1. Energy-based [L.sub.2] disturbance attenuation excitation control of differential algebraic power systems
- Author
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Liu, Yanhong, Chen, Tiejun, Li, Chunwen, Wang, Yuzhen, and Chu, Bing
- Subjects
Control systems -- Design and construction ,Electric power systems -- United States ,Electric power systems -- Design and construction ,Electric power systems -- Control ,Hamiltonian function -- Evaluation ,Differential equations, Nonlinear -- Evaluation ,Business ,Computers and office automation industries ,Electronics ,Electronics and electrical industries - Abstract
Using an energy-based method, this paper investigates the [L.sub.2] disturbance attenuation excitation control of multimachine power system connected with constant power loads. First, a general result is presented for the [L.sub.2] disturbance attenuation control of nonlinear differential algebraic systems with dissipative Hamiltonian realization. Then, pre-feedback is employed to transform the power system into a dissipative Hamiltonian form. Based on this, a decentralized [L.sub.2] excitation control scheme is proposed to improve the transient stability of the system. Simulation results demonstrate the effectiveness of the controller. Index Terms--Dissipative Hamiltonian realization, [L.sub.2] disturbance attenuation, multimachine multiload power systems, nonlinear differential algebraic systems.
- Published
- 2008