Register      Login
International Journal of Wildland Fire International Journal of Wildland Fire Society
Journal of the International Association of Wildland Fire

Articles citing this paper

Global assessment of the temporal reporting accuracy and precision of the MODIS burned area product

Luigi Boschetti A D , David P. Roy B , Christopher O. Justice A and Louis Giglio C
+ Author Affiliations
- Author Affiliations

A Department of Geography, University of Maryland, 2181 LeFrak Hall, College Park, MD 20742, USA.

B Geographic Information Science Center of Excellence, South Dakota State University, Wecota Hall, Box 506B, Brookings, SD 57007, USA.

C Science Systems and Applications Incorporated, Lanham, MD 20706, USA.

D Corresponding author. Email: luigi@hermes.geog.umd.edu

International Journal of Wildland Fire 19(6) 705-709 https://doi.org/10.1071/WF09138
Submitted: 1 December 2009  Accepted: 22 February 2010   Published: 17 September 2010



55 articles found in Crossref database.

Satellite-Based Fire Progression Mapping: A Comprehensive Assessment for Large Fires in Northern California
Scaduto Erica, Chen Bin, Jin Yufang
IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 2020 13 p.5102
A web-based land surface remote sensing products validation system (LAPVAS): application to albedo product
Lin Xingwen, Wen Jianguang, Tang Yong, Ma Mingguo, You Dongqin, Dou Baocheng, Wu Xiaodan, Zhu Xiaobo, Xiao Qing, Liu Qinghuo
International Journal of Digital Earth. 2018 11(3). p.308
Satellite contributions to the quantitative characterization of biomass burning for climate modeling
Ichoku Charles, Kahn Ralph, Chin Mian
Atmospheric Research. 2012 111 p.1
Madagascar's burned area from Sentinel-2 imagery (2016–2022): Four times higher than from lower resolution sensors
Fernández-García V., Franquesa M., Kull C.A.
Science of The Total Environment. 2024 914 p.169929
A novel deep Siamese framework for burned area mapping Leveraging mixture of experts
Seydi Seyd Teymoor, Hasanlou Mahdi, Chanussot Jocelyn
Engineering Applications of Artificial Intelligence. 2024 133 p.108280
A Preliminary Global Automatic Burned-Area Algorithm at Medium Resolution in Google Earth Engine
Roteta Ekhi, Bastarrika Aitor, Ibisate Askoa, Chuvieco Emilio
Remote Sensing. 2021 13(21). p.4298
Implementation of the Burned Area Component of the Copernicus Climate Change Service: From MODIS to OLCI Data
Lizundia-Loiola Joshua, Franquesa Magí, Boettcher Martin, Kirches Grit, Pettinari M. Lucrecia, Chuvieco Emilio
Remote Sensing. 2021 13(21). p.4295
Landsat-8 and Sentinel-2 burned area mapping - A combined sensor multi-temporal change detection approach
Roy David P., Huang Haiyan, Boschetti Luigi, Giglio Louis, Yan Lin, Zhang Hankui H., Li Zhongbin
Remote Sensing of Environment. 2019 231 p.111254
Landscape Fire, Smoke, and Health (2023)
Giglio Louis, Roy David P., Humber Michael L., Ellicott Evan, Zubkova Maria, Justice Christopher O.
Incorporating Sentinel-1 SAR imagery with the MODIS MCD64A1 burned area product to improve burn date estimates and reduce burn date uncertainty in wildland fire mapping
Lasko Kristofer
Geocarto International. 2021 36(3). p.340
Effect of land-cover change on Africa's burnt area
Grégoire J.-M., Eva H. D., Belward A. S., Palumbo I., Simonetti D., Brink A.
International Journal of Wildland Fire. 2013 22(2). p.107
Biomass burning fuel consumption dynamics in the tropics and subtropics assessed from satellite
Andela Niels, van der Werf Guido R., Kaiser Johannes W., van Leeuwen Thijs T., Wooster Martin J., Lehmann Caroline E. R.
Biogeosciences. 2016 13(12). p.3717
Estimation and Spatio-temporal Patterns of Carbon Emissions from Grassland Fires in Inner Mongolia, China
Yu Shan, Jiang Li, Du Wala, Zhao Jianjun, Zhang Hongyan, Zhang Qiaofeng, Liu Huijuan
Chinese Geographical Science. 2020 30(4). p.572
Global burned area mapping from Sentinel-3 Synergy and VIIRS active fires
Lizundia-Loiola Joshua, Franquesa Magí, Khairoun Amin, Chuvieco Emilio
Remote Sensing of Environment. 2022 282 p.113298
Detection of Burned Areas in Southern African Savannahs Using Time Series of C-Band Sentinel-1 Data
IGARSS 2018 - 2018 IEEE International Geoscience and Remote Sensing Symposium (2018)
Mathieu Renaud, Main Russell, Roy David, Naidoo Laven, Yang Hannah
Integration of geostationary FRP and polar-orbiter burned area datasets for an enhanced biomass burning inventory
Roberts G., Wooster M.J., Freeborn P.H., Xu W.
Remote Sensing of Environment. 2011 115(8). p.2047
Measurement and monitoring needs, capabilities and potential for addressing reduced emissions from deforestation and forest degradation under REDD+
Goetz Scott J, Hansen Matthew, Houghton Richard A, Walker Wayne, Laporte Nadine, Busch Jonah
Environmental Research Letters. 2015 10(12). p.123001
MODIS–Landsat fusion for large area 30 m burned area mapping
Boschetti Luigi, Roy David P., Justice Christopher O., Humber Michael L.
Remote Sensing of Environment. 2015 161 p.27
Analysis of propagation of complex fire: case of the Yarnell Hill Fire 1
Infrared Remote Sensing and Instrumentation XXIII (2015)
Strojnik Scholl Marija, Páez Gonzalo, Paez G., Strojnik M., Scholl M. K.
Automated location of active fire perimeters in aerial infrared imaging using unsupervised edge detectors
Valero M. M., Rios O., Pastor E., Planas E.
International Journal of Wildland Fire. 2018 27(4). p.241
Early snowmelt and polar jet dynamics co-influence recent extreme Siberian fire seasons
Scholten Rebecca C., Coumou Dim, Luo Fei, Veraverbeke Sander
Science. 2022 378(6623). p.1005
Exploiting the power law distribution properties of satellite fire radiative power retrievals: A method to estimate fire radiative energy and biomass burned from sparse satellite observations
Kumar S. S., Roy D. P., Boschetti L., Kremens R.
Journal of Geophysical Research. 2011 116(D19).
Measurement and Monitoring for REDD+: The Needs, Current Technological Capabilities, and Future Potential
Goetz Scott, Hansen Matthew, Houghton Richard A, Walker Wayne, Laporte Nadine T, Busch Jonah
SSRN Electronic Journal. 2015
Quantifying the human influence on fire ignition across the western USA
Fusco Emily J., Abatzoglou John T., Balch Jennifer K., Finn John T., Bradley Bethany A.
Ecological Applications. 2016 26(8). p.2390
Improvement of fire danger modelling with geographically weighted logistic model
Zhang Haijun, Qi Pengcheng, Guo Guangmeng
International Journal of Wildland Fire. 2014 23(8). p.1130
Wildfire plumes in the Western US are reaching greater heights and injecting more aerosols aloft as wildfire activity intensifies
Wilmot Taylor Y., Mallia Derek V., Hallar A. Gannet, Lin John C.
Scientific Reports. 2022 12(1).
Fire Activity and Fuel Consumption Dynamics in Sub-Saharan Africa
Roberts Gareth, Wooster Martin, Xu Weidong, He Jiangping
Remote Sensing. 2018 10(10). p.1591
Timeliness in forest change monitoring: A new assessment framework demonstrated using Sentinel-1 and a continuous change detection algorithm
Bullock Eric L., Healey Sean P., Yang Zhiqiang, Houborg Rasmus, Gorelick Noel, Tang Xiaojing, Andrianirina Carole
Remote Sensing of Environment. 2022 276 p.113043
Assessing the Shape Accuracy of Coarse Resolution Burned Area Identifications
Humber Michael L., Boschetti Luigi, Giglio Louis
IEEE Transactions on Geoscience and Remote Sensing. 2020 58(3). p.1516
Active fire-based dating accuracy for Landsat burned area maps is high in boreal and Mediterranean biomes and low in grasslands and savannas
Neves Alana K., Pereira José M.C., Silva João M.N., Catarino Sílvia, Oliva Patricia, Chuvieco Emilio, Campagnolo Manuel L.
ISPRS Journal of Photogrammetry and Remote Sensing. 2024 209 p.461
Multi-scale influence of vapor pressure deficit on fire ignition and spread in boreal forest ecosystems
Sedano F., Randerson J. T.
Biogeosciences. 2014 11(14). p.3739
Global burned area mapping from ENVISAT-MERIS and MODIS active fire data
Alonso-Canas Itziar, Chuvieco Emilio
Remote Sensing of Environment. 2015 163 p.140
Anthropogenic effects on global mean fire size
Hantson Stijn, Lasslop Gitta, Kloster Silvia, Chuvieco Emilio
International Journal of Wildland Fire. 2015 24(5). p.589
The Collection 6 MODIS burned area mapping algorithm and product
Giglio Louis, Boschetti Luigi, Roy David P., Humber Michael L., Justice Christopher O.
Remote Sensing of Environment. 2018 217 p.72
Quantifying pyroconvective injection heights using observations of fire energy: sensitivity of spaceborne observations of carbon monoxide
Gonzi S., Palmer P. I., Paugam R., Wooster M., Deeter M. N.
Atmospheric Chemistry and Physics. 2015 15(8). p.4339
Land Surface Remote Sensing (2016)
Leblon Brigitte, San-Miguel-Ayanz Jesús, Bourgeau-Chavez Laura, Kong Martin
Global validation of the collection 6 MODIS burned area product
Boschetti Luigi, Roy David P., Giglio Louis, Huang Haiyan, Zubkova Maria, Humber Michael L.
Remote Sensing of Environment. 2019 235 p.111490
A deep learning approach for mapping and dating burned areas using temporal sequences of satellite images
Pinto Miguel M., Libonati Renata, Trigo Ricardo M., Trigo Isabel F., DaCamara Carlos C.
ISPRS Journal of Photogrammetry and Remote Sensing. 2020 160 p.260
Comparing the accuracies of remote sensing global burned area products using stratified random sampling and estimation
Padilla Marc, Stehman Stephen V., Ramo Ruben, Corti Dante, Hantson Stijn, Oliva Patricia, Alonso-Canas Itziar, Bradley Andrew V., Tansey Kevin, Mota Bernardo, Pereira Jose Miguel, Chuvieco Emilio
Remote Sensing of Environment. 2015 160 p.114
Mapping the daily progression of large wildland fires using MODIS active fire data
Veraverbeke Sander, Sedano Fernando, Hook Simon J., Randerson James T., Jin Yufang, Rogers Brendan M.
International Journal of Wildland Fire. 2014 23(5). p.655
A patch-based algorithm for global and daily burned area mapping
Campagnolo M.L., Oom D., Padilla M., Pereira J.M.C.
Remote Sensing of Environment. 2019 232 p.111288
Using long temporal reference units to assess the spatial accuracy of global satellite-derived burned area products
Franquesa Magí, Lizundia-Loiola Joshua, Stehman Stephen V., Chuvieco Emilio
Remote Sensing of Environment. 2022 269 p.112823
The Effect of Surface Fire in Savannah Systems in the Kruger National Park (KNP), South Africa, on the Backscatter of C-Band Sentinel-1 Images
Mathieu Renaud, Main Russell, Roy David P., Naidoo Laven, Yang Hannah
Fire. 2019 2(3). p.37
Global fire size distribution is driven by human impact and climate
Hantson Stijn, Pueyo Salvador, Chuvieco Emilio
Global Ecology and Biogeography. 2015 24(1). p.77
A spatio-temporal active-fire clustering approach for global burned area mapping at 250 m from MODIS data
Lizundia-Loiola Joshua, Otón Gonzalo, Ramo Rubén, Chuvieco Emilio
Remote Sensing of Environment. 2020 236 p.111493
Exploratory spatial data analysis of global MODIS active fire data
Oom D., Pereira J.M.C.
International Journal of Applied Earth Observation and Geoinformation. 2013 21 p.326
A Decade Long, Multi-Scale Map Comparison of Fire Regime Parameters Derived from Three Publically Available Satellite-Based Fire Products: A Case Study in the Central African Republic
Freeborn Patrick, Cochrane Mark, Wooster Martin
Remote Sensing. 2014 6(5). p.4061
Highlighting Biome-Specific Sensitivity of Fire Size Distributions to Time-Gap Parameter Using a New Algorithm for Fire Event Individuation
Oom Duarte, Silva Pedro, Bistinas Ioannis, Pereira José
Remote Sensing. 2016 8(8). p.663
Introduced annual grass increases regional fire activity across the arid western USA (1980–2009)
Balch Jennifer K., Bradley Bethany A., D'Antonio Carla M., Gómez‐Dans José
Global Change Biology. 2013 19(1). p.173
Assessing the Accuracy of MODIS MCD64A1 C6 and FireCCI51 Burned Area Products in Mediterranean Ecosystems
Katagis Thomas, Gitas Ioannis Z.
Remote Sensing. 2022 14(3). p.602
Fire spread from MODIS burned area data: obtaining fire dynamics information for every single fire
Frantz David, Stellmes Marion, Röder Achim, Hill Joachim
International Journal of Wildland Fire. 2016 25(12). p.1228
A comprehensive characterization of MODIS daily burned area mapping accuracy across fire sizes in tropical savannas
Campagnolo M.L., Libonati R., Rodrigues J.A., Pereira J.M.C.
Remote Sensing of Environment. 2021 252 p.112115
Spatial and temporal intercomparison of four global burned area products
Humber Michael L., Boschetti Luigi, Giglio Louis, Justice Christopher O.
International Journal of Digital Earth. 2019 12(4). p.460
Burned area detection and mapping using Sentinel-1 backscatter coefficient and thermal anomalies
Belenguer-Plomer Miguel A., Tanase Mihai A., Fernandez-Carrillo Angel, Chuvieco Emilio
Remote Sensing of Environment. 2019 233 p.111345
Building a small fire database for Sub-Saharan Africa from Sentinel-2 high-resolution images
Chuvieco Emilio, Roteta Ekhi, Sali Matteo, Stroppiana Daniela, Boettcher Martin, Kirches Grit, Storm Thomas, Khairoun Amin, Pettinari M. Lucrecia, Franquesa Magí, Albergel Clément
Science of The Total Environment. 2022 845 p.157139

Committee on Publication Ethics


Abstract Export Citation Get Permission