Abstract1-- In this paper, the sizing equation analyses are presented for two different radial and axial flux field controlled PM machines. These types of machines have two sources of excitation which allows one to easily control the airgap flux. Variable flux component provided by the field winding and fixed flux component obtained from PM converge into the airgap so that an additive or subtractive effect can be achieved over a wide range such that the machine speed range can be increased. A detailed analysis is made in order to evaluate the performance, power density and efficiency. In addition, guidelines for optimal design of the two machines are pointed out. I
This paper deals with some design criteria of axial flux permanent magnet synchronous machines, woun...
International audienceThis paper is a methodological contribution to characterize two kinds of model...
Axial flux permanent magnet (AFPM) machines are good candidates for electric vehicle applications du...
Sizing equations of radial and axial electrical machines are developed. From these equations, the ma...
A sizing comparison among Axial Flux Permanent Magnet (AFPM) motors is presented. The adopted proc...
This paper presents an analytical procedure to size brushless PM Machines from a set of required per...
Slotless surface permanent-magnet (SPM) machines are attractive for many applications where it is im...
This paper presents a preliminary electromagnetic sizing algorithm for double-rotor axial-flux induc...
Axial flux permanent magnet machines (AFPM) are popular for applications that benefit from high torq...
The paper deals with PM-brushless radial flux machines with high torque density suitable for aircraf...
Initial sizing of a brushless radial-flux permanent- magnet (PM) machine is typically based on assum...
Some design and operation aspects of axial flux permanent magnet synchronous machines, wound with co...
A novel low-speed flux-modulated (FM) permanent-magnet (PM) motor that breaks the traditional design...
Abstract – This paper presents a new axial flux surface mounted permanent magnet (PM) field controll...
The stator-mounted permanent-magnet (SMPM) machines have some advantages compared with its counterpa...
This paper deals with some design criteria of axial flux permanent magnet synchronous machines, woun...
International audienceThis paper is a methodological contribution to characterize two kinds of model...
Axial flux permanent magnet (AFPM) machines are good candidates for electric vehicle applications du...
Sizing equations of radial and axial electrical machines are developed. From these equations, the ma...
A sizing comparison among Axial Flux Permanent Magnet (AFPM) motors is presented. The adopted proc...
This paper presents an analytical procedure to size brushless PM Machines from a set of required per...
Slotless surface permanent-magnet (SPM) machines are attractive for many applications where it is im...
This paper presents a preliminary electromagnetic sizing algorithm for double-rotor axial-flux induc...
Axial flux permanent magnet machines (AFPM) are popular for applications that benefit from high torq...
The paper deals with PM-brushless radial flux machines with high torque density suitable for aircraf...
Initial sizing of a brushless radial-flux permanent- magnet (PM) machine is typically based on assum...
Some design and operation aspects of axial flux permanent magnet synchronous machines, wound with co...
A novel low-speed flux-modulated (FM) permanent-magnet (PM) motor that breaks the traditional design...
Abstract – This paper presents a new axial flux surface mounted permanent magnet (PM) field controll...
The stator-mounted permanent-magnet (SMPM) machines have some advantages compared with its counterpa...
This paper deals with some design criteria of axial flux permanent magnet synchronous machines, woun...
International audienceThis paper is a methodological contribution to characterize two kinds of model...
Axial flux permanent magnet (AFPM) machines are good candidates for electric vehicle applications du...