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February 14, 2026Entropy1 citationsOpen Access

Multistability, Chaos, and Control in the Deterministic and Stochastic Dynamics of Noise-Driven Nonlinear Oscillators

AJAdil JhangeerAAAtef Abdelkader

Key Points

  • The aim is to explore the deterministic and stochastic dynamics of noise-driven nonlinear oscillators.
  • Used overlap-mapping to compare traveling-wave solutions.
  • Conducted geometric and stability-based analysis with phase portraits.
  • Analyzed time-series responses and three-dimensional attractors.
  • Estimated Lyapunov exponents and performed return-map analysis.
  • Identified chaotic regions in phase space under varying parameters.
  • Confirmed high-dimensional chaotic behavior through rigorous analysis.
  • Demonstrated strong sensitivity to initial conditions.

Abstract

This paper presents a detailed investigation of the deterministic and stochastic dynamics of a noise-driven forced nonlinear oscillator in a periodically driven framework. An overlap-mapping approach is used to compare multiple traveling-wave solutions and verify the structural consistency among distinct solution families. The qualitative behavior of the system is further characterized through geometric and stability-based analysis, supported by two- and three-dimensional phase portraits, time-series responses, and reconstructed three-dimensional attractors to examine periodic and chaotic regimes under varying parameters and initial conditions. The sensitivity to parameter perturbations is quantified and the distribution of final states is analyzed to identify chaotic regions in the phase space. The high-dimensional chaotic nature of the dynamics is rigorously confirmed through Lyapunov exponent estimation, Poincaré sections, and return-map analysis, collectively demonstrating strong sensitivity to initial conditions and systematic transitions induced by parameter variations. These results provide a comprehensive dynamical description of the nonlinear oscillator and contribute to a deeper understanding of noise-influenced nonlinear driven systems.

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Cite This Study

Jhangeer et al. (2026) studied this question.

synapsesocial.com/papers/699011712ccff479cfe580fdhttps://doi.org/10.3390/e28020214
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