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Detecting Railway Under-Track Voids using Multi-Train In-Service Vehicle Accelerometer

机译:利用多列车在役车辆加速度计检测铁路轨道下空洞

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摘要

The Siemens track monitoring system is being developed in collaboration with Rail Safety and Standards Board (RSSB) and the Institute of Railway Research at the University of Huddersfield.udIt makes use of the existing on-board GSM-R cab radio present in every train in the UK, through the fitment of a sensor card, which detects track condition over three axes of train vibrations. By using advanced on-train signal processing, only a small amount of data to be transferred to the Ground System. For voided switches and crossings (S&C), the GPS location allows the S&C asset number to be identified and reported. This ensures maintenance staff are accurately directed to the location of voids, minimising time spent inspecting and maintaining track and improving safety.udThe Ground System monitors the voids detected by multiple trains, to increase the reported accuracy (within 5m) of voids and to reduce false alarms. Automated void reporting, including whether the voids are located at S&C or other track types (such as plain-line track or bridges), allows maintenance to be directed and planned. The Ground System provides advanced warning of track defects, allowing more effective and prioritised preventative maintenance.udThe real benefit of the track monitoring system is that, by way of a simple activation, it can be present on every train within the UK and therefore be monitoring the track on a large number of train journeys, providing a network-wide track monitoring system. udRecent on-train trials have shown that the small low-cost sensor is able to detect voided sleepers underneath both S&C and bridges. The repeatability between trains and for different journeys was found to be excellent.udThe Network Rail upgrades to the Siemens cab radio, planned for the next 2-3 years include a GSM-R/GPS antenna, and the addition of a GPS module to the cab radio, providing a GPS connection in every train. As part of these upgrades Siemens will introduce a the sensor card into the cab radio, minimising installation costs, making it hardware ready for track monitoring, the Siemens implementation of RCM (Remote Condition Monitoring). The only action needed for activation will be the upload of the software application to the cab radio.udThe track monitoring system allows the network operator to make significant reductions in maintenance and delay costs, line closures, journey re-planning and speed restrictions, by having a reliable monitoring system that is non-intrusive yet gives analysis for the entire rail network, improving train safety, network reliability and passenger comfort.
机译:西门子轨道监控系统正在与哈德斯菲尔德大学的铁路安全与标准委员会(RSSB)和铁路研究所合作开发。 ud它利用了每列火车中现有的机载GSM-R驾驶室无线电在英国,通过安装感应卡可以检测火车三个振动轴上的轨道状况。通过使用先进的列车上信号处理,仅需少量数据即可传输到地面系统。对于无效的开关和十字路口(S&C),GPS位置允许识别和报告S&C资产编号。这样可以确保维护人员准确地将注意力对准空洞的位置,从而最大程度地减少了检查和维护赛道的时间,并提高了安全性。 ud地面系统监视多列火车检测到的空洞,以提高报告的空洞精度(在5m内)并减少错误警报。自动化的空位报告,包括空位是位于S&C还是其他轨道类型(例如,普通线轨道或桥梁),都可以指导维护并计划维护工作。地面系统可提供对轨道缺陷的高级警告,从而可以进行更有效,更优先的预防性维护。 ud轨道监视系统的真正好处是,通过简单的激活,它可以出现在英国的每列火车上,因此可以在大量火车旅程中监控轨道,从而提供了全网络的轨道监控系统。 ud最近的在车试验表明,小型低成本传感器能够检测到S&C和桥下的空置轨枕。 ud网络铁路对西门子出租车无线电的升级,计划在未来2-3年内进行升级,其中包括GSM-R / GPS天线,并在其中添加了GPS模块。驾驶室收音机,在每列火车中提供GPS连接。作为这些升级的一部分,西门子将在驾驶室无线电中引入传感器卡,以最大程度地降低安装成本,使其硬件可以进行轨道监控,这是西门子实施的RCM(远程状态监控)。激活所需的唯一动作是将软件应用程序上载到驾驶室收音机。 ud轨道监控系统使网络运营商可以显着减少维护和延误成本,线路关闭,行程重新规划和速度限制,拥有可靠的非侵入性监控系统,但可以对整个铁路网络进行分析,从而提高了火车安全性,网络可靠性和乘客舒适度。

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