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Z-Source Inverters for Asymmetrical Six-Phase Drives with Reduced Switching Losses

机译:Z源逆变器,用于不对称六相驱动器,开关损耗降低

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Recently, multiphase drive systems have been proposed for special applications where high reliability is required. Asymmetrical Six-Phase Induction Machine (ASPIM) is one of the most important particular multiphase machines due to many distinctive features. The two-level six-phase Voltage Source Inverter (VSI) is commonly used to supply the ASPIM. However, it has the main conceptual shortcoming of voltage gain limitations. Z-Source Inverter (ZSI) is developed in this paper to overcome the voltage gains shortcomings of standard VSIs. Carrier-based PWM schemes with simple and maximum boost control methods are utilized here to control the shoot-through duration of the ZSI, which is used to supply ASPIM. In addition, new carrier-based modulator to reduce the inverter switching losses is proposed in this paper. This strategy can be extended to other types of impedance network-based six-phase VSI. The operating principles, theoretical analysis and comparative study of the presented PWM schemes are introduced. The feasibility of the proposed PWM schemes and the performance of the drive system are confirmed by the simulation results which show good agreement with the analysis.
机译:最近,已经提出了用于特殊应用的多相驱动系统,其中需要高可靠性。由于许多独特的特征,不对称六相感应机(Aspim)是最重要的多相机之一。两电平六相电压源逆变器(VSI)通常用来供应ASPIM。但是,它具有电压增益限制的主要概念缺点。 Z-源逆变器(ZSI)是在本文中开发的,以克服标准VSI的电压增长缺点。这里利用具有简单和最大升压控制方法的基于载波的PWM方案来控制ZSI的持续时间,用于提供Aspim。此外,本文提出了新的基于载体的调制器来减少逆变器开关损耗。该策略可以扩展到其他类型的阻抗网络的六阶段VSI。介绍了所呈现的PWM方案的操作原理,理论分析和对比研究。所提出的PWM方案和驱动系统性能的可行性得到了仿真结果,其展示了与分析良好的一致性。

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