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Circulating current control scheme of modular multilevel converters supplying passive networks under unbalanced load conditions

机译:在不平衡负载条件下为无源网络供电的模块化多电平转换器的循环电流控制方案

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摘要

Load imbalances in the supply of passive loads with modular multilevel converter (MMC)-based medium (MVDC) and high voltage (HVDC) dc-links are inevitable. In such applications, the maximum-allowable voltage ripples and peak arm currents define the operating limits of the MMCs. This paper demonstrates the impact of circulating current control in capacitor voltage ripples of sub-modules and peak arm currents under unbalanced load conditions when supplying passive networks, comparing the effects of three circulating current control methods on internal variables of the MMCs. The efficacy of the circulating current control is validated through real-time digital simulations of an 800 MVA benchmark MMC-based HVDC transmission system.
机译:使用基于模块化多电平转换器(MMC)的中型(MVDC)和高压(HVDC)直流链路的无源负载中的负载不平衡是不可避免的。在此类应用中,最大允许电压纹波和峰值臂电流定义了MMC的工作极限。本文演示了循环电流控制对无源网络供电时不平衡负载条件下子模块的电容器电压纹波和峰值臂电流的影响,并比较了三种循环电流控制方法对MMC内部变量的影响。通过基于800 MVA基准MMC的HVDC输电系统的实时数字仿真,验证了循环电流控制的有效性。

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