\begin{thebibliography}{10} \bibitem{9914620} S.~Ahn and M.~Kwon, ``Reproduction factor based latent epidemic model inference: A data-driven approach using covid-19 datasets,'' {\em IEEE Journal of Biomedical and Health Informatics}, vol.~27, no.~3, pp.~1259--1270, 2023. \bibitem{9929470} T.~J. Roy, M.~A. Mahmood, A.~Mohanta, and D.~Roy, ``An analytical approach to predict the covid-19 death rate in bangladesh utilizing multiple regression and seir model,'' in {\em 2021 IEEE International Conference on Robotics, Automation, Artificial-Intelligence and Internet-of-Things (RAAICON)}, pp.~42--45, 2021. \bibitem{9628991} D.~Chumachenko, K.~Bazilevych, I.~Meniailov, S.~Yakovlev, and T.~Chumachenko, ``Simulation of covid-19 dynamics using ridge regression,'' in {\em 2021 IEEE 4th International Conference on Advanced Information and Communication Technologies (AICT)}, pp.~163--166, 2021. \bibitem{9630798} S.~Zhang and H.~Yang, ``Spatial modeling and analysis of human traffic and infectious virus spread in community networks,'' in {\em 2021 43rd Annual International Conference of the IEEE Engineering in Medicine \& Biology Society (EMBC)}, pp.~2286--2289, 2021. \bibitem{6414589} H.~Kim and R.~Anderson, ``An experimental evaluation of robustness of networks,'' {\em IEEE Systems Journal}, vol.~7, no.~2, pp.~179--188, 2013. \bibitem{8228672} R.~Mitchell, ``Epidemic-resistant configurations for intrusion detection systems,'' in {\em 2017 IEEE Conference on Communications and Network Security (CNS)}, pp.~487--494, 2017. \bibitem{9678822} N.~Dakhno, O.~Leshchenko, Y.~Kravchenko, A.~Dudnik, O.~Trush, and V.~Khankishiev, ``Dynamic model of the spread of viruses in a computer network using differential equations,'' in {\em 2021 IEEE 3rd International Conference on Advanced Trends in Information Theory (ATIT)}, pp.~111--115, 2021. \bibitem{5455187} B.~Shan, ``The spread of malware on the wifi network: Epidemiology model and behaviour evaluation,'' in {\em 2009 First International Conference on Information Science and Engineering}, pp.~1916--1918, 2009. \bibitem{10227113} Y.~Tang and R.~A. Williams, ``Investigating relationship conflict within the social network of large is projects using a sir model,'' in {\em 2022 IEEE International Symposium on Technology and Society (ISTAS)}, vol.~1, pp.~1--5, 2022. \bibitem{9457692} M.~A. Parwez, M.~Abulaish, and J.~Jahiruddin, ``A social media time-series data analytics approach for digital epidemiology,'' in {\em 2020 IEEE/WIC/ACM International Joint Conference on Web Intelligence and Intelligent Agent Technology (WI-IAT)}, pp.~852--859, 2020. \bibitem{9856356} D.~Mathebula, ``Novel data-based model for future epidemiology,'' in {\em 2022 International Conference on Artificial Intelligence, Big Data, Computing and Data Communication Systems (icABCD)}, pp.~1--6, 2022. \bibitem{9450250} Y.~Wang, K.~N. Plataniotis, J.~Z. Wang, M.~Hou, M.~Zhou, N.~Howard, J.~Peng, R.~Huang, S.~Patel, and D.~Zhang, ``The cognitive and mathematical foundations of analytic epidemiology,'' in {\em 2020 IEEE 19th International Conference on Cognitive Informatics \& Cognitive Computing (ICCI*CC)}, pp.~6--14, 2020. \bibitem{9593147} D.~Fedorov, Y.~Tabarak, A.~Dadlani, M.~S. Kumar, and V.~Kizheppatt, ``Dynamics of multi-strain malware epidemics over duty-cycled wireless sensor networks,'' in {\em 2021 International Balkan Conference on Communications and Networking (BalkanCom)}, pp.~1--5, 2021. \bibitem{Lou2021} Y.~Lou and R.~B. Salako, ``Control strategies for a multi-strain epidemic model,'' {\em Bulletin of Mathematical Biology}, vol.~84, p.~10, Nov 2021. \bibitem{10.1371/journal.pone.0257512} E.~F. Arruda, S.~S. Das, C.~M. Dias, and D.~H. Pastore, ``Modelling and optimal control of multi strain epidemics, with application to covid-19,'' {\em Plos One}, vol.~16, pp.~1--18, 09 2021. \bibitem{alaya2022mathematical} M.~B. Alaya, W.~B. Aribi, and S.~B. Miled, ``Mathematical analysis of a delayed seirds epidemics models: Deterministic and stochastic approach,'' 2022. \newblock arXiv:2208.07690. \bibitem{NetworkX} A.~Hagberg, P.~J. Swart, and D.~A. Schult, ``Exploring network structure, dynamics, and function using networkx,'' \newblock {Available: https://www.osti.gov/biblio/960616}. \bibitem{reticulate} K.~Ushey, J.~Allaire, and Y.~Tang, {\em Reticulate: Interface to 'Python'}, 2023. \newblock {R package version 1.28. Available: https://CRAN.R-project.org/package=reticulate}. \bibitem{pracma} H.~W. Borchers, {\em Pracma: Practical Numerical Math Functions}, 2022. \newblock R package version 2.4.2. \bibitem{RA} M.~Rausand, ``Introduction,'' in {\em Risk Assessment: Theory, Methods, and Applications}, ch.~1, pp.~1--28, John Wiley \& Sons Inc., 2013. \end{thebibliography}