An EM-based identification algorithm for a class of hybrid systems with application to power electronics

Aguilera, RP; Godoy, BI; Aguero, JC; Goodwin, GC; Yuz, JI

Abstract

In this paper we present an identification algorithm for a class of continuous-time hybrid systems. In such systems, both continuous-time and discrete-time dynamics are involved. We apply the expectation-maximisation algorithm to obtain the maximum likelihood estimate of the parameters of a discrete-time model expressed in incremental form. The main advantage of this approach is that the continuous-time parameters can directly be recovered. The technique is particularly well suited to fast-sampling rates. As an application, we focus on a standard identification problem in power electronics. In this field, our proposed algorithm is of importance since accurate modelling of power converters is required in high- performance applications and for fault diagnosis. As an illustrative example, and to verify the performance of our proposed algorithm, we apply our results to a flying capacitor multicell converter.

Más información

Título según WOS: An EM-based identification algorithm for a class of hybrid systems with application to power electronics
Título según SCOPUS: An EM-based identification algorithm for a class of hybrid systems with application to power electronics
Título de la Revista: INTERNATIONAL JOURNAL OF CONTROL
Volumen: 87
Número: 7
Editorial: TAYLOR & FRANCIS LTD
Fecha de publicación: 2014
Página de inicio: 1339
Página final: 1351
Idioma: English
DOI:

10.1080/00207179.2013.876668

Notas: ISI, SCOPUS