This paper reviews state-of-the-art loss-minimizing control strategies for synchronous reluctance motors. Methods can be categorized as loss-model controllers (LMCs) and search controllers (SCs). For LMCs, different loss models and the corresponding optimal solutions are summarized. The effects of the core losses and magnetic saturation on the optimal stator current are investigated; magnetic saturation is a more important factor than the core losses. For SCs, different search algorithms are presented and compared. The SCs are evaluated based on their convergence speed, parameter sensitivity, accuracy, and the torque ripple caused by the search process.Peer reviewe
This thesis deals with control methods for synchronous motors with a magnetically salient rotor, suc...
This paper presents an encoderless high-performance synchronous reluctance motor drive for traction ...
With the limits of power source taken into consideration, the efficiency of the traction drive is of...
This paper reviews state-of-the-art loss-minimizing control strategies for synchronous reluctance mo...
This paper proposes a loss-minimizing controller for synchronous reluctance motor drives. The propos...
This research proposes control methods for improving the energy efficiency and stability of sensorle...
This paper presents a new simplified finitecontrol- set model predictive control strategy for synch...
The controllable electromagnetic losses in Synchronous Motor Drives (SMD) in general and in wound-fi...
This paper deals with the modeling of the magnetic saturation in synchronous reluctance motors (SyRM...
This paper deals with stator-flux-oriented control of permanent-magnet (PM) synchronous motors and s...
In high performance drives where it is desirable to exploit the usefulness of reluctance torque and ...
The paper applies a dynamic space-vector model to loss-minimizing control in induction motor drives....
Synchronous reluctance motors are becoming an interesting solution for drives applications requiring...
In this paper, a new loss minimization control algorithm for inverter-fed permanent-magnet synchrono...
This paper investigates a finite-control set model-predictive control (FCS-MPC) algorithm to enhance...
This thesis deals with control methods for synchronous motors with a magnetically salient rotor, suc...
This paper presents an encoderless high-performance synchronous reluctance motor drive for traction ...
With the limits of power source taken into consideration, the efficiency of the traction drive is of...
This paper reviews state-of-the-art loss-minimizing control strategies for synchronous reluctance mo...
This paper proposes a loss-minimizing controller for synchronous reluctance motor drives. The propos...
This research proposes control methods for improving the energy efficiency and stability of sensorle...
This paper presents a new simplified finitecontrol- set model predictive control strategy for synch...
The controllable electromagnetic losses in Synchronous Motor Drives (SMD) in general and in wound-fi...
This paper deals with the modeling of the magnetic saturation in synchronous reluctance motors (SyRM...
This paper deals with stator-flux-oriented control of permanent-magnet (PM) synchronous motors and s...
In high performance drives where it is desirable to exploit the usefulness of reluctance torque and ...
The paper applies a dynamic space-vector model to loss-minimizing control in induction motor drives....
Synchronous reluctance motors are becoming an interesting solution for drives applications requiring...
In this paper, a new loss minimization control algorithm for inverter-fed permanent-magnet synchrono...
This paper investigates a finite-control set model-predictive control (FCS-MPC) algorithm to enhance...
This thesis deals with control methods for synchronous motors with a magnetically salient rotor, suc...
This paper presents an encoderless high-performance synchronous reluctance motor drive for traction ...
With the limits of power source taken into consideration, the efficiency of the traction drive is of...