The Geodetic Monitoring of the Engineering Structure – A Practical Solution of the Problem in 3D Space

IF 0.3 Q4 REMOTE SENSING Reports on Geodesy and Geoinformatics Pub Date : 2016-12-30 DOI:10.1515/rgg-2016-0024
D. Filipiak-Kowszyk, A. Janowski, W. Kaminski, Karolina Makowska, J. Szulwic, K. Wilde
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引用次数: 9

Abstract

Abstract The study raises the issues concerning the automatic system designed for the monitoring of movement of controlled points, located on the roof covering of the Forest Opera in Sopot. It presents the calculation algorithm proposed by authors. It takes into account the specific design and location of the test object. High forest stand makes it difficult to use distant reference points. Hence the reference points used to study the stability of the measuring position are located on the ground elements of the sixmeter-deep concrete foundations, from which the steel arches are derived to support the roof covering (membrane) of the Forest Opera. The tacheometer used in the measurements is located in the glass body placed on a special platform attached to the steel arcs. Measurements of horizontal directions, vertical angles and distances can be additionally subject to errors caused by the laser beam penetration through the glass. Dynamic changes of weather conditions, including the temperature and pressure also have a significant impact on the value of measurement errors, and thus the accuracy of the final determinations represented by the relevant covariance matrices. The estimated coordinates of the reference points, controlled points and tacheometer along with the corresponding covariance matrices obtained from the calculations in the various epochs are used to determine the significance of acquired movements. In case of the stability of reference points, the algorithm assumes the ability to study changes in the position of tacheometer in time, on the basis of measurements performed on these points.
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工程结构的大地测量监测——三维空间问题的实用解决方案
摘要:本研究提出了索波特森林歌剧院屋顶覆盖物控制点运动监测自动化系统的设计问题。给出了作者提出的计算算法。它考虑到测试对象的具体设计和位置。森林的高度使得很难使用远处的参考点。因此,用于研究测量位置稳定性的参考点位于6米深的混凝土基础的地面元素上,从中衍生出钢拱来支撑森林歌剧院的屋顶覆盖物(膜)。测量中使用的转速计位于玻璃体内,放置在与钢弧相连的特殊平台上。水平方向、垂直角度和距离的测量还可能受到激光束穿透玻璃引起的误差的影响。包括温度和压力在内的天气条件的动态变化也会对测量误差的值产生显著影响,从而影响相关协方差矩阵所表示的最终确定的准确性。参考点、控制点和测速仪的估计坐标以及各时期计算得到的相应协方差矩阵用于确定获得的运动的显著性。在参考点稳定的情况下,该算法假定能够根据在这些点上进行的测量来研究测速表位置随时间的变化。
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来源期刊
自引率
28.60%
发文量
5
审稿时长
12 weeks
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