首页> 外文会议>ASME Rail Transportation Division fall conference 2012 >HYBRID TECHNOLOGY NETWORKING: A NOVEL WIRELESS NETWORKING APPROACH FOR REAL-TIME RAlLCAR STATUS MONITORING
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HYBRID TECHNOLOGY NETWORKING: A NOVEL WIRELESS NETWORKING APPROACH FOR REAL-TIME RAlLCAR STATUS MONITORING

机译:混合技术网络:实时无线网络状态监视的新型无线网络方法

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摘要

The North American freight railroad industry continuously strives towards improvements in the safety and security of freight transportation. One key effort focuses on the use of Wireless Sensor Networks (WSN) technologies to monitor and report mechanical and electrical component status for each railcar in real-time, as well as the status of the transported goods themselves. This allows real-time monitoring of railcar components such as air pressure, wheel bearing temperature, brake failure, wiring integrity, refrigeration unit failure, boxcar door opening, the detection of radioactive materials, dangerous substance leaks, and much more. The aggregated sensor data is transmitted to the locomotive, dispatch centers or regional offices for early fault detection and accident prevention.Our previous work [1] has shown that ZigBee technology based on the IEEE 802.15.4 faces numerous obstacles when applied to freight railcar monitoring. To address these problems our team proposed an alternate approach called Hybrid Technology Networking (HTN), which combines the benefits of ZigBee for low-power short-range communication and WiFi for high-performance long-distance communication between HTN sensor clusters.In this paper, we present our simulation results using our HTN protocol. We compare and discuss the performance of the ZigBee-only network environment with the proposed HTN and demonstrate the advantages offered by HTN. We also discuss our prototype sensor hardware platform using the HTN protocol and provide an outlook of the future work planned for HTN.
机译:北美货运铁路行业不断努力改善货运的安全性。一项主要工作集中在使用无线传感器网络(WSN)技术来实时监视和报告每个轨道车的机械和电气组件状态以及所运输货物本身的状态。这样就可以实时监视铁路车辆部件,例如气压,车轮轴承温度,制动器故障,接线完整性,制冷单元故障,棚车门打开,放射性物质的检测,危险物质的泄漏等等。聚集的传感器数据被传输到机车,调度中心或区域办事处,以进行早期故障检测和事故预防。我们以前的工作[1]表明,基于IEEE 802.15.4的ZigBee技术在应用于货运铁路车辆监控中面临许多障碍。 。为了解决这些问题,我们的团队提出了一种称为混合技术网络(HTN)的替代方法,该方法结合了ZigBee用于低功率短距离通信的优点和WiFi用于HTN传感器集群之间的高性能长距离通信的优点。 ,我们使用HTN协议展示了仿真结果。我们将与提议的HTN比较纯ZigBee网络环境的性能,并演示HTN提供的优势。我们还将讨论使用HTN协议的原型传感器硬件平台,并对HTN计划的未来工作进行展望。

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  • 会议地点 Omaha NE(US)
  • 作者单位

    Computer and Electronics Engineering Department, University of Nebraska-Lincoln Omaha, NE 68182, USA;

    Computer and Electronics Engineering Department, University of Nebraska-Lincoln Omaha, NE 68182, USA;

    Computer and Electronics Engineering Department, University of Nebraska-Lincoln Omaha, NE 68182, USA;

    United States Federal Railroad Administration, Department of Transportation Washington, DC 20590, USA;

    United States Federal Railroad Administration, Department of Transportation Washington, DC 20590, USA;

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  • 正文语种 eng
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