Aircraft Flight Path Trajectory
Aircraft flight path simulation in three-dimensional space, demonstrating various motion states including straight flight, climbing, turning, diving maneuvers, with MATLAB/Simulink implementation examples
Explore MATLAB source code curated for "飞行器" with clean implementations, documentation, and examples.
Aircraft flight path simulation in three-dimensional space, demonstrating various motion states including straight flight, climbing, turning, diving maneuvers, with MATLAB/Simulink implementation examples
Comprehensive 6-DoF aircraft modeling, trimming, and linearization using MATLAB programs with detailed algorithm explanations and code implementation approaches
Excellent aircraft dynamics models that demonstrate key implementation approaches with code-related descriptions for technical audiences
Aircraft wing unsteady aerodynamics computation and flutter analysis program featuring advanced numerical methods and structural dynamics simulations.
Aircraft orbit simulation model developed with reference to standard flight vehicle textbooks, complete with code implementation framework
Implementation Framework for an Aircraft Inertial Navigation Control System Design and Simulation Platform with Model-Based Development Support
Trajectory planning for aircraft is a key technology in achieving autonomous navigation, representing an important research direction in artificial intelligence and guidance/navigation fields. This provides a systematic and in-depth introduction to the concepts, theories, and methods of unmanned aerial vehicle trajectory planning, with code implementation insights.
A MATLAB source program designed for analyzing aircraft behavior under high angle of attack conditions, featuring aerodynamic modeling and flight parameter simulation capabilities - particularly useful for aerospace engineering professionals working on advanced aircraft design.