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Human Detection Based on the Generation of a Background Image by Using a Far-Infrared Light Camera

The need for computer vision-based human detection has increased in fields, such as security, intelligent surveillance and monitoring systems. However, performance enhancement of human detection based on visible light cameras is limited, because of factors, such as nonuniform illumination, shadows a...

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Autores principales: Jeon, Eun Som, Choi, Jong-Suk, Lee, Ji Hoon, Shin, Kwang Yong, Kim, Yeong Gon, Le, Toan Thanh, Park, Kang Ryoung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4435210/
https://www.ncbi.nlm.nih.gov/pubmed/25808774
http://dx.doi.org/10.3390/s150306763
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author Jeon, Eun Som
Choi, Jong-Suk
Lee, Ji Hoon
Shin, Kwang Yong
Kim, Yeong Gon
Le, Toan Thanh
Park, Kang Ryoung
author_facet Jeon, Eun Som
Choi, Jong-Suk
Lee, Ji Hoon
Shin, Kwang Yong
Kim, Yeong Gon
Le, Toan Thanh
Park, Kang Ryoung
author_sort Jeon, Eun Som
collection PubMed
description The need for computer vision-based human detection has increased in fields, such as security, intelligent surveillance and monitoring systems. However, performance enhancement of human detection based on visible light cameras is limited, because of factors, such as nonuniform illumination, shadows and low external light in the evening and night. Consequently, human detection based on thermal (far-infrared light) cameras has been considered as an alternative. However, its performance is influenced by the factors, such as low image resolution, low contrast and the large noises of thermal images. It is also affected by the high temperature of backgrounds during the day. To solve these problems, we propose a new method for detecting human areas in thermal camera images. Compared to previous works, the proposed research is novel in the following four aspects. One background image is generated by median and average filtering. Additional filtering procedures based on maximum gray level, size filtering and region erasing are applied to remove the human areas from the background image. Secondly, candidate human regions in the input image are located by combining the pixel and edge difference images between the input and background images. The thresholds for the difference images are adaptively determined based on the brightness of the generated background image. Noise components are removed by component labeling, a morphological operation and size filtering. Third, detected areas that may have more than two human regions are merged or separated based on the information in the horizontal and vertical histograms of the detected area. This procedure is adaptively operated based on the brightness of the generated background image. Fourth, a further procedure for the separation and removal of the candidate human regions is performed based on the size and ratio of the height to width information of the candidate regions considering the camera viewing direction and perspective projection. Experimental results with two types of databases confirm that the proposed method outperforms other methods.
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spelling pubmed-44352102015-05-19 Human Detection Based on the Generation of a Background Image by Using a Far-Infrared Light Camera Jeon, Eun Som Choi, Jong-Suk Lee, Ji Hoon Shin, Kwang Yong Kim, Yeong Gon Le, Toan Thanh Park, Kang Ryoung Sensors (Basel) Article The need for computer vision-based human detection has increased in fields, such as security, intelligent surveillance and monitoring systems. However, performance enhancement of human detection based on visible light cameras is limited, because of factors, such as nonuniform illumination, shadows and low external light in the evening and night. Consequently, human detection based on thermal (far-infrared light) cameras has been considered as an alternative. However, its performance is influenced by the factors, such as low image resolution, low contrast and the large noises of thermal images. It is also affected by the high temperature of backgrounds during the day. To solve these problems, we propose a new method for detecting human areas in thermal camera images. Compared to previous works, the proposed research is novel in the following four aspects. One background image is generated by median and average filtering. Additional filtering procedures based on maximum gray level, size filtering and region erasing are applied to remove the human areas from the background image. Secondly, candidate human regions in the input image are located by combining the pixel and edge difference images between the input and background images. The thresholds for the difference images are adaptively determined based on the brightness of the generated background image. Noise components are removed by component labeling, a morphological operation and size filtering. Third, detected areas that may have more than two human regions are merged or separated based on the information in the horizontal and vertical histograms of the detected area. This procedure is adaptively operated based on the brightness of the generated background image. Fourth, a further procedure for the separation and removal of the candidate human regions is performed based on the size and ratio of the height to width information of the candidate regions considering the camera viewing direction and perspective projection. Experimental results with two types of databases confirm that the proposed method outperforms other methods. MDPI 2015-03-19 /pmc/articles/PMC4435210/ /pubmed/25808774 http://dx.doi.org/10.3390/s150306763 Text en © 2015 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jeon, Eun Som
Choi, Jong-Suk
Lee, Ji Hoon
Shin, Kwang Yong
Kim, Yeong Gon
Le, Toan Thanh
Park, Kang Ryoung
Human Detection Based on the Generation of a Background Image by Using a Far-Infrared Light Camera
title Human Detection Based on the Generation of a Background Image by Using a Far-Infrared Light Camera
title_full Human Detection Based on the Generation of a Background Image by Using a Far-Infrared Light Camera
title_fullStr Human Detection Based on the Generation of a Background Image by Using a Far-Infrared Light Camera
title_full_unstemmed Human Detection Based on the Generation of a Background Image by Using a Far-Infrared Light Camera
title_short Human Detection Based on the Generation of a Background Image by Using a Far-Infrared Light Camera
title_sort human detection based on the generation of a background image by using a far-infrared light camera
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4435210/
https://www.ncbi.nlm.nih.gov/pubmed/25808774
http://dx.doi.org/10.3390/s150306763
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