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Predictive Current Control of Six-Phase Permanent Magnet Synchronous Machines Based on Virtual Vectors with Optimal Amplitude and Phase

机译:基于具有最佳振幅和相位的虚拟矢量的六相永磁同步电机的预测电流控制

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This paper presents an innovative predictive current control (PCC) strategy based on virtual voltage vectors with optimal amplitude and phase for six-phase asymmetrical permanent magnet synchronous machines (PMSMs) with isolated neutrals. This strategy combines two virtual vectors and two zero vectors over a sampling period in order to reduce the torque ripple and enhance the tracking of references in the fundamental subspace, which are responsible for the production of flux and torque. Several simulation results are provided in order to compare the performance of the six-phase PMSM drive under the proposed control strategy with other finite control set model predictive control strategies available in the literature.
机译:本文针对具有隔离中性点的六相非对称永磁同步电机(PMSM),提出了一种基于虚拟电压矢量的,具有最佳幅度和相位的创新预测电流控制(PCC)策略。该策略在一个采样周期内将两个虚矢量和两个零矢量组合在一起,以减少转矩波动并增强基本子空间中基准的跟踪,这些子空间负责产生磁通和转矩。为了比较六相PMSM驱动器在建议的控制策略下的性能与文献中可用的其他有限控制集模型预测控制策略,提供了一些仿真结果。

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