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Adaptive droop control strategy for autonomous power sharing and DC voltage control in wind farm-MTDC grids

机译:风电场-MTDC电网中用于自动功率共享和直流电压控制的自适应下垂控制策略

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摘要

This study presents a novel adaptive droop control (ADC) strategy for power-sharing in a multi-terminal high-voltage DC grid while maintaining a desirable DC voltage level. The ADC scheme can share the power without burdening any power converters during one or more converter outages and huge power imbalance situations. To improve the effectiveness of the power sharing and DC voltage deviation control, the ADC is also implemented for wind farm converters. This is achieved through a derated mode operation of wind farms. The performance and effectiveness of the proposed control approach are evaluated in several case studies based on the specific type of converter outage under the various outage scenarios. The proposed method is validated on a five-terminal CIGRE B4 DC grid test system.
机译:这项研究提出了一种新颖的自适应下垂控制(ADC)策略,用于在多端子高压DC电网中进行功率共享,同时保持理想的DC电压水平。在一个或多个转换器中断和巨大的功率不平衡情况下,ADC方案可以共享功率而不会给任何功率转换器造成负担。为了提高功率共享和直流电压偏差控制的效率,还为风电场转换器实现了ADC。这可以通过风电场降额运行来实现。在各种案例研究中,根据各种中断情况下特定类型的转换器中断,对提出的控制方法的性能和有效性进行了评估。该方法在五端CIGRE B4直流电网测试系统上得到了验证。

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