Prototipo de un Contador Bidireccional Automático de Personas basado en sensores de visión 3D

Fuente: arXiv
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Autores principales: Ojeda-Magaña, Benjamín, Ruelas, Rubén, Robledo-Hernández, José Guadalupe, Rangel-Cobián, Víctor Manuel, Aguilar-Hernández, Fernando López
Formato: Preprint
Publicado: 2024
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author Ojeda-Magaña, Benjamín
Ruelas, Rubén
Robledo-Hernández, José Guadalupe
Rangel-Cobián, Víctor Manuel
Aguilar-Hernández, Fernando López
author_facet Ojeda-Magaña, Benjamín
Ruelas, Rubén
Robledo-Hernández, José Guadalupe
Rangel-Cobián, Víctor Manuel
Aguilar-Hernández, Fernando López
contents 3D sensors, also known as RGB-D sensors, utilize depth images where each pixel measures the distance from the camera to objects, using principles like structured light or time-of-flight. Advances in artificial vision have led to affordable 3D cameras capable of real-time object detection without object movement, surpassing 2D cameras in information depth. These cameras can identify objects of varying colors and reflectivities and are less affected by lighting changes. The described prototype uses RGB-D sensors for bidirectional people counting in venues, aiding security and surveillance in spaces like stadiums or airports. It determines real-time occupancy and checks against maximum capacity, crucial during emergencies. The system includes a RealSense D415 depth camera and a mini-computer running object detection algorithms to count people and a 2D camera for identity verification. The system supports statistical analysis and uses C++, Python, and PHP with OpenCV for image processing, demonstrating a comprehensive approach to monitoring venue occupancy.
format Preprint
id arxiv_https___arxiv_org_abs_2403_12310
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Prototipo de un Contador Bidireccional Automático de Personas basado en sensores de visión 3D
Ojeda-Magaña, Benjamín
Ruelas, Rubén
Robledo-Hernández, José Guadalupe
Rangel-Cobián, Víctor Manuel
Aguilar-Hernández, Fernando López
Computer Vision and Pattern Recognition
Image and Video Processing
I.4.9
3D sensors, also known as RGB-D sensors, utilize depth images where each pixel measures the distance from the camera to objects, using principles like structured light or time-of-flight. Advances in artificial vision have led to affordable 3D cameras capable of real-time object detection without object movement, surpassing 2D cameras in information depth. These cameras can identify objects of varying colors and reflectivities and are less affected by lighting changes. The described prototype uses RGB-D sensors for bidirectional people counting in venues, aiding security and surveillance in spaces like stadiums or airports. It determines real-time occupancy and checks against maximum capacity, crucial during emergencies. The system includes a RealSense D415 depth camera and a mini-computer running object detection algorithms to count people and a 2D camera for identity verification. The system supports statistical analysis and uses C++, Python, and PHP with OpenCV for image processing, demonstrating a comprehensive approach to monitoring venue occupancy.
title Prototipo de un Contador Bidireccional Automático de Personas basado en sensores de visión 3D
topic Computer Vision and Pattern Recognition
Image and Video Processing
I.4.9
url https://arxiv.org/abs/2403.12310