DocumentCode :
2381765
Title :
Complex-Variable Newton-Raphson Load-Flow Analysis with FACTS Devices
Author :
Nguyen, T.T. ; Vu, C.T.
Author_Institution :
Sch. of Electr., Electron. & Comput. Eng., Western Australia Univ., Crawley, WA
fYear :
2006
fDate :
21-24 May 2006
Firstpage :
183
Lastpage :
190
Abstract :
Based on complex voltage variables, the paper develops a Newton-Raphson (NR) load-flow analysis formulation which includes FACTS devices. Detailed analysis of the formulation confirms that significant reduction in memory access is achieved by the complex-variable NR formulation in comparison with the traditional formulation based on the real form. The significant reduction in memory access achieved will lead to the advantage of substantial reduction in computing time when load-flow analysis is implemented in parallel-computing environment. This advantage is also applicable in the case of single-processor computing environment, depending on memory cycle time. The formulation removes the approximation used in the previously-published NR load-flow analysis in complex form. The new method preserves fully the powerful convergence property of the NR algorithm. In addition, complex-variables offer a flexible and direct approach for modeling FACTS devices. The formulation is tested by simulation with representative power systems, including that with FACTS devices
Keywords :
Newton-Raphson method; flexible AC transmission systems; load flow; FACTS devices; complex voltage variables; complex-variable Newton-Raphson load-flow analysis; memory access reduction; memory cycle time; parallel-computing; single-processor computing; Concurrent computing; Convergence; Flexible AC transmission systems; Jacobian matrices; Load flow analysis; Power system analysis computing; Power system modeling; Power system planning; Power system simulation; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Transmission and Distribution Conference and Exhibition, 2005/2006 IEEE PES
Conference_Location :
Dallas, TX
Print_ISBN :
0-7803-9194-2
Type :
conf
DOI :
10.1109/TDC.2006.1668480
Filename :
1668480
Link To Document :
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