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Using Deep Learning with Thermal Imaging for Human Detection in Heavy Smoke Scenarios
by
Yuan, Shyan-Ming
, Tsai, Pei-Fen
, Liao, Chia-Hung
in
Cameras
/ convolutional neural network
/ Data collection
/ Datasets
/ Deep Learning
/ evacuation in fire
/ Evacuations & rescues
/ Fire protection
/ Firefighters
/ Fires
/ Heat detection
/ human detection
/ Humans
/ infrared thermal camera
/ Interoperability
/ Localization
/ LWIR
/ Neural networks
/ Radiation
/ Sensors
/ Smoke - analysis
/ thermal imaging camera
2022
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Using Deep Learning with Thermal Imaging for Human Detection in Heavy Smoke Scenarios
by
Yuan, Shyan-Ming
, Tsai, Pei-Fen
, Liao, Chia-Hung
in
Cameras
/ convolutional neural network
/ Data collection
/ Datasets
/ Deep Learning
/ evacuation in fire
/ Evacuations & rescues
/ Fire protection
/ Firefighters
/ Fires
/ Heat detection
/ human detection
/ Humans
/ infrared thermal camera
/ Interoperability
/ Localization
/ LWIR
/ Neural networks
/ Radiation
/ Sensors
/ Smoke - analysis
/ thermal imaging camera
2022
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Do you wish to request the book?
Using Deep Learning with Thermal Imaging for Human Detection in Heavy Smoke Scenarios
by
Yuan, Shyan-Ming
, Tsai, Pei-Fen
, Liao, Chia-Hung
in
Cameras
/ convolutional neural network
/ Data collection
/ Datasets
/ Deep Learning
/ evacuation in fire
/ Evacuations & rescues
/ Fire protection
/ Firefighters
/ Fires
/ Heat detection
/ human detection
/ Humans
/ infrared thermal camera
/ Interoperability
/ Localization
/ LWIR
/ Neural networks
/ Radiation
/ Sensors
/ Smoke - analysis
/ thermal imaging camera
2022
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Using Deep Learning with Thermal Imaging for Human Detection in Heavy Smoke Scenarios
Journal Article
Using Deep Learning with Thermal Imaging for Human Detection in Heavy Smoke Scenarios
2022
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Overview
In this study, we propose using a thermal imaging camera (TIC) with a deep learning model as an intelligent human detection approach during emergency evacuations in a low-visibility smoky fire scenarios. We use low-wavelength infrared (LWIR) images taken by a TIC qualified with the National Fire Protection Association (NFPA) 1801 standards as input to the YOLOv4 model for real-time object detection. The model trained with a single Nvidia GeForce 2070 can achieve >95% precision for the location of people in a low-visibility smoky scenario with 30.1 frames per second (FPS). This real-time result can be reported to control centers as useful information to help provide timely rescue and provide protection to firefighters before entering dangerous smoky fire situations.
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