H infinity sliding mode robust excitation controller for multi-machine power system | |
Tang Hong-hai ; Li Chun-wen | |
2010-05-06 ; 2010-05-06 | |
关键词 | Practical/ control system synthesis decentralised control dynamic response H/sup infinity / control nonlinear control systems power system control power system transient stability robust control variable structure systems/ H/sub infinity / controller sliding mode robust excitation controller HSMEC&LOEC controller design nonlinear control model multimachine power system transient stability static stability dynamic response decentralized control law/ B8110C Power system control C3340H Control of electric power systems C1340K Nonlinear control systems C1310 Control system analysis and synthesis methods C1330 Optimal control C1340B Multivariable control systems C1320 Stability in control theory |
中文摘要 | Due to the nonlinear and uncertainty of power system robust excitation control model, a decentralized robust control law for multi-machine power system is proposed to attenuate mismatching disturbances. First, a preset control law is designed with local measurable variables to decentralize and decouple multi-machine system. Then a H infinity sliding mode variable structure robust excitation controller is designed for the system. Finally, a HSMEC&TOEC excitation controller is designed according to the requirement of transient and static stability. The simulation results show that the proposed excitation controller can improve the power system stability effectively and has good dynamic responses. |
语种 | 中文 ; 中文 |
出版者 | CSU-EPSA ; China |
内容类型 | 期刊论文 |
源URL | [http://hdl.handle.net/123456789/9010] |
专题 | 清华大学 |
推荐引用方式 GB/T 7714 | Tang Hong-hai,Li Chun-wen. H infinity sliding mode robust excitation controller for multi-machine power system[J],2010, 2010. |
APA | Tang Hong-hai,&Li Chun-wen.(2010).H infinity sliding mode robust excitation controller for multi-machine power system.. |
MLA | Tang Hong-hai,et al."H infinity sliding mode robust excitation controller for multi-machine power system".(2010). |
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