| Management number | 237218523 | Release Date | 2026/07/10 | List Price | US$5.95 | Model Number | 237218523 | ||
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The age of the remotely piloted drone is ending. In its place is rising an aerial machine that perceives its environment, reasons about its mission, coordinates with hundreds of peers, and makes thousands of decisions per second — no human required. Autonomous Skies is the complete engineering guide to building that machine.Twenty chapters of rigorous, mathematically grounded, practically oriented technical content cover every layer of the autonomous drone stack — from the physics of a rotor in hover to the mathematics of a thousand-drone mean-field game.WHAT YOU WILL LEARN:Master the full autonomous drone software stack — from 400 Hz PID flight controllers and Extended Kalman Filter navigation to LLM mission planners and behaviour tree decision systemsImplement state-of-the-art aerial perception using YOLOv8, thermal-RGB sensor fusion, multi-object tracking, and real-time inference on Jetson Orin NX edge hardwareTrain drone navigation policies with Proximal Policy Optimization, design reward functions that generalize, and bridge the sim-to-real gap with domain randomizationDeploy foundation models onboard — CLIP, Grounding DINO, RT-2, and quantized LLMs for natural language drone mission planningEngineer multi-drone swarms using Reynolds flocking, consensus algorithms, mean-field game theory for large-scale airspace management, and federated learning across aerial mesh networksBuild complete GPS-denied navigation pipelines — visual odometry, EKF-SLAM, optical flow, and terrain-relative navigation in tunnels and urban canyonsApply autonomous drones to precision agriculture, infrastructure inspection, search and rescue, smart city monitoring, ISR, and counter-drone systemsNavigate the regulatory landscape — FAA Part 107, BVLOS frameworks, EASA U-Space, and the full open source stack from PX4 to ROS2WHO THIS BOOK IS FOR:Final-year undergraduate and graduate students in computer science, electrical engineering, mechanical engineering, and robotics. Academic researchers and PhD candidates working on aerial robotics, multi-agent systems, or embodied AI who need a unified mathematical reference spanning control theory, perception, and swarm intelligence. AI and ML engineers transitioning to physical aerial platforms. Drone startup founders who need engineering depth. Defense technology practitioners studying autonomous swarm systems. Robotics educators and lab leads building curricula or research programmes around autonomous aerial systems.Prerequisites: linear algebra, introductory calculus, basic Python. No prior drone or robotics experience required.This is not a hobbyist guide and not a flight manual. It is a rigorous engineering textbook for readers who need to understand and build autonomous drone systems at a professional level. Read more
| ASIN | B0H5FS9QTD |
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| ISBN13 | 979-8181756038 |
| Language | English |
| Publisher | Independently published |
| Dimensions | 6 x 0.57 x 9 inches |
| Item Weight | 15.8 ounces |
| Print length | 253 pages |
| Publication date | June 15, 2026 |
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