Permanent-magnet machines with fractional slot concentrated windings are easy to manufacture. Their popularity therefore is steadily increasing. Without a proper design, however, the induced eddy-current losses in the solid rotor get rather high. The modeling and the prediction of eddy-current losses for these machines are thus very important during the design process. This paper focuses on the finite-element analysis and the experimental validation of eddy-current losses for this kind of machine with a small axial length. Two-dimensional and three-dimensional transient finite-element models are developed for computing the eddy-current losses. The rotor motion is taken into account using an Arbitrary Lagrangian-Eulerian formulation. The tot...
The rotor and magnet loss in single-sided axial flux permanent magnet machines with non-overlapped w...
Rotor eddy current losses are one of the main reasons of permanent magnet demagnetization in high-sp...
Rotor eddy current losses are one of the main reasons of permanent magnet demagnetization in high-sp...
On the rotors of an axial-flux PM machine, NdFeB permanent-magnets are very often placed because of ...
On the rotors of an axial-flux PM machine, NdFeB permanent-magnets are very often placed because of ...
It is well known that in fractional-slot concentrated windings the eddy-current losses in the perman...
Permanent magnet machines with fractional slot windings are popular because of their shorter end win...
This paper analyzes and compares models for predicting average magnet losses in interior permanent-m...
The concentrated winding is proposed to replace the distributed winding due to the advantages in a m...
The rotor and magnet loss in single-sided axial ux permanent magnet (AFPM) machines with non-overlap...
The rotor and magnet loss in single-sided axial flux permanent magnet (AFPM) machines with non-overl...
The rotor and magnet loss in single-sided axial flux permanent magnet (AFPM) machines with non-overl...
The rotor and magnet loss in single-sided axial flux permanent magnet (AFPM) machines with non-overl...
This paper analyzes rotor eddy-current loss in permanent-magnet brushless ac machines. It is shown t...
The proposed hybrid method combines Computationally Efficient-Finite Element Analysis (CE-FEA) with ...
The rotor and magnet loss in single-sided axial flux permanent magnet machines with non-overlapped w...
Rotor eddy current losses are one of the main reasons of permanent magnet demagnetization in high-sp...
Rotor eddy current losses are one of the main reasons of permanent magnet demagnetization in high-sp...
On the rotors of an axial-flux PM machine, NdFeB permanent-magnets are very often placed because of ...
On the rotors of an axial-flux PM machine, NdFeB permanent-magnets are very often placed because of ...
It is well known that in fractional-slot concentrated windings the eddy-current losses in the perman...
Permanent magnet machines with fractional slot windings are popular because of their shorter end win...
This paper analyzes and compares models for predicting average magnet losses in interior permanent-m...
The concentrated winding is proposed to replace the distributed winding due to the advantages in a m...
The rotor and magnet loss in single-sided axial ux permanent magnet (AFPM) machines with non-overlap...
The rotor and magnet loss in single-sided axial flux permanent magnet (AFPM) machines with non-overl...
The rotor and magnet loss in single-sided axial flux permanent magnet (AFPM) machines with non-overl...
The rotor and magnet loss in single-sided axial flux permanent magnet (AFPM) machines with non-overl...
This paper analyzes rotor eddy-current loss in permanent-magnet brushless ac machines. It is shown t...
The proposed hybrid method combines Computationally Efficient-Finite Element Analysis (CE-FEA) with ...
The rotor and magnet loss in single-sided axial flux permanent magnet machines with non-overlapped w...
Rotor eddy current losses are one of the main reasons of permanent magnet demagnetization in high-sp...
Rotor eddy current losses are one of the main reasons of permanent magnet demagnetization in high-sp...