• Title of article

    MultiObjective Economic and Emission Scheduling of Smart Apartment Building

  • Author/Authors

    Najafi-Ghalelou ، Afshin University of Tabriz , Zare ، Kazem - University of Tabriz , Nojavan ، Sayyad - University of Bonab

  • Pages
    13
  • From page
    41
  • To page
    53
  • Abstract
    In recent years, simultaneous optimization of two conflicted objective functions become an important topic in power system. In this paper, a multiobjective mixedinteger linear programming (MILP) based model is provided for economicenvironmental scheduling of a smart apartment building. The first objective function is the operation cost of the building’s minimization. The minimization of the CO2 emission is considered as the second objective function. The proposed multiobjective problem is solved using the weighted sum approach and the ɛconstraint method. Then, minmax fuzzy satisfying approach is carried out to select the ideal winwin strategy from the obtained efficient results. The proposed MILPbased sample model is solved using General Algebraic Modeling System (GAMS) under CPLEX solver. Also, two scenarios, weighted sum approach and ɛconstraint method scenarios, are used to analyse the efficiency of the proposed sample model. By comparing the obtained results, it can be concluded that with considering the ɛconstraint approach, total operation cost of the building is reduced 24.78% by optimizing the model from economical perspectives. On the other hand, solving the proposed model from environmental perspectives led to a decline of 6.96% in CO2 emission. Also, the weighted sum approach shows a reduction of 25.11% and 10.73% as a result from economic and environmental points of view, respectively.
  • Keywords
    multiobjective optimization model , Smart apartment building , CO2 emission , ɛconstraint , weighted sum approach , fuzzy satisfying technique
  • Journal title
    Journal of Energy Management and Technology
  • Serial Year
    2019
  • Journal title
    Journal of Energy Management and Technology
  • Record number

    2453425