Title :
Voltage sag monitors optimal allocation using on fuzzy control model
Author :
Yadi Tang ; Yonghai Xu ; Wangsong Hong
Author_Institution :
North China Electr. Power Univ., Beijing, China
Abstract :
Voltage sag problem is getting extensive attention with the extensive application of sensitive equipments in power grid. How to use the limited monitors achieving optimal distribution of monitoring points becomes an important issue. This paper presents a method for voltage sag monitoring optimal allocation based on fuzzy system and particle swarm algorithm. Aiming at the problems of traditional MRA (Monitor Reach Area, voltage sag observation domain), the concept of fuzzy threshold and observation index are put forward, the bus observation ability is also considered, and then the fuzzy control model is established to get the optimal objective function. The allocation is optimized by binary particle swarm algorithm(BPSO). At last, the method is tested on IEEE 30 bus system and the results are compared with traditional methods, showing that the completely observability of voltage sag in the network can be realized, meanwhile the purpose of configuration scheme of monitoring devices can be also obtained.
Keywords :
fuzzy control; particle swarm optimisation; power grids; power supply quality; power system measurement; BPSO; IEEE 30 bus system; MRA; binary particle swarm algorithm; bus observation ability; fuzzy control model; fuzzy system; fuzzy threshold; monitor reach area; monitoring devices; monitoring points; observation index; optimal allocation; optimal objective function; power grid; voltage sag monitoring; voltage sag observation domain; voltage sag problem; Circuit faults; Indexes; Linear programming; Monitoring; Resource management; Threshold voltage; Voltage fluctuations; BPSO algorithm; fuzzy control model; fuzzy threshold; monitoring device; observation index; optimal configuration; voltage sag;
Conference_Titel :
Power System Technology (POWERCON), 2014 International Conference on
Conference_Location :
Chengdu
DOI :
10.1109/POWERCON.2014.6993686