Title :
Design and Analysis of a Spoke Type Motor With Segmented Pushing Permanent Magnet for Concentrating Air-Gap Flux Density
Author :
Mohammad, M.R. ; Kyung-Tae Kim ; Jin Hur
Author_Institution :
Sch. of Electr. Eng., Univ. of Ulsan, Ulsan, South Korea
Abstract :
This paper proposes a new design of a SPOKE-type permanent magnet brushless direct current (BLDC) motor by using pushing magnet. A numerical analysis is developed to calculate the maximum value of air-gap flux density. First, the analytical model of the SPOKE-type motor was established, and Laplace equations of magnetic scalar potential and a series of boundary conditions were given. Then, the analytical expressions of magnet field strength and magnet flux density were obtained in the air gap produced by ferrite permanent magnets. The developed analytical model was obtained by solving the magnetic scalar potential. Finally, the air-gap field distribution and back-electromotive force of spoke type machine was analyzed. The analysis works for internal rotor motor topologies, and either radial or parallel magnetized permanent magnets. This paper validates results of the analytical model by finite-element analysis as well as with the experimental analysis for SPOKE-type BLDC motors.
Keywords :
Laplace equations; air gaps; brushless DC motors; ferrites; finite element analysis; machine theory; permanent magnet motors; BLDC motor; Laplace equations; air-gap field distribution; back-electromotive force; boundary conditions; concentrating air-gap flux density; ferrite permanent magnets; finite-element analysis; internal rotor motor topology; magnet field strength analytical expressions; magnet flux density; magnetic scalar potential; numerical analysis; parallel magnetized permanent magnets; segmented pushing permanent magnet motor; spoke type machine; spoke type motor analytical model; spoke type motor design; spoke-type BLDC motors; spoke-type permanent magnet brushless direct current motor design; Halbach magnetization; Nd-free motor; SPOKE-type BLDC motor; SPOKE-type motor design;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2013.2240664