In this paper, the magnetic material characteristics, the normal magnetizing B-H curve and the loss parameters, are reconstructed for an asynchronous motor. The identification process is carried out using a coupled experimental-numerical inverse technique. Different inverse problems are formulated based on global and local magnetic measurements at no load condition. It is shown that a higher accuracy of identifying the normal magnetizing curve is obtained when local magnetic measurements are performed. In addition, loss parameters are recovered with an acceptable recovery error. The presented results are validated by comparison with the exact material characteristics. The presented results depict that the magnetic characteristics of the mat...
Numerical simulations of electrical machines require good knowledge of the magnetic properties of th...
In this paper, a method is proposed to detect asymmetrical demagnetization defects in single-stator ...
Although it is well known that the magnetic properties of electrical steel can be deeply affected by...
In this paper, the magnetic material characteristics, the normal magnetizing B-H curve and the loss ...
In this paper, the magnetic material characteristics are reconstructed for magnetic circuits with no...
The identification of the magnetic material characteristics for the switched reluctance motor is pre...
Magnetic properties of the electromagnetic devices core materials are reconstructed by solving a cou...
Cutting leads to a certain local magnetic material degradation of the electrical steel sheet. Moreov...
The identification of the magnetic material characteristics for the switched reluctance motor by sol...
The magnetic material characteristics of a wound-field synchronous machine are identified based on g...
The material properties characterizing the magnetic circuit of an electromagnetic device can be iden...
This paper presents an evaluation method of for specific iron losses in non-oriented laminated steel...
The methods of determination of additional losses in steel of asynchronous motor in the function of ...
This thesis deals with the analysis of magnetic losses in electrical machines and the possibilities ...
This paper introduces a novel identification method of the magnetization properties of the core mate...
Numerical simulations of electrical machines require good knowledge of the magnetic properties of th...
In this paper, a method is proposed to detect asymmetrical demagnetization defects in single-stator ...
Although it is well known that the magnetic properties of electrical steel can be deeply affected by...
In this paper, the magnetic material characteristics, the normal magnetizing B-H curve and the loss ...
In this paper, the magnetic material characteristics are reconstructed for magnetic circuits with no...
The identification of the magnetic material characteristics for the switched reluctance motor is pre...
Magnetic properties of the electromagnetic devices core materials are reconstructed by solving a cou...
Cutting leads to a certain local magnetic material degradation of the electrical steel sheet. Moreov...
The identification of the magnetic material characteristics for the switched reluctance motor by sol...
The magnetic material characteristics of a wound-field synchronous machine are identified based on g...
The material properties characterizing the magnetic circuit of an electromagnetic device can be iden...
This paper presents an evaluation method of for specific iron losses in non-oriented laminated steel...
The methods of determination of additional losses in steel of asynchronous motor in the function of ...
This thesis deals with the analysis of magnetic losses in electrical machines and the possibilities ...
This paper introduces a novel identification method of the magnetization properties of the core mate...
Numerical simulations of electrical machines require good knowledge of the magnetic properties of th...
In this paper, a method is proposed to detect asymmetrical demagnetization defects in single-stator ...
Although it is well known that the magnetic properties of electrical steel can be deeply affected by...