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학술대회자료

A Design of Optimal Controller with Friction Reduction of Linear Motor-based Transfer System via Lift-force Control

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A linear motor based transfer vehicle is significantly focused as transportation systems in marine terminals for the future. We propose a control method for the systems to hence mass reduction and propulsion effects at a starting point by using a lift-force mechanism. This method is newly based on a combined levitation-and-propulsion power by a lift and thrust force of a permanent magnet linear synchronous motor (PMLSM), which is carried out by a decoupled control. We exam that our proposed control largely compensates the vehicle weight, reduces friction effect of the system, and increases its velocity. Consequently, this result contributes numerous productivity and economical efficiency for the port systems.

1. Introduction

2. LMTT(Linear Motor-based Transfer Technology)

3. Simulation and Results

4. Conclusions

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