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UAV Software Development Handbook: Master Flight Controllers, Navigation Algorithms, Sensor Integration, and Mission Planning: 1 (UVA Engineering) - Softcover

Eltham, Benjamin

 
9798192804186: UAV Software Development Handbook: Master Flight Controllers, Navigation Algorithms, Sensor Integration, and Mission Planning: 1 (UVA Engineering)

Inhaltsangabe


UAV Software Development Handbook

What happens between the moment a drone’s motors spin up and the moment it maintains a stable hover in gusty wind? How does a fixed-wing aircraft navigate hundreds of kilometers, execute an autonomous mission, and land with precision without continuous human control?

UAV Software Development Handbook is a practical guide to the software systems that make autonomous flight possible. Designed for engineers, students, and self-taught developers, this book takes you beyond introductory tutorials and into the architecture, algorithms, and engineering practices behind modern UAV flight systems.

You will explore how flight-controller firmware is structured, how real-time operating systems schedule critical control loops, and why precise timing is essential to reliable flight. The book also examines sensor fusion and state estimation, including Kalman filtering techniques for combining accelerometer, gyroscope, and GNSS data into reliable estimates of an aircraft’s position, velocity, and attitude.

Key topics include:

  • Flight dynamics and control, including PID tuning and cascaded attitude and position controllers
  • Navigation algorithms, GNSS integration, dead reckoning, and visual-inertial odometry
  • Path planning and obstacle avoidance using methods such as A* and RRT
  • Trajectory generation and autonomous mission planning
  • Geofencing and automated mission-safety checks
  • Companion computers, computer vision, and onboard AI inference
  • Communication protocols, telemetry, ground-station integration, and fleet coordination
  • Safety-critical software engineering, redundancy, fault handling, and aerospace standards
  • UAV cybersecurity, including secure command links and defenses against navigation-related attacks

Throughout the book, concepts are connected to practical development workflows and illustrated with code examples in C, C++, and Python. Rather than presenting isolated theories or disconnected techniques, it shows how the different layers of a UAV software stack work together—from low-level flight-control firmware to high-level mission and fleet-management systems.

Whether you are developing a fixed-wing aircraft, building an autonomous multirotor, integrating a precision-agriculture payload, or studying the architecture of long-range autonomous systems, this handbook provides a structured foundation for understanding the software behind modern UAVs.

A background in programming is recommended, but an aerospace engineering degree is not required. If you want to understand how autonomous aircraft sense, calculate, communicate, navigate, and make decisions, UAV Software Development Handbook provides a practical path from core concepts to complete UAV software architecture.

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