Secured Perimeter with Electromagnetic Detection and Tracking with Drone Embedded and Static Cameras

Perimeter detection systems detect intruders penetrating protected areas, but modern solutions require the combination of smart detectors, information networks and controlling software to reduce false alarms and extend detection range. The current solutions available to secure a perimeter (infrared...

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Autores principales: Pedro Teixidó, Juan Antonio Gómez-Galán, Rafael Caballero, Francisco J. Pérez-Grau, José M. Hinojo-Montero, Fernando Muñoz-Chavero, Juan Aponte
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Lenguaje:EN
Publicado: MDPI AG 2021
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Acceso en línea:https://doaj.org/article/004c0500ad1d411e8e861bde620ce9d6
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spelling oai:doaj.org-article:004c0500ad1d411e8e861bde620ce9d62021-11-11T19:18:49ZSecured Perimeter with Electromagnetic Detection and Tracking with Drone Embedded and Static Cameras10.3390/s212173791424-8220https://doaj.org/article/004c0500ad1d411e8e861bde620ce9d62021-11-01T00:00:00Zhttps://www.mdpi.com/1424-8220/21/21/7379https://doaj.org/toc/1424-8220Perimeter detection systems detect intruders penetrating protected areas, but modern solutions require the combination of smart detectors, information networks and controlling software to reduce false alarms and extend detection range. The current solutions available to secure a perimeter (infrared and motion sensors, fiber optics, cameras, radar, among others) have several problems, such as sensitivity to weather conditions or the high failure alarm rate that forces the need for human supervision. The system exposed in this paper overcomes these problems by combining a perimeter security system based on CEMF (control of electromagnetic fields) sensing technology, a set of video cameras that remain powered off except when an event has been detected. An autonomous drone is also informed where the event has been initially detected. Then, it flies through computer vision to follow the intruder for as long as they remain within the perimeter. This paper covers a detailed view of how all three components cooperate in harmony to protect a perimeter effectively, without having to worry about false alarms, blinding due to weather conditions, clearance areas, or privacy issues. The system also provides extra information of where the intruder is or has been, at all times, no matter whether they have become mixed up with more people or not during the attack.Pedro TeixidóJuan Antonio Gómez-GalánRafael CaballeroFrancisco J. Pérez-GrauJosé M. Hinojo-MonteroFernando Muñoz-ChaveroJuan AponteMDPI AGarticleperimeterdetectorpreventiveintrusionalarmcamerasChemical technologyTP1-1185ENSensors, Vol 21, Iss 7379, p 7379 (2021)
institution DOAJ
collection DOAJ
language EN
topic perimeter
detector
preventive
intrusion
alarm
cameras
Chemical technology
TP1-1185
spellingShingle perimeter
detector
preventive
intrusion
alarm
cameras
Chemical technology
TP1-1185
Pedro Teixidó
Juan Antonio Gómez-Galán
Rafael Caballero
Francisco J. Pérez-Grau
José M. Hinojo-Montero
Fernando Muñoz-Chavero
Juan Aponte
Secured Perimeter with Electromagnetic Detection and Tracking with Drone Embedded and Static Cameras
description Perimeter detection systems detect intruders penetrating protected areas, but modern solutions require the combination of smart detectors, information networks and controlling software to reduce false alarms and extend detection range. The current solutions available to secure a perimeter (infrared and motion sensors, fiber optics, cameras, radar, among others) have several problems, such as sensitivity to weather conditions or the high failure alarm rate that forces the need for human supervision. The system exposed in this paper overcomes these problems by combining a perimeter security system based on CEMF (control of electromagnetic fields) sensing technology, a set of video cameras that remain powered off except when an event has been detected. An autonomous drone is also informed where the event has been initially detected. Then, it flies through computer vision to follow the intruder for as long as they remain within the perimeter. This paper covers a detailed view of how all three components cooperate in harmony to protect a perimeter effectively, without having to worry about false alarms, blinding due to weather conditions, clearance areas, or privacy issues. The system also provides extra information of where the intruder is or has been, at all times, no matter whether they have become mixed up with more people or not during the attack.
format article
author Pedro Teixidó
Juan Antonio Gómez-Galán
Rafael Caballero
Francisco J. Pérez-Grau
José M. Hinojo-Montero
Fernando Muñoz-Chavero
Juan Aponte
author_facet Pedro Teixidó
Juan Antonio Gómez-Galán
Rafael Caballero
Francisco J. Pérez-Grau
José M. Hinojo-Montero
Fernando Muñoz-Chavero
Juan Aponte
author_sort Pedro Teixidó
title Secured Perimeter with Electromagnetic Detection and Tracking with Drone Embedded and Static Cameras
title_short Secured Perimeter with Electromagnetic Detection and Tracking with Drone Embedded and Static Cameras
title_full Secured Perimeter with Electromagnetic Detection and Tracking with Drone Embedded and Static Cameras
title_fullStr Secured Perimeter with Electromagnetic Detection and Tracking with Drone Embedded and Static Cameras
title_full_unstemmed Secured Perimeter with Electromagnetic Detection and Tracking with Drone Embedded and Static Cameras
title_sort secured perimeter with electromagnetic detection and tracking with drone embedded and static cameras
publisher MDPI AG
publishDate 2021
url https://doaj.org/article/004c0500ad1d411e8e861bde620ce9d6
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