A Method for the Precise Coordinate Determination of an Inaccessible Location

Author:

Osada Edward1ORCID,Owczarek-Wesołowska Magdalena2ORCID,Karsznia Krzysztof3ORCID,Becek Kazimierz4ORCID,Muszyński Zbigniew4ORCID

Affiliation:

1. Faculty of Applied Studies, University of Lower Silesia, 53-611 Wroclaw, Poland

2. Faculty of Environmental Engineering and Geodesy, Wroclaw University of Environmental and Life Sciences, 50-355 Wroclaw, Poland

3. Faculty of Geodesy and Cartography, Warsaw University of Technology, 00-661 Warsaw, Poland

4. Faculty of Geoengineering, Mining and Geology, Wroclaw University of Science and Technology, 50-421 Wroclaw, Poland

Abstract

Surveyors are occasionally tasked to with determining the coordinates of inaccessible locations or points in civil engineering applications, ground control points for photogrammetry or LiDAR data acquisition, among others. The present work outlines and investigates a novel method for estimating the GNSS coordinates of an inaccessible location where a surveying instrument cannot be set up. The procedure is based on the well-known surveying intersection method and data extracted from an Earth Gravity Model (e.g., EGM 2008). The location’s coordinates are obtained from the least-squares adjustment of the angles and distances measured from at least two sites to the unknown point using a total station, within the framework of the Gauss–Helmert method. Field tests confirmed that the accuracy of the determined coordinates of the inaccessible point is at the level of 1 cm. The proposed method bypasses standard coordinate transformation steps performed with the traditional approach, directly producing geocentric coordinates of the unknown points.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference42 articles.

1. Hofmann-Wallenhoff, B., Lichtenegger, H., and Wasle, E. (1993). GNSS—Global Navigation Satellite Systems, GPS, GLONASS, GALILEO and More, Spinger.

2. Skorupa, B. (1993). Wyznaczenie Współrzędnych Punktów Niedostępnych na Podstawie Opracowania Pomiarów Klasycznych i Sygnałów GPS, z Uwzględnieniem Wpływu Odchylenia Pionu, Geodezja T. 3, UWND AGH.

3. TotalStation/GNSS/EGM integrated geocentric positioning method;Osada;Surv. Rev.,2017

4. Karsznia, K. (2004). Zeszyty Naukowe Akademii Rolniczej we Wrocławiu, Geodezja i Urządzenia Rolne.

5. A concept of surveying and adjustment of spatial tacheomoetric traverses in the applications of integrated geodesy;Karsznia;Acta Sci. Pol. Geod. Descr. Terr.,2008

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