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SVPWM Strategy Based on the Hysteresis Controller of Zero-Sequence Current for Three-Phase Open-End Winding PMSM

机译:基于三相开口绕组PMSM零序电流滞后控制器的SVPWM策略

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摘要

Owing to high driving power, good controllability, and strong fault-tolerant ability, a three-phase open-end winding permanent magnet synchronous motor driven by a dual inverter with common dc bus is considered as a competitive solution. However, a path for zero-sequence current is provided in this drive topology. Thus, the system loss would be increased, and the maximum output power is limited. In order to suppress the zero-sequence current, a novel space vector pulsewidth modulation (SVPWM) strategy based on the hysteresis controller of zero-sequence current is proposed in this paper. The voltage vectors, whose polarity of zero-sequence voltages (ZSVs) is opposite with the polarity of zero-sequence current, are selected as the basic voltage vectors of SVPWM for fundamental plane. Meanwhile, the linear modulation range is analyzed. According to the analysis results, the proposed strategy has the advantage of wide linear modulation range of ZSV under the condition of high fundamental modulation ratio. The experimental results show that the zero-sequence current is effectively suppressed by the proposed modulation strategy. Furthermore, the comparative evaluation of the proposed modulation strategy, the conventional SVPWM, the SVPWM with zero ZSVs, and the zero vector redistribution SVPWM with zero-sequence current proportional-resonant controller is conducted to demonstrate the superiority of the proposed strategy.
机译:由于高驱动功率,良好的可控性和强大的容错能力,由具有公共直流总线的双逆变器驱动的三相开口绕组永磁同步电动机被认为是竞争解决方案。然而,在该驱动拓扑中提供了一种用于零序电流的路径。因此,系统损耗将增加,最大输出功率受到限制。为了抑制零序电流,本文提出了一种基于零序电流滞后控制器的新型空间矢量脉冲宽度调制(SVPWM)策略。零序电压(ZSV)极性与零序电流极性相反的电压矢量被选择为基本平面的SVPWM的基本电压矢量。同时,分析了线性调制范围。根据分析结果,所提出的策略在高基本调制比条件下具有ZSV的宽线性调制范围的优点。实验结果表明,通过所提出的调制策略有效地抑制了零序电流。此外,所提出的调制策略的比较评估,传统的SVPWM,具有零ZSV的SVPWM,以及具有零序电流比例谐振控制器的零矢量再分配SVPWM,以展示所提出的策略的优越性。

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