Title :
Multi-objective DG planning considering operational and economic viewpoints
Author :
Ameli, A. ; Farrokhifard, M. ; Shahsavari, Amirhosain ; Ahmadifar, A. ; Shayanfar, Heidar-Ali
Author_Institution :
Electr. Eng. Dept., Iran Univ. of Sci. & Technol., Tehran, Iran
Abstract :
In recent decades, moving towards extensive applications of renewable energy sources instead of traditional fossil ones, distributed generations or DGs have become proper choices to employ in power grids. Although application of these types of supplies have lots of advantages, such as improving the voltage stability, enhancement of the voltage profiles, mitigation of power losses and improvement of grids reliability, however, improper location and size of these units can raise problems in the operation of power systems. Consequently, appropriate selection and location of DG units are of great importance. This paper proposes a novel technique using multi-objective particle swarm optimization (MOPSO) tool for determining DGs sizes and locations to be used by distribution company (DisCo). In this study, the necessary operational and economic objective functions are developed. Then in order to select the best compromised answer from the Pareto optimal set of solutions obtained from the related simulations, a fuzzy decision making method is employed. Finally, the effectiveness of the proposed technique is validated on the IEEE 33-bus distribution test system.
Keywords :
Pareto optimisation; decision making; distributed power generation; particle swarm optimisation; power generation planning; power generation reliability; DG unit location; DG unit selection; DisCo; IEEE 33-bus distribution test system; MOPSO tool; Pareto optimal set; distributed generations; distribution company; economic objective function; economic viewpoint; fuzzy decision making method; grid reliability improvement; multiobjective DG planning; multiobjective particle swarm optimization; operational objective function; operational viewpoint; power grids; power loss mitigation; power system operation; renewable energy sources; voltage profile enhancement; voltage stability; Equations; Indexes; Linear programming; Mathematical model; Planning; Power system stability; Stability analysis; MOPSO; distributed generation; economicy; fuzzy decesion making; operational;
Conference_Titel :
Environment and Electrical Engineering (EEEIC), 2013 13th International Conference on
Conference_Location :
Wroclaw
Print_ISBN :
978-1-4799-2802-6
DOI :
10.1109/EEEIC-2.2013.6737891