Title :
Parallel three-phase load flow analysis for large scale unbalanced distribution networks
Author :
Syafii ; Nor, Khalid Mohamed ; Abdel-Akher, Mamdouh
Author_Institution :
Dept. of Electr. Power Eng., Univ. Teknol. Malaysia, Skudai, Malaysia
Abstract :
This paper proposes parallel algorithm of a general three-phase load flow calculation based on symmetrical components. The proposed algorithm comprises of two part i.e. sequence admittance matrix construction and sequence decoupled algorithm for sequence networks solver which have three independent sub-problems corresponding to positive, negative, and zero-sequence networks. These two parts are solved concurrently using multi-core parallel processing. The IEEE 8500-node test feeder is used to test the robustness of the algorithm for large system problem. The large unbalanced load connected to the center-tapped transformer solved using an iterative forward and backward sweep analysis method based on voltage drop analysis. The result showed that parallel three-phase load flow produced execution speedup and proved the ability to handle large scale problems.
Keywords :
electric potential; iterative methods; load flow; matrix algebra; multiprocessing systems; parallel algorithms; power distribution planning; power transformers; IEEE 8500-node test feeder; center-tapped transformer; iterative backward sweep analysis; iterative forward analysis; lthree-phase load flow; multicore parallel processing; parallel algorithm; sequence admittance matrix; sequence decoupled algorithm; symmetrical components; unbalanced distribution networks; voltage drop analysis; Admittance; Computers; Load flow; Multicore processing; Parallel processing; Parallel programming; Program processors; Parallel processing; three-phase load flow; unbalanced network and symmetrical components;
Conference_Titel :
Power Engineering, Energy and Electrical Drives (POWERENG), 2011 International Conference on
Conference_Location :
Malaga
Print_ISBN :
978-1-4244-9845-1
Electronic_ISBN :
2155-5516
DOI :
10.1109/PowerEng.2011.6036437