DocumentCode :
3580968
Title :
Planning and operation of shunt capacitors using MOPSO and DP for large-scale PV penetration
Author :
Suzuki, Ken ; Suzuki, Toshiko ; Fujiwara, Aya ; Iwamoto, Shinichi ; Oishi, Yusuke ; Ariyoshi, Nobuyuki
Author_Institution :
Waseda Univ., Tokyo, Japan
fYear :
2014
Firstpage :
1
Lastpage :
6
Abstract :
In order to help combat climate change, Japan plans to introduce a large-scale photovoltaic (PV) power generation capacity. In this paper, we focus on reactive power in large-scale PV systems, first proposing a two-layered shunt capacitor (SC) scheduling method using multi-objective particle swarm optimization (MOPSO) and dynamic programming (DP). Using MOPSO, cost efficiency and reliability in power system planning and operation can be more accurately analyzed, while DP allows switching times to be assessed. To control reactive power flows caused by changing PV output, we then propose an effective static var compensator (SVC) control method, consider SC and transformer load tap charger (LTC) efficiencies, for use in situations in which PV outputs fluctuate sharply over short time intervals. Based on simulations run on a modified Ward-Hale 6-bus system to verify the validity of the proposed method, we confirm its capability to control power systems with a large-scale penetration over a normal voltage range.
Keywords :
dynamic programming; on load tap changers; particle swarm optimisation; photovoltaic power systems; power capacitors; power generation planning; reactive power control; static VAr compensators; MOPSO; SVC control method; cost efficiency; dynamic programming; large-scale PV power generation capacity; large-scale PV systems; large-scale photovoltaic power generation capacity; multiobjective particle swarm optimization; power system operation; power system planning; reactive power flows control; static var compensator control method; transformer LTC efficiencies; transformer load tap charger efficiencies; two-layered shunt capacitor scheduling method; Fluctuations; Power system stability; Schedules; Static VAr compensators; Switches; Voltage control; Dynamic Programming; MOPSO; Photovoltaic Energy; Reactive Power; Shunt Capacitor; Voltage Stability;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power and Energy Engineering Conference (APPEEC), 2014 IEEE PES Asia-Pacific
Type :
conf
DOI :
10.1109/APPEEC.2014.7065984
Filename :
7065984
Link To Document :
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