Title :
A Thrust Force Analysis Method for Permanent Magnet Linear Motor Using Schwarz–Christoffel Mapping and Considering Slotting Effect, End Effect, and Magnet Shape
Author :
Lizhan Zeng ; Xuedong Chen ; Xiaoqing Li ; Wei Jiang ; Xin Luo
Author_Institution :
State Key Lab. of Digital Manuf. Equip. & Technol., Huazhong Univ. of Sci. & Technol., Wuhan, China
Abstract :
A Schwarz-Christoffel (SC) mapping-based method is presented for accurately and efficiently predicting the thrust force of permanent magnet linear motors (PMLMs). It accounts for not only the slotting effect but also the end effect and the magnet shape. In this method, according to the magnet shape, the PMs are modeled as equivalent line currents on their surfaces. Through analyzing the invariant of the governing Poissonian field equation of line currents under a conformal mapping, the magnetic field boundary value problem in the air gap is mapped to a rectangle by the SC mapping, which is calculated with the SC Toolbox of MATLAB. Furthermore, the magnetic field solution is constructed with the line currents in a strip under the flux continuity condition. The cogging force due to the slotting effect and the end effect is obtained, respectively, by integrating the Maxwell stress tensor along the lines closely surrounding the slotted and finite-length iron core. The validity of the proposed method is examined by the finite-element method. The influences of the magnet shape on the thrust force pulsation characteristic are investigated for a PMLM equipped with rectangular PM and bread loaf PM.
Keywords :
Maxwell equations; Poisson equation; air gaps; boundary-value problems; finite element analysis; linear motors; magnetic fields; permanent magnet motors; tensors; MATLAB; Maxwell stress tensor; PMLM; Poissonian field equation; SC toolbox; Schwarz-Christoffel mapping-based method; air gap; bread loaf PM; end effect; equivalent line currents; finite-element method; finite-length iron core; flux continuity condition; magnet shape; magnetic field boundary value problem; permanent magnet linear motor; rectangular PM; slotted iron core; slotting effect; thrust force analysis method; thrust force prediction; thrust force pulsation characteristic; Force; Forging; Iron; Magnetic fields; Magnetic flux; Magnetomechanical effects; Shape; End effect; Permanent magnet linear motor; Schwarz-Christoffel mapping; Schwarz???Christoffel (SC) mapping; end effect; magnet shape; permanent magnet linear motor (PMLM); slotting effect; thrust force;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2015.2432151