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Reducing the Thrust Ripple Generated by the Stacking of Stator Phase Windings of a Linear Pulse Motor

리니어 펄스모터의 고정자 상권선 적층에 따른 추력 리플 저감 기법 연구

  • Choi, Jaehuyk (Dept. of Electrical Engineering, KONKUK University) ;
  • Zun, Chanyong (Dept. of Electrical Engineering, KONKUK University) ;
  • Mok, Hyungsoo (Dept. of Electrical Engineering, KONKUK University)
  • Received : 2016.12.06
  • Accepted : 2017.01.16
  • Published : 2017.02.01

Abstract

The stator phase winding of a linear pulse motor, which is a new type of linear motor, is comprised of two phases and is structurally characterized by a stacking method in which the winding of one phase is laid on top of the winding of another phase. Such a structural characteristic induces a difference in the flux linkage resulting from the flux of each stator phase winding in the same condition. The difference in the induced flux linkage acts as a kind of thrust ripple component in terms of the generated thrust. Thus, in order to maintain consistent thrust force, a method is required to solve the problem caused by the structural singularity. Hence, in this study, we present a technique for reducing the thrust force ripple generated by the stacking of the stator phase windings of a linear pulse motor through the generation of a compensating current reference value of the current controller in order to keep the torque constant. The proposed compensating algorithm is validated by simulations and experimental results.

Keywords

References

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