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Open Access ·Peer-reviewed·ISSN (Online): 2169-012X·ISSN (Print): 0972-0502

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Open Access Research Article

Nonlinear dynamics and chaos theory in engineering with applications in control systems and signal analysis

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pp. 2099–2108Vol. 28Issue 6September 2025DOI: 10.47974/JIM-2351XML
Received:
10 Dec 2024
Published Online:
30 Sep 2025
Article type:
Research Article
Language:
EN
Article no.:
JIM-2351
Pages:
2099–2108

Abstract

Chaos theory and nonlinear dynamics have become very useful for studying and managing complicated industrial systems. Nonlinear systems and chaos concept are becoming more essential in engineering because conventional linear models do not always capture the complexity and uncertainty of actual-world conditions. This essay appears at the simple ideas of nonlinear dynamics, like bifurcation theory, Lyapunov exponents, and chaotic behaviour. It additionally talks approximately how those ideas may be used in control systems and sign analysis. Chaos theory may be used in control structures to find new ways to address uncertainty, make structures greater dependable, and create adaptable manage strategies for nonlinear structures. Chaos-based techniques are very beneficial for sign analysis due to the fact they provide specific approaches to manner indicators, cozy them, and locate patterns. These methods are especially useful in telecommunications, biological engineering, and environmental tracking. This essay also talks about a number of case studies and real-life examples that show how nonlinear dynamics can be used to improve engineering processes. 

Keywords

Subject Classifications

68Q85

References

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