Analysis of magnetic force and dynamic characteristic for non-contact permanent magnet linear drive device

Author:

Zhao Chuan1,Sun Feng1,Jin Junjie1,Bo Mingwei1,Xu Fangchao1,Zhang Xiaoyou2

Affiliation:

1. , Shenyang University of Technology, , China

2. , Nippon Institute of Technology, , Japan

Abstract

This paper proposes a computation method using the equivalent magnetic circuit to analyze the driving force for the non-contact permanent magnet linear drive system. In this device, the magnetic driving force is related to the rotation angle of driving wheels. The relationship is verified by finite element analysis and measuring experiments. The result of finite element simulation is in good agreement with the model established by the equivalent magnetic circuit. Then experiments of displacement control are carried out to test the dynamic characteristic of this system. The controller of the system adopts the combination control of displacement and angle. The results indicate that the system has good performance in steady-state error and response speed, while the maximum overshoot needs to be reduced.

Publisher

IOS Press

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,Electronic, Optical and Magnetic Materials

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