DocumentCode :
1245033
Title :
On non-scale-invariant infinitely divisible cascades
Author :
Chainais, Pierre ; Riedi, Rudolf ; Abry, Patrice
Author_Institution :
LIMOS UMR CNRS, Univ. Clermont-Ferrand, Aubiere, France
Volume :
51
Issue :
3
fYear :
2005
fDate :
3/1/2005 12:00:00 AM
Firstpage :
1063
Lastpage :
1083
Abstract :
Multiplicative processes, multifractals, and more recently also infinitely divisible cascades have seen increased popularity in a host of applications requiring versatile multiscale models, ranging from hydrodynamic turbulence to computer network traffic, from image processing to economics. The methodologies prevalent as of today rely to a large extent on iterative schemes used to produce infinite detail and repetitive structure across scales. While appealing, due to their simplicity, these constructions have limited applicability as they lead by default to power-law progression of moments through scales, to nonstationary increments and often to inherent log-periodic scaling which favors an exponential set of scales. This paper studies and develops a wide class of infinitely divisible cascades (IDC), thereby establishing the first reported cases of controllable scaling of moments in non-power-law form. Embedded in the framework of IDC, these processes exhibit stationary increments and scaling over a continuous range of scales. Criteria for convergence, further statistical properties, as well as MATLAB routines are provided.
Keywords :
Brownian motion; continuous time systems; fractals; information theory; iterative methods; IDC; MATLAB routines; computer network traffic; economics; fractional Brownian motion; hydrodynamic turbulence; image processing; infinitely divisible cascades; inherent log-periodic scaling; iterative schemes; multifractals; multiplicative processes; multiscaling; nonscale-invariant infinitely divisible cascades; power-law progression; random walk; statistical property; Application software; Computer networks; Fractals; Hydrodynamics; Image processing; Iterative methods; Mathematical model; Power generation economics; Telecommunication traffic; Traffic control; Fractional Brownian motion; infinitely divisible cascades (IDC); multifractal; multiplicative cascades; multiscaling; random walk; turbulence;
fLanguage :
English
Journal_Title :
Information Theory, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9448
Type :
jour
DOI :
10.1109/TIT.2004.842570
Filename :
1397941
Link To Document :
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