2015
DOI: 10.1515/amcs-2015-0017
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On-line parameter and delay estimation of continuous-time dynamic systems

Abstract: The problem of on-line identification of non-stationary delay systems is considered. The dynamics of supervised industrial processes are usually modeled by ordinary differential equations. Discrete-time mechanizations of continuous-time process models are implemented with the use of dedicated finite-horizon integrating filters. Least-squares and instrumental variable procedures mechanized in recursive forms are applied for simultaneous identification of input delay and spectral parameters of the system models.… Show more

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Cited by 13 publications
(8 citation statements)
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References 24 publications
(29 reference statements)
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“…Then, applying the matrix inversion lemma to (33), we obtain a recursive form of the LA algorithm, similar to ( 25)- (27). This means that our LA procedure takes the typical form where the regression (column) vector 𝝋(k) is replaced by 𝝋(k)∕|ê(k)|.…”
Section: La Estimatorsmentioning
confidence: 99%
“…Then, applying the matrix inversion lemma to (33), we obtain a recursive form of the LA algorithm, similar to ( 25)- (27). This means that our LA procedure takes the typical form where the regression (column) vector 𝝋(k) is replaced by 𝝋(k)∕|ê(k)|.…”
Section: La Estimatorsmentioning
confidence: 99%
“…Rao and Sivakumar (1979), suggested a method of identifying the system delay by minimizing a cost function whose value depends on the difference between the process and model outputs. An interesting method of identifying both the linear system parameters and delay was proposed by Kozłowski and Kowalczuk (2015). The algorithm presented by Balestrino et al (2000b) can be used for a certain class of systems in the case of single and multiple delays between inputs and outputs and involves introducing additional time-shifted…”
Section: Identification Of the Miso System With Delaysmentioning
confidence: 99%
“…Besides, it is an integral element of dynamic models of physical, chemical, biological, technical and economic systems [1]. However, TDE applications in radio engineering, hydroacoustics, seismology and, especially, in non-destructive testing [1,2] are in the scope of this paper.…”
Section: Introductionmentioning
confidence: 99%