An Exact Method for a Discrete Multiobjective Linear Fractional Optimization

Author:

Chergui Mohamed El-Amine1,Moulaï Mustapha1

Affiliation:

1. LAID 3, Faculty of Mathematics, University of Sciences and Technology Houari Boumediene (USTHB), BP 32, Bab Ezzouar 16111, Algiers, Algeria

Abstract

Integer linear fractional programming problem with multiple objective (MOILFP) is an important field of research and has not received as much attention as did multiple objective linear fractional programming. In this work, we develop a branch and cut algorithm based on continuous fractional optimization, for generating the whole integer efficient solutions of the MOILFP problem. The basic idea of the computation phase of the algorithm is to optimize one of the fractional objective functions, then generate an integer feasible solution. Using the reduced gradients of the objective functions, an efficient cut is built and a part of the feasible domain not containing efficient solutions is truncated by adding this cut. A sample problem is solved using this algorithm, and the main practical advantages of the algorithm are indicated.

Funder

High Education Algerian Ministry

Publisher

Hindawi Limited

Subject

Applied Mathematics,Computational Mathematics,Statistics and Probability,General Decision Sciences

Reference23 articles.

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4. Mathematics and Its Applications,1997

5. Nonconvex Optimization and Its Applications,2000

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