首页> 外文会议>Conference on health monitoring of structural and biological systems >Simulation and control system of a power harvesting device for railroad track health monitoring
【24h】

Simulation and control system of a power harvesting device for railroad track health monitoring

机译:铁轨健康监测功率采集装置的仿真与控制系统

获取原文

摘要

With the vastness of existing railroad infrastructure, there exist numerous road crossings which are lacking warning light systems and/or crossing gates due to their remoteness from existing electrical infrastructure. Along with lacking warning light systems, these areas also tend to lack distributed sensor networks used for railroad track health monitoring applications. With the power consumption required by these systems being minimal, extending electrical infrastructure into these areas would not be an economical use of resources. This motivated the development of an energy harvesting solution for remote railroad deployment. This paper describes a computer simulation created to validate experimental on-track results for different mechanical prototypes designed for harvesting mechanical power from passing railcar traffic. Using the Winkler model for beam deflection as its basis, the simulation determines the maximum power potential for each type of prototype for various railcar loads and speeds. Along with calculating the maximum power potential of a single device, the simulation also calculates the optimal number and position of the devices needed to power a standard railroad crossing light signal. A control system was also designed to regulate power to a battery, monitor and record power production, and make adjustments to the duty cycle of the crossing lights accordingly. On-track test results are compared and contrasted with results from the simulation, discrepancies between the two are examined and explained, and conclusions are drawn regarding suitability of the device for powering high-efficiency LED lights at railroad crossings and powering track-health sensor networks.
机译:在现有铁路基础设施的广阔背景下,由于远离现有电气基础设施,因此存在许多缺乏信号灯系统和/或过境闸口的道路交叉口。除了缺少警示灯系统之外,这些地区还倾向于缺少用于铁轨健康监测应用的分布式传感器网络。在这些系统所需的功耗最小的情况下,将电气基础设施扩展到这些区域将不会经济地使用资源。这激发了用于远程铁路部署的能量收集解决方案的开发。本文介绍了一种计算机模拟,该计算机模拟的创建是为了验证不同的机械原型的实验轨道结果,这些原型设计用于从经过的轨道车辆交通中获取机械动力。仿真使用Winkler模型的梁偏转为基础,该仿真确定了各种类型的原型在各种轨道车辆负载和速度下的最大功率潜力。除了计算单个设备的最大电势外,仿真还计算了为标准的铁路道口光信号供电所需的设备的最佳数量和位置。还设计了一个控制系统,用于调节电池的电量,监视和记录发电量,并相应地调整交叉灯的占空比。将现场测试结果与模拟结果进行比较和对比,检查和解释两者之间的差异,并得出关于在铁路道口为高效LED灯供电和为轨道健康传感器网络供电的设备的适用性的结论。 。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号