DocumentCode :
3125919
Title :
A nonlinear controller design for embedded electrical networks
Author :
Georges, Didier ; Besançon, Gildas ; Ferrand, Nicolas ; Retiere, Nicolas
Author_Institution :
Laboratoire d´´Automatique de Grenoble, INP Grenoble-CNRS-UJF, BP 46, 38402 Saint Martin d´´Heres cedex, France, didier.georges@inpg.fr
fYear :
2005
fDate :
12-15 Dec. 2005
Firstpage :
6788
Lastpage :
6793
Abstract :
This paper is devoted to the design of a nonlinear controller well suited for the voltage regulation of embedded AC electrical networks, such as plane or ship power systems. The approach may also be applied without fundamental restriction to high voltage or distribution power networks. The here-proposed approach relies on the nonlinear differential-algebraic dynamics of an aggregated electrical network based on the one-axis model. The design is based on a linearization technique of this nonlinear differential-algebraic system coupled to a state estimator which reconstructs the full state vector of the network from easily measurable variables (voltages at network nodes). Simulations on the aggregated network demonstrate the effectiveness of the approach. Application of this approach to large-scale electrical networks is also discussed.
Keywords :
differential nonlinear inversion; electrical networks; nonlinear control design; nonlinear differential-algebraic systems; Control systems; Couplings; Linearization techniques; Marine vehicles; Nonlinear control systems; Nonlinear dynamical systems; Power system dynamics; Power system modeling; State estimation; Voltage control; differential nonlinear inversion; electrical networks; nonlinear control design; nonlinear differential-algebraic systems;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Decision and Control, 2005 and 2005 European Control Conference. CDC-ECC '05. 44th IEEE Conference on
Print_ISBN :
0-7803-9567-0
Type :
conf
DOI :
10.1109/CDC.2005.1583253
Filename :
1583253
Link To Document :
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