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Vibration energy harvesting based monitoring of an operational bridge undergoing forced vibration and train passage

机译:基于振动能量收集的运行桥梁受到强制振动和火车通过的监控

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The application of energy harvesting technology for monitoring civil infrastructure is a bourgeoning topic of interest. The ability of kinetic energy harvesters to scavenge ambient vibration energy can be useful for large civil infrastructure under operational conditions, particularly for bridge structures. The experimental integration of such harvesters with full scale structures and the subsequent use of the harvested energy directly for the purposes of structural health monitoring shows promise. This paper presents the first experimental deployment of piezoelectric vibration energy harvesting devices for monitoring a full-scale bridge undergoing forced dynamic vibrations under operational conditions using energy harvesting signatures against time. The calibration of the harvesters is presented, along with details of the host bridge structure and the dynamic assessment procedures. The measured responses of the harvesters from the tests are presented and the use the harvesters for the purposes of structural health monitoring (SHM) is investigated using empirical mode decomposition analysis, following a bespoke data cleaning approach. Finally, the use of sequential Karhunen Loeve transforms to detect train passages during the dynamic assessment is presented. This study is expected to further develop interest in energy-harvesting based monitoring of large infrastructure for both research and commercial purposes.
机译:能量收集技术在监测民用基础设施中的应用是一个新兴的热门话题。动能收集器清除环境振动能量的能力对于运行条件下的大型民用基础设施特别是桥梁结构很有用。这种具有完整结构的收割机的实验集成以及随后将收集到的能量直接用于结构健康监测的目的显示出了希望。本文介绍了压电振动能量收集装置的第一个实验性部署,该装置用于监测全尺寸桥梁,该桥梁在运行条件下使用随时间变化的能量收集特征来监测在强迫条件下发生动态振动的桥梁。介绍了收割机的校准以及主桥结构和动态评估程序的详细信息。介绍了测试中收割机的测量响应,并根据定制数据清理方法,通过经验模式分解分析研究了收割机用于结构健康监测(SHM)的用途。最后,提出了在动态评估期间使用顺序Karhunen Loeve变换来检测列车通过的情况。预期该研究将进一步引起人们对基于能量收集的大型基础设施监测的兴趣,以用于研究和商业目的。

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