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Average-Value Model of Modular Multilevel Converters Considering Capacitor Voltage Ripple

机译:考虑电容器电压纹波的模块化多电平转换器的平均值模型

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摘要

The modular multilevel converters (MMCs) are attractive topologies for the high-voltage direct current (HVDC) transmission system. Since the complicated structure of MMC with hundreds sub-modules per arm, building an accurate model to design the appropriate control strategy is one of the main technical challenges. In this paper, the average-value model (AVM) of the MMCs considering the sub-module capacitor voltage ripple is established to explore the control dynamic performance of MMCs. The effect of the sub-module capacitor voltage ripple on the MMC dynamic behavior is explored and the equivalent impedances of the DC and AC sides in the MMC converters are extracted and evaluated. Based on the equivalent impedances, a particular AVM of MMCs, which comprises the equivalent capacitors reflecting the capacitor voltage ripple, is presented. Furthermore, the detailed interaction of the AC side voltages, AC side currents and arm voltages and the coupling relationship of AC output current id and iq can be also precisely described by the introduced AVM. Finally, the effectiveness of the presented model is verified by the PSCAD/EMTDC simulations.
机译:模块化多电平转换器(MMC)是高压直流(HVDC)传输系统的诱人拓扑。由于每臂有数百个子模块的MMC结构复杂,因此构建精确的模型来设计适当的控制策略是主要的技术挑战之一。本文建立了考虑子模块电容器电压纹波的MMC的均值模型(AVM),以探讨MMC的控制动态性能。探索了子模块电容器电压纹波对MMC动态行为的影响,并提取和评估了MMC转换器中DC和AC侧的等效阻抗。基于等效阻抗,提出了MMC的特定AVM,其中包括反映电容器电压纹波的等效电容器。此外,通过引入的AVM还可以精确地描述AC侧电压,AC侧电流和臂电压的详细相互作用以及AC输出电流id和iq的耦合关系。最后,通过PSCAD / EMTDC仿真验证了所提出模型的有效性。

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