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Fundamental Frequency Switching Strategies of a Seven-Level Hybrid Cascaded H-Bridge Multilevel Inverter

机译:七级混合级联H桥多电平逆变器的基本频率切换策略

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摘要

This paper presents a cascaded H-bridge multilevel inverter that can be implemented using only a single dc power source and capacitors. Standard cascaded multilevel inverters require n dc sources for 2n + 1 levels. Without requiring transformers, the scheme proposed here allows the use of a single dc power source (e.g., a battery or a fuel cell stack) with the remaining n − 1 dc sources being capacitors, which is referred to as hybrid cascaded H-bridge multilevel inverter (HCMLI) in this paper. It is shown that the inverter can simultaneously maintain the dc voltage level of the capacitors and choose a fundamental frequency switching pattern to produce a nearly sinusoidal output. HCMLI using only a single dc source for each phase is promising for high-power motor drive applications as it significantly decreases the number of required dc power supplies, provides high-quality output power due to its high number of output levels, and results in high conversion efficiency and low thermal stress as it uses a fundamental frequency switching scheme. This paper mainly discusses control of seven-level HCMLI with fundamental frequency switching control and how its modulation index range can be extended using triplen harmonic compensation.
机译:本文提出了一种级联H桥多电平逆变器,该逆变器仅可使用单个直流电源和电容器来实现。标准的级联多电平逆变器需要n个直流电源用于2n +1个电平。无需变压器,此处提出的方案允许使用单个直流电源(例如,电池或燃料电池堆),其余n-1个直流电源为电容器,这称为混合级联H桥多级本文中的逆变器(HCMLI)。结果表明,逆变器可以同时保持电容器的直流电压电平,并选择基本频率切换模式以产生接近正弦的输出。 HCMLI每相仅使用一个直流电源,对于大功率电机驱动应用来说是有希望的,因为它可显着减少所需的直流电源数量,由于其输出电平高而可提供高质量的输出功率,并导致高输出功率。转换效率和低热应力,因为它使用了基本的频率切换方案。本文主要讨论使用基频开关控制对七电平HCMLI的控制,以及如何使用三次谐波补偿来扩展其调制指数范围。

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