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Model reduction in power systems using a structure-preserving balanced truncation approach

机译:使用保留结构的平衡截断方法对电力系统进行模型简化

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摘要

This paper contributes to the development of a computationally efficient technique for reducing large-scale power system models. The proposed method comprises two steps: the partitioning of the power system into a study area and a set of coherent clusters, and the model reduction of the remote clusters. The focus of this work is on the second step. Every remote cluster is handled separately during the reduction process. For each of them, a simple and effective model of the surrounding network is developed in order to preserve a proper dynamic behavior while limiting the computing load. The reduced clusters are then mutually reconnected to one another, which enables to keep the structural information through the lines linking these clusters. Numerical results on the IEEE 118-bus system model show that the new method is able to build a reduced model suitable for performing rotor angle stability studies.
机译:本文为减少大型电力系统模型的计算有效技术的发展做出了贡献。所提出的方法包括两个步骤:将电力系统划分为研究区域和一组相干集群,以及对远程集群进行模型简化。这项工作的重点是第二步。在缩减过程中,将分别处理每个远程群集。对于它们中的每一个,都开发了一种简单有效的周围网络模型,以便在限制计算负载的同时保留适当的动态行为。然后,将减少的群集彼此重新连接,这使得能够通过链接这些群集的线路来保持结构信息。 IEEE 118总线系统模型的数值结果表明,该新方法能够建立适合进行转子角度稳定性研究的简化模型。

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