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Impedance-Based Modeling and Analysis of Stabilization Control for MMC-HVDC

机译:基于阻抗的MMC-HVDC稳定控制的建模与分析

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Oscillationphenomenon has been reported in modular multilevel converter-based high-voltage DC (MMC-HVDC) transmission system. Many methods have been proposed to suppress the oscillation and improve the system stability, however, few papers have analyzed the influence of stabilization control on MMC impedance analytically. Impedance model of MMC considering additional stabilization control is derived in this paper. Based on this impedance model, the influence of stabilization control on MMC impedance are studied, and an optimal design method for controller parameters of the stabilization strategy is proposed to maximize the phase margin of the MMC-HVDC system. Furthermore, this paper points out that stabilization method based on oscillating voltage feedback is more effective than stabilization method based on oscillating current feedback, and the reason is analyzed. Finally, the above results are verified by simulation.
机译:在基于模块化多电平转换器的高压DC(MMC-HVDC)传输系统中报道了振动前蒙仑。已经提出了许多方法来抑制振荡并改善系统稳定性,然而,很少有篇论文分析了分析上稳定控制对MMC阻抗的影响。本文推导出额外稳定控制的MMC的阻抗模型。基于该阻抗模型,研究了稳定控制对MMC阻抗的影响,提出了一种稳定策略的控制器参数的最佳设计方法,以最大化MMC-HVDC系统的相位裕度。此外,本文指出,基于振荡电压反馈的稳定方法比基于振荡电流反馈的稳定方法更有效,并且分析了原因。最后,通过模拟验证上述结果。

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