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Examination on the parameter stability region of the VSC control system in VSC-HVDC transmission systems

机译:VSC-HVDC中VSC控制系统的参数稳定性区域的检查<?显示[AQ =“ID =”Q1“”?>传输系统

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摘要

Nowadays, the voltage source converter (VSC)-based high-voltage direct current (HVDC) transmission technology is widely adopted for the integration of renewable power generations. However, the grid-connected VSC systems may also cause power system instability issues. This study focuses on the parameter stability region of VSC control system in VSC-HVDC transmission systems. The small-signal linearised model of the whole power system is firstly established and on the basis of which the modal analysis method is applied to obtain the parameter stability region of VSC control system. The results show that the region is mainly affected by both the selection of the initial operating point of VSC and the dynamic interaction between the AC system and the VSC. From these two perspectives, the parameter stability regions of the VSC control system under different operating conditions are investigated. Meanwhile, it is found in the study that when modal coupling occurs between the oscillation modes corresponding to AC system and VSC, the parameter stability regions of the VSC control system obtained in the previous analysis will be deteriorated. Consequently, in terms of stability region, an evaluated method for VSC control system is proposed and validated through case study.
机译:如今,基于电压源转换器(VSC)的高压直流(HVDC)传输技术被广泛采用可再生动力的集成。但是,网格连接的VSC系统也可能导致电力系统不稳定问题。本研究侧重于VSC-HVDC传输系统中VSC控制系统的参数稳定性区域。首先建立了整个电力系统的小信号线性化模型,并在基于哪个模态分析方法来获得VSC控制系统的参数稳定区域。结果表明,该区域主要受VSC的初始操作点的选择和AC系统与VSC之间的动态相互作用的影响。从这两个观点来看,研究了VSC控制系统的参数稳定性区域在不同的操作条件下进行。同时,在该研究中发现,当与AC系统和VSC对应的振荡模式之间发生模态耦合时,在先前分析中获得的VSC控制系统的参数稳定区域将劣化。因此,在稳定区域方面,通过案例研究提出并验证了VSC控制系统的评估方法。

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