Title :
The impact of model for MOV-protected series capacitors on system stability and available transmission capability
Author :
Li Jing ; Xiang Zu-tao ; Hou Jun-xian ; Ling Ji-min ; Guo Qiang
Author_Institution :
Power Syst. Res. Center, China Electr. Power Res. Inst. (CEPRI), Beijing, China
fDate :
Oct. 30 2012-Nov. 2 2012
Abstract :
Series capacitors compensation plays a more and more important role in long-distance and large-capacity transmission system, whose model has a significant impact to system stability study. Firstly, both gap protected SC model and linearized model is applied into the available power transmission capability and system stability study in electromechanical transient simulation in this paper. Secondly, it is showed that huge short-circuit current might be caused by using gap protected SC model, and the result of transmission capability and system stability study may deviate in that point. Finally, the comparison between the simulation and theoretical analysis shows that the adoption of linearized model could bring an acceptable result which is close to the electromagnetic transient physical characteristics of SC. The linearized model for MOV-Protected SC is proved to be accurate and effective in a real 500kV SC project, and is recommended in system stability study of SC, and fault current limiter.
Keywords :
power capacitors; power system stability; power system transients; power transmission; short-circuit currents; MOV-protected series capacitors; available transmission capability; electromechanical transient simulation; fault current limiter; gap protected SC model; large-capacity transmission system; linearized model; system stability; voltage 500 kV; Capacitors; Computational modeling; Integrated circuit modeling; Power system stability; Stability analysis; Transient analysis; Electromagnetic transients; MOV; Power system transients; Series capacitor;
Conference_Titel :
Power System Technology (POWERCON), 2012 IEEE International Conference on
Conference_Location :
Auckland
Print_ISBN :
978-1-4673-2868-5
DOI :
10.1109/PowerCon.2012.6401304