Passivity-Based Nonlinear Excitation Control of Power Systems with Structure Matrix Reassignment
Passivity-based control is widely used in electronic circuit systems because it can utilize their internal structures to facilitate the controller design. In this paper, we first propose a dissipative Hamiltonian realization of power systems and discuss the disadvantages of the traditional passivity...
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doaj-c047027229294647829890f7ce2a3aec2020-11-24T21:48:18ZengMDPI AGInformation2078-24892013-08-014334235010.3390/info4030342Passivity-Based Nonlinear Excitation Control of Power Systems with Structure Matrix ReassignmentBing ChuYanhong LiuChunwen LiJianyong LiPassivity-based control is widely used in electronic circuit systems because it can utilize their internal structures to facilitate the controller design. In this paper, we first propose a dissipative Hamiltonian realization of power systems and discuss the disadvantages of the traditional passivity-based excitation controller. Then, a novel excitation controller is put forward to reassign the interconnection and dissipative matrix, and the corresponding Hamiltonian function. Simulation results verify that the proposed controller can effectively improve the transient stability of the power system.http://www.mdpi.com/2078-2489/4/3/342hamiltonian realizationinterconnection and damping assignmentpassivity-based controlpower systemsstabilization |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Bing Chu Yanhong Liu Chunwen Li Jianyong Li |
spellingShingle |
Bing Chu Yanhong Liu Chunwen Li Jianyong Li Passivity-Based Nonlinear Excitation Control of Power Systems with Structure Matrix Reassignment Information hamiltonian realization interconnection and damping assignment passivity-based control power systems stabilization |
author_facet |
Bing Chu Yanhong Liu Chunwen Li Jianyong Li |
author_sort |
Bing Chu |
title |
Passivity-Based Nonlinear Excitation Control of Power Systems with Structure Matrix Reassignment |
title_short |
Passivity-Based Nonlinear Excitation Control of Power Systems with Structure Matrix Reassignment |
title_full |
Passivity-Based Nonlinear Excitation Control of Power Systems with Structure Matrix Reassignment |
title_fullStr |
Passivity-Based Nonlinear Excitation Control of Power Systems with Structure Matrix Reassignment |
title_full_unstemmed |
Passivity-Based Nonlinear Excitation Control of Power Systems with Structure Matrix Reassignment |
title_sort |
passivity-based nonlinear excitation control of power systems with structure matrix reassignment |
publisher |
MDPI AG |
series |
Information |
issn |
2078-2489 |
publishDate |
2013-08-01 |
description |
Passivity-based control is widely used in electronic circuit systems because it can utilize their internal structures to facilitate the controller design. In this paper, we first propose a dissipative Hamiltonian realization of power systems and discuss the disadvantages of the traditional passivity-based excitation controller. Then, a novel excitation controller is put forward to reassign the interconnection and dissipative matrix, and the corresponding Hamiltonian function. Simulation results verify that the proposed controller can effectively improve the transient stability of the power system. |
topic |
hamiltonian realization interconnection and damping assignment passivity-based control power systems stabilization |
url |
http://www.mdpi.com/2078-2489/4/3/342 |
work_keys_str_mv |
AT bingchu passivitybasednonlinearexcitationcontrolofpowersystemswithstructurematrixreassignment AT yanhongliu passivitybasednonlinearexcitationcontrolofpowersystemswithstructurematrixreassignment AT chunwenli passivitybasednonlinearexcitationcontrolofpowersystemswithstructurematrixreassignment AT jianyongli passivitybasednonlinearexcitationcontrolofpowersystemswithstructurematrixreassignment |
_version_ |
1725893016281939968 |