AI Article Synopsis

  • Health-care waste management is a significant problem in municipalities, especially in developing cities, requiring complex decision-making to choose the best treatment technology.
  • The study introduces a new hybrid decision-making approach called interval 2-tuple induced TOPSIS (ITI-TOPSIS) that combines different assessment techniques to handle varying opinions and information uncertainties from decision makers.
  • An example from Shanghai demonstrates the effectiveness of ITI-TOPSIS in selecting optimal health-care waste disposal methods, showcasing its ability to address the complexities involved in the decision-making process.

Article Abstract

Health-care waste (HCW) management is a major challenge for municipalities, particularly in the cities of developing nations. Selecting the best treatment technology for HCW can be regarded as a complex multi-criteria decision making (MCDM) issue involving a number of alternatives and multiple evaluation criteria. In addition, decision makers tend to express their personal assessments via multi-granularity linguistic term sets because of different backgrounds and knowledge, some of which may be imprecise, uncertain and incomplete. Therefore, the main objective of this study is to propose a new hybrid decision making approach combining interval 2-tuple induced distance operators with the technique for order preference by similarity to an ideal solution (TOPSIS) for tackling HCW treatment technology selection problems with linguistic information. The proposed interval 2-tuple induced TOPSIS (ITI-TOPSIS) can not only model the uncertainty and diversity of the assessment information given by decision makers, but also reflect the complex attitudinal characters of decision makers and provide much more complete information for the selection of the optimum disposal alternative. Finally, an empirical example in Shanghai, China is provided to illustrate the proposed decision making method, and results show that the ITI-TOPSIS proposed in this paper can solve the problem of HCW treatment technology selection effectively.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4924019PMC
http://dx.doi.org/10.3390/ijerph13060562DOI Listing

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