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Cascaded Multilevel Inverter With Series Connection of Novel H-Bridge Basic Units

机译:新型H桥基本单元串联的级联多电平逆变器

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摘要

In this paper, a new single-phase cascaded multilevel inverter based on novel H-bridge units is proposed. In order to generate all voltage levels (even and odd) at the output, nine different algorithms are proposed to determine the magnitudes of dc voltage sources. Then, the proposed algorithms are compared to investigate their advantages and disadvantages. This topology is able to increase the number of output voltage levels by using a lower number of power electronic devices such as switches, power diodes, driver circuits, and dc voltage sources that lead to reduction in installation space and cost of the inverter. In addition, in the proposed cascaded multilevel inverter, not only the number of required power electronic devices is reduced, but also the amount of the blocked voltage by switches, and the number of different voltage amplitudes of the used sources is decreased. These features are some of the most important advantages of the proposed topology. These features are obtained via the comparison of the proposed topology and its proposed algorithms with the conventional cascaded multilevel inverters that have been presented in the literatures. The operation and performances of the proposed topology with its presented algorithms in generating all voltage levels have been verified by using the experimental results of a 49-level single-phase inverter.
机译:本文提出了一种基于新型H桥单元的新型单相级联多电平逆变器。为了在输出端生成所有电压电平(偶数和奇数),提出了九种不同的算法来确定直流电压源的大小。然后,比较了所提出的算法以研究其优缺点。通过使用较少数量的功率电子设备(例如开关,功率二极管,驱动器电路和直流电压源),这种拓扑结构能够增加输出电压电平的数量,从而减少了安装空间并降低了逆变器的成本。另外,在所提出的级联多电平逆变器中,不仅减少了所需的电力电子设备的数量,而且减少了通过开关的阻塞电压的数量,并且减少了所使用的电源的不同电压幅度的数量。这些功能是建议的拓扑结构的一些最重要的优点。这些特征是通过将提出的拓扑及其提出的算法与文献中已提出的传统级联多电平逆变器进行比较而获得的。通过49级单相逆变器的实验结果,验证了所提出的拓扑及其提出的算法在产生所有电压电平时的运行性能。

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