Title :
A particle swarm optimization for reactive power and voltage control considering voltage security assessment
Author :
Yoshida, Hirotaka ; Kawata, Kenichi ; Fukuyama, Yoshikazu ; Takayama, Shinichi ; Nakanishi, Yosuke
Author_Institution :
Tech. Res. Center, Kansai Electr. Power Co. Inc., Hyogo, Japan
fDate :
11/1/2000 12:00:00 AM
Abstract :
This paper presents a particle swarm optimization (PSO) for reactive power and voltage control (volt/VAr control: VVC) considering voltage security assessment (VSA). VVC can be formulated as a mixed-integer nonlinear optimization problem (MINLP). The proposed method expands the original PSO to handle a MINLP and determines an online VVC strategy with continuous and discrete control variables such as automatic voltage regulator (AVR) operating values of generators, tap positions of on-load tap changer (OLTC) of transformers, and the number of reactive power compensation equipment. The method considers voltage security using a continuation power flow and a contingency analysis technique. The feasibility of the proposed method is demonstrated and compared with reactive tabu search (RTS) and the enumeration method on practical power system models with promising results
Keywords :
control system analysis computing; control system synthesis; integer programming; nonlinear programming; optimal control; power system analysis computing; power system control; power system security; reactive power control; voltage control; automatic voltage regulator; computer simulation; contingency analysis; continuation power flow; continuous control variables; discrete control variables; mixed-integer nonlinear optimization problem; particle swarm optimization; power system models; reactive power control; tap positions; transformer on-load tap changers; voltage control; voltage security assessment; Automatic generation control; Automatic voltage control; Particle swarm optimization; Power generation; Power system modeling; Power system security; Reactive power; Reactive power control; Regulators; Voltage control;
Journal_Title :
Power Systems, IEEE Transactions on