Department of Mathematical, Open Educational College, Wasit, Iraq.
International Journal of Science and Research Archive, 2025, 17(03), 695-719
Article DOI: 10.30574/ijsra.2025.17.3.3305
Received 05 November 2025; revised on 18 December 2025; accepted on 20 December 2025
The objective of this article is to create a comprehensive mathematical formula for the analysis and control of neutral fractional-order systems that are characterized by state-dependent delays and periodic coefficients. Some of the issues that this article will address involve a variety of important area, including, but not limited to, the existence, uniqueness, stability and controllability of neutral fractional-order systems and will develop efficient numerical methods. This study will also integrate recent developments in the fractional calculus with the application of develop sufficient conditions for asymptotic stability criteria for neutral fractional-order systems using the fractional Lyapunov-Krasovskii functional and an Algorithm of Linear Matrix Inequalities. The use of a predictor-corrector method with adaptive step size control and cubic spline interpolation with state-dependent delays will further aid in providing a theoretical basis for the development of adequate control of neutral fractional-order systems. Extensive numerical simulations and theoretical validation of the methods discussed in this paper have shown substantial improvements in control accuracy and computational efficiency when applied to biomedical engineering and smart grids.
Neutral Fractional-Order Systems; State-Dependent Delay; Period Coefficients; Stable Controllability; Asymptotic Stability; Predictor-Corrector Methods; Applications in Biomedical Fields
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Mohammed Saleh hadi. Bridging theoretical and applied gaps in the analysis and control of neutral fractional-order systems using advanced controllability and numerical analysis methodologies. International Journal of Science and Research Archive, 2025, 17(03), 695-719. Article DOI: https://doi.org/10.30574/ijsra.2025.17.3.3305.
Copyright © 2025 Author(s) retain the copyright of this article. This article is published under the terms of the Creative Commons Attribution Liscense 4.0







