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Impact of control system on small-signal stability of hybrid multi-infeed HVDC system

机译:控制系统对混合多馈高压直流输电系统小信号稳定性的影响

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This paper focuses on the impact of control system on small-signal stability of the Hybrid Multi-Infeed HVDC(H-MIDC) system, in which the Line-Commutated-Converter based HVDC (LCC-HVDC) and Voltage-Sourced-Converter based HVDC (VSC-HVDC) links feed into an AC system in close mutual proximity. A comprehensive linearized small-signal model is developed for an H-MIDC system. Based on the eigenvalue analysis and participation factor analysis, the inherent oscillatory modes of the H-MIDC system are revealed. Then, the impact of the most sensitive control system parameters on the least-damped modes are investigated. The studies show that (i) the proportional gains of PLL functions of LCC and VSC stations, and AC voltage outer loop controller of VSC station are highly coupled, and presents the most sensitivity to the least damped modes; (ii) parameters of PLL in LCC station, and outer loop of AC voltage control and PLL in VSC station can highly impact the damping of the oscillatory modes and even cause instability, and (iii) smaller PLL gains in LCC and VSC stations, and smaller proportional gain of AC voltage control of VSC station are preferable and can enhance damping of dominant modes.
机译:本文重点研究控制系统对混合多馈HVDC(H-MIDC)系统的小信号稳定性的影响,其中基于线路换流器的HVDC(LCC-HVDC)和基于电压源的转换器HVDC(VSC-HVDC)链接馈入到彼此非常接近的AC系统中。针对H-MIDC系统开发了一个全面的线性化小信号模型。在特征值分析和参与因子分析的基础上,揭示了H-MIDC系统的固有振荡模式。然后,研究了最灵敏的控制系统参数对最小阻尼模式的影响。研究表明:(i)LCC和VSC站的PLL功能的比例增益与VSC站的AC电压外环控制器是高度耦合的,并且对最小阻尼模式表现出最高的灵敏度; (ii)LCC站中PLL的参数以及AC电压控制和VSC站中PLL的外环会极大地影响振荡模式的阻尼甚至导致不稳定,并且(iii)LCC和VSC站中的PLL增益较小,并且VSC站的交流电压控制的比例增益越小越好,并且可以增强主模的阻尼。

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