This paper presents a nonlinear hybrid field model to predict the open-circuit magnetic field distribution in surface-mounted permanent-magnet machines. It combines the complex permeance model (CPM) with the magnetic equivalent circuit (MEC). The saturation effect is accounted for in the CPM by considering the magnetic potential distribution on the stator bore, which is calculated by the MEC and can be transformed to the virtual current on the slot. The proposed model significantly improves the calculation accuracy for saturated machines, which is verified by the finite-element analysis and the experimental results
With the help of immersion lithography and multiple patterning, photolithography has been the key te...
We assess the performance of two distinct functional splits based on latency/latency variation and m...
Periodic structures used for high power millimetre and sub-millimetre sources that implement relativ...
In this paper, the memory flux principle is extended to switched flux structures, forming two newly ...
Compared to conventional distributed winding configurations, the fractional-slot non-overlapping (co...
This paper proposes a novel dual-sided permanent magnet memory machine (DSPM-MM) by combing the dist...
In this paper, more than 10 different iron loss models are experimentally evaluated, which cover alt...
This paper describes a computationally efficient model for predicting transient and steady-state beh...
Periodic surface lattice (PSL) structures have been fabricated and measured. When the required condi...
The split ratio of rotor outer diameter to stator outer diameter is one of the most important design...
In this paper, the variable flux reluctance machines (VFRMs) with double- and single-layer concentra...
This paper proposes high-torque-density dual stator permanent magnet machines with biased permanent ...
In this paper, the torque production of fractional slot concentrated winding (FSCW) permanent magnet...
A fronthaul design for current and future mobile networks based on the transport of sampled radio si...
This paper proposes a constant switching frequency Finite Control Set Model Predictive Control (FCS-...
With the help of immersion lithography and multiple patterning, photolithography has been the key te...
We assess the performance of two distinct functional splits based on latency/latency variation and m...
Periodic structures used for high power millimetre and sub-millimetre sources that implement relativ...
In this paper, the memory flux principle is extended to switched flux structures, forming two newly ...
Compared to conventional distributed winding configurations, the fractional-slot non-overlapping (co...
This paper proposes a novel dual-sided permanent magnet memory machine (DSPM-MM) by combing the dist...
In this paper, more than 10 different iron loss models are experimentally evaluated, which cover alt...
This paper describes a computationally efficient model for predicting transient and steady-state beh...
Periodic surface lattice (PSL) structures have been fabricated and measured. When the required condi...
The split ratio of rotor outer diameter to stator outer diameter is one of the most important design...
In this paper, the variable flux reluctance machines (VFRMs) with double- and single-layer concentra...
This paper proposes high-torque-density dual stator permanent magnet machines with biased permanent ...
In this paper, the torque production of fractional slot concentrated winding (FSCW) permanent magnet...
A fronthaul design for current and future mobile networks based on the transport of sampled radio si...
This paper proposes a constant switching frequency Finite Control Set Model Predictive Control (FCS-...
With the help of immersion lithography and multiple patterning, photolithography has been the key te...
We assess the performance of two distinct functional splits based on latency/latency variation and m...
Periodic structures used for high power millimetre and sub-millimetre sources that implement relativ...