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Reactive-Power Coordination in VSC-HVDC Multi-Terminal Systems for Transient Stability Improvement

机译:VSC-HVDC多端子系统中的无功协调以改善暂态稳定性

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This paper proposes a new control strategy for the reactive-power injections of voltage-source converters (VSCs) in high-voltage direct-current multi-terminal systems to improve power system transient stability. A reactive-power supplementary signal is provided for each converter. Its value is proportional to the frequency deviation of its corresponding AC bus with respect to the weighed-average frequency of the multi-terminal system stations. The purpose is to increase (decrease) the electromagnetic torque of generators close to those terminals, in which the frequency is above (below) the weighed-average frequency used. The AC frequency for all VSC stations is always available locally for synchronization purposes and could be used by a central controller. Simulations have been carried out using PSS/E, and the results have shown that transient stability can be improved using this strategy. Since this approach uses global measurements of all VSC stations, the impact of the communication delays has been analyzed, concluding that the negative effect is small, for realistic latency values.
机译:本文提出了一种新的控制策略,用于高压直流多端子系统中的电压源转换器(VSC)的无功功率注入,以提高电力系统的暂态稳定性。为每个转换器提供一个无功功率补充信号。其值与相应的交流总线的频率偏差相对于多终端系统站的加权平均频率成正比。目的是增加(减小)靠近那些端子的发电机的电磁转矩,其中频率高于(低于)所使用的加权平均频率。所有VSC站的AC频率始终可在本地用于同步目的,并且可由中央控制器使用。使用PSS / E进行了仿真,结果表明,使用该策略可以改善瞬态稳定性。由于此方法使用了所有VSC站的全局度量,因此已分析了通信延迟的影响,认为对于实际的等待时间值,负面影响很小。

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