Time-Critical Cooperative Control of Autonomous Air Vehicles presents, in an easy-to-read style, the latest research conducted in the industry, while also introducing a set of novel ideas that illuminate a new approach to problem-solving. The book is virtually self-contained, giving the reader a complete, integrated presentation of the different concepts, mathematical tools, and control solutions needed to tackle and solve a number of problems concerning time-critical cooperative control of UAVs. By including case studies of fixed-wing and multirotor UAVs, the book effectively broadens the scope of application of the methodologies developed. This theoretical presentation is complemented with the results of flight tests with real UAVs, and is an ideal reference for researchers and practitioners from academia, research labs, commercial companies, government workers, and those in the international aerospace industry.
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He is member of the Institute of Electrical and Electronic Engineers, American Institute of Aeronautics and Astronautics and Panel Member of the NATO Research Technology Organization, SCI-023 on Unmanned Combat Air Vehicles. He won the NASA Certificate of Recognition for the Creative Development of a Technical Innovation, October 1991; the 1994 NATO Fellowship for Scientific and Technological Exchange, the 1994 Excellence in Research Award, Naval Postgraduate School, the 1995 ASEE/NASA Summer Faculty Fellowship, the 1995 NATO Fellowship for Scientific and Technological Exchange, the 1999 AIAA Outstanding Service Award, the 1999 NPS Menneken Annual Faculty Award for Excellence in Scientific Research.
He graduated as an engineer at the DEE of IST and received the M.Sc. and PhD degrees by the Electrical Engineering in 1985 and by the Control Science Departments of the University of Minnesota, Minneapolis, MN, USA, respectively.
He has been editor of 2 books, 4 book chapters, 40 Journal and ca 200 conference articles, all in major rigoursly peer reviewed venues. He is a frequent invited and plenary speaker in major scientific meetings on control and robotics.
He has led dozens of major research projects in marine robotics funded by several EU programs, and other international programs (FCT, AdI) , among which the folllowing FREESUBNET, GREX, CO-3AUVs, FREESUB, VENUS, EXOCET/D, MAYASub, MAROV, SADOGEOROB, CARAVELA, ASIMOV, can be singled out.
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Taschenbuch. Zustand: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Time-Critical Cooperative Control of Autonomous Air Vehicles presents, in an easy-to-read style, the latest research conducted in the industry, while also introducing a set of novel ideas that illuminate a new approach to problem-solving. The book is virtually self-contained, giving the reader a complete, integrated presentation of the different concepts, mathematical tools, and control solutions needed to tackle and solve a number of problems concerning time-critical cooperative control of UAVs. By including case studies of fixed-wing and multirotor UAVs, the book effectively broadens the scope of application of the methodologies developed. This theoretical presentation is complemented with the results of flight tests with real UAVs, and is an ideal reference for researchers and practitioners from academia, research labs, commercial companies, government workers, and those in the international aerospace industry. 270 pp. Englisch. Bestandsnummer des Verkäufers 9780128099469
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Taschenbuch. Zustand: Neu. Time-Critical Cooperative Control of Autonomous Air Vehicles | Isaac Kaminer (u. a.) | Taschenbuch | Englisch | 2017 | Elsevier Science | EAN 9780128099469 | Verantwortliche Person für die EU: Zeitfracht Medien GmbH, Ferdinand-Jühlke-Str. 7, 99095 Erfurt, produktsicherheit[at]zeitfracht[dot]de | Anbieter: preigu. Bestandsnummer des Verkäufers 126702596
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