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A robust approach to terrestrial relative gravity measurements and adjustment of gravity networks

Franco S. Sobrero; Kevin Ahlgren; Michael G. Bevis; Demián D. Gómez; Jacob Heck; Arturo Echalar; Dana J. Caccamise; Eric Kendrick; Paola Montenegro; Ariele Batistti; Lizeth Contreras Choque; Juan Carlos Catari; Roger Tinta Sallico; Hernan Guerra Trigo
Journal of Geodesy · Vol. 98, Issue 9 · 2024

Abstract

Like many geophysical observations, relative gravity (RG) measurements are affected by random errors, systematic errors, and occasional blunders. When RG measurements are used to build large gravity networks in remote areas under adverse environmental or logistical conditions (such as extreme temperatures, heavy precipitation, rugged terrain, difficult or dangerous roads, and high altitudes), it is more likely for significant errors to occur and accumulate. Therefore, obtaining accurate gravity estimates at regional gravity networks largely depends on defensive data collection protocols and robust adjustment techniques. In this work, we present a measurement field protocol based on highly redundant observation patterns, and a two-step least squares adjustment scheme implemented as a MATLAB package. This software helps us identify blunders, mitigates the impact of random errors, and downweights or removes outlier observations. The methodology also guarantees that adjusted gravity values have well-constrained standard error estimates. We illustrate the capabilities of our approach through the case study of the Bolivian gravity network, where we determined the acceleration due to gravity at 2548 stations that spread over difficult and sometimes extreme environments, with a typical level of uncertainty of 0.10–0.15 mGal.

Bibliographic Information

JournalJournal of Geodesy
PublisherSpringer
Publication Date2024-09-01
Publication Year2024
Volume98
Issue9
Document TypeJournal Article
Print ISSN0949-7714
eISSN1432-1394
DOI10.1007/s00190-024-01891-w

Access Information

NARA Access Coverage1976-01-01~Current
Journal Homepagehttps://www.springer.com/journal/190
Publisher PageOpen Publisher Page
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