• Title of article

    Presentation of a Novel Integrated DEA-BSC Model with Network Structure in Multi Objective Programmig

  • Author/Authors

    Kianfar ، Kianoosh Department of Industrial Engineering - Islamic Azad University, Science and Research branch , Ahadzadeh Namin ، Mahnaz Department of Mathematics - Islamic Azad University, Shahr-e-Qods Branch , Alam Tabriz ، Akbar Department of Management - Shahid Beheshti University , Najafi ، Esmaeil Department of Industrial Engineering - Islamic Azad University, Science and Research branch , Hosseinzadeh Lotfi ، Farhad Department of Mathematics - Islamic Azad University, Science and Research branch

  • From page
    967
  • To page
    984
  • Abstract
    Data envelopment analysis (DEA) is a nonparametric approach to estimate relative efficiency of Decision Making Units (DMUs). DEA and is one of the best quantitative approach and balanced scorecard (BSC) is one of the best qualitative method to measure efficiency of an organization. Since simultaneous evaluation of network performance of the quad areas of BSC model is considered as a necessity and separate use of DEA and BSC is not effective and leads to miscalculation of performance, integrated DEA-BSC model is applied. Regarding to multiobjective nature of the proposed model, two techniques including goal programming and weighted average method are used to solve such problems. At the end of the study, based on data relating to indexes of quad areas of BSC model, the results of the mentioned methods is compared. Besides assessing validation of the proposed model, the overall efficiency and each of the different stages of BSC is obtained. So that, finding a model for decision making units in various stages of BSC is the innovation of this research study.
  • Keywords
    Data Envelopment Analysis , Balanced scorecard , Decision making units , Goal programming , Weighting objective function , Multi objective programming
  • Journal title
    international journal of data envelopment analysis
  • Record number

    2502796