2019
DOI: 10.3390/e21111115
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Complex Chaotic Attractor via Fractal Transformation

Abstract: Based on simplified Lorenz multiwing and Chua multiscroll chaotic systems, a rotation compound chaotic system is presented via transformation. Based on a binary fractal algorithm, a new ternary fractal algorithm is proposed. In the ternary fractal algorithm, the number of input sequences is extended from 2 to 3, which means the chaotic attractor with fractal transformation can be presented in the three-dimensional space. Taking Lorenz system, rotation Lorenz system and compound chaotic system as the seed chaot… Show more

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Cited by 22 publications
(9 citation statements)
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“…However, the dynamic behaviors and hardware implementation of the separated attractors were not given to prove the excellent performance of this method. Dai et al [22] introduced the ternary fractal method based on the binary fractal algorithm by extending the number of input sequences to three from two, implying that the attractors can be exhibited in three-dimensional space. Although the paper presents the dynamics analysis and hardware implementation of multi-scroll attractors, more complex attractors such as separated attractors, and nested attractors were not given.…”
Section: Introductionmentioning
confidence: 99%
“…However, the dynamic behaviors and hardware implementation of the separated attractors were not given to prove the excellent performance of this method. Dai et al [22] introduced the ternary fractal method based on the binary fractal algorithm by extending the number of input sequences to three from two, implying that the attractors can be exhibited in three-dimensional space. Although the paper presents the dynamics analysis and hardware implementation of multi-scroll attractors, more complex attractors such as separated attractors, and nested attractors were not given.…”
Section: Introductionmentioning
confidence: 99%
“…We can apply the GFD method to compare the Sobel, Prewitt and Robert edge detection method’s complexity of the various COVID-19 patient’s images. The qualitative measure is useful during image processing, distortion caused by noise, blurring, sounds and abstract artifacts will impair image quality [ 11 ]–[ 18 ]. When doing other qualities with distorted images, the value of the uncompressed image is useful.…”
Section: Introductionmentioning
confidence: 99%
“…The image’s non-uniformity or inhomogeneity cannot be described by a single-dimensional measure. This dimensional scale is insufficient to classify the experimental image’s randomness or inconsistency [ 8 11 ]. A Multifractal is an inhomogeneous set that is defined by the Generalized Fractal Dimensions (GFD) or Renyi Fractal Dimensions.…”
Section: Introductionmentioning
confidence: 99%