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Nonlinear and Variable Structure Excitation Controller for Power System Stability
作者姓名:王奔  Ronnie  Belmans
作者单位:[1]School of Electrical Engineering, Southwest Jiaotong Universtiy, Chengdu 610031, China [2]Department of Electrical Engineering, Katholieke Universiteit Leuven, Belgium
摘    要:A new nonlinear variable structure excitation controller is proposed. Its design combines the differential geometry theory and the variable structure controlling theory. The mathematical model in the form of "an affme nonlinear system" is set up for the control of a large-scale power system. The static and dynamic performances of the nonlinear variable structure controller are simulated. The response of system with the controller proposed is compared to that of the nonlinear optimal controller when the system is subjected to a variety of disturbances. Simulation results show that the nonlinear variable structure excitation controller gives more satisfactorily static and dynamic performance and better robustness.

关 键 词:激励控制  非线性控制  变量结构控制  动态行为
文章编号:1005-2429(2006)04-0339-09
收稿时间:2006-01-17

Nonlinear and Variable Structure Excitation Controller for Power System Stability
Wang Ben,Ronnie Belmans.Nonlinear and Variable Structure Excitation Controller for Power System Stability[J].Journal of Southwest Jiaotong University,2006,14(4):339-347.
Authors:Wang Ben  Ronnie Belmans
Abstract:A new nonlinear variable structure excitation controller is proposed. Its design combines the differential geometry theory and the variable structure controlling theory. The mathematical model in the form of "an affine nonlinear system" is set up for the control of a large-scale power system. The static and dynamic performances of the nonlinear variable structure controller are simulated. The response of system with the controller proposed is compared to that of the nonlinear optimal controller when the system is subjected to a variety of disturbances. Simulation results show that the nonlinear variable structure excitation controller gives more satisfactorily static and dynamic performance and better robustness.
Keywords:Excitation control  Nonlinear control  Variable structure control  Dynamic performance  Power system
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