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首页> 外文期刊>EPE Journal: European Power Electronics and Drives >Fully Digital Control of Multilevel Cascade Inverter with Variable DC Voltage Sources
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Fully Digital Control of Multilevel Cascade Inverter with Variable DC Voltage Sources

机译:可变直流电压源的多级串级逆变器的全数字控制

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摘要

Cascaded multilevel inverters have been widely applied for the applications of high voltage and high power systems. The input power sources for a cascaded multilevel inverter requires separate dc voltage sources, and available dc sources include batteries, photovoltaic arrays and fuel cells...etc. If variations or fluctuations occur at the input voltage, the harmonic distortion of the inverter output voltage will increase. The conducting angles of switches in the conventional cascaded multilevel inverters are obtained by the use of Fourier series to minimize the harmonic distortion of output voltage. The traditional method is complex and difficult to implement on a single chip, especially when the input voltage sources can not remain constant and stable. A switching control algorithm is proposed for cascaded multilevel inverter with variable dc voltage sources. The proposed control combines the output voltage feedback and the input voltage feed-forward method to achieve dynamic control and low distortion of the inverter output voltage. Analysis, simulations and experimental results are presented to demonstrate the superiority of the proposed system.
机译:级联多电平逆变器已广泛应用于高压大功率系统的应用。级联多电平逆变器的输入电源需要单独的直流电压源,可用的直流电源包括电池,光伏阵列和燃料电池等。如果输入电压发生变化或波动,则逆变器输出电压的谐波失真会增加。传统的级联多电平逆变器中的开关的导通角是通过使用傅立叶级数来获得的,以最大程度地减小输出电压的谐波失真。传统方法复杂且难以在单个芯片上实现,特别是当输入电压源无法保持恒定和稳定时。针对具有可变直流电压源的级联多电平逆变器,提出了一种开关控制算法。所提出的控制结合了输出电压反馈和输入电压前馈方法,以实现动态控制和逆变器输出电压的低失真。分析,仿真和实验结果表明了该系统的优越性。

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