Journal Article

·2026 OPEN ACCESS

Analysis of a $(2 + 1)$-dimensional fractal KP model: solitons, geometric embedding, and parameter estimation via deep learning

Mohamed S. Algolam , L. M. Abdalgadir , Mohammed Alsharafi YTU , Khaled Aldwoah

Boundary Value Problems

Abstract

This paper presents fractal-modified $(2 + 1)$-dimensional Kadomtsev–Petviashvili (KP) model for describing long waves in fractal dispersive media, based on He’s ($\mathfrak{H}$) fractal derivative. To begin with, we implement the semi-inverse technique (SIT) to formulate a fractal generalized variational principle (FGVP), and we prove it using a fractal two-scale transformation and a newly derived principle. The conservation laws in the fractal space are expressed in energy form. The Bäcklund transformation-based approach proposed by Wang, combined with symbolic computation and ansatz function schemes, enables the derivation of further solutions. These solutions include new forms of rational functions, double exponential functions, sine-cosine forms, and hyperbolic sine-cosine functions. For all these solutions, the effects of fractal orders are thoroughly analyzed using 3D plots, density plots, and 2D curves. Additionally, a feedforward deep neural network is trained to estimate the fractal parameters $\zeta _{1}$ and γ from waveform data. Furthermore, manifold learning techniques such as principal component analysis and uniform manifold approximation and projection are employed to uncover global structural patterns in the solution space, revealing distinct clusters and nonlinear dependencies driven by fractal parameters.

Keywords

Fractal Fractal derivative Fractal dimension on networks Manifold (fluid mechanics) Fractal landscape Fractal analysis Ansatz Fractal compression Artificial neural network Mathematics Applied mathematics

Subject Areas

Nonlinear Waves and Solitons ·Statistical and Nonlinear Physics ·Physical Sciences
Fractional Differential Equations Solutions ·Modeling and Simulation ·Physical Sciences
Thermoelastic and Magnetoelastic Phenomena ·Mechanics of Materials ·Physical Sciences

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