Title :
Splitting strategies for islanding operation of large-scale power systems using OBDD-based methods
Author :
Sun, Kai ; Zheng, Da-Zhong ; Lu, Qiang
Abstract :
Summary form only given. System spitting problem (SS problem) is to determine proper splitting points (or called splitting strategies) to split the entire inter-connected transmission network into islands ensuring generation/load balance and satisfaction of transmission capacity constraints when islanding operation of system is unavoidable. For a large-scale power system, its SS problem is very complicated in general because a combinatorial explosion of strategy space happens. This paper mainly studies how to find proper splitting strategies of large-scale power systems using an OBDD-based three-phase method. Then a time-based layered structure of the problem solving process is introduced to make this method more practical. Simulation results on IEEE 30- and 118-bus networks show that by this method proper splitting strategies can be given quickly. Further analyses indicate that this method is effective for larger-scale power systems.
Keywords :
binary decision diagrams; graph theory; power system interconnection; power transmission protection; OBDD-based three-phase method; graph theory; inter-connected transmission network; islanding operation; large-scale power system; load balance; ordered binary decision diagrams; power system protection; splitting strategies; system spitting problem; transmission capacity; Data structures; Explosions; Large-scale systems; Power generation; Power system analysis computing; Power system protection; Power system simulation; Power systems; Problem-solving; Sun;
Conference_Titel :
Power Engineering Society General Meeting, 2003, IEEE
Print_ISBN :
0-7803-7989-6
DOI :
10.1109/PES.2003.1267433