
Overview
- Highlights innovative perspectives on real-time decision making for autonomous vehicles in critical situations
- Details operational diagrams and schematics of the framework’s various components using tables, figures, and flowcharts
- Discusses how a high-level decision maker and a local low-level action generator can simultaneously plan and carry out a mission while allowing for dynamic maneuvering in a cluttered and uncertain environment
Part of the book series: Cognitive Science and Technology (CSAT)
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Keywords
- Autonomous mission planning
- Decision making/autonomy
- Situational awareness
- Motion/path planning
- Meta-heuristics evolutionary algorithms
- Vehicle routing
- Ant Colony Optimisation (ACO)
- Biogeography-Based Optimisation (BBO)
- Firefly Optimization Algorithm (FOA)
- Imperialist Competitive Algorithm (ICA)
- Particle Swarm Optimization (PSO)
- Autonomous Underwater Vehicles (AUV)
- Operational ocean environment
Table of contents (7 chapters)
Authors and Affiliations
About the authors
Somaiyeh MahmoudZadeh completed PhD at the School of Computer Science, Engineering and Mathematics, Flinders University, Australia. She is acting as a postdoctoral research fellow in faculty of Information Technology at Monash University. Her area of research includes computational intelligence, autonomy and decision making, situational awareness, and motion planning of autonomous underwater vehicles.
Prof. David M W Powers is Professor of Computer Science and Director of the Centre for Knowledge and Interaction Technology and has research interests in the area of Artificial Intelligence and Cognitive Science. His specific research framework takes Language, Logic and Learning as the cornerstones for a broad Cognitive Science perspective on Artificial Intelligence and its practical applications. Prof. Powers is known as a pioneer in the area of Parallel Logic Programming, Natural Language Learning, Unsupervised Learning and Evaluation of Learning, and wasFounding President of ACL SIGNLL, as well as initiating the CoNLL conference. His CV includes positions at Telecom Paris, University of Tilburg, University of Kaiserslautern, Macquarie University, as well as work with industry, and commercialization of research through several startup companies. Prof. Powers also serves on several programming committees and editorial boards and is Series Editor for the Springer book series on Cognitive Science and Technology.
Reza Bairam Zadeh has been graduated of Electronics Engineering in 2011 at University of Yamagata, Japan. He is experienced in Engine ECU technical coordination, electronic hardware programming, digital circuits designing, designing and testing heavy duty vehicles’ Electronic Control Units (Engine ECU). His main research interests focus on robotics, smart structures, sensor data fusion and optimization, and intelligent control applications.
Bibliographic Information
Book Title: Autonomy and Unmanned Vehicles
Book Subtitle: Augmented Reactive Mission and Motion Planning Architecture
Authors: Somaiyeh MahmoudZadeh, David M.W. Powers, Reza Bairam Zadeh
Series Title: Cognitive Science and Technology
DOI: https://doi.org/10.1007/978-981-13-2245-7
Publisher: Springer Singapore
eBook Packages: Intelligent Technologies and Robotics, Intelligent Technologies and Robotics (R0)
Copyright Information: Springer Nature Singapore Pte Ltd. 2019
Hardcover ISBN: 978-981-13-2244-0Published: 16 August 2018
Softcover ISBN: 978-981-13-4755-9Published: 29 December 2018
eBook ISBN: 978-981-13-2245-7Published: 06 August 2018
Series ISSN: 2195-3988
Series E-ISSN: 2195-3996
Edition Number: 1
Number of Pages: XIV, 107
Number of Illustrations: 4 b/w illustrations, 32 illustrations in colour
Topics: Computational Intelligence, Optimization, Artificial Intelligence, Operations Research/Decision Theory, Control, Robotics, Mechatronics, Computer Imaging, Vision, Pattern Recognition and Graphics