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Magnetic-Measuring Square in the Measurement of the Circular Curve of Rail Transport Tracks

机译:磁力测量方形测量轨道运输轨道的圆形曲线

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In rail transport, measuring the actual condition of a circular curve of a railway track is a key element of track position monitoring not only during operation but also during final works. Predicting changes in its position in the horizontal plane is one of the most important related scientific issues. This paper presents the results of measurements performed with an innovative measuring device called the Magnetic-Measuring Square (MMS). The aim of the research was to demonstrate the acceptability of using the MMS. Horizontal versines of a rail track curve were measured as three neighboring points on a curve (using the method of lacing/stringlining, also called the three-point or the Hallade method), and the perpendicularity of rail joints and shortenings were measured. The MMS device presented in this article was used to measure versines and differences in rails lengths (rail shortenings in the curve) in the operating mode involving a laser distance meter with a laser beam (laser power P < 1 mW, laser wavelength lambda = 635 nm) with a target cross, a camera, and a surveying measuring disk. The measurement results confirmed that it is possible to employ the MMS to monitor the geometry of railway track fragments such as track transition curves and railway track curves in rail transport.
机译:在轨道运输中,测量铁路轨道的圆形曲线的实际情况是轨道位置监控的关键元素,不仅在运行期间也是在最终工作期间的轨道位置监控。预测其在水平平面中其位置的变化是最重要的相关科学问题之一。本文介绍了使用称为磁测量方(MMS)的创新测量装置进行的测量结果。研究的目的是证明使用MMS的可接受性。轨道曲线的水平术语被测量为曲线上的三个相邻点(使用缝合/划线的方法,也称为三点或Hallade方法),并测量轨道接头的垂直度和缩短。本文中提出的MMS设备用于测量涉及激光距离的激光距离的操作模式(激光功率P <1 MW,激光波长Lambda = 635中的操作模式,用于测量轨道长度(曲线中的轨道中的轨道中的轨道)的差异和差异。 nm)用目标交叉,相机和测量测量磁盘。测量结果证实,可以使用MMS监测铁路轨道片段的几何形状,例如轨道转换轨道转换曲线和铁路轨道曲线。

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