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A novel method for solving the fully neutrosophic linear programming problems
Faculty
Computer Science
Year:
2019
Type of Publication:
ZU Hosted
Pages:
5
Authors:
Mai Mohammed Abdul Sattar Jaafar
Staff Zu Site
Abstract In Staff Site
Journal:
NEURAL COMPUTING & APPLICATIONS Springer
Volume:
Keywords :
, novel method , solving , fully neutrosophic linear
Abstract:
The most widely used technique for solving and optimizing a real-life problem is linear programming (LP), due to its simplicity and efficiency. However, in order to handle the impreciseness in the data, the neutrosophic set theory plays a vital role which makes a simulation of the decision-making process of humans by considering all aspects of decision (i.e., agree, not sure and disagree). By keeping the advantages of it, in the present work, we have introduced the neutrosophic LP models where their parameters are represented with a trapezoidal neutrosophic numbers and presented a technique for solving them. The presented approach has been illustrated with some numerical examples and shows their superiority with the state of the art by comparison. Finally, we conclude that proposed approach is simpler, efficient and capable of solving the LP models as compared to other methods.
Author Related Publications
Mai Mohammed Abdul Sattar Jaafar, "A novel group decision-making model based on triangular neutrosophic numbers", Springer, 2018
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Mai Mohammed Abdul Sattar Jaafar, "altruism as tool of optimization:literature review", international journal of engineering trends and technology, 2015
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Mai Mohammed Abdul Sattar Jaafar, "a modified genetic algorithm based on altruism to solve engineering design problems", computational and intellegience nanoscience, 2016
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Mai Mohammed Abdul Sattar Jaafar, "The role of single valued neutrosophic sets and rough sets in smart city: Imperfect and incomplete information systems", Elsevier, 2018
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Mai Mohammed Abdul Sattar Jaafar, "Multi-criteria group decision making based on neutrosophic analytic hierarchy process", IOS press, 2017
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Saber Mohamed, "Training and Testing a Self-Adaptive Multi-Operator Evolutionary Algorithm for Constrained Optimization", ELSEVEIR, 2015
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Saber Mohamed, "An Improved Self-Adaptive Differential Evolution Algorithm for Optimization Problems", IEEE, 2013
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