This invention relates to the field of unmanned aerial vehicle (UAV) inspection technology, specifically to an
augmented reality-based UAV inspection platform and method for airport airspace. The platform comprises interconnected
server modules, a GIS engine module, a UAV module, a flight control and interaction module, a
data interface module, a
business management module, and a UAV
application module. By utilizing
augmented reality technology to provide intuitive information
overlay and precise guidance for UAV inspections, it achieves efficient and comprehensive inspection of airport airspace and possesses the ability to proactively
handle intrusion targets such as unauthorized UAVs. This effectively solves the problems of low efficiency and incomplete coverage in traditional manual inspections, insufficient accuracy and poor real-time performance of
remote sensing monitoring methods, high costs of long-term periodic updates, and passive defense against intrusion targets such as unauthorized UAVs.