DocumentCode :
609747
Title :
LR-PSO method of generation scheduling problem for thermal-wind-solar energy system in deregulated power system
Author :
Kumar, K. Kranthi ; Lakshmi, K.
Author_Institution :
Dept. of Electr. & Electron. Eng., K.S. Rangasamy Coll. of Technol., Thiruchengode, India
fYear :
2013
fDate :
14-15 March 2013
Firstpage :
1
Lastpage :
7
Abstract :
Renewable energy sources have attracted wide attention because of being abundant in nature and nearly non pollutant. Wind power is one of the most promising clean energy sources it can easily be captured by wind generators with high power capacity. Solar power is another promising clean energy sources in global system and can be harnessed easily. Solar energy system might be compensate the wind intermittency generation resource due to lesser start up time, lower operating cost and good ramping capabilities. The generation scheduling for windsolar energy with thermal unit system in deregulated environment, minimize the total thermal fuel cost and maximize the profit of generation companies, subject to many constraints. While performing the generation scheduling problem by Lagrangian relaxation based particle swarm optimization method the hourly load, wind velocity and solar radiation must be forecasted to prevent the errors. The generation scheduling formulations are involved the perspective of a generation company (GENCO). The deregulation environment is one which the generation, transmission and distribution does not depend on each other. To demonstrate the uncertainty in the proposed method the generating scheduling problem is performed in a simplified generation system.
Keywords :
particle swarm optimisation; power generation scheduling; solar power stations; wind power plants; GENCO; LR-PSO method; Lagrangian relaxation based particle swarm optimization method; deregulated power system; generation company; generation scheduling problem; renewable energy sources; solar power generation; solar radiation; thermal fuel cost minimization; thermal unit system; thermal-wind-solar energy system; wind generators; wind intermittency generation resource; wind power generation; wind velocity; Fuels; Renewable energy sources; Solar energy; Solar radiation; Thermal loading; Wind forecasting; Wind power generation; LR-PSO method Total fuel cost; generation scheduling; profit; renewable energy; uncertainty;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Green High Performance Computing (ICGHPC), 2013 IEEE International Conference on
Conference_Location :
Nagercoil
Print_ISBN :
978-1-4673-2592-9
Type :
conf
DOI :
10.1109/ICGHPC.2013.6533928
Filename :
6533928
Link To Document :
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