Quadrotor Flight Simulation in a CFD-generated Urban Wind Field

Nicholas Kakavitsas, Andrew Willis, Ryan Jacobik, Mesbah Uddin,Artur Wolek

2024 IEEE Aerospace Conference(2024)

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摘要
This paper presents a software pipeline that enables simulating a quadrotor’s flight in realistic urban wind fields where complex wind phenomena are common and have significant impact on vehicle dynamics. The pipeline integrates the OpenStreetMap database for obtaining real-world building geometry, the OpenFOAM computational fluid dynamics (CFD) solver for computing a three-dimensional, steady, wind field, the Gazebo robotics simulation environment, and the PX4 software-in-the-loop autopilot. A 3D wind plugin is developed to interpolate a pre-computed CFD wind field at runtime during the simulation. The approach is demonstrated by comparing the flight performance of a quadrotor flying over a university campus environment with and without the wind field.
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关键词
Wind Field,Flight Simulator,Urban Wind,Interpolation,Simulation Environment,OpenStreetMap,Vehicle Dynamics,Software Pipeline,Building Geometry,Scope Of This Paper,Urban Environments,Autonomous Vehicles,Vector Field,Path Planning,Geometric Model,Tilt Angle,3D Mesh,First-hand Experience,Turbulence Model,Software Architecture,Wind Velocity,Magnitude Of Acceleration,Reduced-order Model,Wind Patterns,Reynolds-averaged Navier–Stokes,Simulated Intensity,Flight Path,Software Framework
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