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An Enhanced Evolutionary Based Feature Selection Approach Using Grey Wolf Optimizer for the Classification of High-dimensional Biological Data

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dc.contributor.author Thaher, Thaer
dc.contributor.author Awad, Mohammed
dc.contributor.author Aldasht, Mohammed
dc.contributor.author Sheta, Alaa
dc.contributor.author Turabieh, Hamza
dc.contributor.author Chantar, Hamouda
dc.date.accessioned 2022-05-31T09:45:03Z
dc.date.accessioned 2022-06-01T09:56:09Z
dc.date.available 2022-05-31T09:45:03Z
dc.date.available 2022-06-01T09:56:09Z
dc.date.issued 2022-05-28
dc.identifier.citation Thaer Thaher, Mohammed Awad, Mohammed Aldasht, Alaa Sheta, Hamza Turabieh, Hamouda Chantar, “An Enhanced Evolutionary Based Feature Selection Approach Using Grey Wolf Optimizer for the Classification of High-dimensional Biological Data”, JUCS - Journal of Universal Computer Science 28(5): 499-539, doi: 10.3897/jucs.78218, Received: 19 Nov 2021 | Approved: 03 Mar 2022 | Published: 28 May 2022 en_US
dc.identifier.issn 10.3897
dc.identifier.uri http://localhost:8080/xmlui/handle/123456789/8546
dc.description.abstract Feature selection (FS) is a pre-processing step that aims to eliminate the redundant and less-informative features to enhance the performance of data mining techniques. It is also considered as one of the key factors for improving classification problems in high-dimensional datasets. This paper proposes an efficient wrapper feature selection method based on Grey Wolf Optimizer(GWO). GWO is a recent metaheuristic algorithm that has been widely employed to solve diverse optimization problems. However, GWO mainly follows the search directions toward the leading wolves, making it prone to fall into local optima, especially when dealing with high-dimensional problems, which is the case when dealing with many biological datasets. An enhanced variation of GWO called EGWO, that adapts two enhancements, is introduced to overcome this specific shortcoming. In the first mode, a transition parameter is incorporated to move GWO from the exploration phase to exploitation phase. In addition, several adaptive non-linear decreasing formulas are introduced to control the transition parameters. In the second mode, a random-based search strategy is exploited to empower the diversity of the search process. Two binarization schemes using S-shaped and V-shaped transfer functions are incorporated to map the continuous search space into a binary one for dealing with FS problem. The efficiency of the proposed EGWO is validated on ten high-dimensional low-samples biological data. Our experimental results show promising performance of EGWO compared to the original GWO approach as well as other state-of-the-art techniques in terms of dimensionality reduction and the enhancement of classification performance. en_US
dc.language.iso en en_US
dc.publisher JUCS - Journal of Universal Computer Science en_US
dc.relation.ispartofseries , doi: 10.3897/jucs.78218;499
dc.subject Feature selection, Enhanced grey wolf optimizer, Binary grey wolf optimizer, Classi-fication, Biological data, Exploration, Metaheuristics en_US
dc.title An Enhanced Evolutionary Based Feature Selection Approach Using Grey Wolf Optimizer for the Classification of High-dimensional Biological Data en_US
dc.title.alternative An Enhanced Evolutionary Based Feature Selection Approach Using Grey Wolf Optimizer for the Classification of High-dimensional Biological Data en_US
dc.type Article en_US


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