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A Magnetostrictive Electric Power Generator for energy harvesting from traffic: Design and experimental verification

机译:用于从交通中收集能量的磁致伸缩发电机:设计和实验验证

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In the last decades, the growth in energy demand, the decrease of fossil fuels available in the market and the impact of anthropogenic factors on climate change has given new impulse to research on renewable energy systems, particularly those known as energy harvesting devices (EHDs) [1]. A large number of EHDs have been proposed, using different operating principle [1-4]. Among them, piezoelectric and magnetostrictive seem to be particularly suitable for the application in EHD. In these materials the application of external mechanical stress induces a change in the level of magnetization and therefore an electromotive force (emf) can be generated and collected in order to produce electrical energy. In magnetostrictive materials this effect has been theoretically and experimentally confirmed in metglas [5], Terfenol D [2,3], FeGa and several other alloys. In this article the magnetostrictive material considered is Terfenol D. In particular, we present a device, built using Terfenol D rods, able to convert the energy contained in mechanical stress generated by a passing vehicle on a speed bumps. The presented system (Speed Bumps Magnetostrictive Electric Power Generator - SBMEPG) can reduce the vehicle speed, producing electric energy and increasing road safety at the same time [6,7].
机译:在过去的几十年中,能源需求的增长,市场上可用的化石燃料的减少以及人为因素对气候变化的影响,对可再生能源系统进行了研究,特别是那些称为能量收集装置(EHDS)的脉冲[1]。使用不同的操作原理提出了大量的EHD [1-4]。其中,压电和磁致伸缩性似乎特别适用于EHD中的应用。在这些材料中,外部机械应力的应用引起磁化水平的变化,因此可以产生和收集电动势(EMF)以产生电能。在磁致伸缩材料中,这种效果在理论上并在Metglas [5],Terfenol D [2,3],Fega和其他几种合金中实验证实。在本文中,考虑的磁致伸缩材料是Terfenol D.特别地,我们介绍了一种使用Terfenol D Rods构建的装置,能够将所包含的机械应力所含的能量转换在速度凸块上。所提出的系统(速度凸起磁致伸缩电力发电机 - SBMEPG)可以降低车速,同时产生电能和增加道路安全[6,7]。

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