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Analysis of the possibilities in railways shape assessing using GNSS mobile measurements

机译:使用GNSS移动测量进行铁路形状评估的可能性分析

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In recent years, a dynamic development of satellite positioning techniques using both static and mobile GNSS coordinates register mode can be observed. In addition, still developing Real-time GNSS Networks, post-processing algorithms and another measurement signal analysis algorithms, make the satellite measurements increasingly used in railway industry sector. In the article the possibilities which follows from the mobile satellite measurements in railway engineering are briefly presented. In the years 2009-2015, the authors conducted a series of field investigations on operated railway lines. The obtained results of these measurements led to the development of a number of algorithms that increase the range of applicability of GNSS measurements. The analysis of obtained results also showed how the accuracy of the measurements have increased since 2009. The achieved accuracy has been increased due to a development of GNSS positioning systems as well as improvement of the measurement methodology, i.e. configurations of satellite receivers and layouts of their placement on a mobile measuring platform. It was also found that the development of data analysis algorithms contributed to the increase in the obtained accuracy in assessment of a railway track axis shape. The authors indicate the possibilities of applying GNSS techniques at various stages of construction and operation of railways. According to the authors, the most important advantage of both the presented measurement technique and computational methodology is the ability to effectively and relatively low-cost data acquisition regarding the existing state of the railway line. These data can be successfully used to design changes to the geometry of railway lines, and therefore satellite positioning has enormous application potential in the process of modernization of operated railway lines.
机译:近年来,可以观察到使用静态和移动GNSS坐标注册模式的卫星定位技术的动态发展。此外,仍在开发实时GNSS网络,后处理算法和另一种测量信号分析算法,使得卫星测量越来越多地用于铁路工业领域。在本文中,简要介绍了铁路工程中移动卫星测量带来的可能性。在2009-2015年间,作者对铁路运营线路进行了一系列现场调查。这些测量的结果导致开发了许多算法,这些算法增加了GNSS测量的适用范围。对获得的结果的分析还表明,自2009年以来,测量的精度如何提高。由于GNSS定位系统的发展以及测量方法的改进(即卫星接收器的配置及其布局),所达到的精度得到了提高。放置在移动测量平台上。还发现,数据分析算法的发展有助于提高所获得的铁路轨道轴线形状评估精度。作者指出了在铁路建设和运营的各个阶段应用GNSS技术的可能性。这组作者认为,所提出的测量技术和计算方法的最重要优点是能够有效且相对低成本地获取有关铁路线现有状态的数据。这些数据可以成功用于设计铁路线的几何形状,因此,卫星定位在运营中的铁路线现代化过程中具有巨大的应用潜力。

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