构的振动响应。通过振动台测试验证了所提出的SVCM系统的可行性,其中在随机激励下测试了装有SVCM系统的单自由度(SDOF)结构模型。讨论了SVCM系统的功能,涉及振动控制,能量收集和振动监控性能。实验结果表明,所提出的再生EMMTD设备可以为WSS提供再生经济的动力。在随机地面运动下,均方根(RMS)加速度等于0.05 g时,收获的功率达到约312.4 mW。同时,比较表明,借助EMMTD,结构位移的频率响应函数的峰值幅度降低了10 dB。这项研究表明,SVCM系统为解决与无线传感技术相关的电源问题提供了一种新颖而有希望的解决方案,并将促进振动控制和监测系统的集成。

著录项

  • 作者

    Shen, WA; Zhu, S; Xu, YL;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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