DocumentCode
1143493
Title
Nonlinear controllers for fast Voltage regulation using STATCOMs
Author
Jain, Amit K. ; Behal, Aman ; Zhang, Ximing T. ; Dawson, Darren M. ; Mohan, Ned
Author_Institution
Dept. of Electr. & Comput. Eng., Univ. of Minnesota, Minneapolis, MN, USA
Volume
12
Issue
6
fYear
2004
Firstpage
827
Lastpage
842
Abstract
This paper presents system modeling and nonlinear control design of static compensators (STATCOMs) for fast voltage regulation in the presence of load uncertainty and voltage flicker. A simplified power distribution system is modeled using ideas similar to field oriented control of three phase ac machines. Zero dynamics of the system show that the system is nonminimum phase for certain operating conditions, thus, imposing restrictions on the achievable dynamic response. The control design involves estimation of the load conductance via a gradient-based estimator, and state feedback control to reach an equilibrium point established by the estimated load conductance and knowledge of system parameters. A Lyapunov function is used to establish asymptotic stability in the large for the closed-loop system. To account for practical implementation issues, a new controller relying on feedback of a readily measurable state is also proposed. Simulations results are presented to show efficacy of both controllers with regard to bus voltage regulation and suppression of voltage flicker.
Keywords
Lyapunov methods; asymptotic stability; closed loop systems; control system synthesis; dynamic response; gradient methods; interference suppression; nonlinear control systems; power distribution control; state feedback; voltage control; Lyapunov function; STATCOM; asymptotic stability; bus voltage regulation; closed-loop system; dynamic response; fast voltage regulation; gradient-based estimator; load conductance estimation; nonlinear control design; nonminimum phase; power distribution system; state feedback control; static compensators; voltage flicker suppression; zero dynamics; Automatic voltage control; Control design; Modeling; Power distribution; STATCOM; State estimation; State feedback; Uncertainty; Voltage control; Voltage fluctuations; Adaptive control; STATCOMs; flicker control; nonlinear control; power quality; static compensators; system modeling; voltage regulation;
fLanguage
English
Journal_Title
Control Systems Technology, IEEE Transactions on
Publisher
ieee
ISSN
1063-6536
Type
jour
DOI
10.1109/TCST.2004.833408
Filename
1347171
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