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Space Vector Based Capacitor Voltage Balancing for a Three-Level NPC Traction Inverter Drive

机译:三级NPC牵引逆变器驱动器的空间矢量基于电容器电压平衡

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摘要

A dc-link capacitor voltage balancing topology based on virtual space vector is proposed for traction drive application in the field-weakening region. Four different strategies are implemented and their duty ratios are individually derived. The system is then connected to an interior permanent magnet synchronous machine (IPMSM) generally used for traction applications. A comprehensive investigation on the capacitor voltage variation in the field-weakening region is studied and the main contributing vectors are identified. All the required duty cycles of the vectors are analytically calculated based on the three nearest available voltage vectors. All the four proposed strategies helped to minimize the neutral point potential fluctuation (NPPF) considerably in comparison to the earlier proposed schemes. The proposed scheme is then supported by the simulation and experimental verification with a 6.0-kW IPMSM.
机译:基于虚拟空间向量的直流链路电容器电压平衡拓扑被提出用于现场弱化区域中的牵引驱动应用。实施了四种不同的策略,其占空比是单独衍生的。然后该系统连接到通常用于牵引应用的内部永磁同步机(IPMSM)。研究了对现场弱化区域中电容器电压变化的综合研究,并识别了主要贡献矢量。基于三个最近的可用电压矢量分析地计算了向量的所有所需占空比。所有四项拟议的策略都有助于与早期提出的计划相比,最大限度地减少中性点潜在波动(NPPF)。然后通过使用6.0kW IPMSM的模拟和实验验证来支持所提出的方案。

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