Modeling of an airborne wind energy system with a flexible tether model for the optimization of landing trajectories * *Support by the EU via ERC-HIGHWIND (259 166), ITN-TEMPO (607 957), and ITN-AWESCO (642 682) and by DFG in context of the Research Unit FOR 2401.

Author:

Koenemann Jonas,Williams Paul,Sieberling Soeren,Diehl Moritz

Publisher

Elsevier BV

Subject

Control and Systems Engineering

Reference18 articles.

1. Ahrens, U., Diehl, M., and Schmehl, R. (2013). Airborne wind energy. Springer Science & Business Media. Andersson, J. (2013). A General-Purpose Software Framework for Dynamic Optimization. PhD thesis, Arenberg Doctoral School, KU Leuven, Department of Electrical Engineering (ESAT/SCD) and Optimization in Engineering Center, Kasteelpark Arenberg 10, 3001- Heverlee, Belgium.

2. An overview of simultaneous strategies for dynamic optimization;Biegler;Chemical Engineering and Processing: Process Intensification,2007

3. Erhard, M., Horn, G., and Diehl, M. (2016). A quaternion-based model for optimal control of an airborne wind energy system. ZAMM-Journal of Applied Mathematics and Mechanics/Zeitschrift für Angewandte Mathematik und Mechanik.

4. Optimization of airborne wind energy generators;Fagiano;International Journal of robust and nonlinear control,2012

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