This paper motivates the development of sophisticated data-driven models for power magnetic material characteristics. Core losses and hysteresis loops are critical information in the design process of power magnetics, yet the physics behind them is not fully understood. Both losses and hysteresis loops change for each magnetic material, are highly nonlinear, and depend heavily on the electrical operating conditions (e.g., waveform, frequency, amplitude, dc bias), the mechanical properties (e.g., pressure, vibration), as well as temperature and geometry of the magnetic components. Understanding the complexity of these factors is important for the development of accurate models and their applicability and limitations. Existing studies on pow...
A new method of obtaining physical information about a system of fine ferrite powder, from the hyste...
A new method of obtaining physical information about a system of fine ferrite powder, from the hyste...
In power electronics, magnetic components are fundamental, and, unfortunately, represent one of the ...
This paper applies machine learning to power magnetics modeling. We first introduce an open-source d...
Magnetic materials are used in the manufacturing of transformers, electrical machines, converters an...
A great deal of information can be learned about the magnetic properties of a material by studying i...
In order to study the relation among the four models for the relaxation magnetic spectra and to prov...
In order to study the relation among the four models for the relaxation magnetic spectra and to prov...
Hysteresis phenomenon is a distinctive approach to describe the natural behavior of the magnetic mat...
We present experimental measurement of thermal effects on magnetic hysteresis of soft ferrite cores ...
Automated, population-based design methods are becoming increasingly popular as design tools. When u...
We present experimental measurement of thermal effects on magnetic hysteresis of soft ferrite cores ...
This paper analyzes hysteresis losses of minor loops versus temperature in MnZn ferrite core. The st...
A new analytical technique which predicts the basic magnetic properties under various operating cond...
Master's Thesis Proposal: An Investigation of Some Parameters which Influence the Magnetic Character...
A new method of obtaining physical information about a system of fine ferrite powder, from the hyste...
A new method of obtaining physical information about a system of fine ferrite powder, from the hyste...
In power electronics, magnetic components are fundamental, and, unfortunately, represent one of the ...
This paper applies machine learning to power magnetics modeling. We first introduce an open-source d...
Magnetic materials are used in the manufacturing of transformers, electrical machines, converters an...
A great deal of information can be learned about the magnetic properties of a material by studying i...
In order to study the relation among the four models for the relaxation magnetic spectra and to prov...
In order to study the relation among the four models for the relaxation magnetic spectra and to prov...
Hysteresis phenomenon is a distinctive approach to describe the natural behavior of the magnetic mat...
We present experimental measurement of thermal effects on magnetic hysteresis of soft ferrite cores ...
Automated, population-based design methods are becoming increasingly popular as design tools. When u...
We present experimental measurement of thermal effects on magnetic hysteresis of soft ferrite cores ...
This paper analyzes hysteresis losses of minor loops versus temperature in MnZn ferrite core. The st...
A new analytical technique which predicts the basic magnetic properties under various operating cond...
Master's Thesis Proposal: An Investigation of Some Parameters which Influence the Magnetic Character...
A new method of obtaining physical information about a system of fine ferrite powder, from the hyste...
A new method of obtaining physical information about a system of fine ferrite powder, from the hyste...
In power electronics, magnetic components are fundamental, and, unfortunately, represent one of the ...