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首页> 外文期刊>Trends in Ecology & Evolution >Capacitor Voltage Reduction in Modular Multilevel Converters Under Grid Voltages Unbalances
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Capacitor Voltage Reduction in Modular Multilevel Converters Under Grid Voltages Unbalances

机译:电容器电压减小模块化多级转换器在网格电压下不平衡

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Negative- and zero-sequence internal currents of a modular multilevel converter (MMC) under unbalanced ac-grid conditions can increase the peak voltage of the submodule (SM) capacitors, which should be kept below a maximum voltage limit. This paper investigates the impact of offset pulsewidth modulation (OPWM) and zero-sequence voltage injection on reducing peak SM capacitor voltages of the MMC during unbalanced ac-grid conditions. It is demonstrated that OPWM extends the operating range of the MMC for a given set of restrictions, as it leads to a reduction of capacitor voltage in every phase by utilizing all the SMs in the arms. Zero-sequence voltage injection further reduces the maximum SM capacitor voltage among three phases under certain conditions. Simulation results from an 800-MVA MMC-based high-voltage direct current transmission system demonstrate the effect of OPWM in the operation of the converters and the efficacy of the method compared to standard modulation methods.
机译:模块化多电平转换器(MMC)的负序和零序内部电流在不平衡的AC-GRID条件下可以增加子模块(SM)电容器的峰值电压,应保持最大电压限制。 本文研究了偏移脉冲宽度调制(OPWM)和零序电压注射对不平衡交流电网条件期间MMC峰值SM电容电压的影响。 据证明,OPWM为给定的限制集的操作范围扩展,因为它通过利用臂中的所有SMS导致每个阶段的电容器电压的降低。 在某些条件下,零序电压注入进一步降低了三个阶段的最大SM电容器电压。 基于800MVA的高压直流传输系统的仿真结果证明了OPWM在转换器操作中的效果和与标准调制方法相比该方法的功效。

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