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Efficiency Improvement of a High Dynamic BLDC Linear Motor by Multiphase Control

机译:多相控制提高高动态BLDC直线电机的效率

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摘要

This paper proposes a multiphase control strategy for a high dynamic brushless DC linear motor as an alternative for conventional three-phase field-oriented control. Analysis of the magnetic field waveforms shows that three-phase control isnot optimal for the 6-slot 7-pole motor topology. Therefore, a multiphase control strategy is elaborated which injects currents proportional to the electromotive force into each of the nine stator coil groups. This results in a maximal alignment forceper ampere between the stator and slider fields. Furthermore, only the stator coils with a useful contribution to the slider force are excitated. According to the simulation model, this yields a significant reduction of joule and iron losses for equal dynamic performance. The new strategy is implemented on a dSPACE rapid prototyping platform, controlling a custom-built multiphase converter. Measurements confirm the simulation results and show a significant reduction of power consumption compared to conventional three-phase control.
机译:本文提出了一种用于高动态无刷直流线性电动机的多相控制策略,以替代传统的三相磁场定向控制。磁场波形分析表明,对于6槽7极电机拓扑,三相控制不是最佳的。因此,制定了一种多相控制策略,该策略将与电动势成比例的电流注入到九个定子线圈组的每一个中。这导致定子磁场和滑块磁场之间的最大对准推力安培。此外,仅激励对滑块力有用的定子线圈。根据仿真模型,对于相同的动态性能,这可以显着降低焦耳和铁损。新策略在dSPACE快速原型平台上实施,可控制定制的多相转换器。测量结果证实了仿真结果,并且显示出与传统的三相控制相比功耗显着降低。

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