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首页> 外文期刊>Power Electronics, IET >Dual input switched-capacitor-based single-phase hybrid boost multilevel inverter topology with reduced number of components
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Dual input switched-capacitor-based single-phase hybrid boost multilevel inverter topology with reduced number of components

机译:基于双输入开关 - 电容的单相混合促进多级逆变器拓扑,减少了组件数量

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摘要

A new switched-capacitor-based topology with features of boosting and self-voltage balancing of the capacitor has been proposed in this study. The proposed multilevel inverter topology uses two isolated dc voltage sources with a switched-capacitor to produce 11 levels across the load. In this study, two different modes of the selection of dc voltage sources have been discussed for the proposed topology. Furthermore, the generalised structure of the proposed boost topology has also been discussed. Quantitative comparison with several topologies has been carried out to set the benchmark of the proposed topology. Selective harmonic elimination pulse width modulation technique has been adopted to improve the performance of the suggested topology. The power loss analysis of the proposed topology gives the maximum efficiency of 96.5% at the output power of 100 W and has an efficiency value of 95.3% at the output power of 500 W. The proposed topology has been simulated using PLECS and the simulation results have been verifying using an experimental prototype. The proposed topology has been tested for the different types of load and changes in the modulation index. The experimental results have verified the feasibility of the proposed topology.
机译:本研究提出了一种新的开关电容基拓扑,具有电容器的提升和自电压平衡的特征。所提出的多级逆变器拓扑采用两个隔离的直流电压源,具有开关电容,在负载中产生11个级别。在本研究中,已经讨论了所提出的拓扑结构的两种不同模式的直流电压源。此外,还讨论了所提升拓扑的广义结构。已经执行了与多个拓扑的定量比较,以设定所提出的拓扑的基准。采用了选择性谐波消除脉冲宽度调制技术来提高建议拓扑的性能。所提出的拓扑的功率损耗分析使得在100W的输出功率下的最大效率为96.5%,并且在500W的输出功率下具有95.3%的效率值。使用PLEC和仿真结果已经模拟了所提出的拓扑。已经使用实验原型验证。已经测试了所提出的拓扑,用于不同类型的负载和调制指数的变化。实验结果已经验证了所提出的拓扑的可行性。

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  • 来源
    《Power Electronics, IET》 |2020年第4期|881-891|共11页
  • 作者单位

    King Abdulaziz Univ Ctr Res Excellence Renewable Energy & Power Syst Jeddah 21589 Saudi Arabia|King Abdulaziz Univ Fac Engn Dept Elect & Comp Engn Jeddah Saudi Arabia;

    Univ Malaya Dept Elect Engn Power Elect & Renewable Energy Res Lab Kuala Lumpur 50603 Malaysia;

    King Abdulaziz Univ Ctr Res Excellence Renewable Energy & Power Syst Jeddah 21589 Saudi Arabia|Univ Malaya Dept Elect Engn Power Elect & Renewable Energy Res Lab Kuala Lumpur 50603 Malaysia|Swinburne Univ Technol Fac Sci Engn & Technol Sch Software & Elect Engn Hawthorn Vic 3122 Australia;

    Univ Malaya Dept Elect Engn Power Elect & Renewable Energy Res Lab Kuala Lumpur 50603 Malaysia;

    King Abdulaziz Univ Ctr Res Excellence Renewable Energy & Power Syst Jeddah 21589 Saudi Arabia|King Abdulaziz Univ Fac Engn Dept Elect Engn Rabigh 25732 Saudi Arabia;

    Swinburne Univ Technol Fac Sci Engn & Technol Sch Software & Elect Engn Hawthorn Vic 3122 Australia;

    Deakin Univ Sch Engn Geelong Vic 3216 Australia;

    Swinburne Univ Technol Fac Sci Engn & Technol Sch Software & Elect Engn Hawthorn Vic 3122 Australia;

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