A Comparative Study on Position Fixing with GPS to Ascertain Positional Accuracy

C. B. Boye, I. Yakubu
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Abstract

Various techniques have been employed to determine the relative or absolute positions of locations on the surface of the earth to promote effective land management. Continuous Observation Reference Station (CORS) is one of the latest techniques employed in differential GPS positioning. In order to ascertain the positional accuracy of a newly established CORS equipment located on the campus of the University of Mines and Technology (UMaT), this comparative study was carried out. Selected positions around the campus were surveyed and their coordinates computed using a temporarily occupied base and then a CORS base, and the results were compared with the coordinates obtained from a conventional precise traverse. It was observed that the Eastings coordinates obtained from the temporarily occupied reference station compares favourably with those of the conventional method and the CORS with variations in the second and third decimals. Standard errors of -0.144 m and 0.806 m respectively were obtained for the Northings and elevations respectively between the CORS coordinates and that of the conventional method. It was observed that there is a strong correlation between the coordinates of the control points and the relation between the Eastings, Northings and heights were all linear. It could be concluded that the CORS station, which is under study, could be used with minimal error for planimetric and or cadastral surveying purposes.
定位与GPS定位精度的比较研究
为了促进有效的土地管理,已经采用了各种技术来确定地球表面各地点的相对或绝对位置。连续观测基准站(CORS)是差分GPS定位的最新技术之一。为了确定位于矿业大学(UMaT)校园内新建的CORS设备的定位精度,进行了比较研究。对校园周围选定的位置进行测量,先使用临时占用的基地,然后使用CORS基地计算其坐标,并将结果与常规精确导线获得的坐标进行比较。人们注意到,从临时占用的参考站获得的伊斯廷斯坐标与传统方法和CORS的坐标相比,在第二和第三位小数上有变化。CORS坐标与常规方法的北纬和高程的标准误差分别为-0.144 m和0.806 m。我们观察到控制点的坐标之间有很强的相关性,东线、北线和高度之间的关系都是线性的。可以得出的结论是,正在研究的CORS站可以以最小的误差用于平面测量和/或地籍测量目的。
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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