Search and Rescue Robotics - From Theory to Practice

Geert De Cubber, Daniela Doroftei, Konrad Rudin, Karsten Berns, Anibal Matos, Daniel Serrano, Jose Manuel Sanchez, Shashank Govindaraj, Janusz Bedkowski, Rui Roda, Eduardo Silva, Stephane Ourevitch, Rene Wagemans, Victor Lobo, Guerreiro Cardoso, Keshav Chintamani, Jeremi Gancet, Pascal Stupler, Atabak Nezhadfard, Massimo TosaHaris Balta, Jose Almeida, Alfredo Martins, Hugo Ferreira, Bruno Ferreira, Jose Alves, Andre Dias, Stefano Fioravanti, Daniele Bertin, German Moreno, Jose Cordero, Mario Monteiro Marques, Alberto Grati, Hafeez M. Chaudhary, Bart Sheers, Yudani Riobo, Pierre Letier, Mario Nunez Jimenez, Miguel Angel Esbri, Pawel Musialik, Irune Badiola, Ricardo Goncalves, Antonio Coelho, Thomas Pfister, Karol Majek, Michal Pelka, Andrzej Maslowski, Ricardo Baptista, Geert De Cubber (Editeur), Daniela Doroftei (Editeur)

Résultats de recherche: Livre/rapportLivreRevue par des pairs

Résumé

In the event of large crises (earthquakes, typhoons, floods, ...), a primordial task of the fire and rescue services is the search for human survivors on the incident site. This is a complex and dangerous task, which - too often - leads to loss of lives among the human crisis managers themselves. This book explains how unmanned search can be added to the toolkit of the search and rescue workers, offering a valuable tool to save human lives and to speed up the search and rescue process. The introduction of robotic tools in the world of search and rescue is not straightforward, due to the fact that the search and rescue context is extremely technology-unfriendly, meaning that very robust solutions, which can be deployed extremely quickly, are required. Multiple research projects across the world are tackling this problem and in this book, a special focus is placed on showcasing the results of the European Union ICARUS project on this subject. The ICARUS project proposes to equip first responders with a comprehensive and integrated set of unmanned search and rescue tools, to increase the situational awareness of human crisis managers, so that more work can be done in a shorter amount of time. The ICARUS tools consist of assistive unmanned air, ground, and sea vehicles, equipped with victim-detection sensors. The unmanned vehicles collaborate as a coordinated team, communicating via ad hoc cognitive radio networking. To ensure optimal human-robot collaboration, these tools are seamlessly integrated into the command and control equipment of the human crisis managers and a set of training and support tools is provided to them in order to learn to use the ICARUS system.
langue originaleAnglais
EditeurInTech
Les DOIs
étatPublié - 1 août 2017

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