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New self-balancing 7-level inverter with coupled inductors for 1-Φ grid-connected renewable energy systems with voltage boosting capability

机译:具有用于1-Φ网格连接可再生能源系统的新型自平衡7级逆变器,具有电压升压能力

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摘要

In this study, a new self-balancing 7-level inverter (SB7LI) topology, suitable for interfacing the low voltage renewables with the power grid, is proposed that uses coupled inductors to generate additional levels in the output voltage. Owing to the presence of a self-balancing circuit, the voltage across the two-input DC capacitors is self-balanced by charging them in series and discharging them in parallel. The self-balancing feature of the proposed SB7LI also obviates the sensing of input DC capacitors' voltages. The SB7LI is controlled using a novel multi-sine wave pulse width modulation strategy. A significant advantage of the proposed SB7LI topology is that it uses fewer power components in comparison with traditional multi-level inverter topologies, which ensures higher power density and compact circuits. This also improves the overall efficiency of the system and reduces the cost. Further, a modified version of the SB7LI is also presented with a reduced number of power components. An additional advantage of coupled inductors is their filtering action on the output voltage/current, which reduces the overall filter requirements. SB7LI can be easily extended to an n-level, 3-phi application. The proposed SB7LI and modified SB7LI are validated through simulations in MATLAB/SIMULINK and hardware experiments on 300 W laboratory prototypes.
机译:在本研究中,提出了一种新的自平衡7级逆变器(SB7LI)拓扑,适用于与电网连接低电压可再生能源,其使用耦合电感器在输出电压中产生附加电平。由于存在自平衡电路,通过将它们串联充电并并联放电,通过将它们充电并释放它们,对两种输入直流电容器两端的电压自平衡。所提出的SB7LI的自平衡特征还避免了输入直流电容器电压的感测。使用新颖的多正弦波脉冲宽度调制策略来控制SB7LI。所提出的SB7LI拓扑的显着优点是它与传统的多电平逆变器拓扑相比,它使用较少的功率分量,这确保了更高的功率密度和紧凑型电路。这也提高了系统的整体效率并降低了成本。此外,还通过减少的功率分量呈现SB7LI的修改版本。耦合电感器的额外优点是输出电压/电流上的滤波动作,这降低了整个过滤器要求。 SB7LI可以很容易地扩展到N级,3-PHI应用程序。通过Matlab / Simulink和300 W实验室原型的硬件实验中的模拟验证了所提出的SB7LI和修改的SB7LI。

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  • 来源
    《Power Electronics, IET》 |2020年第5期|899-908|共10页
  • 作者单位

    Khalifa Univ Dept Elect & Comp Engn Adv Power & Energy Ctr Abu Dhabi U Arab Emirates;

    Indian Inst Technol Elect Engn Dept Mumbai Maharashtra India;

    Khalifa Univ Dept Elect & Comp Engn Adv Power & Energy Ctr Abu Dhabi U Arab Emirates;

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