During field weakening operation time (FWOT), the total iron loss rises and affects the accuracy of loss prediction and efficiency, especially if a large range of FWOT exists due to a large voltage drop that was rooted from the resistance of the used material. Iron loss prediction is widely employed in investigations for a fast electrical machine analysis using 2D finite element analysis (FEA). This paper proposes harmonic loss analytically by a steady-state equivalent circuit with a novel procedure. Consideration of skin effects and iron saturation are utilized in order to examine the accuracy through the relative error distribution in the frequency domain of each model from 50 to 700 Hz. Additionally, this comparative study presents a tor...
International audienceThe optimal design of electrical machines is an important issue in automotive ...
This study investigates an advanced finite-element (FE) technique for the evaluation of rotational i...
This study investigates an advanced finite-element (FE) technique for the evaluation of rotational i...
During field weakening operation time (FWOT), the total iron loss rises and affects the accuracy of ...
During field weakening operation time (FWOT), the total iron loss rises and affects the accuracy of...
The paper presents an advanced quasi-FEA technique on the iron losses prediction using Bertotti’s i...
The paper presents an advanced quasi-FEA technique on the iron losses prediction using Bertotti’s ir...
The paper presents an advanced quasi-FEA technique on the iron losses prediction using Bertotti’s ir...
The paper presents an advanced quasi-FEA technique on the iron losses prediction using Bertotti’s ir...
The paper presents an advanced quasi-FEA technique on the iron losses prediction using Bertotti’s i...
grantor: University of TorontoThis thesis proposes a refined approach to evaluate iron los...
This paper presents the calculation of the electromagnetic losses for a 2.1-MW permanent magnet sync...
This paper presents the calculation of the electromagnetic losses for a 2.1-MW permanent magnet sync...
grantor: University of TorontoThis thesis proposes a refined approach to evaluate iron los...
Abstract – A new calculation method for iron loss coefficients is proposed by using the Steinmetz eq...
International audienceThe optimal design of electrical machines is an important issue in automotive ...
This study investigates an advanced finite-element (FE) technique for the evaluation of rotational i...
This study investigates an advanced finite-element (FE) technique for the evaluation of rotational i...
During field weakening operation time (FWOT), the total iron loss rises and affects the accuracy of ...
During field weakening operation time (FWOT), the total iron loss rises and affects the accuracy of...
The paper presents an advanced quasi-FEA technique on the iron losses prediction using Bertotti’s i...
The paper presents an advanced quasi-FEA technique on the iron losses prediction using Bertotti’s ir...
The paper presents an advanced quasi-FEA technique on the iron losses prediction using Bertotti’s ir...
The paper presents an advanced quasi-FEA technique on the iron losses prediction using Bertotti’s ir...
The paper presents an advanced quasi-FEA technique on the iron losses prediction using Bertotti’s i...
grantor: University of TorontoThis thesis proposes a refined approach to evaluate iron los...
This paper presents the calculation of the electromagnetic losses for a 2.1-MW permanent magnet sync...
This paper presents the calculation of the electromagnetic losses for a 2.1-MW permanent magnet sync...
grantor: University of TorontoThis thesis proposes a refined approach to evaluate iron los...
Abstract – A new calculation method for iron loss coefficients is proposed by using the Steinmetz eq...
International audienceThe optimal design of electrical machines is an important issue in automotive ...
This study investigates an advanced finite-element (FE) technique for the evaluation of rotational i...
This study investigates an advanced finite-element (FE) technique for the evaluation of rotational i...