Title :
General nonlinear modal representation of large scale power systems
Author :
Shanechi, Hasan Modir ; Pariz, Naser ; Vaahedi, Ebrahim
Author_Institution :
Dept. of Electr. Eng., New Mexico Tech, Socorro, NM, USA
Abstract :
In this paper an approach is devised to represent, and study the behavior of, nonlinear dynamic systems using general nonlinear modal representation. This approach is shown to compare favorably to the normal form of vector field technique, the other methodology used for this purpose, in that it is valid under resonance conditions and it does not require nonlinear transformation. By representing the system more accurately and in terms of its modes and their interactions, it would be better suited to be used for understanding and analyzing complex behavior of stressed power system and also in designing various controls for the system. This method can represent a nonlinear system with any order of nonlinearity and provides the solution to the system nonlinear differential equation employing Laplace transformation. The accuracy and robustness of the method has been validated using three systems, two of which model realistic utility power systems under stressed conditions.
Keywords :
Laplace transforms; nonlinear differential equations; nonlinear systems; power systems; Jordan form transformation; Laplace transformation; Taylor series; large scale power systems; modal interaction; modal series method; nonlinear differential equation; nonlinear modal representation; nonlinear system; nonlinear transformation; nonlinearity; normal form analysis; power system security; resonance conditions; stressed power system; vector field technique; vector fields; Control systems; Large-scale systems; Nonlinear dynamical systems; Nonlinear systems; Power system analysis computing; Power system dynamics; Power system modeling; Power systems; Resonance; Stress control;
Journal_Title :
Power Systems, IEEE Transactions on
DOI :
10.1109/TPWRS.2003.814883