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Control strategy for dual three-phase PMSM based on reduced order mathematical model under fault condition due to open phases

机译:基于缺相故障条件下降阶数学模型的双三相永磁同步电机控制策略

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The high fault-tolerance ability is one important application characteristic of multiphase motors. At present, researches on fault-tolerant control of multiphase motors are focused on open-phase faults. When an open-phase fault occurs for the dual three-phase machine, the ?±a???2 subspace and z1a??z2 subspace currents are no longer decoupled, so the mathematical model with open phases should be set up. In this study, the mathematical model of the dual three-phase permanent-magnet synchronous motor (PMSM) with one open phase is set up by the vector space decomposition modelling method, and two optimal current control modes of minimum stator loss and maximum torque output are achieved by vector control strategy. The experimental results demonstrate the effectiveness and feasibility of the proposed strategy.
机译:高容错能力是多相电动机的重要应用特性之一。目前,关于多相电动机的容错控制的研究集中于开相故障。当双相三相电机发生断相故障时,不再±2α2子空间电流和z1aΔz2子空间电流解耦,因此应该建立具有断相的数学模型。本研究利用向量空间分解建模方法建立了一个单相双三相永磁同步电动机(PMSM)的数学模型,并建立了最小定子损耗和最大转矩输出的两种最优电流控制模式。通过矢量控制策略实现。实验结果证明了该策略的有效性和可行性。

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