A Novel Four-Stage Synchronized Chaotic Map: Design and Statistical Characterization
Ricardo Francisco Martinez-Gonzalez

TL;DR
This paper introduces a new four-stage synchronized chaotic map designed to improve the statistical quality of digital chaotic systems, validated through extensive testing and outperforming traditional maps.
Contribution
A novel four-stage synchronized chaotic map with independent segments is proposed, addressing degradation issues in digital implementations and validated with rigorous statistical testing.
Findings
The new map passes all NIST tests, unlike traditional maps.
It exhibits superior statistical properties and complex dynamics.
The design mitigates degradation in digital chaotic systems.
Abstract
Digital implementations of chaotic systems often suffer from inherent degradation, limiting their long-term performance and statistical quality. To address this challenge, we propose a novel four-stage synchronized piecewise linear chaotic map. This new map is meticulously designed with four independent segments, each possessing its own control parameters, specifically engineered to mitigate the natural degradation observed in digitally realized dynamical systems. We characterize its behavior using established tools from nonlinear dynamics, including bifurcation diagrams and graphical analysis, which provide a comprehensive qualitative understanding of its complex dynamics. To rigorously validate the statistical features of the generated sequences, we employed the National Institute of Standards and Technology (NIST) statistical testing suite. A substantial 100 MB dataset, comprising…
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