This paper presents a new control scheme to implement the torque ripple minimization in switched reluctance motor drives. The proposed scheme uses the nonlinear torque sharing function in which two active phases contribute the torque during phase commutation and the torque at other time is produced by an active phase. The flux linkage controller with the hysteresis chopping is employed to trace the flux linkage reference computed from the torque sharing function. The simulations on a four-phase switched reluctance motor drive demonstrate that the proposed control scheme can be used to well implement the torque ripple minimization. Comparing with conventional current controllers, the limit on the proposed flux controller is easily determined...
<<Switched reluctance drive>> and <<Control methods for electrical systems>>...
Nowadays switched reluctance motor (SRM) drives have been widely used in the field of controlled el...
Torque ripple is an inherent characteristic of switched reluctance motor drives due to its double sa...
Author name used in this publication: X. D. XueAuthor name used in this publication: K. W. E. ChengA...
Torque ripple is an inherent property of switched reluctance motor (SRM), which seriously affects th...
This paper presents the literature review of torque ripple minimization technique of the switched re...
This paper presents a new torque control function for torque ripple reduction in switched reluctance...
The torque ripple produced in a switched reluctance motor (SRM) can be seen as one of its major draw...
Abstract – This paper presents an advanced torque ripple minimization method of a switched reluctanc...
In the recent years, the use of switched reluctance motors (SRM) in industrial applications has been...
This paper proposes a novel deadbeat torque and flux control (DB-DTFC) to reduce torque ripple for s...
A smooth torque control of switched reluctance motor (SRM) is essential to avoid speed fluctuations ...
This paper presents a method of finding the phase current profiles to get minimum torque ripple in s...
This paper presents a direct torque control (DTC) method on a six-phase SRM driven by a six-phase as...
In this paper, by evaluating the extreme value of the qth-power current, a torque sharing function (...
<<Switched reluctance drive>> and <<Control methods for electrical systems>>...
Nowadays switched reluctance motor (SRM) drives have been widely used in the field of controlled el...
Torque ripple is an inherent characteristic of switched reluctance motor drives due to its double sa...
Author name used in this publication: X. D. XueAuthor name used in this publication: K. W. E. ChengA...
Torque ripple is an inherent property of switched reluctance motor (SRM), which seriously affects th...
This paper presents the literature review of torque ripple minimization technique of the switched re...
This paper presents a new torque control function for torque ripple reduction in switched reluctance...
The torque ripple produced in a switched reluctance motor (SRM) can be seen as one of its major draw...
Abstract – This paper presents an advanced torque ripple minimization method of a switched reluctanc...
In the recent years, the use of switched reluctance motors (SRM) in industrial applications has been...
This paper proposes a novel deadbeat torque and flux control (DB-DTFC) to reduce torque ripple for s...
A smooth torque control of switched reluctance motor (SRM) is essential to avoid speed fluctuations ...
This paper presents a method of finding the phase current profiles to get minimum torque ripple in s...
This paper presents a direct torque control (DTC) method on a six-phase SRM driven by a six-phase as...
In this paper, by evaluating the extreme value of the qth-power current, a torque sharing function (...
<<Switched reluctance drive>> and <<Control methods for electrical systems>>...
Nowadays switched reluctance motor (SRM) drives have been widely used in the field of controlled el...
Torque ripple is an inherent characteristic of switched reluctance motor drives due to its double sa...