Title :
Modeling and optimal identification of pseudodifferential electrical dynamics by means of diffusive representation-part I: modeling
Author :
Laudebat, Lionel ; Bidan, Pierre ; Montseny, Gérard
Author_Institution :
Lab. de Genie Electrique de Toulouse, Univ. Paul Sabatier, Toulouse, France
Abstract :
We present the concept of "diffusive representation" and show how this notion can be used for modeling purposes in the field of electrical engineering, namely, when some nonrational dynamics are involved. We examine two significant cases of electrical components, the standard models of which reveal themselves to be insufficiently accurate in several situations: 1) capacitors with dielectric relaxations and 2) an inductor with iron core. According to the diffusive representation approach, such components are modeled by convenient state-space input-output formulations of diffusive nature, well adapted to both analysis and cheap numerical approximations. Concrete numerical examples and simulations in the time domain are given and commented.
Keywords :
capacitors; circuit simulation; cores; dielectric relaxation; electrical engineering; inductors; mathematical operators; state-space methods; time-domain analysis; capacitors; dielectric relaxations; diffusive representation; diffusive state-space input-output formulations; electrical components; electrical engineering; inductor; nonrational dynamics; numerical approximations; optimal pseudodifferential electrical dynamics identification; pseudo-differential operator; pseudodifferential electrical dynamics modeling; thermodynamical consistency; time-domain simulation; Capacitors; Concrete; Dielectrics; Electrical engineering; Inductors; Integral equations; Iron; Kernel; Numerical simulation; Transfer functions; Diffusive representation; PDO; modeling; numerical approximation; pseudo-differential operator; thermodynamical consistency; time-domain simulation;
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
DOI :
10.1109/TCSI.2004.834501