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A Feedforward Current Control Strategy for a MMC Based Point to Point HVDC Systems

机译:基于MMC的点对点HVDC系统的前馈电流控制策略

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Voltage source converters (VSCs) have been commonly used due to their flexibility to control voltages and powers independently and bi-directionally. Typically, (e.g. two-level converter), the control system mainly consists of two parts; outer voltage or power flow (real and reactive power) controller and inner current controller. Vector current control based dq decoupling technique enables to control active and reactive power, DC voltage and AC voltage. The d- and q-axis of grid voltages and currents comprise AC and DC components under unbalanced grid conditions. The AC components of the d- and q-axis current have negative impact on the current control loop and converter performance. In this paper, a novel feed-forward current control has been presented and investigated under balanced and unbalanced grid modes for a Modular Multilevel Converter (MMC) system. The Real Time Digital Simulator (RTDS) demonstrates the results of proposed feedforward current control strategy, applied to the Point to Point MMC based High Voltage Direct Current (HVDC) system.
机译:电压源转换器(VSC)由于具有灵活性,可以独立地双向控制电压和功率而被广泛使用。通常,(例如,两级转换器)控制系统主要由两部分组成;外部电压或功率流(有功和无功功率)控制器和内部电流控制器。基于矢量电流控制的dq解耦技术可以控制有功和无功功率,直流电压和交流电压。电网电压和电流的d轴和q轴包含不平衡电网条件下的AC和DC分量。 d和q轴电流的AC分量对电流控制环路和转换器性能产生负面影响。在本文中,提出了一种新颖的前馈电流控制,并研究了模块化多电平转换器(MMC)系统在平衡和不平衡网格模式下的情况。实时数字仿真器(RTDS)演示了所提出的前馈电流控制策略的结果,该策略应用于基于点对点MMC的高压直流(HVDC)系统。

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