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Three-Phase Split-Source Inverter (SSI): Analysis and Modulation

机译:三相分离源逆变器(SSI):分析和调制

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In several electrical dc–ac power conversions, the ac output voltage is higher than the input voltage. If a voltage-source inverter (VSI) is used, then an additional dc–dc boosting stage is required to overcome the step-down VSI limitations. Recently, several impedance source converters are gaining higher attentions [1], [2], as they are able to provide buck-boost capability in a single conversion stage. This paper proposes the merging of the boost stage and the VSI stage in a single stage dc–ac power conversion, denoted as split-source inverter (SSI). The proposed topology requires the same number of active switches of the VSI, three additional diodes, and the same eight states of a conventional space-vector modulation. It also shows some merits compared to Z-source inverters, especially in terms of reduced switch voltage stress for voltage gains higher than 1.15. This paper presents the analysis of the SSI and compares different modulation schemes. Moreover, it presents a modified modulation scheme to eliminate the low frequency ripple in the input current and the voltage across the inverter bridge. The proposed analysis has been verified by simulation and experimental results on a 2.0-kW prototype.
机译:在几次直流-交流电功率转换中,交流输出电压高于输入电压。如果使用电压源逆变器(VSI),则需要额外的dc-dc升压级来克服降压VSI的限制。近来,几个阻抗源转换器受到越来越多的关注[1],[2],因为它们能够在单个转换阶段提供降压-升压功能。本文提出将升压级和VSI级合并为单级dc-ac电源转换,称为分离源逆变器(SSI)。拟议的拓扑要求VSI的有源开关数量相同,三个额外的二极管以及常规空间矢量调制的八个状态相同。与Z源逆变器相比,它还显示出一些优点,特别是在电压增益高于1.15时降低开关电压应力方面。本文介绍了SSI的分析,并比较了不同的调制方案。此外,它提出了一种改进的调制方案,以消除输入电流和逆变器桥两端电压的低频纹波。拟议的分析已通过仿真和2.0 kW原型的实验结果得到验证。

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