DocumentCode :
55476
Title :
Operational Strategy Optimization in an Optimal Sized Smart Microgrid
Author :
Moradi, Mohammad H. ; Eskandari, Mohsen ; Mahdi Hosseinian, S.
Author_Institution :
Bu-Ali Sina Univ., Hamaden, Iran
Volume :
6
Issue :
3
fYear :
2015
fDate :
May-15
Firstpage :
1087
Lastpage :
1095
Abstract :
Recently, microgrids (MGs) have attracted considerable attention as a high-quality and reliable source of electricity. In this paper, energy management in MGs is addressed in the light of economic efficiency, environmental restrictions, and reliability improvement via: 1) optimizing the type and capacity of distributed generation (DG) sources, as well as the capacity of storage devices (SD); and 2) developing an operational strategy (OS) for energy management in MGs. A master-slave objective function based on net present value (as an economic indicator) is proposed. Such objective function is solved using a hybrid optimization method. This method includes two steps. In the first step, 2-D slave object functions (SOFs), operating costs, and consumer outage cost (as a reliability index) are minimized by quadratic programming and particle swarm optimization (PSO) algorithms, respectively. Then Pareto curve is drawn for SOF and fuzzy logic is employed to select the best SOF solution, OS, from Pareto curve. In the second step, using the best OS from step one for any iteration, PSO algorithms employed to solve master objective function, and to determine the optimum capacity and type of DGs and SDs. The results show that the proposed framework can be considered as an efficient tool in planning and energy management of MGs.
Keywords :
Pareto optimisation; distributed power generation; energy management systems; fuzzy logic; iterative methods; particle swarm optimisation; power engineering computing; power generation economics; power generation planning; power generation reliability; quadratic programming; smart power grids; 2D slave object function; PSO algorithm; Pareto curve; SOF solution; consumer outage cost; distributed generation; economic efficiency; energy management; environmental restriction; fuzzy logic; hybrid optimization method; iteration method; master-slave objective function; minimization; net present value; operational strategy optimization; optimal sized smart microgrid; particle swarm optimization; power generation planning; quadratic programming; relability improvement; Electricity; Fuels; Investment; Optimization; Pollution; Power generation; Reliability; Distributed generation (DG); environmental pollution; microgrid (MG); net present value (NPV); particle swarm optimization (PSO); reliability;
fLanguage :
English
Journal_Title :
Smart Grid, IEEE Transactions on
Publisher :
ieee
ISSN :
1949-3053
Type :
jour
DOI :
10.1109/TSG.2014.2349795
Filename :
6891360
Link To Document :
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