Title :
Global Transient Stability and Voltage Regulation for Power Systems
Author :
Guo, Youguang ; Hill, D. J. ; Wang, Yannan
Author_Institution :
Oak Ridge National Laboratory, Oak Ridge, TN; University of Sydney, Australia; Nanyang Technological University, Singapore
Abstract :
This paper concems the global control of power systems. It arises from the practical concem that transient stability and voltage regulation are both important properties of power system control, but they are ascribed to different model descriptions and relate to different stages of system operation (i.e., transient period and post-transient period, respectively). Earlier control results deal with the two problems separately, or employ a switching strategy of two different kinds of controllers, which causes a discontinuity of system behavior. We design in this paper a global controller to coordinate the transient stabilizer and voltage regulator. The designed controller is smooth and robust with respect to different transient faults. Simulations on a single-machine infinite bus power system have demonstrated better performances compared with existing controllers.
Keywords :
Control systems; Power system control; Power system modeling; Power system simulation; Power system stability; Power system transients; Power systems; Regulators; Robust control; Voltage control; Global nonlinear control; power systems; transient stability; voltage regulation;
Journal_Title :
Power Engineering Review, IEEE
DOI :
10.1109/MPER.2001.4311090