arrow
Return

A Semi-Supervised SVM-Firefly Hybrid for Rainfall Estimation from MSG Data

delete2026-01-26
delete0
delete
OA
AI
B
Boukendour, Ouiza
L
Lazri, Mourad *
A
Absi, Rafik
O
Ouallouche, Fethi
L
Labadi, Karim
A
Attaf, Youcef
B
Belghit, Amar
A
Ameur, Soltane
DOI:10.3390/atmos17020133delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
In this paper, two improvements in precipitation classification have been performed. Supervised machine learning has demonstrated considerable performances in classification tasks. However, supervised machine learning can only be applied to labeled data. In some cases, large amounts of unlabeled data contain valuable information for better classification. In the classification of precipitation intensities from satellite images, unlabeled data constitute the majority and remain largely unexplored. To exploit both labeled and unlabeled data, a Semi-Supervised Support Vector Machine (S3VM) is implemented as the first improvement for classification results. The labeling of the limited available data is derived from radar measurements covering a small portion of the Meteosat Second Generation Satellite observations. The results show that the S3VM model outperforms the standard SVM model, with up to a 15% improvement in classification accuracy compared to the standard SVM. To achieve the second improvement, the S3VM was combined with the Firefly Algorithm (FFA) to optimize its hyperparameters. This hybridization (S3VM-FFA) enabled an even more robust performance. A comparative study showed that the S3VM-FFA approach yielded highly satisfactory results, achieving a 17% improvement in classification compared to the SVM results. Based on these classifications, precipitation quantities at different scales are estimated. Similarly to the classification results, statistical evaluation parameters indicate that the S3VM-FFA outperforms both the standard SVM and the conventional S3VM.
Keywords:
machine learning
semi-supervised
SVM
FFA (Firefly Algorithm)
hybridization
weather satellite
classification

Journal

Atmosphere cover
Atmosphere
IF:
2.3
Papers:
861
Citations:
2.3W

Organization

U
universite mouloud mammeri de tizi ouzou
Scholars:
669
Papers: 450
Citations: 0