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A generalized voltage droop strategy for control of multi-terminal DC grids

机译:用于控制多端DC电网的广义电压下垂策略

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摘要

This paper proposes a generalized voltage droop (GVD) control strategy for control and power sharing in voltage source converter (VSC)-based multi-terminal DC (MTDC) grids. In the proposed approach, the conventional voltage droop characteristics of voltage-regulating VSC stations are replaced by the GVD characteristics. The proposed GVD control strategy can be operated in three different control modes including conventional voltage droop control, fixed active power control and fixed DC voltage control by proper adjustment of the GVD characteristics of the voltage-regulating converters. The proposed strategy improves the control and power-sharing capabilities of the conventional voltage droop, and enhances its maneuverability. Simulation results, obtained by detailed modeling in a four-terminal high voltage DC grid demonstrated the efficacy of the proposed approach and its flexibility in active power sharing. Moreover, based on the obtained results, switching between operating mode of the GVD control approach does not results in oscillations of the active powers flowing inside the MTDC grids.
机译:本文提出了一种通用的电压降(GVD)控制策略,用于基于电压源转换器(VSC)的多端子DC(MTDC)电网中的控制和功率共享。在提出的方法中,调压VSC站的常规电压下降特性被GVD特性代替。可以通过适当调节调压转换器的GVD特性,以三种不同的控制模式来操作提出的GVD控制策略,包括常规电压下降控制,固定有功功率控制和固定DC电压控制。所提出的策略改善了常规电压降的控制和功率共享能力,并增强了其可操作性。通过在四端高压直流电网中进行详细建模而获得的仿真结果证明了该方法的有效性及其在有功功率共享中的灵活性。而且,基于获得的结果,在GVD控制方法的操作模式之间进行切换不会导致MTDC电网内部流动的有功功率发生振荡。

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