Visual Tracking Nonlinear Model Predictive Control Method for Autonomous Wind Turbine Inspection

2023 21ST INTERNATIONAL CONFERENCE ON ADVANCED ROBOTICS, ICAR(2023)

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摘要
Automated visual inspection of on-and offshorewind turbines using aerial robots provides several benefits, namely, a safe working environment by circumventing the need for workers to be suspended high above the ground, reduced inspection time, preventive maintenance, and access to hardto-reach areas. A novel nonlinear model predictive control (NMPC) framework alongside a global wind turbine path planner is proposed to achieve distance-optimal coverage for wind turbine inspection. Unlike traditional MPC formulations, visual tracking NMPC (VT-NMPC) is designed to track an inspection surface, instead of a position and heading trajectory, thereby circumventing the need to provide an accurate predefined trajectory for the drone. An additional capability of the proposed VT-NMPC method is that by incorporating inspection requirements as visual tracking costs to minimize, it naturally achieves the inspection task successfully while respecting the physical constraints of the drone. Multiple simulation runs and real-world tests demonstrate the efficiency and efficacy of the proposed automated inspection framework, which outperforms the traditional MPC designs, by providing full coverage of the target wind turbine blades as well as its robustness to changing wind conditions. The implementation codes1 are open-sourced.
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关键词
Control Method,Nonlinear Model,Wind Turbine,Model Predictive Control,Nonlinear Control,Nonlinear Model Predictive Control,Predictive Control Method,Nonlinear Control Method,Path Planning,Turbine Blades,Offshore Wind Farms,Wind Turbine Blades,Optimization Problem,Weight Matrix,Definite Matrix,Viewing Angle,Dot Product,Real-world Experiments,Global Trajectory,Triangular Mesh,Blade Surface,Angular Speed,Traveling Salesman Problem,Quality Inspection,Body Frame,Mesh Generation,Stage Cost,Vision-based Methods
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