Paper
2 May 2008 Fractal approach to mathematical modelling of space observation data
Valeriy H. Bagmanov, Sergey V. Dyblenko, Klaus Janschek, Anton E. Kiselev, Albert H. Sultanov, Valeriy V. Tchernykh
Author Affiliations +
Proceedings Volume 7026, Optical Technologies for Telecommunications 2007; 70260D (2008) https://doi.org/10.1117/12.801495
Event: Optical Technologies for Telecommunications 2007, 2007, Ufa, Russian Federation
Abstract
Fractal approach to mathematical modelling of signals in space optical observation systems is proposed. The scannings of two-dimensional images as one-dimensional stochastic fractal processes are built on the base of Brownian motion. Integrals over trajectories of Wiener processes with different kernels are used for modeling of one-dimensional stochastic fractals and multifractals. Modelling of scannings of remotely sensed data based on formalism of integrals over Wiener stochastic process trajectories and modelling of probabilistic characteristics based on formalism of Feynman continual integrals are performed. Algorithms of multiscale detection of signals on the basis of discrete and continuous wavelet transforms are developed and applied for anomaly detection and estimation.
© (2008) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Valeriy H. Bagmanov, Sergey V. Dyblenko, Klaus Janschek, Anton E. Kiselev, Albert H. Sultanov, and Valeriy V. Tchernykh "Fractal approach to mathematical modelling of space observation data", Proc. SPIE 7026, Optical Technologies for Telecommunications 2007, 70260D (2 May 2008); https://doi.org/10.1117/12.801495
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KEYWORDS
Signal detection

Fractal analysis

Stochastic processes

Image processing

Mathematical modeling

Data modeling

Algorithm development

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