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On the target frequency for harvesting energy from track vibrations due to passing trains

机译:在目标频率上通过火车经过时产生的轨道振动来收集能量

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There is an increasing desire to monitor the structural integrity of railway tracks and the supporting ballast and subgrade. Track vibration has been proposed as a potential energy source to power wireless sensors for this purpose. Vibration-based energy harvesting devices generally exploit resonance, and hence need to be tuned to a particular target frequency. Thus, to harvest energy from the vibrations of a passing train, the spectral content of the track vibration needs to be known. This paper describes a fundamental investigation into the factors that govern this spectral content. A simple model of the train and the track, together with data from five trains passing at four different sites are used in this investigation. It is shown that the deflection under an individual wheel effectively acts as a bandpass filter, restricting the acceleration spectrum of sleeper vibration to low frequencies. The train geometry has an important effect on which specific trainload frequency has the largest response amplitude. For the trains studied, it was found that the 7th trainload frequency had the highest amplitude in four out of the five cases. The physical reasons as to why this trainload frequency is the largest are discussed. (C) 2018 Elsevier Ltd. All rights reserved.
机译:越来越需要监视铁路轨道以及支撑压载物和路基的结构完整性。轨道振动已被提议作为为此目的为无线传感器供电的潜在能源。基于振动的能量采集设备通常会利用共振,因此需要调整到特定的目标频率。因此,为了从经过的列车的振动中获取能量,需要知道轨道振动的频谱含量。本文介绍了对控制此光谱含量的因素的基础研究。在此调查中,使用了火车和轨道的简单模型,以及在四个不同站点通过的五列火车的数据。结果表明,单个车轮下的偏转有效地起到了带通滤波器的作用,将轨枕振动的加速度谱限制在低频范围内。列车几何形状对特定的列车负载频率具有最大响应幅度具有重要影响。对于所研究的列车,发现在5种情况中的4种中,第7次列车载荷频率的振幅最高。讨论了为何此火车载荷频率最大的物理原因。 (C)2018 Elsevier Ltd.保留所有权利。

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