Fractal Teletraffic Modeling and Delay Bounds in Computer Communications
CRC Press (Verlag)
978-1-032-21526-6 (ISBN)
As opposed to traditional studies of teletraffic delay bounds, the author proposes a novel fractional noise, the generalized fractional Gaussian noise (gfGn) approach, and introduces a new fractional noise, generalized Cauchy (GC) process for traffic modeling.
Researchers and graduates in computer science, applied statistics, and applied mathematics will find this book beneficial.
Ming Li, PhD, is a professor at Ocean College, Zhejiang University, and the East China Normal University. He has been an active contributor for many years to the fields of computer communications, applied mathematics and statistics, particularly network traffic modeling, fractal time series, and fractional oscillations. He has authored more than 200 articles and 5 monographs on the subjects. He was identified as the Most Cited Chinese Researcher by Elsevier in 2014–2020. Professor Li was recognized as a top 100,000 scholar in all fields in 2019–2020 and a top 2% scholar in the field of Numerical and Computational Mathematics in 2021 by Prof. John P. A. Ioannidis, Stanford University.
Ming Li, PhD, is a professor at Ocean College, Zhejiang University, as well as at the East China Normal University. He has been an active contributor for many years to the fields of computer communications, applied mathematics and statistics,particularly network traffic modeling, fractal time series, and fractional oscillations. He has authored more than 200 articles and 5 monographs on the subjects. He was identified as the Most Cited Chinese Researcher by Elsevier in 2014–2020. Professor Li was recognized as a top 100,000 scholar in all fields in 2019–2020 and a top 2% scholar in the field of Numerical and Computational Mathematics in 2021 by Prof. John P. A. Ioannidis, Stanford University. (https://orcid.org/my-orcid?orcid=0000-0002-2725-353X)
1. Time series 2. Fourier transform 3. Applied Functional 4. Min-plus convolution 5. Noise and systems of fractional order 6. Fractional Gaussian noise and traffic modeling 7. Generalized fractional Gaussian noise and traffic modeling 8. Generalized Cauchy process and traffic modeling 9. Traffic bound of generalized Cauchy type 10. Fractal traffic delay bounds 11. Computations of scale factors 12. Postscript
Erscheinungsdatum | 15.03.2022 |
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Zusatzinfo | 29 Tables, black and white; 42 Line drawings, black and white; 42 Illustrations, black and white |
Verlagsort | London |
Sprache | englisch |
Maße | 152 x 229 mm |
Gewicht | 453 g |
Themenwelt | Mathematik / Informatik ► Informatik ► Netzwerke |
Mathematik / Informatik ► Informatik ► Theorie / Studium | |
Mathematik / Informatik ► Mathematik | |
ISBN-10 | 1-032-21526-7 / 1032215267 |
ISBN-13 | 978-1-032-21526-6 / 9781032215266 |
Zustand | Neuware |
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