Title :
Damping controller design through simultaneous stabilization technique
Author :
Chaudhuri, B. ; Korba, P. ; Pal, B.C.
Author_Institution :
Imperial College London, UK
fDate :
June 28 2004-July 1 2004
Abstract :
The paper extends the concept of simultaneous stabilization in the multi-variable framework. The concept is applied for multiple swing mode damping through a single FACTS device. An optimization problem is solved to determine controller parameters that would guarantee closed-loop poles in certain target locations with preferential treatment to those corresponding in the iner-area modes. Plant mode is under different operating conditions are incorporated in the design formulation to achieve performance robustness. A min-max approach is adopted to optimize the worst case scenario. The control design methodology is illustrated for a prototype power system. The performance is verified through time-domain simulations.
Keywords :
Damping; Polynomials; FACTS; inter area oscillations; model reduction; pole placement; remote signals; robustness; simultaneous stabilization;
Conference_Titel :
Automation Congress, 2004. Proceedings. World
Conference_Location :
Seville
Print_ISBN :
1-889335-21-5