用于土木工程测量网的静态GNSS系统的精度和准确性

N. A. C. Muñoz, L. A. Cerón-Calderón
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引用次数: 8

摘要

对校准测量设备进行了实地检查。它与全站经纬仪和执行有关可重复性和再现性的程序进行了地理参考。我们使用双频设备进行GNSS(全球导航卫星系统)静态定位,对占用时间、白天时间、经过微分校正程序的未校正坐标和获得的坐标类型进行敏感化。这有助于用静态方法评估GNSS定位的精度和准确性,在没有多径效应的情况下,全球RMSE(均方根误差)为1厘米,在靠近建筑物的现场校准点上,RMSE(均方根误差)为4厘米。此外,在30分钟的占用时间内,发现了最佳结果,并且需要使用平面笛卡尔坐标来确保与使用电子测量距离的测量的兼容性,这允许使用静态GNSS定位进行地理参考精确测量网络,并可用于土木工程中的不同应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Precision and accuracy of the static GNSS system for surveying networks used in Civil Engineering
A field check was implemented for calibrating surveying equipment. It was geo-referenced with a Total Station Theodolite and by implementing procedures concerning repeatability and reproducibility. We carried out GNSS (Global Navigation Satellite System) static positioning with double frequency equipment, sensitizing occupation times, day times, uncorrected coordinates subjected to a differential correction procedure and type of coordinates obtained. This facilitated an evaluation of precision and accuracy for the GNSS positioning with the static method, which gave a global RMSE (root mean square error) of 1 cm for conditions with no multipath effect and 4 cm for field calibration points close to buildings. Additionally, optimal results for occupation times of 30 minutes were found, and the need to use planar Cartesian coordinates to ensure compatibility with the surveys using electronic measurement of distances, which allows the use of the static GNSS positioning for geo-referencing precise surveying networks, and can be used in different applications in Civil Engineering.
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