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A General Active Capacitor Voltage Regulating Method for L-Level M-Cell N-Phase Flying Capacitor Multilevel Inverter With Arbitrary DC Voltage Distribution

机译:具有任意直流电压分布的L级M单元N相飞电容多电平逆变器的通用有源电容器电压调节方法

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摘要

The flying capacitor multilevel inverter (FCMLI) is one of the well-known structures of multilevel inverters having attracted considerable attention because of its merits. In spite of its many advantages, it has some limitations such as high volume and complicated control method because of its bulky capacitors and their voltage balancing requirement. Moreover, the high number of power semiconductors required makes this structure susceptible to failure. To increase the ratio of the number of levels to the number of components, an uneven distribution of capacitor voltages has been suggested in previous reports; however, this approach complicates the control method. Up to now, almost all presented methods suffer from high computational load and/or structure-dependent algorithm. In this paper, a simple state-based and structure-independent method is proposed for capacitor voltage regulation. The proposed method is straightforward and can perform online computation of switching sequences in a computationally efficient manner without any need for stored information or look-up tables. The method is conveniently extendible to any number of cells and levels in an FCMLI structure with arbitrary dc link voltage distribution schemes. Simulation and experimental results show the effectiveness and simplicity of this method.
机译:飞电容器多电平逆变器(FCMLI)是多电平逆变器的公知结构之一,由于其优点而受到了广泛的关注。尽管它具有许多优点,但由于其体积庞大的电容器及其对电压平衡的要求,因此仍存在一些局限性,例如体积大和控制方法复杂。此外,所需的大量功率半导体使该结构易于失效。为了增加电平数与元件数的比率,以前的报告中建议电容器电压的分布不均匀。但是,这种方法使控制方法复杂化。迄今为止,几乎所有提出的方法都具有计算量大和/或依赖于结构的算法的缺点。本文提出了一种简单的基于状态和结构独立的方法来调节电容器的电压。所提出的方法是直接的并且可以以计算有效的方式执行切换序列的在线计算,而不需要存储的信息或查找表。该方法可以方便地扩展到具有任意直流链路电压分配方案的FCMLI结构中的任何数量的单元和级别。仿真和实验结果表明了该方法的有效性和简便性。

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