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Article

Least Squares Collocation for Estimating Terrestrial Water Storage Variations from GNSS Vertical Displacement on the Island of Haiti

1
Research Unit in Geosciences (URGeo), Faculty of Science, State University of Haiti, Port-au-Prince HT 6110, Haiti
2
Faculty of Science, Technology and Medicine, Belval Campus, University of Luxembourg, 4365 Luxembourg, Luxembourg
*
Author to whom correspondence should be addressed.
Geosciences 2025, 15(8), 322; https://doi.org/10.3390/geosciences15080322
Submission received: 30 June 2025 / Revised: 5 August 2025 / Accepted: 14 August 2025 / Published: 19 August 2025
(This article belongs to the Special Issue Geophysical Inversion)

Abstract

Water masses are continuously redistributing across the Earth, so accurately estimating their availability is essential. Global Navigation Satellite Systems (GNSSs) have demonstrated potential for observing vertical deformations, which is partly driven by terrestrial water storage (TWS) variations. This capability has been used in hydrogeodesy to estimate TWS variations. However, GNSS data inversions are often ill-posed, requiring regularization for stable solutions. This study considers the Least Squares Collocation (LSC) statistical method as an alternative. LSC uses covariance functions to characterize observations, parameters, and their interdependence. By incorporating additional physical information into inverse models, LSC allows ill-posed problems stabilization. To assess LSC effectiveness, we apply it to observed and simulated GNSS vertical displacement on Haiti island. Hydrological signals are modeled using Global Land Data Assimilation (GLDAS) data. In sparse GNSS data regions, findings indicate poor agreement between TWS and hydrological input, with a Root-Mean-Square-Error (RMSE) of 115 kg/m2, a correlation of 0.3, and a reduction of 73%. However, in dense simulated GNSS areas, TWS and hydrological input show strong agreement, with an RMSE of 41 kg/m2, a correlation of 0.83, and a reduction of 92%. The results confirm LSC potentiality for assessing TWS changes and improving water quantification in dense GNSS station region.
Keywords: least square collocation; GNSS vertical displacements; terrestrial water storage; Haiti least square collocation; GNSS vertical displacements; terrestrial water storage; Haiti

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MDPI and ACS Style

Sauveur, R.; Tabibi, S.; Francis, O. Least Squares Collocation for Estimating Terrestrial Water Storage Variations from GNSS Vertical Displacement on the Island of Haiti. Geosciences 2025, 15, 322. https://doi.org/10.3390/geosciences15080322

AMA Style

Sauveur R, Tabibi S, Francis O. Least Squares Collocation for Estimating Terrestrial Water Storage Variations from GNSS Vertical Displacement on the Island of Haiti. Geosciences. 2025; 15(8):322. https://doi.org/10.3390/geosciences15080322

Chicago/Turabian Style

Sauveur, Renaldo, Sajad Tabibi, and Olivier Francis. 2025. "Least Squares Collocation for Estimating Terrestrial Water Storage Variations from GNSS Vertical Displacement on the Island of Haiti" Geosciences 15, no. 8: 322. https://doi.org/10.3390/geosciences15080322

APA Style

Sauveur, R., Tabibi, S., & Francis, O. (2025). Least Squares Collocation for Estimating Terrestrial Water Storage Variations from GNSS Vertical Displacement on the Island of Haiti. Geosciences, 15(8), 322. https://doi.org/10.3390/geosciences15080322

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