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إنتروبيا العينة×تحليل الكسور (Fractal Analysis)×
المجالالأنظمة المعقدةالأنظمة المعقدة
العائلةMachine learningMachine learning
سنة النشأة20001983
صاحب الطريقةRichman & MoormanBenoit Mandelbrot
النوعNonlinear entropy measureGeometric complexity quantification
المصدر التأسيسيRichman, J. S., & Moorman, J. R. (2000). Physiological time-series analysis using approximate entropy and sample entropy. American Journal of Physiology, 278(6), H2039–H2049. DOI ↗Mandelbrot, B. B. (1983). The Fractal Geometry of Nature. W. H. Freeman. ISBN: 978-0-7167-1186-5
الأسماء البديلةSampEn, Sample Entropy (SampEn), Örneklem Entropisi, Nonlinear Complexity MeasureBox-Counting Analysis, Fractal Dimension Estimation, Multifractal Analysis, Fraktal Analiz
ذات صلة22
الملخصSample Entropy (SampEn) is a nonlinear measure of the complexity and regularity of a time series. Introduced by Richman and Moorman in 2000 as an improvement over Approximate Entropy (ApEn), it quantifies the likelihood that similar patterns of a given length in the series remain similar when extended by one additional data point. A higher SampEn value indicates greater irregularity and complexity, while a lower value indicates more regularity or self-similarity.Fractal Analysis quantifies the self-similar, scale-invariant complexity of geometric objects and time series through the fractal dimension D and the Hurst exponent H. Introduced systematically by Benoit Mandelbrot in his 1983 landmark work, the framework extends classical Euclidean geometry to irregular shapes found in nature, finance, physiology, and materials science. It provides a single dimensionless index that captures how completely a pattern fills space across multiple scales.
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ScholarGateقارن الطرق: Sample Entropy · Fractal Analysis. استُرجع بتاريخ 2026-06-15 من https://scholargate.app/ar/compare