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Over the last few decades, deforestation and climate change have caused increasing number of forest fires.
Neocognitron: A self-organizing neural network model for a mechanism of pattern recognition unaffected by shift in position
Fukushima, K. 1980 · 1980
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Development and structure of the Canadian Forest Fire Weather Index System
Wagner, C. E. V. 1987 · 1987
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The Canadian Forest Fire Danger Rating System: An Overview
Stocks, B. J.; Lynham, T. J.; Lawson, B. D.; Alexander, M. E.; Wagner, C. E. V.; McAlpine, R. S.; and Dubé, D. E. 1989 · 1989
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Long Short-Term Memory
Hochreiter, S.; and Schmidhuber, J. 1997 · 1997
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Fire carbon emissions over maritime southeast Asia in 2015 largest since 1997
Huijnen, V.; Wooster, M.; Kaiser, J.; Gaveau, D.; Flemming, J.; Parrington, M.; Inness, A.; Murdiyarso, D.; Main, B.; and van Weele, M. 2016 · 1997
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FARSITE: Fire Area Simulator-model development and evaluation
Finney, M. A. 1998 · 1998
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Adoption vs. adaptation: Lessons from applying the Canadian Forest Fire Danger Rating System in New Zealand
Fogarty, L.; Pearce, H.; Catchpole, W.; and Alexander, M. 1998 · 1998
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Integration of satellite sensor data, fuel type maps and meteorological observations for evaluation of forest fire risk at the pan-European scale
López, A. S.; San-Miguel-Ayanz, J.; and Burgan, R. E. 2002 · 2002
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A Data Mining Approach to Predict Forest Fires using Meteorological Data
Cortez, P.; and Morais, A. 2007 · 2007
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Fire Information for Resource Management System: Archiving and Distributing MODIS Active Fire Data
Davies, D. K.; Ilavajhala, S.; Wong, M. M.; and Justice, C. O. 2009 · 2008
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A method for the analysis of assumptions in model-based environmental assessments
Kloprogge, P.; van der Sluijs, J. P.; and Petersen, A. C. 2011 · 2009
Cited alongside, same era.
Tropical peatland fires in Southeast Asia , 263–287
Page, S.; Hoscilo, A.; Langner, A.; Tansey, K.; Siegert, F.; Limin, S.; and Rieley, J. 2009 · 2009
Cited alongside, same era.
Global and regional importance of the tropical peatland carbon pool
Page, S. E.; Rieley, J. O.; and Banks, C. J. 2011 · 2010
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Comprehensive Monitoring of Wildfires in Europe: The European Forest Fire Information System (EFFIS)
San-Miguel-Ayanz, J.; et al. 2012 · 2012
Cited alongside, same era.
Linking land, air and sea: potential impacts of biomass burning and the resultant haze on marine ecosystems of Southeast Asia
Jaafar, Z.; and Loh, T.-L. 2014 · 2014
Cited alongside, same era.
Tropical Peat Swamp Forests of Southeast Asia , 1–9
Page, S.; and Rieley, J. 2016 · 2016
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Field measurements of trace gases and aerosols emitted by peat fires in Central Kalimantan, Indonesia, during the 2015 El Niño
Stockwell, C. E.; Jayarathne, T.; Cochrane, M. A.; Ryan, K. C.; Putra, E. I.; Saharjo, B. H.; Nurhayati, A. D.; Albar, I.; Blake, D. R.; Simpson, I. J.; Stone, E. A.; and Yokelson, R. J. 2016 · 2016
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Google Earth Engine: Planetary-scale geospatial analysis for everyone
Gorelick, N.; Hancher, M.; Dixon, M.; Ilyushchenko, S.; Thau, D.; and Moore, R. 2017 · 2017
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An appraisal of Indonesia’s immense peat carbon stock using national peatland maps: Uncertainties and potential losses from conversion
Warren, M.; Hergoualc’h, K.; Kauffman, J.; Murdiyarso, D.; and Kolka, R. 2017 · 2017
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Classification Model for Forest Fire Hotspot Occurrences Prediction Using ANFIS Algorithm
Wijayanto, A. K.; Sani, O.; Kartika, N. D.; and Herdiyeni, Y. 2017 · 2017
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Global trends in wildfire and its impacts: perceptions versus realities in a changing world
Doerr, S. H.; and Santín, C. 2016 · 2015
Cited alongside, same era.
Suomi NPP
Karl Hille, N. 2015 · 2015
Cited alongside, same era.
Spatial evaluation of Indonesia’s 2015 fire affected area and estimated carbon emissions using Sentinel-1
Lohberger, S.; Stängel, M.; Atwood, E.; and Siegert, F. 2017 · 2015
Cited alongside, same era.
The cost of fire : an economic analysis of Indonesia’s 2015 fire crisis (English)
World Bank. 2016 · 2015
Cited alongside, same era.
The need for long-term remedies for Indonesia’s forest fires
Chisholm, R. A.; Wijedasa, L. S.; and Swinfield, T. 2016 · 2016
Cited alongside, same era.
Land, Atmosphere Near real-time Capability for EOS (LANCE)
National Aeronautics and Space Administration (NASA). 2020a
Cited in the paper.
Moderate Resolution Imaging Spectroradiometer (MODIS)
National Aeronautics and Space Administration (NASA). 2020b
Cited in the paper.
Later among the works it cites.
FireNet: Real-time Segmentation of Fire Perimeter from Aerial Video
Doshi, J.; Garcia, D.; Massey, C.; Llueca, P.; Borensztein, N.; Baird, M.; Cook, M.; and Raj, D. 2019 · 2019
Later among the works it cites.
Spatial Logistic Regression Models for Predicting Peatland Fire in Bengkalis Regency, Indonesia
Maulana, S. I.; Syaufina, L.; Prasetyo, L. B.; and Aidi, M. N. 2019 · 2019
Later among the works it cites.
FireCast: Leveraging Deep Learning to Predict Wildfire Spread
Radke, D.; Hessler, A.; and Ellsworth, D. 2019 · 2019
Later among the works it cites.
Landsat 7 (L7) Data Users Handbook
U.S. Geological Survey. 2019 · 2019
Later among the works it cites.