Application of the method of determination of coordinates according to GNSS-observations with binding to the network of active reference stations

S. Savchuk, I. Prodanets, A. Fedorchuk
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引用次数: 2

Abstract

One of the main tasks of geodesy is to determine coordinates with high accuracy using GNSS-observations. To perform such tasks in geodesy usually use the relative method of determining the coordinates in static mode. The technique of the relative method is based on determining the coordinates of an unknown point relative to a known one. The coordinates of the base point must be known, often precisely specified on the basis of the State Geodetic Networks. Static mode of observation is most often used to build geodetic networks, because it has the highest accuracy. In this study, the base points were active reference stations, the coordinates of which are set from the weekly combined solution of the GNSS-network. The purpose of the work is to investigate the accuracy of the application of the method of determining the coordinates according to GNSS-observations with reference to the network of active reference stations. Methodology. The data of GNSS-observations performed at the triangulation points of the State Geodetic Network and data of reference stations are used in the work. Based on these data, conditional GNSS-networks were formed for their processing in the software package, which consisted of three reference stations and one triangulation point. The data processing process assumed that the nearest reference stations were taken as a control point, the specified coordinates of which were recorded as control and set in the ETRS2000 system. The obtained sets of coordinates of the same points and stations were transformed into the USK2000 system. The accuracy of the coordinates determined in this way was analyzed on the basis of coordinate differences and their standard deviations. Differences for reference stations were determined relative to the refined weekly coordinates, and for triangulation points relative to the mean. Results. The obtained differences at the points of the state network are within 1–2 cm, acquiring both positive and negative values. The only exception is the fifth observation session, where the differences are 2–4 cm with a positive sign. At the KOVL reference station, the coordinate differences vary from –1.2 cm to +1.8 cm, and at the MEL2 station from 0 cm to 5.4 cm. Coordinate changes at triangulation points were estimated by standard deviations of 2.1 cm, 1.1 cm, and 1.9 cm for XYZ, respectively. The accuracy of all other coordinates of the reference stations is 0.3–1.6 cm, with an average range from –2.7 cm to +1 cm. Scientific novelty and practical significance. The paper shows the method of determining the coordinates in the system USK2000 according to GNSS-observations with reference to the network of active reference stations. The proposed technique allows the use of satellite methods to determine the coordinates in the state system USK2000 with an accuracy of 1–2 cm, as well as significantly speed up and speed up the process of field work.
根据gnss观测值与活动参考台网绑定确定坐标方法的应用
大地测量学的主要任务之一是利用gnss观测结果高精度地确定坐标。在大地测量学中,要完成这类任务,通常使用静态模式下确定坐标的相对方法。相对法的技术是基于确定一个未知点相对于一个已知点的坐标。基点的坐标必须是已知的,通常是根据国家大地测量网精确指定的。静态观测模式最常用于建立大地测量网,因为它具有最高的精度。在本研究中,基点为活动参考站,其坐标由gnss网络的每周联合解设置。本研究的目的是探讨gnss观测值确定坐标方法在参考活动参考台网中的应用精度。方法。本研究使用了国家大地测量网三角测量点gnss观测数据和参考站数据。基于这些数据,在软件包中形成条件gnss网络进行处理,该网络由三个参考站和一个三角测量点组成。数据处理过程假设以最近的参考站为控制点,将其指定坐标记录为控制点,并设置在ETRS2000系统中。将得到的相同点和站的坐标转换为USK2000系统。根据坐标差值及其标准差,对这种方法确定的坐标精度进行了分析。参考站的差异相对于精炼的周坐标确定,三角测量点的差异相对于平均值确定。结果。在状态网络点处得到的差值在1-2 cm以内,有正值也有负值。唯一的例外是第五次观察,其中差异为2-4厘米,为正号。在KOVL参考站,坐标差在-1.2 cm到+1.8 cm之间,在MEL2参考站,坐标差在0 cm到5.4 cm之间。三角测量点坐标变化的标准差分别为XYZ的2.1 cm、1.1 cm和1.9 cm。其他参考站坐标精度为0.3-1.6 cm,平均误差范围为-2.7 cm ~ +1 cm。具有科学新颖性和现实意义。本文介绍了在USK2000系统中,参照有源参考台网,根据gnss观测值确定坐标的方法。所提出的技术允许使用卫星方法确定状态系统USK2000的坐标,精度为1-2厘米,并显着加快和加快了现场工作的过程。
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