The iron loss is a source of detuning in vector controlled induction motor drives if the classical rotor vector controller is used for decoupling. In fact, the field orientation will not be satisfied and the output torque will not truck the reference torque mostly used by Loss Model Controllers (LMCs). In addition, this component of loss, among others, may be excessive if the vector controlled induction motor is driving light loads. In this paper, the series iron loss model is used to develop a vector controller immune to iron loss effect and then an LMC to minimize the total power loss using the torque generated by the speed controller
A mathematical model of induction motor in stator flux vector oriented frame that account for magnet...
Induction motor drives are commonly used for applications with vast variations in mechanical load fo...
This paper presents a novel loss-minimizing real-time method of vector control of induction motor dr...
Electric vehicle (EV) motors are characterized by their low inductance and high current density, so ...
Abstract:- Vector controlled induction machine drives are increasingly used in industrial drive syst...
Conventional field-orientated Induction motor drives operate at rated flux even at low load. To impr...
The paper deals with a modality to perform indirect vector control while considering the iron loss r...
The paper deals with a modality to perform indirect vector control while considering the iron loss r...
With the rapid development of microelectronics, it is possible to realize an advanced control algori...
The paper presents an optimization of an indirect vector control strategy for induction motor drives...
[[abstract]]It is well known that the efficiency of induction motor drives under partial load can be...
The paper applies a dynamic space-vector model to loss-minimizing control in induction motor drives....
In this paper, a loss-minimizing strategy is proposed for induction motor drives to ensure maximum e...
Minimisation of the loss in the induction motor is directly related to the choice of the flux level....
This paper presents a loss-model-based controller for an induction motor drive. Among the loss minim...
A mathematical model of induction motor in stator flux vector oriented frame that account for magnet...
Induction motor drives are commonly used for applications with vast variations in mechanical load fo...
This paper presents a novel loss-minimizing real-time method of vector control of induction motor dr...
Electric vehicle (EV) motors are characterized by their low inductance and high current density, so ...
Abstract:- Vector controlled induction machine drives are increasingly used in industrial drive syst...
Conventional field-orientated Induction motor drives operate at rated flux even at low load. To impr...
The paper deals with a modality to perform indirect vector control while considering the iron loss r...
The paper deals with a modality to perform indirect vector control while considering the iron loss r...
With the rapid development of microelectronics, it is possible to realize an advanced control algori...
The paper presents an optimization of an indirect vector control strategy for induction motor drives...
[[abstract]]It is well known that the efficiency of induction motor drives under partial load can be...
The paper applies a dynamic space-vector model to loss-minimizing control in induction motor drives....
In this paper, a loss-minimizing strategy is proposed for induction motor drives to ensure maximum e...
Minimisation of the loss in the induction motor is directly related to the choice of the flux level....
This paper presents a loss-model-based controller for an induction motor drive. Among the loss minim...
A mathematical model of induction motor in stator flux vector oriented frame that account for magnet...
Induction motor drives are commonly used for applications with vast variations in mechanical load fo...
This paper presents a novel loss-minimizing real-time method of vector control of induction motor dr...