首页> 外文期刊>Journal of Computational and Nonlinear Dynamics >Design, Simulation, and Testing of Energy Harvesters With Magnetic Suspensions for the Generation of Electricity From Freight Train Vibrations
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Design, Simulation, and Testing of Energy Harvesters With Magnetic Suspensions for the Generation of Electricity From Freight Train Vibrations

机译:带有磁悬浮的能量收集器的设计,仿真和测试,可通过货车振动产生电能

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The constant spread of commercial trades on railways demand development of alternative diagnostic systems, which are suitable to applications without electric supply and convenient for the industrial development and diffusion, which means low cost, good reliability, and high integrability. Similarly, it is possible to install navigation and traceability systems (for instance, by the use of global positioning systems—GPS—transmitters) to control on demand the travel history of the train and even that of each coach separately. Recent studies demonstrated the possibility to generate directly onboard the electric power needed to the supply of simple diagnostic systems based on low power sensors and integrated wireless transmission modules. The design of this kind of generators is based on the idea of converting the kinetic energy of train vibration to electric energy, through appropriate energy harvesters containing electromechanical transducers dimensioned ad hoc. The goal of this work is to validate the design procedure for energy harvesters addressed to the railway field. The input vibration source of the train has been simulated through numerical modeling of the vehicle and the final harvester prototype has been tested on a scaled roller rig. The innovative configuration of magnetic suspended proof mass is introduced in the design to fit the input vibration spectra of the vehicle. From the coupled study of the harvester generator and the vehicle, the effective output power of the device is predicted by means of a combination of experimental and simulation tests. The generator demonstrated the ability to supply a basic sensing and transceiving node by converting the kinetic energy of a train vibration in normal traveling conditions. The final device package is 150 × 125 × 95 mm, and its output voltage and current are 2.5 V and 50 mA, respectively, when the freight train velocity is 80 km/h. The corresponding output power is almost 100 mW.
机译:铁路上商业贸易的不断发展要求开发替代诊断系统,这些诊断系统适用于无电源的应用,并且便于工业发展和推广,这意味着成本低,可靠性好,集成度高。同样,可以安装导航和追溯系统(例如,通过使用全球定位系统GPS发射器)来按需控制火车的行驶历史,甚至分别控制每个教练的行驶历史。最近的研究表明,有可能直接在船上产生电力,以提供基于低功率传感器和集成无线传输模块的简单诊断系统。这种发电机的设计基于这样的想法,即通过适当的能量收集器将列车振动的动能转换为电能,该能量收集器包含特设尺寸的机电传感器。这项工作的目的是验证针对铁路领域的能量收集器的设计程序。火车的输入振动源已通过车辆的数值模型进行了仿真,最终收割机的原型已在比例滚轮钻机上进行了测试。在设计中引入了磁悬浮检测质量的创新配置,以适应车辆的输入振动谱。通过对收割机发电机和车辆的结合研究,可通过结合实验和模拟测试来预测设备的有效输出功率。发电机展示了通过转换正常行驶条件下火车振动的动能来提供基本传感和收发节点的能力。最终的设备封装为150×125×95 mm,当货车速度为80 km / h时,其输出电压和电流分别为2.5 V和50 mA。相应的输出功率几乎为100 mW。

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