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VIBRATION-BASED ENERGY HARVESTING SYSTEMS FOR ON-BOARD APPLICATIONS

机译:车载应用的基于振动的能量收集系统

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摘要

Currently, the onboard applications of many electronic devices that could benefit rail operation are hindered by the lack of availability of electrical power in freight cars. Although the locomotives, of course, have available sources of power, the freight cars usually don't have any. The systems presented in this paper are meant to provide a solution for distributed power in freight trains. Although ideas like Timken's generator roller bearing or solar panels exist, the railroads have been slow in adopting them for different reasons, including cost, difficulty of implementation, or limited capabilities. The solutions presented in this paper are vibration-based electromechanical energy harvesting systems. With size and shape similar to conventional shock absorbers, these devices are designed to be placed in parallel with the suspension elements, possibility inside the coil spring, maximizing underutilized space. As the train goes down the track, the suspension will accommodate the imperfections and its relative displacement will be used as the input for the harvesting systems. The first prototype generation used a linear generator, with the advantage of no need for a mechanical transformation of the input. They have proven that they could work but present some limitations in terms of power and efficiency. The second generation of prototypes is built around a rotating generator. The linear input motion is transformed into rotation by a ball screw. The possibility of including a gearbox to increase the speed is the key to greatly improve performances. The latest built prototype has shown during lab tests that it is capable of providing up to 75W_(RWS) with displacements and velocities that resemble the relative motion across a vehicle suspension.
机译:当前,由于货车中缺乏电力供应,使得许多可能有益于铁路运营的电子设备的车载应用受到阻碍。尽管机车当然具有可用的动力源,但货车通常没有动力源。本文介绍的系统旨在为货运列车中的分布式电源提供解决方案。尽管存在铁姆肯公司的发电机滚子轴承或太阳能电池板之类的想法,但铁路由于各种原因(包括成本,实施难度或功能有限)而采用它们的速度很慢。本文介绍的解决方案是基于振动的机电能量收集系统。这些装置的尺寸和形状类似于传统的减震器,设计为与悬架元件平行放置,可能在螺旋弹簧内部,从而最大程度地利用了不足的空间。当火车沿着轨道行驶时,悬架将适应缺陷,并且其相对位移将用作收割系统的输入。第一代原型机使用线性发电机,其优点是无需对输入进行机械转换。他们已经证明可以工作,但是在功率和效率方面存在一些限制。第二代原型围绕旋转发电机构建。线性输入运动通过滚珠丝杠转换为旋转。包括变速箱以提高速度的可能性是大大提高性能的关键。最新制造的原型在实验室测试中显示,它能够提供高达75W_(RWS)的位移和速度,类似于车辆悬架上的相对运动。

著录项

  • 来源
  • 会议地点 Pueblo CO(US);Pueblo CO(US)
  • 作者单位

    Railway Technologies Laboratory, Virginia Tech Blacksburg, VA USA;

    Railway Technologies Laboratory, Virginia Tech Blacksburg, VA USA;

    Railway Technologies Laboratory, Virginia Tech Blacksburg, VA USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 铁路运输;
  • 关键词

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