The torque production of variable flux reluctance machines (VFRMs) is explained by the “magnetic gearing effect” in recent research. Based on this theory, this paper concludes the general principles for feasible stator/rotor pole selection and corresponding winding configuration for VFRMs. The influence of stator/rotor pole combination on torque performance is comprehensively investigated not only in terms of average torque and torque ripple, but also in terms of each single torque component. It is found that the synchronous torque is proportional to the fundamental rotor radial permeance component and has the dominant contribution in average torque for all the VFRMs. The stator slot number and rotor pole number should be close to each othe...
This article presents a comprehensive comparative study between two variable flux reluctance machine...
In this paper, the partitioned stator flux reversal permanent magnet (PM) (PS-FRPM) machine and the ...
This paper aims to comprehensively analyze the influence of number of permanent magnet (PM) pieces o...
In this paper, four rotor shaping methods, i.e., eccentric circular, inverse cosine, inverse cosine ...
This paper investigates the influence of rotor topologies and winding configurations on the electrom...
Variable flux reluctance machines (VFRMs) are developed as magnetless electrical machines. To extend...
Variable flux reluctance machines (VFRMs), which have both field and armature windings on the stator...
This paper proposes a partitioned stator variable flux reluctance machine (PS-VFRM) in which field a...
Variable flux reluctance machines (VFRMs) are interesting candidates to substitute permanent-magnet ...
\u3cp\u3eAs one of the crucial components for electric vehicles, the electric machine has been widel...
This paper explores some key electromagnetic design aspects of a synchronous reluctance motor which ...
This paper deals with the design of the rotor of synchronous reluctance machines, characterized by a...
Although fractional-slot concentrated winding (FSCW) offers many significant advantages, such as sho...
Variable flux reluctance machines (VFRMs) are viable candidates for automotive applications. This pa...
This article presents a comprehensive comparative study between two variable flux reluctance machine...
In this paper, the partitioned stator flux reversal permanent magnet (PM) (PS-FRPM) machine and the ...
This paper aims to comprehensively analyze the influence of number of permanent magnet (PM) pieces o...
In this paper, four rotor shaping methods, i.e., eccentric circular, inverse cosine, inverse cosine ...
This paper investigates the influence of rotor topologies and winding configurations on the electrom...
Variable flux reluctance machines (VFRMs) are developed as magnetless electrical machines. To extend...
Variable flux reluctance machines (VFRMs), which have both field and armature windings on the stator...
This paper proposes a partitioned stator variable flux reluctance machine (PS-VFRM) in which field a...
Variable flux reluctance machines (VFRMs) are interesting candidates to substitute permanent-magnet ...
\u3cp\u3eAs one of the crucial components for electric vehicles, the electric machine has been widel...
This paper explores some key electromagnetic design aspects of a synchronous reluctance motor which ...
This paper deals with the design of the rotor of synchronous reluctance machines, characterized by a...
Although fractional-slot concentrated winding (FSCW) offers many significant advantages, such as sho...
Variable flux reluctance machines (VFRMs) are viable candidates for automotive applications. This pa...
This article presents a comprehensive comparative study between two variable flux reluctance machine...
In this paper, the partitioned stator flux reversal permanent magnet (PM) (PS-FRPM) machine and the ...
This paper aims to comprehensively analyze the influence of number of permanent magnet (PM) pieces o...