Adaptive \(L_{2}\) disturbance attenuation control of multi-machine power systems with SMES units
DOI10.1016/j.automatica.2006.03.014zbMath1134.93388OpenAlexW2168373902MaRDI QIDQ856528
Daizhan Cheng, Yuzhen Wang, Gang Feng, Yan-Hong Liu
Publication date: 7 December 2006
Published in: Automatica (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.automatica.2006.03.014
stability analysisadaptive \(L_{2}\) disturbance attenuationdissipative PCH systemenergy-based control schememulti-machine power systemSMES
Feedback control (93B52) Application models in control theory (93C95) Lyapunov and other classical stabilities (Lagrange, Poisson, (L^p, l^p), etc.) in control theory (93D05)
Related Items (16)
Cites Work
- \(L_2\)-gain and passivity techniques in nonlinear control
- A Hamiltonian viewpoint in the modeling of switching power converters
- Generalized Hamiltonian realization of time-invariant nonlinear systems.
- Trajectory tracking control of port-controlled Hamiltonian systems via generalized canonical transformations.
- Interconnection and damping assignment passivity-based control of port-controlled Hamiltonian systems
- An energy-shaping approach to the design of excitation control of synchronous generators
- Energy-based Lyapunov functions for forced Hamiltonian systems with dissipation
- Dissipative hamiltonian realization and energy-based L/sub 2/-disturbance attenuation control of multimachine power systems
- Transient stabilization of multimachine power systems with nontrivial transfer conductances
- Canonical transformation and stabilization of generalized Hamiltonian systems
- Stabilization of Hamiltonian systems with nonholonomic constraints based on time-varying generalized canonical transformations
- Nonlinear decentralized controller design for multimachine power systems using Hamiltonian function method.
This page was built for publication: Adaptive \(L_{2}\) disturbance attenuation control of multi-machine power systems with SMES units