This paper presents a numerical and an experimental investigation on the ferroresonance in a LCR series electric circuit with the aim of eepening the effects of the magnetization phenomena in the ferromagnetic core. In the experiments an Epstein-like FeSi core, enabling n accurate material characterization under the same test conditions, constitutes the non-linear inductance. The model couples the circuit quations with a finite element solution of the one-dimensional electromagnetic field along the lamination thickness. The analysis of the umerical results, which are confirmed by experiments, shows that the accurate prediction of ferroresonance requires the use of detailed onstitutive models, when the role of the magnetic losses is significant.

Set up and Characterization of a System for the Generation of Reference Magnetic Fields from 1 kHz to 100 kHz / Chiampi, M; Crotti, Gabriella; Giordano, Domenico. - In: IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT. - ISSN 0018-9456. - 56, no. 2:(2007), pp. 300-304.

Set up and Characterization of a System for the Generation of Reference Magnetic Fields from 1 kHz to 100 kHz

CROTTI, GABRIELLA;GIORDANO, DOMENICO
2007

Abstract

This paper presents a numerical and an experimental investigation on the ferroresonance in a LCR series electric circuit with the aim of eepening the effects of the magnetization phenomena in the ferromagnetic core. In the experiments an Epstein-like FeSi core, enabling n accurate material characterization under the same test conditions, constitutes the non-linear inductance. The model couples the circuit quations with a finite element solution of the one-dimensional electromagnetic field along the lamination thickness. The analysis of the umerical results, which are confirmed by experiments, shows that the accurate prediction of ferroresonance requires the use of detailed onstitutive models, when the role of the magnetic losses is significant.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11696/31736
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