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Structure-Preserving Dynamic Equivalents for Large-Scale Power Systems using Border Synchrony

机译:使用边框同步的大型电力系统的结构保留动态等同物

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In general, the existing model reduction methods for power systems use information of the overall system to reduce part of it. This information may not always be available as it may be the case for the studies of interconnection of two power systems. In such situations, when reducing one power system, full data for the other one cannot always be used. However, the reduction should be done such that when connecting the two simplified models, the important cross-border phenomena like, e.g., inter-area modes which involve machines of both sides are preserved. We propose here an approach based on a new definition of the equivalence classes of machines in the zone to be reduced, called border synchrony. The Synchronic Modal Equivalencing (SME) principles of constructing the equivalent are used in this new framework to obtain a structure-preserving reduced system considering that the modes of interest are those observed in the interconnection lines between the two power systems. The feasibility in large-scale systems is studied on a representation of the UCTE power system. However the notion of border synchrony is independent of the effective reduction method and it can thus be exploited with any dynamic model reduction methodology for power systems.
机译:通常,电力系统的现有模型减少方法使用整个系统的信息来减少其中的一部分。这些信息可能并不总是可用,因为两个电力系统的互连研究可能是一种情况。在这种情况下,在减少一个电力系统时,不能总是使用其他一个电力系统的完整数据。然而,应该进行减少,使得当连接两个简化模型时,保留了涉及双方机器的区域的重要交叉边界现象。我们在这里提出了一种方法,该方法是基于在区域中的区域等同类机的新定义,称为边界同步。在该新框架中使用了构建等同物的同步模态等量(SME)原理,以获得考虑其在两个电力系统之间的互连线中观察到的感兴趣模式的结构保持减少的系统。在UCTE电力系统的表示上研究了大规模系统的可行性。然而,边界同步的概念独立于有效的减少方法,因此可以利用动力系统的任何动态模型减少方法。

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