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Autonomy and Unmanned Vehicles - Augmented Reactive Mission and Motion Planning Architecture (Hardcover, 1st ed. 2019):... Autonomy and Unmanned Vehicles - Augmented Reactive Mission and Motion Planning Architecture (Hardcover, 1st ed. 2019)
Somaiyeh MahmoudZadeh, David M. W Powers, Reza Bairam Zadeh
R3,721 Discovery Miles 37 210 Ships in 10 - 15 working days

This book addresses higher-lower level decision autonomy for autonomous vehicles, and discusses the addition of a novel architecture to cover both levels. The proposed framework's performance and stability are subsequently investigated by employing different meta-heuristic algorithms. The performance of the proposed architecture is shown to be largely independent of the algorithms employed; the use of diverse algorithms (subjected to the real-time performance of the algorithm) does not negatively affect the system's real-time performance. By analyzing the simulation results, the book demonstrates that the proposed model provides perfect mission timing and task management, while also guaranteeing secure deployment. Although mainly intended as a research work, the book's review chapters and the new approaches developed here are also suitable for use in courses for advanced undergraduate or graduate students.

Autonomy and Unmanned Vehicles - Augmented Reactive Mission and Motion Planning Architecture (Paperback, Softcover reprint of... Autonomy and Unmanned Vehicles - Augmented Reactive Mission and Motion Planning Architecture (Paperback, Softcover reprint of the original 1st ed. 2019)
Somaiyeh MahmoudZadeh, David M. W Powers, Reza Bairam Zadeh
R2,703 Discovery Miles 27 030 Ships in 10 - 15 working days

This book addresses higher-lower level decision autonomy for autonomous vehicles, and discusses the addition of a novel architecture to cover both levels. The proposed framework's performance and stability are subsequently investigated by employing different meta-heuristic algorithms. The performance of the proposed architecture is shown to be largely independent of the algorithms employed; the use of diverse algorithms (subjected to the real-time performance of the algorithm) does not negatively affect the system's real-time performance. By analyzing the simulation results, the book demonstrates that the proposed model provides perfect mission timing and task management, while also guaranteeing secure deployment. Although mainly intended as a research work, the book's review chapters and the new approaches developed here are also suitable for use in courses for advanced undergraduate or graduate students.

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