A genetic algorithm-based fuzzy goal programming approach for solving fractional bilevel programming problems (Q2627312)
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| Language | Label | Description | Also known as |
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| English | A genetic algorithm-based fuzzy goal programming approach for solving fractional bilevel programming problems |
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A genetic algorithm-based fuzzy goal programming approach for solving fractional bilevel programming problems (English)
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31 May 2017
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Summary: This paper presents a genetic algorithm (GA) based fuzzy goal programming procedure for modelling and solving bilevel programming problems having fractional objectives in a hierarchical decision system. In the proposed approach, the concept of tolerance membership functions in fuzzy sets for measuring the degree of satisfactions of the decision-makers (DMs) regarding achievements of fuzzily described objective goals as well as the degree of optimality of the decision vector controlled by the upper-level DM are considered in the decision-making context. The proposed approach leads to achieve the highest membership value (unity) of each of the defined fuzzy goals to the extent possible in the decision-making situation. In the GA search process, the fitter codon selection scheme, two-point crossover and random mutation are adopted to reach a satisfactory solution in the decision-making environment. To illustrate the potential use of the approach, a numerical example is solved.
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BLP
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bilevel programming
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FGP
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fuzzy goal programming
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fuzzy programming
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goal programming
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GAs
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genetic algorithms
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tolerance membership functions
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modelling
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fuzzy sets
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decision making
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