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Vulnerability of peatland fires in bengkalis regency during the ENSO El nino phase using a machine learning approach
Fauziah1, Lilik B Prasetyo2, Nonon Saribanon3
1Department of Magister Technology Information, Faculty of Information and Communications Technology, Nasional University, Jl. Sawo Manila No. 61 RT.14/ RW.7, West Pejaten, Pasar Minggu, South Jakarta 12520, Indonesia.
Abstract:
Peatland fires are increasingly becoming a concern as a recurring environmental issue in Indonesia, particularly along the east coast of Sumatra Island, in Bengkalis Regency. Therefore, the development of a peatland fire prediction model is necessary. This study aims to identify peatland fire vulnerability in Bengkalis Regency using burn area from MODIS 2019. The algorithm used are Random Forest (RF) and Logistic Regression (Log-Reg), with independent variables including physiography, peat physical characteristics, anthropogenic factors, climate, and NDMI. The total burned area in Bengkalis Regency in 2019 was 175.85 km², with Rupat District being the area with the largest burned area. The best model is RF that was able to predict peatland fires in Bengkalis Regency effectively, with achieving an AUC value of 0.972. The five main factors influencing peatland fires were road density, precipitation, drainage density, NDMI, and river density. The accuracy of RF reached 95.07%. The classification results indicated three levels of peatland fire vulnerability in Bengkalis Regency•Non-Vulnerable: Areas classified as non-vulnerable are regions where the risk of peatland fires is minimal or non-existent.•Low Vulnerability: These areas have a moderate risk of peatland fires.•High Vulnerability: Areas with high vulnerability are the most susceptible to peatland fires.
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