화학공학소재연구정보센터
Renewable Energy, Vol.123, 563-577, 2018
Sustainable development enhanced in the decision process of electricity generation expansion planning
The dissemination of distributed electric power generation is increasing despite some current technical, commercial and regulative limitations. Its development is a new reality which proper consideration is required in the planning of the expansion of the electric matrix. The use of renewable sources, smaller generation units and local availability of energy are characteristics that need to be considered in the planning process due to their impacts beyond the grid and energy supply when aspects of sustainable development are regarded. In order to strengthen distributed generation's contribution for sustainable development, this paper introduces additional social and environmental variables that are evaluated in conjunction with the technical and economic aspects in the indication of potential sites for deployment of wind turbines. Therefore, selected indicators corresponding to each of the dimensions of the sustainable development were used as inputs for multi-criteria evaluation techniques such as Rank Sum, Analytical Hierarchy Process and Weighted Linear Combination, and fuzzy logic. The techniques were applied and then compared in a case study for screening appropriate locations which are favorable to the wind turbines installation under the perspective of sustainable development. Actual data and wind characterization of the state of Sao Paulo, Brazil, were used and as a result state's municipalities with higher potential for installation of wind generators at 50 and 100 m height were identified according to each evaluation technique. It was noted that each technique promotes a specific trade-off between the criteria while balancing the evaluation output, however with a significant result convergence. Thus, the use of an objective methodology to incorporate dimensions involved in the sustainable development is effective and a valuable tool to support important decisions during the planning process in the generation expansion. (C) 2018 Elsevier Ltd. All rights reserved.