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Analysis of an Improved Voltage-balancing Control Method of Modular Multilevel Converter Based on Amplitude-adjustable Carrier

机译:基于幅度可调载波的模块化多级转换器改进电压平衡控制方法分析

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Realize the control of the balance of DC capacitor in power-unit is paramount for the normal operation of the modular multi-level converters. The traditional control method achieves the DC capacitor voltage balance by adjusting the trigger pulse of each power-unit. At the same time, the DC capacitor is constantly absorbing and releasing energy, so that the voltage of the DC capacitor cannot be maintained at a fixed value which means that the capacitor voltage fluctuation problem still exists while the traditional control method has been used. Moreover, the quality of the output voltage will also decrease. In this paper, an improved voltage-balancing control method based on amplitude-adjustable carrier is proposed to suppress the adverse effects of the DC capacitor voltage fluctuation. The improved DC capacitor voltage control method is based on volt-second equivalent, and the carrier of each power-unit is rebuilt according to the real-time voltage of the DC capacitor. Finally, we will get a reconstructed trigger pulse to achieve the control of the output voltage of each power-unit which effectively improve the quality of the output voltage of the modular multi-level converters. The simulation experiments and results built on MTALAB/SIMULINK have proved the effectiveness of the improved control method.
机译:实现电源单元中DC电容平衡的控制对于模块化多电平转换器的正常操作至关重要。传统的控制方法通过调整每个电源单元的触发脉冲来实现DC电容器电压平衡。同时,DC电容器不断吸收和释放能量,使得DC电容器的电压不能保持在固定值,这意味着在使用传统的控制方法时仍存在电容器电压波动问题。此外,输出电压的质量也将降低。在本文中,提出了一种基于幅度可调载波的改进的电压平衡控制方法来抑制DC电容器电压波动的不利影响。改进的DC电容器电压控制方法基于伏特第二等效,并且根据直流电容器的实时电压重建每个电源单元的载波。最后,我们将获得一个重建的触发脉冲,实现每个功率单元的输出电压的控制,这有效地提高了模块化多级转换器的输出电压的质量。基于Mtalab / Simulink的模拟实验和结果证明了改进控制方法的有效性。

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