This paper proposes an improved methodology to minimize the cogging torque, harmonics and torque ripples in Brushless DC (BLDC) motor. The cogging torque is reduced by designing the BLDC motor with bifurcated active surface area using Finite Element Analysis (FEA). The harmonics and torque ripple is minimized using PI and Fuzzy controllers. These controllers are analyzed to bring out an optimal solution. The effectiveness and flexibility of the individual techniques of proposed control method is verified through simulations [Matlab Simulink]. The experimental result is shown only for fuzzy control because fuzzy is better comparing the performance of PI controllers
Brushless DC (BLDC) motors are one of the most interesting motors, not only because of their efficie...
This research presents the novel control strategy of the brushless DC motor. The optimal current dri...
“In this research, a technique of eliminating the torque ripple produced by a brushless DC machine i...
Permanent Magnet PM Brushless DC BLDC motors have been widely used in industrial drives due to their...
Due to high productivity, torque and less volume Brushless DC Motors (BLDCM) are largely used in ele...
This research deals with the reduction of total harmonic distortion (THD) in torque characteristics ...
This paper presents a direct torque control technique for brushless DC motors with non-sinusoidal ba...
A brushless DC (BLDC) Motors have advantages over brushed, Direct current (DC) Motors and , Inductio...
Abstract – This paper mainly proposes a direct torque control strategy to minimize torque ripple in ...
Abstract- To save the energy consumption of various devices green and eco-friendly electronics are d...
High performance applications are now days utilizing the brushless DC motor (BLDC) drives due to its...
Conventional direct torque control (CDTC) for brushless DC motor (BLDCM) using proportional integral...
Brushless direct current motors (BLDC) are prominent due to their high efficiency and less maintenan...
The properties of brushless DC motor (BLDCM) are similar to the fractional, slot-concentrated windin...
The Brushless DC motor (BLDC) control is used in many of the applications as it is small in size and...
Brushless DC (BLDC) motors are one of the most interesting motors, not only because of their efficie...
This research presents the novel control strategy of the brushless DC motor. The optimal current dri...
“In this research, a technique of eliminating the torque ripple produced by a brushless DC machine i...
Permanent Magnet PM Brushless DC BLDC motors have been widely used in industrial drives due to their...
Due to high productivity, torque and less volume Brushless DC Motors (BLDCM) are largely used in ele...
This research deals with the reduction of total harmonic distortion (THD) in torque characteristics ...
This paper presents a direct torque control technique for brushless DC motors with non-sinusoidal ba...
A brushless DC (BLDC) Motors have advantages over brushed, Direct current (DC) Motors and , Inductio...
Abstract – This paper mainly proposes a direct torque control strategy to minimize torque ripple in ...
Abstract- To save the energy consumption of various devices green and eco-friendly electronics are d...
High performance applications are now days utilizing the brushless DC motor (BLDC) drives due to its...
Conventional direct torque control (CDTC) for brushless DC motor (BLDCM) using proportional integral...
Brushless direct current motors (BLDC) are prominent due to their high efficiency and less maintenan...
The properties of brushless DC motor (BLDCM) are similar to the fractional, slot-concentrated windin...
The Brushless DC motor (BLDC) control is used in many of the applications as it is small in size and...
Brushless DC (BLDC) motors are one of the most interesting motors, not only because of their efficie...
This research presents the novel control strategy of the brushless DC motor. The optimal current dri...
“In this research, a technique of eliminating the torque ripple produced by a brushless DC machine i...