Title :
Performance analysis of Axial-Radial Flux Type Fully Superconducting Synchronous Motor
Author :
Li, Weili ; Song, Chengyu ; Cao, Junci ; Li, Liyi
Author_Institution :
Inst. of Electr. & Electron. Eng., Harbin Univ. of Sci. & Technol., Harbin, China
Abstract :
According to the novel structure of Axial-Radial Flux Type Fully Superconducting Synchronous Motor (ARFTFSSM), the 3D transient electromagnetic field mathematics model of the High Temperature Superconducting (HTS) synchronous motor integrated with HTS armature windings in the stator and HTS field coils in the end cover is established. No-load and load flux distributions, no-load properties, no-load flux densities in air gap and magnetic end ring, and electromagnetic torque under different armature currents are obtained by 3D Finite Element Method (FEM). Based on the electromagnetic field analyses, the saturation degree of stator iron core is analyzed under different armature currents. And the influences of HTS axial Magnetic Motive Force (MMF) on radial air-gap flux density, no-load back EMF, and electromagnetic torque are studied. The experiments on the prototype are performed. And the obtained conclusions are helpful for the further study on large capacity fully superconducting synchronous motor.
Keywords :
finite element analysis; machine windings; stators; synchronous motors; 3D transient electromagnetic field mathematics model; 3d finite element method; ARFTFSSM; EMF; FEM; HTS armature windings; HTS axial magnetic motive force; HTS field coils; axial-radial flux type fully superconducting synchronous motor; electromagnetic torque; high temperature superconducting synchronous motor; load flux distributions; performance analysis; stator iron core; Position measurement; Three dimensional displays; 3D electromagnetic field; High Temperature Superconductor (HTS); axial flux; fully superconducting synchronous motor; radial flux;
Conference_Titel :
Power System Technology (POWERCON), 2010 International Conference on
Conference_Location :
Hangzhou
Print_ISBN :
978-1-4244-5938-4
DOI :
10.1109/POWERCON.2010.5666101