DocumentCode :
3569303
Title :
A strategy for optimal loading pattern of a typical power system — A case study
Author :
Vishnu, J. ; Menon, Rishi ; Joseph, Tibin ; Sreedharan, Sasidharan ; Chittesh, V.C. ; Das, P. Vipin ; Joseph, Sebin
Author_Institution :
SAINTGITS Coll. of Eng., Kottayam, India
fYear :
2014
Firstpage :
112
Lastpage :
117
Abstract :
This paper presents a Particle Swarm Optimization (PSO) based algorithm to find the optimal location and setting of FACTS devices in order to improve the loading margin as well as voltage stability and small signal stability. Recently, the electric load demand has been continuously growing all over the world. The rapid increase in load demand enforces power systems to operate closer to the limits of instability. But, owing to economical and environmental restraints, the expansion of existing power system is limited. Existing power system loading margin can be enhanced by optimal placement and setting of FACTS devices to accomplish more power transfers with less network expansion cost. The objective function is formulated as maximizing the loadability of the power system with load generation balance as equality constraint as well as voltage stability, generation limit and line limit constraints as inequality constraint. A Central Travancore -15 bus practical system is taken into consideration to test the effectiveness of the proposed approach using MATLAB/PSAT environment.
Keywords :
demand side management; flexible AC transmission systems; particle swarm optimisation; power generation planning; Central Travancore -15 bus practical system; FACTS devices; MATLAB; PSAT; PSO based algorithm; load demand; load generation balance; network expansion cost; optimal loading pattern; optimal location; particle swarm optimization; power system expansion; power transfer; small signal stability; typical power system; voltage stability; Automatic voltage control; Loading; Power system stability; Reactive power; Stability criteria; Central Travancore −15 bus practical system; Loading Margin; Optimal placement; Particle Swarm Optimization; Power system; STATCOM; Stability;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advances in Green Energy (ICAGE), 2014 International Conference on
Print_ISBN :
978-1-4799-8049-9
Type :
conf
DOI :
10.1109/ICAGE.2014.7050152
Filename :
7050152
Link To Document :
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