In this paper, we develop a comprehensive model of a permanent-magnet brushless DC (BLDC) motor. An analytical model for determining instantaneous air-gap field density is developed. This instantaneous field distribution can be further used to determine the cogging torque, induced back electromotive force, and iron losses in the motor. The advantage of analytical models is that they can be readily used for optimization of BLDC motor because they are fast.Electrical Sustainable EnergyElectrical Engineering, Mathematics and Computer Scienc
We describe the development of a permanent-magnet (PM) brushless DC motor for driving high-speed emb...
This paper describes how a brushed DC motor with permanent magnet excitation is analytically modeled...
Paper presents operating characteristics of brush-less DC motor (BLDC) obtained by analytical, numer...
In this paper, we develop a comprehensive model of a permanent-magnet brushless DC (BLDC) motor. An ...
The modeling problem associated with brushless DC motors (BLDCMs) with nonuniform air gaps which ope...
The air-gap flux density must be considered in the design and optimization of the structure paramete...
In this article, an analytical model is deployed to optimize and design an interior permanent magnet...
This paper extends the theory of the air-gap magnetic field in permanent-magnet (PM) brushless motor...
This paper presents the performance analysis of a high-speed surface mounted permanent magnet (PM) b...
Permanent Magnet brushless DC motors are now competing with many other types of motors in the world ...
The purpose of this paper is to describe the analysis of a permanent – magnet brushless DC motor wit...
The aim of this paper is to evaluate the magnetic field and motor performance of an exterior-rotor b...
Brushless DC (BLDC) motors and their drives have been increasingly considered in a broad range of ap...
An original analytical formula for the torque/emf constant of a slotless brushless DC (BLDC) motor i...
Permanent magnet axial flux motors are very well adapted to applications requiring a very short acti...
We describe the development of a permanent-magnet (PM) brushless DC motor for driving high-speed emb...
This paper describes how a brushed DC motor with permanent magnet excitation is analytically modeled...
Paper presents operating characteristics of brush-less DC motor (BLDC) obtained by analytical, numer...
In this paper, we develop a comprehensive model of a permanent-magnet brushless DC (BLDC) motor. An ...
The modeling problem associated with brushless DC motors (BLDCMs) with nonuniform air gaps which ope...
The air-gap flux density must be considered in the design and optimization of the structure paramete...
In this article, an analytical model is deployed to optimize and design an interior permanent magnet...
This paper extends the theory of the air-gap magnetic field in permanent-magnet (PM) brushless motor...
This paper presents the performance analysis of a high-speed surface mounted permanent magnet (PM) b...
Permanent Magnet brushless DC motors are now competing with many other types of motors in the world ...
The purpose of this paper is to describe the analysis of a permanent – magnet brushless DC motor wit...
The aim of this paper is to evaluate the magnetic field and motor performance of an exterior-rotor b...
Brushless DC (BLDC) motors and their drives have been increasingly considered in a broad range of ap...
An original analytical formula for the torque/emf constant of a slotless brushless DC (BLDC) motor i...
Permanent magnet axial flux motors are very well adapted to applications requiring a very short acti...
We describe the development of a permanent-magnet (PM) brushless DC motor for driving high-speed emb...
This paper describes how a brushed DC motor with permanent magnet excitation is analytically modeled...
Paper presents operating characteristics of brush-less DC motor (BLDC) obtained by analytical, numer...