DocumentCode :
3448439
Title :
Power flow models of unified power flow controllers in various operation modes
Author :
Lee, Sheng-Huei ; Chu, Chia-Chi
Author_Institution :
Dept. of Electr. Eng., Chang Gung Unviersity, Taoyuan, Taiwan
Volume :
1
fYear :
2003
fDate :
7-12 Sept. 2003
Firstpage :
157
Abstract :
A comprehensive UPFC steady-state model for power flow analysis will be proposed. With considering resistances of coupling transformers and converter losses, this new model can implement any desired control actions, including any combinations of active/reactive power control and voltage magnitude control, within the same framework. The d-q axis decomposition of UPFC control variables will be considered as UPFC unknown variables in conventional Newton-Raphson power flow solvers. An IEEE 118 test system embedded with 2 UPFCs is studied to validate our new model. Performance comparisons between our new model and the voltage-source-based (VSB) model are also performed. Simulation results demonstrate that the quadratic convergence of the Newton-Raphson algorithm is still maintained in our model even under different operation modes. Influence of coupling transformers and converter loss are also studied in detail.
Keywords :
Newton-Raphson method; load flow control; losses; reactive power control; voltage control; IEEE 118 test system; Newton-Raphson algorithm; Newton-Raphson power flow solvers; active power control; converter losses; coupling transformers; power flow analysis; power flow models; quadratic convergence; reactive power control; unified power flow controllers; voltage magnitude control; voltage-source-based model; Convergence; Load flow; Load flow analysis; Power control; Power system modeling; Reactive power control; Steady-state; System testing; Transformers; Voltage control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Transmission and Distribution Conference and Exposition, 2003 IEEE PES
Print_ISBN :
0-7803-8110-6
Type :
conf
DOI :
10.1109/TDC.2003.1335174
Filename :
1335174
Link To Document :
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