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Strong dynamic interactions between multi-terminal DC network and AC power systems caused by open-loop modal coupling

机译:开环模态耦合导致多端子直流网络与交流电源系统之间的强大动态相互作用

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This study examines the AC/DC dynamic interactions in an AC power system with an integrated multi-terminal DC network (MTDC) based on a closed-loop interconnected model of the MTDC/AC power system, wherein, the MTDC and the AC system are modelled as two interconnected open-loop subsystems. Analysis in this study indicates that when a complex pole of the open-loop MTDC subsystem is close to an electromechanical oscillation mode (EOM) of concern in the open-loop AC subsystem on the complex plane, this open-loop modal coupling may cause strong dynamic interactions between the MTDC and the AC system. It is very likely that when the open-loop modal coupling occurs, the small-signal stability of the MTDC/AC power system may considerably degrade. In this study, New England test system integrated with an MTDC for wind power transmission is used to demonstrate and validate analysis and conclusions made. Both the master-slave control and the DC voltage droop control for the MTDC are examined. Study cases show that the open-loop modal coupling caused considerable damping degradation of EOM of concern, imposing serious threat to power system small-signal stability.
机译:这项研究基于MTDC / AC电力系统的闭环互连模型,研究了具有集成多端子DC网络(MTDC)的AC电力系统中的AC / DC动态相互作用,其中MTDC和AC系统是建模为两个互连的开环子系统。这项研究中的分析表明,当开环MTDC子系统的复极接近复杂平面上的开环AC子系统中所关注的机电振荡模式(EOM)时,这种开环模态耦合可能会导致MTDC和AC系统之间的动态交互。当发生开环模态耦合时,MTDC / AC电力系统的小信号稳定性可能会大大降低。在这项研究中,新英格兰测试系统与MTDC集成在一起,用于风力发电,用于演示和验证分析和结论。同时检查了MTDC的主从控制和DC电压下降控制。研究案例表明,开环模态耦合会引起相当大的EOM阻尼衰减,从而严重威胁电力系统的小信号稳定性。

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