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A Comprehensive Study of Neutral-Point Self-Balancing Effect in Neutral-Point-Clamped Three-Level Inverters

机译:中性点钳位三电平逆变器中性点自平衡效应的综合研究

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Neutral point (NP) balancing problems in neutral-point-clamped (NPC) three-level inverters have been widely discussed in the past. Most of the previous researches have focused on the active NP control algorithms based on the common-mode duty cycle injection or the differential-mode harmonic current injection. Various active control methods have been proven to work well in real applications. On the other hand, it is well known that sometimes the NP is self-balanced, even without any active NP control. However, due to the uncertainty and lack of the theoretical explanations, active NP controllers are typically preferred for real applications, and the self-balancing characteristic of the NPC topology did not draw much attention in the past. Our paper covers this gap: the mechanisms of self-balancing characteristic are explored systematically. With the help of a precise mathematical model, readers can easily evaluate the self-balancing capability of their own design. In addition, this paper discusses some methods to enhance the self-balancing capability of an existing system. It is shown here that the self-balancing effect depends strongly on the switching frequency. Especially, for high-power insulated gate bipolar transistor/integrated gate-commutated thyristor/gate turn-OFF thyristors (IGBT/IGCT/GTO) applications, the effect is so strong at all power factors that this “do-nothing” control is sufficient and no other active NP controls are needed.
机译:过去已经广泛讨论了中性点钳位(NPC)三电平逆变器中的中性点(NP)平衡问题。先前的大多数研究都集中在基于共模占空比注入或差模谐波电流注入的有源NP控制算法上。各种主动控制方法已被证明可以在实际应用中很好地工作。另一方面,众所周知,即使没有任何主动NP控制,有时NP也会自我平衡。但是,由于不确定性和缺乏理论解释,有源NP控制器通常是实际应用的首选,并且过去,NPC拓扑的自平衡特性并未引起太多关注。我们的论文填补了这一空白:系统地探索了自我平衡特征的机制。借助精确的数学模型,读者可以轻松评估自己设计的自平衡能力。此外,本文还讨论了一些增强现有系统自平衡能力的方法。在此表明,自平衡效应在很大程度上取决于开关频率。特别是,对于大功率绝缘栅双极型晶体管/集成栅换向晶闸管/栅截止晶闸管(IGBT / IGCT / GTO)应用,在所有功率因数下效果都非常强,以至于这种“不做任何控制”就足够了并且不需要其他主动NP控件。

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