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Harvesting energy from the vibration of a passing train using a single-degree-of-freedom oscillator

机译:使用单自由度振荡器从经过的火车的振动中收集能量

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With the advent of wireless sensors, there has been an increasing amount of research in the area of energy harvesting, particularly from vibration, to power these devices. An interesting application is the possibility of harvesting energy from the track-side vibration due to a passing train, as this energy could be used to power remote sensors mounted on the track for strutural health monitoring, for example. This paper describes a fundamental study to determine how much energy could be harvested from a passing train. Using a time history of vertical vibration measured on a sleeper, the optimum mechanical parameters of a linear energy harvesting device are determined. Numerical and analytical investigations are both carried out It is found that the optimum amount of energy harvested per unit mass is proportional to the product of the square of the input acceleration amplitude and the square of the input duration. For the specific case studied, it was found that the maximum energy that could be harvested per unit mass of the oscillator is about 0.25 J/kg at a frequency of about 17 Hz. The damping ratio for the optimum harvester was found to be about 0.0045, and the corresponding amplitude of the relative displacement of the mass is approximately 5 mm.
机译:随着无线传感器的出现,在能量收集领域,尤其是从振动收集能量来为这些设备供电的研究越来越多。一个有趣的应用是可能由于火车经过而从轨道侧的振动中收集能量,例如,该能量可用于为安装在轨道上的远程传感器供电,以进行结构健康监控。本文介绍了一项基础研究,以确定从经过的火车中可以收集多少能量。使用在轨枕上测量的垂直振动的时间历史,可以确定线性能量收集装置的最佳机械参数。都进行了数值和分析研究,发现每单位质量所收集的最佳能量与输入加速度振幅的平方和输入持续时间的平方的乘积成正比。对于所研究的特定情况,发现在大约17 Hz的频率下,每单位质量的振荡器可以收集的最大能量大约为0.25 J / kg。发现最佳收割机的阻尼比约为0.0045,物料的相对位移的相应幅度约为5 mm。

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