Evaluating satellite and reanalysis rainfall estimates for climate services in agriculture: a comprehensive methodology

Fuente: arXiv
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Main Authors: Parsons, Danny, Stern, David, Ndanguza, Denis, Sylla, Mouhamadou Bamba, Musyoka, James, Bagiliko, John, Clarkson, Graham, Dorward, Peter
Format: Preprint
Published: 2025
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author Parsons, Danny
Stern, David
Ndanguza, Denis
Sylla, Mouhamadou Bamba
Musyoka, James
Bagiliko, John
Clarkson, Graham
Dorward, Peter
author_facet Parsons, Danny
Stern, David
Ndanguza, Denis
Sylla, Mouhamadou Bamba
Musyoka, James
Bagiliko, John
Clarkson, Graham
Dorward, Peter
contents High-resolution rainfall estimates from satellite and reanalysis sources (SRE) could play a major role in improving climate services for agriculture. This is particularly relevant in regions that rely on rain-fed farming but lack a dense network of ground-based measurements to provide localised historical climate information, as in most of the Global South. However, there is a need for a framework which practitioners can use to determine the suitability of these estimated data for specific agricultural applications. This paper presents a comprehensive methodology for evaluating the ability of SRE to provide historical rainfall information for agricultural applications, primarily through comparison with ground-based measurements. The methodology comprises five main steps: data selection and pre-processing, spatial and temporal consistency checks, quantitative SRE-gauge comparisons, bias correction, and application specific summaries. The methodology makes use of graphical summaries, standard comparison metrics, and Markov chain models. We describe how users can apply this methodology to evaluate rainfall estimates for specific applications, complementing existing validation studies. Evaluation cases are presented to demonstrate the methodology using five widely used satellite and reanalysis rainfall products and ground-based measurements from 12 stations in Africa and the Caribbean. The case studies demonstrate how the methodology can be applied to examine multiple aspects of the rainfall estimates. While previous validation studies ask "Does the SRE estimate the true rainfall well?", this methodology provides means of establishing "To what extent can an SRE be used for this specific purpose?" and a comprehensive framework for this. This meets a major need for location specific rainfall information to improve climate information services for millions of small-holder farming households.
format Preprint
id arxiv_https___arxiv_org_abs_2507_20471
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Evaluating satellite and reanalysis rainfall estimates for climate services in agriculture: a comprehensive methodology
Parsons, Danny
Stern, David
Ndanguza, Denis
Sylla, Mouhamadou Bamba
Musyoka, James
Bagiliko, John
Clarkson, Graham
Dorward, Peter
Atmospheric and Oceanic Physics
High-resolution rainfall estimates from satellite and reanalysis sources (SRE) could play a major role in improving climate services for agriculture. This is particularly relevant in regions that rely on rain-fed farming but lack a dense network of ground-based measurements to provide localised historical climate information, as in most of the Global South. However, there is a need for a framework which practitioners can use to determine the suitability of these estimated data for specific agricultural applications. This paper presents a comprehensive methodology for evaluating the ability of SRE to provide historical rainfall information for agricultural applications, primarily through comparison with ground-based measurements. The methodology comprises five main steps: data selection and pre-processing, spatial and temporal consistency checks, quantitative SRE-gauge comparisons, bias correction, and application specific summaries. The methodology makes use of graphical summaries, standard comparison metrics, and Markov chain models. We describe how users can apply this methodology to evaluate rainfall estimates for specific applications, complementing existing validation studies. Evaluation cases are presented to demonstrate the methodology using five widely used satellite and reanalysis rainfall products and ground-based measurements from 12 stations in Africa and the Caribbean. The case studies demonstrate how the methodology can be applied to examine multiple aspects of the rainfall estimates. While previous validation studies ask "Does the SRE estimate the true rainfall well?", this methodology provides means of establishing "To what extent can an SRE be used for this specific purpose?" and a comprehensive framework for this. This meets a major need for location specific rainfall information to improve climate information services for millions of small-holder farming households.
title Evaluating satellite and reanalysis rainfall estimates for climate services in agriculture: a comprehensive methodology
topic Atmospheric and Oceanic Physics
url https://arxiv.org/abs/2507.20471