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JOURNALS // Avtomatika i Telemekhanika // Archive

Avtomat. i Telemekh., 2020 Issue 11, Pages 136–154 (Mi at15596)

This article is cited in 1 paper

Optimization of linear stochastic systems based on canonical wavelet expansions

I. N. Sinitsynab, V. I. Sinitsynba, E. R. Korepanova, T. D. Konashenkovaa

a Institute of Informatics Problems, Federal Research Center “Computer Science and Control,” Russian Academy of Sciences, Moscow, Russia
b Moscow Aviation Institute (National Research University), Moscow, Russia

Abstract: Design problems for linear mean square (MS) optimal filters are considered on the basis of canonical wavelet expansions (CWEs). To simulate the class of essentially non-stationary stochastic processes, including those describing shock effects, the idea put forward in this paper is to use the CWEs based on the coefficients of its covariance function expanded in terms of an orthogonal two-dimensional wavelet basis. To estimate an observed process represented as a CWE, a linear MS optimal operator in the form of a set of formal rules describing the operator's response to basic wavelet functions is constructed. Explicit formulas for calculating the MS optimal estimate of the signal and the MS optimal estimate of the quality of the constructed linear MS optimal operator are derived. Sintez-VL, a software tool developed in MATLAB, is described. A test example with the delta function is provided.

Keywords: canonical wavelet expansion, nonstationary linear mean square optimal filter, orthogonal wavelets with a finite support, Haar wavelets.

Presented by the member of Editorial Board: A. I. Kibzun

Received: 02.03.2020
Revised: 25.05.2020
Accepted: 09.07.2020

DOI: 10.31857/S0005231020110082


 English version:
Automation and Remote Control, 2020, 81:11, 2046–2061

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© Steklov Math. Inst. of RAS, 2024