The accuracy investigation of point coordinates’ determination using a fixed basis for high-precision geodesy binding

IF 0.3 Q4 REMOTE SENSING
V. Litynskyi, Svyatoslav Litynskyi, A. Vivat, Mykhailo Fys, A. Brydun
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引用次数: 3

Abstract

Abstract Modern scanners can perform terrestrial topographic survey with resolution of 1 cm and accuracy of 2 mm in just a few minute‘s time, from the distance of up to 100 meters. However, for surface topographical surveying of large territories or complex industrial objects, it is necessary to conduct geodetic traverses and perform their binding to the points of the geodesic basis. One method of coordinate transferring during surveying is by using the method of inverse linear-angular intersection, which involves the measuring of the respective sides S1, S2 and the β angle between them. This method is more precise than the classical one, which usually contains centring and reduction errors. The linear-angular intersection method can also be used for many applications in engineering geodesy, for laying geodetic traverses, and for binding to the wall based points of ground-surveying.
高精度大地测量绑定中定点坐标确定的精度研究
现代扫描仪可以在几分钟内完成分辨率为1厘米、精度为2毫米的陆地地形测量,距离可达100米。然而,对于大面积领土或复杂工业对象的地表地形测量,有必要进行大地测量导线并将其绑定到大地测地线基础上的点。测量中坐标转换的一种方法是采用逆线角交法,即测量各自的边S1、边S2及其之间的β角。该方法比传统方法精度高,传统方法通常存在定心误差和约简误差。线角相交法还可用于工程大地测量、铺设大地测量导线以及与地面测量的墙基点绑定等许多应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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