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Disturbance attenuation of DC voltage droop control structures in a multi-terminal HVDC grid

机译:多端子HVDC电网中DC电压下垂控制结构的扰动衰减

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DC voltage droop control is seen as the preferred control structure for primary voltage control of future multi-terminal HVDC systems. Different droop control structures have been proposed in literature which can be classified in eight categories. This paper contributes to an analysis of the disturbance rejection of these droop control structures. The approach is based on multi-variable frequency response analysis where both ac and dc grid dynamics are incorporated. In particular, the amplification of dc voltage oscillations due to wind power variations is analyzed using singular value analysis. Further, the impact of dc cable modeling on the results is discussed. In addition, it is shown that the maximum singular value limits, frequently used in literature for MIMO-analysis, are not sufficient to prove that the impact of certain disturbances on analyzed outputs is within a certain boundary. It is necessary to verify the results by a multiple input single output analysis of the transfer functions connecting the inputs with the highest amplified output.
机译:直流电压下降控制被视为未来多端子HVDC系统初级电压控制的首选控制结构。在文献中已经提出了不同的下垂控制结构,其可以分为八类。本文有助于对这些下垂控制结构的干扰抑制进行分析。该方法基于多变量频率响应分析,其中结合了交流和直流电网动态。特别地,使用奇异值分析来分析由于风力变化引起的直流电压振荡的放大。此外,还讨论了直流电缆建模对结果的影响。此外,还表明,文献中经常用于MIMO分析的最大奇异值限制不足以证明某些干扰对分析输出的影响在一定范围内。有必要通过对将输入与最高放大输出相连的传递函数进行多输入单输出分析来验证结果。

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