Airborne Wind Energy refers to systems capable of harvesting energy from the wind by flying crosswind patterns with a tethered aircraft. Tuning and validation of flight controllers for AWE systems depends on the availability of reasonable a priori models. In this paper, aerodynamic coefficients are estimated from data gathered from flight test campaign using an efficient multiple experiments model based parameter estimation algorithm. Data fitting is performed using mathematical models based on full six degree of freedom aircraft equations of motion. Several theoretical and practical aspects as well as limitations are highlighted. Finally, both model selection and estimation results are assessed by means of R-squared value and confidence el...
The least squares method has been applied to estimate parameters inan aerodynamic model of a simulat...
An aerodynamic model of a 4.6% scaled version of the Flying-V is estimatedusing flight data gathered...
The power equations of crosswind Ground-Gen and Fly-Gen airborne wind energy systems (AWESs) flying ...
Airborne Wind Energy (AWE) is a promising new technology, and attracts a growing academic and indust...
The aerodynamic model of an aircraft can be considered as a mathematical representation of the force...
The aerodynamic model of an aircraft can be considered as a mathematical representation of the force...
Global climate change as well as water and air pollution lead to a demand for a sustainable energy s...
Airborne Wind Energy (AWE) systems use tethered flying devices to access higher altitudes, typically...
International audienceAirborne Wind Energy systems (AWE) represent a promising solution to environme...
International audienceAirborne Wind Energy systems (AWE) represent a promising solution to environme...
Publisher Copyright: © 2022 The Author(s). Published by Informa UK Limited, trading as Taylor & Fran...
The aerodynamic model identification of a novel aircraft configuration known as the “Flying V” is pr...
This paper explores the difficulties of aircraft system identification, specifically parameter estim...
During the development of an aerodynamic analysis tool to predict non-linear lift and drag coefficie...
This paper presents a method for the estimation of thrust model parameters of uninhabited airborne s...
The least squares method has been applied to estimate parameters inan aerodynamic model of a simulat...
An aerodynamic model of a 4.6% scaled version of the Flying-V is estimatedusing flight data gathered...
The power equations of crosswind Ground-Gen and Fly-Gen airborne wind energy systems (AWESs) flying ...
Airborne Wind Energy (AWE) is a promising new technology, and attracts a growing academic and indust...
The aerodynamic model of an aircraft can be considered as a mathematical representation of the force...
The aerodynamic model of an aircraft can be considered as a mathematical representation of the force...
Global climate change as well as water and air pollution lead to a demand for a sustainable energy s...
Airborne Wind Energy (AWE) systems use tethered flying devices to access higher altitudes, typically...
International audienceAirborne Wind Energy systems (AWE) represent a promising solution to environme...
International audienceAirborne Wind Energy systems (AWE) represent a promising solution to environme...
Publisher Copyright: © 2022 The Author(s). Published by Informa UK Limited, trading as Taylor & Fran...
The aerodynamic model identification of a novel aircraft configuration known as the “Flying V” is pr...
This paper explores the difficulties of aircraft system identification, specifically parameter estim...
During the development of an aerodynamic analysis tool to predict non-linear lift and drag coefficie...
This paper presents a method for the estimation of thrust model parameters of uninhabited airborne s...
The least squares method has been applied to estimate parameters inan aerodynamic model of a simulat...
An aerodynamic model of a 4.6% scaled version of the Flying-V is estimatedusing flight data gathered...
The power equations of crosswind Ground-Gen and Fly-Gen airborne wind energy systems (AWESs) flying ...