DYNAMIC OBJECTS GEOMETRY MEASUREMENT BY LASER SCANNING – A CASE STUDY

Andrzej Kwinta, R. Gradka
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引用次数: 1

Abstract

The objective of the study was to analyse of measurement of moving objects by means of the Total Station (TS) method and Terrestrial Laser Scanning (TLS). The subject of the tests was the “Polinka” gondola cable car over the Odra river in Wrocław. Research covered the basic and control measurements. The results of observations of suspension ropes’ deflection of the cable car in kinematical state were compared for various degrees of loading. During the motion of the gondola, the shape of the pull and supporting rope is subject to constant shifts. TS measurements are restricted solely to registering interim positioning of the points of pull lines (measurement of static objects). Laser scanner measurements may reveal changes in the location of many points (i.e. drive lines, catenaries or carriages) within a unit of time. The tests were designed to show whether it is possible to capture the shifts in geometry of the moving object (mainly by means of the TLS methods - in the course of constant vibrating of lines and during the movement of gondolas). The analyses indicated that it is possible to capture the changes of geometry by means of the TLS method, however, upon strictly specified measurement conditions.
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动态物体几何测量的激光扫描-一个案例研究
研究的目的是利用全站仪(TS)方法和地面激光扫描(TLS)方法对运动物体进行测量分析。测试的对象是Wrocław奥德拉河上的“波林卡”缆车。研究包括基本测量和控制测量。比较了不同加载程度下缆车运动状态下悬索挠度的观测结果。在缆车运动过程中,拉绳和支撑绳的形状会不断变化。TS测量仅限于记录拉线点的临时定位(静态物体的测量)。激光扫描仪测量可以显示在一个单位时间内许多点(即驱动线,悬链或车厢)位置的变化。这些测试的目的是显示是否有可能捕捉到运动物体的几何变化(主要是通过TLS方法——在直线不断振动的过程中以及在贡多拉运动的过程中)。分析表明,在严格规定的测量条件下,利用TLS方法可以捕获几何形状的变化。
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发文量
7
审稿时长
30 weeks
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