We propose a simplified dynamic hysteresis model for the prediction of magnetization behavior of electrical steel up to high frequencies, taking into account the skin effect. This model has the advantage of predicting the hysteresis loop and loss behavior versus frequency with the same accuracy provided by the Dynamic Preisach Model with a largely reduced computational burden. It is here compared to experimental results obtained in Fe-Si laminations under sinusoidal flux up to 2 kH
We discuss comprehensive broadband (dc-10 kHz) investigations on magnetic losses in Fe-(3 wt%)Si and...
We discuss comprehensive broadband (dc-10 kHz) investigations on magnetic losses in Fe-(3 wt%)Si and...
We discuss comprehensive broadband (dc-10 kHz) investigations on magnetic losses in Fe-(3 wt%)Si and...
We propose a simplified dynamic hysteresis model for the prediction of magnetization behavior of ele...
International audienceWe propose a simplified dynamic hysteresis model for the prediction of magneti...
A new magneto-dynamic model is proposed to approximate the dynamic hysteresis effect in laminated st...
A new magneto-dynamic model is proposed to approximate the dynamic hysteresis effect in laminated st...
A new magneto-dynamic model is proposed to approximate the dynamic hysteresis effect in laminated st...
A new magneto-dynamic model is proposed to approximate the dynamic hysteresis effect in laminated st...
A new magneto-dynamic model is proposed to approximate the dynamic hysteresis effect in laminated st...
A new magneto-dynamic model is proposed to approximate the dynamic hysteresis effect in laminated st...
International audienceWe discuss comprehensive broadband (DC – 10 kHz) investigations on magnetic lo...
The paper presents the state of the art and the problems already open in modelling the hysteresis ph...
The paper presents the state of the art and the problems already open in modelling the hysteresis ph...
We discuss comprehensive broadband (dc-10 kHz) investigations on magnetic losses in Fe-(3 wt%)Si and...
We discuss comprehensive broadband (dc-10 kHz) investigations on magnetic losses in Fe-(3 wt%)Si and...
We discuss comprehensive broadband (dc-10 kHz) investigations on magnetic losses in Fe-(3 wt%)Si and...
We discuss comprehensive broadband (dc-10 kHz) investigations on magnetic losses in Fe-(3 wt%)Si and...
We propose a simplified dynamic hysteresis model for the prediction of magnetization behavior of ele...
International audienceWe propose a simplified dynamic hysteresis model for the prediction of magneti...
A new magneto-dynamic model is proposed to approximate the dynamic hysteresis effect in laminated st...
A new magneto-dynamic model is proposed to approximate the dynamic hysteresis effect in laminated st...
A new magneto-dynamic model is proposed to approximate the dynamic hysteresis effect in laminated st...
A new magneto-dynamic model is proposed to approximate the dynamic hysteresis effect in laminated st...
A new magneto-dynamic model is proposed to approximate the dynamic hysteresis effect in laminated st...
A new magneto-dynamic model is proposed to approximate the dynamic hysteresis effect in laminated st...
International audienceWe discuss comprehensive broadband (DC – 10 kHz) investigations on magnetic lo...
The paper presents the state of the art and the problems already open in modelling the hysteresis ph...
The paper presents the state of the art and the problems already open in modelling the hysteresis ph...
We discuss comprehensive broadband (dc-10 kHz) investigations on magnetic losses in Fe-(3 wt%)Si and...
We discuss comprehensive broadband (dc-10 kHz) investigations on magnetic losses in Fe-(3 wt%)Si and...
We discuss comprehensive broadband (dc-10 kHz) investigations on magnetic losses in Fe-(3 wt%)Si and...
We discuss comprehensive broadband (dc-10 kHz) investigations on magnetic losses in Fe-(3 wt%)Si and...