ASSESSMENT OF 3D POSITIONAL ACCURACY OF GEODETIC OBSERVATIONS FROM SINGLE CORS

Oladosu S. O, E. R.
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Abstract

Geodetic observations for both vertical and horizontal control networks cannot be compromised for any reason in accuracy and precision in the field of geomatics. Due to the error-prone nature of survey measurements, standards are established to allow for comparing the obtained results with a set of guidelines, regulations, or pre-determined specifications. The University of Benin’s Ugbowo Campus in Nigeria does not have enough control points, which informs this study. The densification of more reliable control points using the most recent technology is necessary. Before the observations, control network design, excavation, casting, and monumentation of first-order compliance beacons had been completed. Eight GNSS receivers were connected to the CORS_Geosystems multi-link access point and simultaneously deployed for observations. The stages involve the adjustment of observed data, the presentation of adjusted results, and the determination of horizontal and vertical accuracies. The result of horizontal accuracy showed that the RAPH_GNSS_08 station had the highest horizontal accuracy standard ratio of 1:432,193, while the Raph_GNSS_04 station had the lowest, 1:133,271. The highest vertical accuracy standard was 4.0mm, achieved between Cors_Geo and RAPH_GNSS_09, while the lowest, which was 3.1mm, was observed between Cors_Geo and RAPH_GNSS_08. High-precision engineering projects in the research area will benefit from the established first-order controls in terms of execution, monitoring, and maintenance. The Surveyors Council of Nigeria (SURCON) has recommended GNSS as one of the methods for achieving geodetic control densification in Nigeria.
单芯测地观测的三维定位精度评估
在地理信息学领域,垂直和水平控制网的大地测量观测在精度和精度方面不能因任何原因受到损害。由于调查测量容易出错的性质,建立标准是为了将获得的结果与一组指导方针、法规或预先确定的规格进行比较。贝宁大学在尼日利亚的乌格博沃校区没有足够的控制点,这为这项研究提供了信息。使用最新技术对更可靠的控制点进行致密化是必要的。观测前,一阶顺性信标的控制网设计、开挖、浇筑、立碑工作已经完成。8个GNSS接收器连接到CORS_Geosystems多链路接入点,并同时部署用于观测。这些阶段包括观测数据的调整,调整结果的呈现,以及水平和垂直精度的确定。水平精度结果显示,RAPH_GNSS_08站水平精度标准比最高,为1:43 2193,Raph_GNSS_04站水平精度标准比最低,为1:13 3271。Cors_Geo与RAPH_GNSS_09的垂直精度标准最高为4.0mm, Cors_Geo与RAPH_GNSS_08的垂直精度标准最低为3.1mm。研究领域的高精度工程项目将受益于在执行、监控和维护方面建立的一级控制。尼日利亚测量师委员会(SURCON)建议将GNSS作为实现尼日利亚大地测量控制密度化的方法之一。
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