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Unequal Damping of the Average Sub-module Capacitor Voltages in Modular Multilevel Converters

机译:模块化多级转换器中平均子模块电容电压的不平等阻尼

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A modular multi-level converter (MMC) used for HVDC application is expected to handle sudden reversal of power flow through the converter. This work reports an unequal damping that may arise in the average voltage of the sub-module (SM) capacitors of an MMC during this power reversal. In the absence of any closed loop control for average capacitor voltages, the damping is found to be significantly less in the inverting mode of operation as compared to the rectifying mode and this inequality is dependent on the HVDC line inductance. Analysis using an equivalent circuit of the MMC, developed in this work, leads to a correction factor for the active power reference which helps to remove this unequal damping. A mathematical justification of this phenomenon using small-signal analysis is also presented. Further, it is shown that with closed loop control, higher and equal damping is achievable. The analysis is validated using the EMTDC/PSCAD simulation.
机译:用于HVDC应用的模块化多电平转换器(MMC)预计会通过转换器处理突然的电流逆转。该工作报告了不平等阻尼,这可能在该功率反转期间MMC的子模块(SM)电容器的平均电压中出现。在没有任何闭环控制的平均电容器电压的情况下,与整流模式相比,在反相操作模式中发现阻尼显着较低,并且这种不等式取决于HVDC线路电感。在这项工作中开发的MMC等效电路的分析导致有功功率参考的校正因子有助于去除这种不等阻尼。还提出了使用小信号分析的这种现象的数学理由。此外,示出了闭环控制,可实现更高且等阻尼。使用EMTDC / PSCAD仿真验证了分析。

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