Automatic detection of overshooting tops and their properties from visible satellite channels

Fuente: arXiv
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Autori principali: Doležalová, Anežka, Seidl, Jakub, Šťástka, Jindřich, Kaňák, Ján
Natura: Preprint
Pubblicazione: 2025
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author Doležalová, Anežka
Seidl, Jakub
Šťástka, Jindřich
Kaňák, Ján
author_facet Doležalová, Anežka
Seidl, Jakub
Šťástka, Jindřich
Kaňák, Ján
contents Overshooting tops (OTs) are informative indicators of convective storm intensity and are widely utilized in meteorological analyses. This study presents an automated algorithm for OT detection and OT height estimation using convolutional neural networks applied to visible satellite imagery. The models are trained and validated on an extensive OT dataset comprising approximately 10,000 manually detected cases over Europe. The OTs were identified from high-resolution visible (HRV) channel of the SEVIRI instrument on board the MSG geostationary satellite, with the heights determined from the length of their shadows in the imagery. While conventional OT detection methods primarily rely on the identification of cold features in thermal infrared channels, our approach extracts information from visible channels, leveraging the ground truth data on OT shadow length provided by the training dataset. In the morning and afternoon hours, when the shadows are visible, the proposed models detect OTs with a probability of detection reaching 97% and estimate their height with an average error of 0.25 km. The performance is expected to further improve once the model is applied to polar and new generation geostationary satellites with increased spatial resolution.
format Preprint
id arxiv_https___arxiv_org_abs_2506_00246
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Automatic detection of overshooting tops and their properties from visible satellite channels
Doležalová, Anežka
Seidl, Jakub
Šťástka, Jindřich
Kaňák, Ján
Atmospheric and Oceanic Physics
Overshooting tops (OTs) are informative indicators of convective storm intensity and are widely utilized in meteorological analyses. This study presents an automated algorithm for OT detection and OT height estimation using convolutional neural networks applied to visible satellite imagery. The models are trained and validated on an extensive OT dataset comprising approximately 10,000 manually detected cases over Europe. The OTs were identified from high-resolution visible (HRV) channel of the SEVIRI instrument on board the MSG geostationary satellite, with the heights determined from the length of their shadows in the imagery. While conventional OT detection methods primarily rely on the identification of cold features in thermal infrared channels, our approach extracts information from visible channels, leveraging the ground truth data on OT shadow length provided by the training dataset. In the morning and afternoon hours, when the shadows are visible, the proposed models detect OTs with a probability of detection reaching 97% and estimate their height with an average error of 0.25 km. The performance is expected to further improve once the model is applied to polar and new generation geostationary satellites with increased spatial resolution.
title Automatic detection of overshooting tops and their properties from visible satellite channels
topic Atmospheric and Oceanic Physics
url https://arxiv.org/abs/2506.00246