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Article | Open Access

New Trends in Fuzzy Modeling Through Numerical Techniques

M. M. Alqarni1Muhammad Rafiq2Fazal Dayan3( )Jan Awrejcewicz4Nauman Ahmed5Ali Raza6Muhammad Ozair Ahmad5Witold Pawłowski7Emad E. Mahmoud8
Department of Mathematics, College of Sciences, King Khalid University, Abha, 61413, Saudi Arabia
Department of Mathematics, Faculty of Sciences and Technology, University of Central Punjab, Lahore, Pakistan
Department of Mathematics, School of Science, University of Management and Technology, Lahore, Pakistan
Department of Automation, Biomechanics and Mechatronics, Lodz University of Technology, 1/15 Stefanowskiego St., 90-924, Lodz, Poland
Department of Mathematics and Statistics, University of Lahore, Lahore, Pakistan
Department of Mathematics, Govt. Maulana Zafar Ali Khan Graduate College Wazirabad, Punjab Higher Education Department (PHED), Lahore, 54000, Pakistan
Institute of Machine Tools and Production Engineering, Lodz University of Technology, Poland
Department of Mathematics, College of Science, Taif University, P. O. Box, 11099, Taif, 21944, Saudi Arabia
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Abstract

Amoebiasis is a parasitic intestinal infection caused by the highly pathogenic amoeba Entamoeba histolytica. It is spread through person-to-person contact or by eating or drinking food or water contaminated with feces. Its transmission rate depends on the number of cysts present in the environment. The traditional models assumed a homogeneous and contradictory transmission with reality. The heterogeneity of its transmission rate is a significant factor when modeling disease dynamics. The heterogeneity of disease transmission can be described mathematically by introducing fuzzy theory. In this context, a fuzzy SEIR Amoebiasis disease model is considered in this study. The equilibrium analysis and reproductive number are studied with fuzziness. Two numerical schemes forward Euler method and a nonstandard finite difference (NSFD) approach, are developed for the learned model, and the results of numerical simulations are presented. The numerical and simulation results reveal that the proposed NSFD method provides an adequate representation of the dynamics of the disease despite the uncertainty and heterogeneity. Moreover, the obtained method generates plausible predictions that regulators can use to support decision-making to design and develop control strategies.

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Computers, Materials & Continua
Pages 6371-6388

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Cite this article:
Alqarni MM, Rafiq M, Dayan F, et al. New Trends in Fuzzy Modeling Through Numerical Techniques. Computers, Materials & Continua, 2023, 74(3): 6371-6388. https://doi.org/10.32604/cmc.2023.033553

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Received: 20 June 2022
Accepted: 02 September 2022
Published: 31 March 2023
© The Author 2024.

This work is licensed under a Creative Commons Attribution 4.0 International License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.