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Impact of cross-saturation in sensorless control of transverse-laminated synchronous reluctance motors

机译:交叉饱和对横向叠片同步磁阻电机的无传感器控制的影响

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摘要

Synchronous reluctance (SyR) motors are well suited to a zero-speed sensorless control, because of their inherently salient behavior. However, the cross-saturation effect can lead to large errors on the position estimate, which is based on the differential anisotropy. These errors are quantified in the paper, as a function of the working point. The so-calculated errors are then found in good accordance with the purposely obtained experimental measurements. The impact of the amplitude of the carrier voltage is then pointed out, leading to a mixed (carrier injection plus electromotive force estimation) control scheme. Last, a scheme of this type is used, with a commercial transverse-laminated SyR motor. The robustness against cross-saturation is shown, in practice, and the obtained drive performance is pointed out proving to be effective for a general-purpose application
机译:同步磁阻(SyR)电动机由于其固有的突出特性而非常适合于零速无传感器控制。但是,交叉饱和效应会导致位置估计误差很大,这是基于微分各向异性的结果。这些误差根据工作点在论文中进行了量化。如此计算出的误差可以很好地与有目的的实验测量结果相吻合。然后指出了载波电压幅度的影响,导致了混合(载波注入加电动势估计)控制方案。最后,使用这种类型的方案,并使用商用的横向层压SyR电机。在实践中显示了抗交叉饱和的鲁棒性,指出了所获得的驱动性能被证明对通用应用有效

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