Title :
Dynamic stability of power system using Static VAR Compensator enhanced with Fuzzy Logic Controller
Author :
Ghahramani, H. ; Khazaie, J. ; Tanhay, M. Alivirdizadeh ; Baghiripour, M. ; Mokhtari, M.
Author_Institution :
Electr. Eng. Dept., Urmia Univ., Urmia, Iran
Abstract :
Sub-Synchronous Resonance (SSR) is an adverse oscillation that may happen when steam turbine-generator is connected to a long transmission line system which compensated with series capacitor. If this oscillation is not damped completely, the operation of the turbine-generator shaft will be deteriorated, that causes serious shaft failure. The main scope of this paper is to design a Fuzzy Logic Damping Controller (FLDC) for Static VAR Compensator (SVC) to suppress the SSR. It is widely accepted that, the main duty of SVC in power system is to regulate the bus voltage. The novel FLDC is designed and granted to conventional controller of SVC in order to alleviate the SSR. For analyzing the designed controller, a summarized prony analysis associated with time domain simulation is also clarified. Simulation results are carried out with MATLAB/SIMULINK in order to prove the capability of proposed controller in power system stability. Also, a comparison between suggested controller and conventional damping controller (CDC) is performed that demonstrates the superior operation of FLDC toward its counterpart, CDC.
Keywords :
fuzzy control; oscillations; power system dynamic stability; static VAr compensators; steam turbines; CDC; FLDC; MATLAB/SIMULINK; SSR; conventional damping controller; fuzzy logic damping controller; oscillation; power system dynamic stability; power system stability; prony analysis; static VAR compensator; steam turbine-generator; subsynchronous resonance; transmission line system; Automation; Instruments;
Conference_Titel :
Control, Instrumentation and Automation (ICCIA), 2011 2nd International Conference on
Conference_Location :
Shiraz
Print_ISBN :
978-1-4673-1689-7
DOI :
10.1109/ICCIAutom.2011.6356649