Title :
Electromagnetic performance of interior permanent magnet machines with eccentricity
Author :
Zhu, Z.Q. ; Jamil, Mohd Luqman Mohd ; Wu, L.J.
Author_Institution :
Dept. of Electron. & Electr. Eng., Univ. of Sheffield, Sheffield, UK
Abstract :
This paper comparatively investigates the electromagnetic performance, such as airgap flux density, flux linkage, radial stress, back-EMF and output torque of two rotational symmetrical and asymmetric interior permanent magnet BLDC and BLAC machines having static/rotating eccentricities by FE model and a simple analytical model. It shows that the static/rotating eccentricities hardly affect the back-EMF and output torque of symmetrical machine, although they significantly change its airgap flux density and radial stress. On the contrary, both eccentricities can significantly distort the back-EMF and output torque of asymmetric machines. Asymmetric machines can have larger torque ripple with eccentricity than symmetrical machines, although asymmetric machines produce smoother torque without eccentricity. The static and rotating eccentricities result in many different orders of the back-EMF and torque components.
Keywords :
AC machines; DC machines; air gaps; brushless machines; electric potential; finite element analysis; magnetic flux; permanent magnet machines; torque; BLAC machines; BLDC machines; FE model; airgap flux density; asymmetric interior permanent magnet machines; back-EMF; electromagnetic performance; flux linkage; interior permanent magnet machines; output torque; radial stress; rotating eccentricities; rotational symmetrical interior permanent magnet machines; static eccentricities; torque ripple; Atmospheric modeling; Irrigation; Magnetization; back-EMF; eccentricity; flux density; interior permanent magnet machine; radial stress; torque;
Conference_Titel :
Ecological Vehicles and Renewable Energies (EVER), 2013 8th International Conference and Exhibition on
Conference_Location :
Monte Carlo
Print_ISBN :
978-1-4673-5269-7
DOI :
10.1109/EVER.2013.6521589