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A portable high-efficiency electromagnetic energy harvesting system using supercapacitors for renewable energy applications in railroads

机译:使用超级电容器的便携式高效电磁能采集系统,用于铁路中的可再生能源应用

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As the demand for alternative sources of energy has increased, harvesting abundant environmental energy such as vibration energy including track vibrations in railway systems has attracted greater attention. In this study, we develop a portable high-efficiency electromagnetic energy harvesting system with supercapacitors that converts the energy of track vibrations into electricity. The generated electricity is stored in the supercapacitors and used in remote areas for safety facilities or in standby power supplies for rail-side equipment. The proposed system consists of a mechanical transmission and a regulating circuit, Acting as the energy input and transmission, Gears and a rack amplify the small vibrations of the track, and one-way bearings enhance efficiency by transforming bidirectional motion to unidirectional rotation. Supercapacitors are used in the vibration energy harvesting system for the first time. The super capacitors permit the storage of energy from rapidly changing transient currents and a steady power supply for external loads. The proposed system is demonstrated through dynamic simulations, which show the rapid response of the system. An efficiency of 55.5% is demonstrated in bench tests, verifying that the proposed electromagnetic energy harvesting system is effective and practical in renewable energy applications for railroads. (C) 2016 Elsevier Ltd. All rights reserved.
机译:随着对替代能源的需求增加,收获丰富的环境能量,例如振动能,包括铁路系统中的轨道振动,已引起了更多关注。在这项研究中,我们开发了一种带有超级电容器的便携式高效电磁能量收集系统,该系统将轨道振动的能量转换为电能。产生的电能存储在超级电容器中,并在偏远地区用于安全设施或在铁路侧设备的备用电源中使用。拟议的系统由机械传动和调节电路组成,充当能量的输入和传输,齿轮和齿条可放大轨道的微小振动,单向轴承通过将双向运动转换为单向旋转来提高效率。超级电容器首次在振动能量收集系统中使用。超级电容器可以存储迅速变化的瞬态电流中的能量,并为外部负载提供稳定的电源。通过动态仿真演示了所提出的系统,该仿真显示了系统的快速响应。在台架试验中证明了55.5%的效率,证明了所提议的电磁能量收集系统在铁路的可再生能源应用中是有效且实用的。 (C)2016 Elsevier Ltd.保留所有权利。

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