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INSPEX: Optimize Range Sensors for Environment Perception as a Portable System

Environment perception is crucial for the safe navigation of vehicles and robots to detect obstacles in their surroundings. It is also of paramount interest for navigation of human beings in reduced visibility conditions. Obstacle avoidance systems typically combine multiple sensing technologies (i....

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Autores principales: Foucault, Julie, Lesecq, Suzanne, Dudnik, Gabriela, Correvon, Marc, O’Keeffe, Rosemary, Di Palma, Vincenza, Passoni, Marco, Quaglia, Fabio, Ouvry, Laurent, Buckley, Steven, Herveg, Jean, di Matteo, Andrea, Rakotovao, Tiana, Debicki, Olivier, Mareau, Nicolas, Barrett, John, Rea, Susan, McGibney, Alan, Birot, François, de Chaumont, Hugues, Banach, Richard, Razavi, Joseph, Ó’Murchú, Cian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6806208/
https://www.ncbi.nlm.nih.gov/pubmed/31597341
http://dx.doi.org/10.3390/s19194350
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author Foucault, Julie
Lesecq, Suzanne
Dudnik, Gabriela
Correvon, Marc
O’Keeffe, Rosemary
Di Palma, Vincenza
Passoni, Marco
Quaglia, Fabio
Ouvry, Laurent
Buckley, Steven
Herveg, Jean
di Matteo, Andrea
Rakotovao, Tiana
Debicki, Olivier
Mareau, Nicolas
Barrett, John
Rea, Susan
McGibney, Alan
Birot, François
de Chaumont, Hugues
Banach, Richard
Razavi, Joseph
Ó’Murchú, Cian
author_facet Foucault, Julie
Lesecq, Suzanne
Dudnik, Gabriela
Correvon, Marc
O’Keeffe, Rosemary
Di Palma, Vincenza
Passoni, Marco
Quaglia, Fabio
Ouvry, Laurent
Buckley, Steven
Herveg, Jean
di Matteo, Andrea
Rakotovao, Tiana
Debicki, Olivier
Mareau, Nicolas
Barrett, John
Rea, Susan
McGibney, Alan
Birot, François
de Chaumont, Hugues
Banach, Richard
Razavi, Joseph
Ó’Murchú, Cian
author_sort Foucault, Julie
collection PubMed
description Environment perception is crucial for the safe navigation of vehicles and robots to detect obstacles in their surroundings. It is also of paramount interest for navigation of human beings in reduced visibility conditions. Obstacle avoidance systems typically combine multiple sensing technologies (i.e., LiDAR, radar, ultrasound and visual) to detect various types of obstacles under different lighting and weather conditions, with the drawbacks of a given technology being offset by others. These systems require powerful computational capability to fuse the mass of data, which limits their use to high-end vehicles and robots. INSPEX delivers a low-power, small-size and lightweight environment perception system that is compatible with portable and/or wearable applications. This requires miniaturizing and optimizing existing range sensors of different technologies to meet the user’s requirements in terms of obstacle detection capabilities. These sensors consist of a LiDAR, a time-of-flight sensor, an ultrasound and an ultra-wideband radar with measurement ranges respectively of 10 m, 4 m, 2 m and 10 m. Integration of a data fusion technique is also required to build a model of the user’s surroundings and provide feedback about the localization of harmful obstacles. As primary demonstrator, the INSPEX device will be fixed on a white cane.
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spelling pubmed-68062082019-11-07 INSPEX: Optimize Range Sensors for Environment Perception as a Portable System Foucault, Julie Lesecq, Suzanne Dudnik, Gabriela Correvon, Marc O’Keeffe, Rosemary Di Palma, Vincenza Passoni, Marco Quaglia, Fabio Ouvry, Laurent Buckley, Steven Herveg, Jean di Matteo, Andrea Rakotovao, Tiana Debicki, Olivier Mareau, Nicolas Barrett, John Rea, Susan McGibney, Alan Birot, François de Chaumont, Hugues Banach, Richard Razavi, Joseph Ó’Murchú, Cian Sensors (Basel) Article Environment perception is crucial for the safe navigation of vehicles and robots to detect obstacles in their surroundings. It is also of paramount interest for navigation of human beings in reduced visibility conditions. Obstacle avoidance systems typically combine multiple sensing technologies (i.e., LiDAR, radar, ultrasound and visual) to detect various types of obstacles under different lighting and weather conditions, with the drawbacks of a given technology being offset by others. These systems require powerful computational capability to fuse the mass of data, which limits their use to high-end vehicles and robots. INSPEX delivers a low-power, small-size and lightweight environment perception system that is compatible with portable and/or wearable applications. This requires miniaturizing and optimizing existing range sensors of different technologies to meet the user’s requirements in terms of obstacle detection capabilities. These sensors consist of a LiDAR, a time-of-flight sensor, an ultrasound and an ultra-wideband radar with measurement ranges respectively of 10 m, 4 m, 2 m and 10 m. Integration of a data fusion technique is also required to build a model of the user’s surroundings and provide feedback about the localization of harmful obstacles. As primary demonstrator, the INSPEX device will be fixed on a white cane. MDPI 2019-10-08 /pmc/articles/PMC6806208/ /pubmed/31597341 http://dx.doi.org/10.3390/s19194350 Text en © 2019 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 (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Foucault, Julie
Lesecq, Suzanne
Dudnik, Gabriela
Correvon, Marc
O’Keeffe, Rosemary
Di Palma, Vincenza
Passoni, Marco
Quaglia, Fabio
Ouvry, Laurent
Buckley, Steven
Herveg, Jean
di Matteo, Andrea
Rakotovao, Tiana
Debicki, Olivier
Mareau, Nicolas
Barrett, John
Rea, Susan
McGibney, Alan
Birot, François
de Chaumont, Hugues
Banach, Richard
Razavi, Joseph
Ó’Murchú, Cian
INSPEX: Optimize Range Sensors for Environment Perception as a Portable System
title INSPEX: Optimize Range Sensors for Environment Perception as a Portable System
title_full INSPEX: Optimize Range Sensors for Environment Perception as a Portable System
title_fullStr INSPEX: Optimize Range Sensors for Environment Perception as a Portable System
title_full_unstemmed INSPEX: Optimize Range Sensors for Environment Perception as a Portable System
title_short INSPEX: Optimize Range Sensors for Environment Perception as a Portable System
title_sort inspex: optimize range sensors for environment perception as a portable system
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6806208/
https://www.ncbi.nlm.nih.gov/pubmed/31597341
http://dx.doi.org/10.3390/s19194350
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