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Trackside measurement at railway critical zones using sensors and vehicle-borne instrumentation

机译:使用传感器和车载仪表在铁路关键区域进行轨旁测量

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The aim of this research is to identify problems at transition zones, also known as critical zones, which are between an open track and a super structure, by means of field monitoring. Data has been collected using vehicle-borne instrumentation, including bogie-mounted inertial sensors. The purpose of this research is to simultaneously measure the vertical displacement of many consecutive sleepers by means of sleeper mounted Positional Sensitivity Device (PSD) sensors and geophones connected via a Controlled Area Network (CAN) bus, which enables data transmission among multiple nodes. This paper summarises the initial work carried out with a prototype of the PSD sensor. PSD sensors were tested in the laboratory using different electronic components and fine tuned with a range of central frequencies using a programmable oscillator. In future work the sensor network will be deployed, which can cover up to 16 sleepers in a known critical zone to obtain data during the train passage. In addition, to supplement the constraints of each methodology, comparison tests between the PSD sensor and geophone sensors will be part of future work.
机译:这项研究的目的是通过现场监视来识别过渡区域(也称为临界区域)中的问题,这些区域位于开放轨道和上部结构之间。数据是使用车载仪表(包括安装在转向架上的惯性传感器)采集的。这项研究的目的是通过安装在轨枕上的位置敏感度设备(PSD)传感器和地震检波器同时测量许多连续的轨枕的垂直位移,该位置传感器通过可控制区域网(CAN)总线连接,从而能够在多个节点之间传输数据。本文总结了使用PSD传感器原型进行的初步工作。 PSD传感器在实验室中使用不同的电子组件进行了测试,并使用可编程振荡器对一系列中心频率进行了微调。在将来的工作中,将部署传感器网络,该网络可以覆盖已知关键区域中的多达16个轨枕,以在火车通过期间获取数据。此外,为了补充每种方法的局限性,PSD传感器和地震检波器传感器之间的比较测试将成为未来工作的一部分。

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