A hybrid two-dimensional (2-D) finite-element/analytical technique is described for predicting the d-axis and q-axis inductances of permanent magnet (PM) brushless ac machines, with due account for the influence of skew. Predicted inductances are compared with measured values for two machines having identical stators, which are skewed by one slot-pitch, but which have different rotor topologies, one having surface-mounted magnets and the other having interior magnets
A novel finite element solution post-processing technique to determine the effects of rotor skewing ...
This paper analyzes rotor eddy-current loss in permanent-magnet brushless ac machines. It is shown t...
An improved extended back-EMF based sensorless control method is proposed for a brushless AC motor e...
A hybrid two-dimensional (2-D) finite-element/analytical technique is described for predicting the d...
A method is proposed for predicting the flux-weakening performance of permanent-magnet (PM) brushles...
In this paper, the fault-tolerant capability in terms of inductance profile of a dual-stator permane...
Accurate inductance calculation of permanent-magnet synchronous machines is a relevant topic, since ...
Accurate knowledge of the high frequency inductance profile plays an important role in many designs ...
A method for computation of the parameters and performance of permanent-magnet brushless DC motor dr...
Permanent magnet (PM) brushless machines equipped with fractional-slot concentrated-windings (FSCW) ...
Increasing power density and torque capability of permanent magnet synchronous machines can be achie...
Accurate computing of the saturated inductances of Permanent Magnet Synchronous Machine (PMSM) is ve...
Energy and winding current perturbations form the basis of a method for calculation of the saturated...
This paper describes the calculation of torque in a brushless permanent-magnet line-start AC motor b...
A simple analytical technique is proposed for synthesizing the cogging torque waveform of a permanen...
A novel finite element solution post-processing technique to determine the effects of rotor skewing ...
This paper analyzes rotor eddy-current loss in permanent-magnet brushless ac machines. It is shown t...
An improved extended back-EMF based sensorless control method is proposed for a brushless AC motor e...
A hybrid two-dimensional (2-D) finite-element/analytical technique is described for predicting the d...
A method is proposed for predicting the flux-weakening performance of permanent-magnet (PM) brushles...
In this paper, the fault-tolerant capability in terms of inductance profile of a dual-stator permane...
Accurate inductance calculation of permanent-magnet synchronous machines is a relevant topic, since ...
Accurate knowledge of the high frequency inductance profile plays an important role in many designs ...
A method for computation of the parameters and performance of permanent-magnet brushless DC motor dr...
Permanent magnet (PM) brushless machines equipped with fractional-slot concentrated-windings (FSCW) ...
Increasing power density and torque capability of permanent magnet synchronous machines can be achie...
Accurate computing of the saturated inductances of Permanent Magnet Synchronous Machine (PMSM) is ve...
Energy and winding current perturbations form the basis of a method for calculation of the saturated...
This paper describes the calculation of torque in a brushless permanent-magnet line-start AC motor b...
A simple analytical technique is proposed for synthesizing the cogging torque waveform of a permanen...
A novel finite element solution post-processing technique to determine the effects of rotor skewing ...
This paper analyzes rotor eddy-current loss in permanent-magnet brushless ac machines. It is shown t...
An improved extended back-EMF based sensorless control method is proposed for a brushless AC motor e...