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3D Path-Following Guidance via Nonlinear Model Predictive Control for Fixed-Wing Small UAS

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This paper presents the design, implementation, and flight test results of two novel 3D path-following guidance algorithms based on nonlinear model predictive control (MPC), with specific application to fixed-wing small uncrewed aircraft systems. To enable MPC, control-augmented modelling and system identification of the RAAVEN small uncrewed aircraft is presented. Two formulations of MPC are then showcased. The first schedules a static reference path rate over the MPC horizon, incentivizing a constant inertial speed. The second, with inspiration from model predictive contouring control, dynamically optimizes for the reference path rate over the controller horizon as the system operates. This allows for a weighted tradeoff between path progression and distance from path, two competing objectives in path-following guidance. Both controllers are formulated to operate over general smooth 3D arc-length parameterized curves. The MPC guidance algorithms are flown over several high-curvature test paths, with comparison to a baseline lookahead guidance law. The results showcase the real-world feasibility and superior performance of nonlinear MPC for 3D path-following guidance at ground speeds up to 36 meters per second.

Camron Alexander Hirst, Chris Reale, Eric Frew• 2025

Related benchmarks

TaskDatasetResultRank
Path-followingPath 1
Path Following Error (Mean) [m]1.077
3
Path-followingPath 2
Path Following Error (Mean)6.372
3
Path-followingPath 3
Path Following Error (Mean) [m]2.553
3
Path-followingPath 4
Path Following Error (Mean) [m]1.964
3
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