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Multi–Objective Layout Optimization for Airborne Wind Energy Farms
Simplified Optimal Path–Planning for Airborne Wind Energy Systems
A Discussion on Automatic Take-off and Landing Approaches for Airborne Wind Energy Systems
Development of a Fully Automated Airborne Wind Energy System at University of Porto
Automatic Circular Take–off and Landing of Self–Propelled Kites
Airborne Wind Energy Farm Layout and Optimization
Kite Path–following with L0 and L1 Controllers Tested on a Smallśscale Prototype
Model Predictive Path–Following Control of Airborne Wind Energy Systems with Guaranteed Stability
Ground Station Control of an Airborne Wind Energy System in a Complete Operational Cycle
Heading Angle Control for Path–following Guidance with Large Domain of Attraction of a Pumping Kite Generator
Guaranteed Collision Avoidance in Multi–Kite Power Systems
Mesh-Refinement Strategies for Fast Optimal Control and Model Predictive Control of Kite Power Systems
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