Title :
An improved three-phase power flow calculation method based on virtual neutral point
Author :
Lijuan Hu ; Xiaohui Song ; Wanxing Sheng ; Xiaoli Meng
Author_Institution :
China Electr. Power Res. Inst., Beijing, China
Abstract :
In order to improve the accuracy of the calculation model so as to improve distribution automation level, this paper presented a new three-phase power flow calculation method for three-phase distribution network. Based on the special network structure of distributed system and the relation between current in the three phases, virtual neutral point was brought in the model. By the virtual neutral point, it is easy to get the relation between the load in each node and the injection current it caused in the according node. And then the three-phase power flow calculation model could be built by back/forward sweep method. In order to obtain the solution of the presented model, a new kind of mixed iterative algorithm was proposed. The mixed iterative algorithm combined the back/forward sweep method with improved Newton Raphson method. In the last, the presented method was tested by a practical distribution network with six buses and IEEE 33-bus system and the power flow results was given to show the accuracy and validity of the proposed model and algorithm.
Keywords :
IEEE standards; Newton-Raphson method; distribution networks; iterative methods; load flow; power engineering computing; IEEE 33-bus system; Newton Raphson method; back-forward sweep method; distributed system; distribution automation level; injection current; iterative algorithm; three phase virtual neutral point; three-phase distribution network; three-phase power flow calculation method; three-phase power flow calculation model; Bismuth; Electric potential; Iterative methods; Load flow; Load modeling; Nickel; Distribution network; Mixed iterative algorithm; Three-phase power flow; Virtual neutral point;
Conference_Titel :
Power System Technology (POWERCON), 2014 International Conference on
Conference_Location :
Chengdu
DOI :
10.1109/POWERCON.2014.6993970