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Impact of Enhanced Synchronization Techniques of Wind Power Plants on the Short-Circuit Current

机译:风力发电站增强同步技术对短路电流的影响

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Within this paper, the impact of enhanced synchronization techniques of wind power plants with full-scale converter on the short-circuit current is presented. The reaction of the full-scale converter with three different synchronization techniques are compared to each other. As reference the reaction of the model with a synchronous reference frame PLL for the synchronization is used. The reference scenario is compared firstly to the reaction of the model with the same synchronous reference frame PLL combined with a low-pass filter and secondly to the reaction of the model with a decoupled double synchronous reference frame PLL. During voltage drops, the reaction as a low-pass filter of the enhanced synchronization techniques leads to a significant transient response in settling with high currents. This is problematic for the short-circuit current calculation according to IEC 60909, which considers wind power plants with full-scale converter as a constant short-circuit current source.
机译:在本文中,提出了具有满量程转换器的风力发电厂增强的同步技术对短路电流的影响。将满量程转换器使用三种不同的同步技术的反应进行了比较。作为参考,使用模型与用于同步的同步参考帧PLL的反应。首先将参考方案与具有相同的同步参考框架PLL并结合了低通滤波器的模型的反应进行比较,其次与具有解耦的双同步参考框架PLL的模型的反应进行比较。在电压下降期间,作为增强同步技术的低通滤波器的反应会导致在高电流稳定时产生明显的瞬态响应。这对于根据IEC 60909的短路电流计算是有问题的,IEC 60909将具有满量程转换器的风力发电厂视为恒定的短路电流源。

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