Bifurcation analysis based performance evaluation of power system incorporating FACTS controller
The major power system breakdowns are caused by problems relating to the system dynamic responses. The limiting factor in power system operation is the damping of oscillations. The damping torque provided by the FACTS device is proportional to the gain of the controller. A power system is highly non...
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my.uniten.dspace-299072024-04-18T09:57:56Z Bifurcation analysis based performance evaluation of power system incorporating FACTS controller Marsadek M. Mukerjee R.N. Tanggawelu B. Basha A. Ariffin A.E. 26423183000 7003827066 6504260720 56973894000 6701641670 Bifurcation Control systems Damping Electric breakdown Nonlinear control systems Nonlinear dynamical systems Performance analysis Power system analysis computing Power system dynamics Torque control Bifurcation (mathematics) Control system analysis Control systems Controllers Damping Dynamical systems Electric breakdown Flexible AC transmission systems Nonlinear analysis Nonlinear control systems Nonlinear dynamical systems Torque control Bifurcation analysis Controller performance Controller setting Operating configurations Performance analysis Power system analysis Power system dynamics Power system operations Electric power system control The major power system breakdowns are caused by problems relating to the system dynamic responses. The limiting factor in power system operation is the damping of oscillations. The damping torque provided by the FACTS device is proportional to the gain of the controller. A power system is highly nonlinear dynamical system, having always some influence on the controller performance. An inappropriate controller setting may cause interplay between controllers dispersed system wide, leading to evolution of nonlinear dynamic phenomena such as bifurcation. It is induced by variation in control gains and system parameters. For satisfactory system operation, appropriateness of each setting of the controller needs to be evaluated for a specific operating configuration. The in-depth evaluation of a controller setting leading to fine tuning of the controller gain is feasible through bifurcation analysis. � 2003 IEEE. Final 2023-12-28T08:58:10Z 2023-12-28T08:58:10Z 2003 Conference Paper 10.1109/PECON.2003.1437437 2-s2.0-84947934087 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84947934087&doi=10.1109%2fPECON.2003.1437437&partnerID=40&md5=ed54056fe912e5e8fb7064a6c4ff4308 https://irepository.uniten.edu.my/handle/123456789/29907 1437437 161 166 Institute of Electrical and Electronics Engineers Inc. Scopus |
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Bifurcation Control systems Damping Electric breakdown Nonlinear control systems Nonlinear dynamical systems Performance analysis Power system analysis computing Power system dynamics Torque control Bifurcation (mathematics) Control system analysis Control systems Controllers Damping Dynamical systems Electric breakdown Flexible AC transmission systems Nonlinear analysis Nonlinear control systems Nonlinear dynamical systems Torque control Bifurcation analysis Controller performance Controller setting Operating configurations Performance analysis Power system analysis Power system dynamics Power system operations Electric power system control |
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Bifurcation Control systems Damping Electric breakdown Nonlinear control systems Nonlinear dynamical systems Performance analysis Power system analysis computing Power system dynamics Torque control Bifurcation (mathematics) Control system analysis Control systems Controllers Damping Dynamical systems Electric breakdown Flexible AC transmission systems Nonlinear analysis Nonlinear control systems Nonlinear dynamical systems Torque control Bifurcation analysis Controller performance Controller setting Operating configurations Performance analysis Power system analysis Power system dynamics Power system operations Electric power system control Marsadek M. Mukerjee R.N. Tanggawelu B. Basha A. Ariffin A.E. Bifurcation analysis based performance evaluation of power system incorporating FACTS controller |
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The major power system breakdowns are caused by problems relating to the system dynamic responses. The limiting factor in power system operation is the damping of oscillations. The damping torque provided by the FACTS device is proportional to the gain of the controller. A power system is highly nonlinear dynamical system, having always some influence on the controller performance. An inappropriate controller setting may cause interplay between controllers dispersed system wide, leading to evolution of nonlinear dynamic phenomena such as bifurcation. It is induced by variation in control gains and system parameters. For satisfactory system operation, appropriateness of each setting of the controller needs to be evaluated for a specific operating configuration. The in-depth evaluation of a controller setting leading to fine tuning of the controller gain is feasible through bifurcation analysis. � 2003 IEEE. |
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26423183000 |
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26423183000 Marsadek M. Mukerjee R.N. Tanggawelu B. Basha A. Ariffin A.E. |
format |
Conference Paper |
author |
Marsadek M. Mukerjee R.N. Tanggawelu B. Basha A. Ariffin A.E. |
author_sort |
Marsadek M. |
title |
Bifurcation analysis based performance evaluation of power system incorporating FACTS controller |
title_short |
Bifurcation analysis based performance evaluation of power system incorporating FACTS controller |
title_full |
Bifurcation analysis based performance evaluation of power system incorporating FACTS controller |
title_fullStr |
Bifurcation analysis based performance evaluation of power system incorporating FACTS controller |
title_full_unstemmed |
Bifurcation analysis based performance evaluation of power system incorporating FACTS controller |
title_sort |
bifurcation analysis based performance evaluation of power system incorporating facts controller |
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Institute of Electrical and Electronics Engineers Inc. |
publishDate |
2023 |
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1806427460633362432 |
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13.222552 |