Title :
Identification and state realisation of non-rational convolution models by means of diffusive representation
Author :
Casenave, C. ; Montseny, G.
Author_Institution :
LAAS, CNRS, Toulouse, France
Abstract :
The authors introduce a new identification method for general causal convolution models of the form u → h * u = H(∂t)u, where h is the impulse response of the system, to be identified from measurement data. This method is based on a suitable parameterisation of operator H(∂t) deduced from the so-called diffusive representation, devoted to state representations of such integral operators. Following this approach, the complex dynamic features of H(∂t) can be summarised by a few numerical parameters on which the identification method will focus. The class of concerned convolution operators includes rational as well as non-rational ones, even of complex nature. For illustration, we implement this method on a numerical example.
Keywords :
convolution; numerical analysis; state estimation; causal convolution model; complex dynamic features; diffusive representation; identification method; impulse response; integral operators; nonrational convolution model; numerical parameter; state realisation;
Journal_Title :
Control Theory & Applications, IET
DOI :
10.1049/iet-cta.2010.0229