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Fault-Tolerant Control of NPC Three-Level Inverters-Fed Double-Stator-Winding PMSM Drives Based on Vector Space Decomposition

机译:基于向量空间分解的NPC三电平逆变器双定子绕组PMSM驱动器的容错控制

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摘要

The purpose of this paper is to study and propose the fault-tolerant control schemes for neutral-point-clamped (NPC) three-level inverters-fed permanent magnet synchronous motor drive with double stator windings. Both open-phase faults and open-switch faults are considered. The proposed schemes maintain the advantages of vector space decomposition (VSD) control for multiple-stator-winding drives, where the torque of multiple windings is controlled as a whole. Different optimization goals such as minimum copper loss and minimum current amplitude variance are achieved in the proposed fault-tolerant control for open-phase faults. Moreover, the impacts of open-switch faults on voltage vectors of the drive are analyzed, and the VSD-based remedial schemes are proposed for symmetric operation under open-switch faults by adjusting the switching modulation strategies. The current harmonics and dc-link midpoint voltage deviation are suppressed well with the proposed schemes. Both simulation and experimental results are given to verify the validity of the proposed modulation strategies and control schemes under faulty conditions.
机译:本文的目的是研究并提出中性点钳位(NPC)三电平逆变器-双定子绕组永磁同步电动机驱动器的容错控制方案。同时考虑断相故障和断路故障。所提出的方案保留了用于多定子绕组驱动器的矢量空间分解(VSD)控制的优点,其中多个绕组的转矩总体上受到控制。在针对断相故障的建议容错控制中,实现了不同的优化目标,例如最小的铜损和最小的电流幅度变化。此外,分析了开路故障对驱动器电压矢量的影响,并通过调整开关调制策略,针对开路故障下的对称运行提出了基于VSD的补救方案。所提出的方案可以很好地抑制电流谐波和直流母线中点电压偏差。给出了仿真和实验结果,以验证所提出的调制策略和控制方案在故障条件下的有效性。

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