To achieve a high conversion efficiency and at the same time robust control of a pumping kite power system it is crucial to optimize the three-dimensional flight path of the tethered wing. This chapter extends a dynamic system model to account for a realistic, turbulent wind environment and adds a flight path planner using a sequence of attractor points and turn actions. Path coordinates are calculated with explicit geometric formulas. To optimize the power output the path is adapted to the average wind speed and the vertical wind profile, using a small set of parameters. The planner employs a finite state machine with switch conditions that are highly robust towards sensor errors. The results indicate, that the decline of the average power...
Airborne wind energy (AWE) is a novel technology that aims at accessing wind resources at higher alt...
The contribution of this article is to propose and experimentally validate an optimizing control str...
Tethered-wing power systems are a viable possibility for collecting energy from stronger, more consi...
To achieve a high conversion efficiency and at the same time robust control of a pumping kite power ...
Airborne wind energy is a new research field that aims to harvest winds at high altitudes. The pumpi...
In this paper, we applied a system identification algorithm and an adaptive controller to a simple k...
The traction power of kites can be used for wind energy conversion at a potentially low cost. Crucia...
Pumping airborne wind energy (AWE) systems employ a kite to convert wind energy into electricity, th...
A compact flight dynamics model of a kite is developed by using Lagrangian formulation. The lengths ...
In crosswind Airborne Wind Energy Systems (AWES) the kite must portray an optimized periodical motio...
Tethered kite technology promises the enable the efficient extraction of energy from high altitude w...
In this paper, we address the generation of electrical power using Airborne Wind Energy Systems, com...
Non-powered flight vehicles such as kites can provide a means of transmitting wind energy from highe...
International audienceThis paper presents a wind power system based on a kite attached with a rope t...
The implementation of a path controller to a two-line kite model is presented. Within the first cha...
Airborne wind energy (AWE) is a novel technology that aims at accessing wind resources at higher alt...
The contribution of this article is to propose and experimentally validate an optimizing control str...
Tethered-wing power systems are a viable possibility for collecting energy from stronger, more consi...
To achieve a high conversion efficiency and at the same time robust control of a pumping kite power ...
Airborne wind energy is a new research field that aims to harvest winds at high altitudes. The pumpi...
In this paper, we applied a system identification algorithm and an adaptive controller to a simple k...
The traction power of kites can be used for wind energy conversion at a potentially low cost. Crucia...
Pumping airborne wind energy (AWE) systems employ a kite to convert wind energy into electricity, th...
A compact flight dynamics model of a kite is developed by using Lagrangian formulation. The lengths ...
In crosswind Airborne Wind Energy Systems (AWES) the kite must portray an optimized periodical motio...
Tethered kite technology promises the enable the efficient extraction of energy from high altitude w...
In this paper, we address the generation of electrical power using Airborne Wind Energy Systems, com...
Non-powered flight vehicles such as kites can provide a means of transmitting wind energy from highe...
International audienceThis paper presents a wind power system based on a kite attached with a rope t...
The implementation of a path controller to a two-line kite model is presented. Within the first cha...
Airborne wind energy (AWE) is a novel technology that aims at accessing wind resources at higher alt...
The contribution of this article is to propose and experimentally validate an optimizing control str...
Tethered-wing power systems are a viable possibility for collecting energy from stronger, more consi...