Optimization of 3-D flight trajectory of variable trim kites for airborne wind energy production

Fuente: arXiv
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Autori principali: Noga, Rafal, Paulig, Xaver, Schmidt, Lukas, Karg, Benjamin, Quack, Manfred, Soliman, Mahmoud
Natura: Preprint
Pubblicazione: 2024
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author Noga, Rafal
Paulig, Xaver
Schmidt, Lukas
Karg, Benjamin
Quack, Manfred
Soliman, Mahmoud
author_facet Noga, Rafal
Paulig, Xaver
Schmidt, Lukas
Karg, Benjamin
Quack, Manfred
Soliman, Mahmoud
contents Skysails Power GmbH is the leading manufacturer of light and efficient power kites that harness the wind's untapped supplies at high altitudes, aiming at profoundly altering wind energy's impact in achieving the global energy transition. Novel, variable trim kites have been developed that allow to modulate the aerodynamic coefficients of the airborne system, significantly improving the overall system efficiency. The flight control of variable trim kites is much more complex than that of previous kite generations and its mastering is a challenge and one of the keys to a successful operation. Numerical optimization is applied to find a set of flight trajectories in order to maximize the energy production while satisfying several constraints on the system operating in a wide range of conditions. This industry abstract provides a general introduction of the trajectory optimization problem with variable trim kites. We also briefly introduce the state-of-the-art optimization setup. This is followed by demonstration of high-quality example results of the optimization. Finally, we discuss the results and their applications.
format Preprint
id arxiv_https___arxiv_org_abs_2403_00382
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Optimization of 3-D flight trajectory of variable trim kites for airborne wind energy production
Noga, Rafal
Paulig, Xaver
Schmidt, Lukas
Karg, Benjamin
Quack, Manfred
Soliman, Mahmoud
Optimization and Control
Skysails Power GmbH is the leading manufacturer of light and efficient power kites that harness the wind's untapped supplies at high altitudes, aiming at profoundly altering wind energy's impact in achieving the global energy transition. Novel, variable trim kites have been developed that allow to modulate the aerodynamic coefficients of the airborne system, significantly improving the overall system efficiency. The flight control of variable trim kites is much more complex than that of previous kite generations and its mastering is a challenge and one of the keys to a successful operation. Numerical optimization is applied to find a set of flight trajectories in order to maximize the energy production while satisfying several constraints on the system operating in a wide range of conditions. This industry abstract provides a general introduction of the trajectory optimization problem with variable trim kites. We also briefly introduce the state-of-the-art optimization setup. This is followed by demonstration of high-quality example results of the optimization. Finally, we discuss the results and their applications.
title Optimization of 3-D flight trajectory of variable trim kites for airborne wind energy production
topic Optimization and Control
url https://arxiv.org/abs/2403.00382