Estimation of the extent and spread of wildland fires is an important application of high spatial resolution multispectral images. This work addresses a fuzzy segmentation algorithm to map fire extent, active fire front, hot burn scar, and smoke regions based on a statistical model. The fuzzy results are useful data sources for integrated fire behavior and propagation models built using Dynamic Data Driven Applications Systems (DDDAS) concepts that use data assimilation techniques which require error estimates or probabilities for the data parameters. The Hidden Markov Random Field (HMRF) model has been used widely in image segmentation, but it is assumed that each pixel has a particular class label belonging to a prescribed finite set. The...
Among climate effects, fires are reported to be the most catastrophic events both economically and e...
This paper aims to develop a global burned area (BA) algorithm for MODIS BRDF-corrected images based...
Recent works have demonstrated the benefits of using a two phase methodology to improve burned area...
Estimation of the extent and spread of wildland fires is an important application of high spatial re...
Sentinel-2 (S2) multi-spectral instrument (MSI) images are used in an automated approach built on fu...
An automatic statistical segmentation algorithm for extraction of fire and smoke region
Wildfire research is working toward near real-time tactical wildfire mapping through the application...
Abstract This article presents a new method for burned area mapping using high-resolu...
In this paper a smoke detection algorithm for real time forest fire detection is proposed. The scene...
International audienceWildfires stand as one of the most relevant natural disasters worldwide, parti...
Airborne thermal infrared (TIR) imaging systems are being increasingly used for wild fire tactical m...
The scarcity of automatic fire detection systems continues to be a problem that needs a serious atte...
In the case of ongoing wildfire events, timely information on current fire parameters is crucial for...
Abstract. A focus of this paper is a pixel level analysis and segmentation of smoke colored pixels f...
Developed as a quantitative measurement of fire intensity, fire radiative power (FRP) and the potent...
Among climate effects, fires are reported to be the most catastrophic events both economically and e...
This paper aims to develop a global burned area (BA) algorithm for MODIS BRDF-corrected images based...
Recent works have demonstrated the benefits of using a two phase methodology to improve burned area...
Estimation of the extent and spread of wildland fires is an important application of high spatial re...
Sentinel-2 (S2) multi-spectral instrument (MSI) images are used in an automated approach built on fu...
An automatic statistical segmentation algorithm for extraction of fire and smoke region
Wildfire research is working toward near real-time tactical wildfire mapping through the application...
Abstract This article presents a new method for burned area mapping using high-resolu...
In this paper a smoke detection algorithm for real time forest fire detection is proposed. The scene...
International audienceWildfires stand as one of the most relevant natural disasters worldwide, parti...
Airborne thermal infrared (TIR) imaging systems are being increasingly used for wild fire tactical m...
The scarcity of automatic fire detection systems continues to be a problem that needs a serious atte...
In the case of ongoing wildfire events, timely information on current fire parameters is crucial for...
Abstract. A focus of this paper is a pixel level analysis and segmentation of smoke colored pixels f...
Developed as a quantitative measurement of fire intensity, fire radiative power (FRP) and the potent...
Among climate effects, fires are reported to be the most catastrophic events both economically and e...
This paper aims to develop a global burned area (BA) algorithm for MODIS BRDF-corrected images based...
Recent works have demonstrated the benefits of using a two phase methodology to improve burned area...