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Zero-Sequence Current Suppression Strategy With Common-Mode Voltage Control for Open-End Winding PMSM Drives With Common DC Bus

机译:零序电流抑制策略具有共模电压控制,用于开口绕组PMSM与普通直流总线驱动

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The zero-sequence loop inherently exists in the structure of the three-phase open-end winding permanent-magnet synchronous machine (OW-PMSM) system with common dc bus, which provides the circulating path for zero-sequence current (ZSC) and consequently causes the torque ripple and extra system loss. Besides, the common-mode voltage (CMV), which can cause many negative effects, such as the bearing current and the failure of motor bearing, is another concern in the driving system. However, the simultaneous suppression of ZSC and the CMV control of the devices is investigated mainly in the application of the induction machine system and the multiphase OW-PMSM system, whereas it is ignored in the application of the three-phase OW-PMSM system, in which the suppression of ZSC is more complex considering the effect of flux linkage harmonic components. On this basis, this article proposes a strategy that can not only suppress the ZSC, but also eliminate the ripple of CMV in the three-phase OW-PMSM system. In the proposed method, the suppression of ZSC is achieved by synchronously adjusting the duration time of each phase within every control cycle based on the reference voltage of zero-sequence control loop, which can simplify the conventional rearrangement-based scheme. Furthermore, the duration time of each phase is distributed into each switch device of the two inverters, with the principle of eliminating the ripple of CMV. Consequently, both the suppression of ZSC and the CMV control can be achieved easily. Furthermore, the influence of dead time on the CMV control is analyzed, indicating that the CMV control is irrelevant with the dead time. Moreover, the effective modulation range of the proposed technique is analyzed. Finally, the experimental validation is conducted on a three-phase OW-PMSM system with common dc bus.
机译:零序环在具有公共直流总线的三相开口绕组永磁同步机(OW-PMSM)系统的结构中固有地存在,提供零序电流(ZSC)的循环路径,从而提供导致扭矩纹波和额外的系统损失。此外,可以引起许多负效应的共模电压(CMV),例如轴承电流和电动机轴承的故障,是驱动系统的另一个问题。然而,研究了Zsc的同时抑制和器件的CMV控制,主要是在诱导机系统和多相OW-PMSM系统的应用中,而在三相OW-PMSM系统的应用中被忽略,考虑到助焊谐波分量的效果,Zsc的抑制更复杂。在此基础上,本文提出了一种不仅可以抑制ZSC的策略,还可以消除三相OW-PMSM系统中CMV的纹波。在所提出的方法中,通过基于零序控制回路的参考电压同步调节每个控制周期内的每个相位的每个相的持续时间来实现Zsc的抑制,这可以简化基于传统的重新排列的方案。此外,每个相的持续时间被分布到两个逆变器的每个开关装置中,以消除CMV的纹波的原理。因此,可以容易地实现Zsc和CMV控制的抑制。此外,分析了死区时间对CMV控制的影响,表明CMV控制与死区时间无关。此外,分析了所提出的技术的有效调制范围。最后,实验验证在具有普通直流总线的三相OW-PMSM系统上进行。

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