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Controlling the AC-Side Voltage Waveform in a Modular Multilevel Converter With Low Energy-Storage Capability

机译:控制模块化多电平转换器中的交流侧电压波形,具有低储能能力

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During nominal operation of a modular multilevel converter the stored energy in the submodule capacitors will vary with time. If the energy storage capability of the capacitors is relatively small compared to the energy variations, this will give large variations in the capacitor voltages. These voltage variations will distort the ac-side voltage waveform and induce harmonic components in the current that is circulating between the dc terminals. The adverse effects on the ac-side voltage can be compensated for by identifying the factors that cause the distortion. It is shown that the compensation can be done by means of feed forward control while maintaining stable operating conditions and thus eliminating the need of additional stabilizing controllers. It is also shown that the voltage controller can be combined with a circulating current controller that removes the harmonics in the current that is circulating between the dc terminals. The functionality of the proposed controller is verified by both simulations and experimental results from a 10 kVA laboratory prototype. The simulations illustrate how the proposed controller successfully removes the distortion from the ac-side voltage waveform. The experimental results demonstrate stable operation during a step transient when the output power is increased by 125%.
机译:在模块化多电平转换器的标称操作期间,子模块电容器中的存储能量将随时间变化。如果电容器的能量存储能力与能量变化相比相对较小,则这将为电容器电压提供大的变化。这些电压变化将使交流侧电压波形扭曲,并在DC端子之间循环的电流中引起谐波分量。可以通过识别导致失真的因素来补偿对交流侧电压的不利影响。结果表明,可以通过馈送前进控制来完成补偿,同时保持稳定的操作条件,从而消除了需要额外的稳定控制器。还示出了电压控制器可以与循环电流控制器组合,该控制电流控制器可在DC端子之间循环的电流中去除谐波。通过10 kVA实验室原型的模拟和实验结果验证了所提出的控制器的功能。模拟说明了所提出的控制器如何成功地从交流侧电压波形中去除失真。当输出功率增加125%时,实验结果表明了在步进瞬态期间的稳定操作。

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