DocumentCode :
1028
Title :
Model-Based Plant Design and Hierarchical Control of a Prototype Lighter-Than-Air Wind Energy System, With Experimental Flight Test Results
Author :
Vermillion, C. ; Grunnagle, T. ; Lim, Robert ; Kolmanovsky, Ilya
Author_Institution :
Altaeros Energies, Boston, MA, USA
Volume :
22
Issue :
2
fYear :
2014
fDate :
Mar-14
Firstpage :
531
Lastpage :
542
Abstract :
This paper presents the modeling, control system design, and experimental results for a prototype lighter-than-air wind energy system being pioneered by Altaeros Energies. This unique design features a horizontal-axis turbine that is elevated to high altitudes through a buoyant shroud, which is tethered to a ground-based platform. The system´s altitude can be adjusted to maximize power production, and because the system is both functional and economical in a stationary position, it circumvents many of the controls challenges faced by kite-based wind energy systems. However, the need for generation of energy introduces pointing, efficiency, and autonomy requirements, which are not faced by conventional aerostats, thereby requiring a careful model-based control design. In this paper, we provide a dynamic model of the Altaeros system, then show how this model is leveraged in the plant design and in the design of the control system, which provides full autonomy, from takeoff, through power production, to autonomous landing. We provide simulation and experimental results that demonstrate the performance of the prototype and point to important areas where Altaeros will focus its efforts moving forward.
Keywords :
control system synthesis; power generation control; wind power plants; Altaeros energies; autonomous landing; autonomy requirements; buoyant shroud; control system design; dynamic model; efficiency requirements; ground-based platform; hierarchical control; horizontal-axis turbine; kite-based wind energy systems; model-based plant design; pointing requirements; power production; prototype lighter-than-air wind energy system; stationary position; Aerospace; energy systems; predictive control;
fLanguage :
English
Journal_Title :
Control Systems Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
1063-6536
Type :
jour
DOI :
10.1109/TCST.2013.2263505
Filename :
6544225
Link To Document :
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