A New Model to Analyze Power and Communication System Intra-and-Inter Dependencies

Sohini Roy, H. Chandrasekaran, A. Pal, Arunabha Sen
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引用次数: 7

Abstract

The reliable and resilient operation of the smart grid necessitates a clear understanding of the intra-and-inter dependencies of its power and communication systems. This understanding can only be achieved by accurately depicting the interactions between the different components of these two systems. This paper presents a model, called modified implicative interdependency model (MIIM), for capturing these interactions. Data obtained from a power utility in the U.S. Southwest is used to ensure the validity of the model. The performance of the model for a specific power system application namely, state estimation, is demonstrated using the IEEE 118-bus system. The results indicate that the proposed model is more accurate than its predecessor, the implicative interdependency model (IIM) [1], in predicting the system state in case of failures in the power and/or communication systems.
电力与通信系统内部与相互依赖分析的新模型
智能电网的可靠和弹性运行需要清楚地了解其电力和通信系统的内部和相互依赖关系。这种理解只能通过准确地描述这两个系统的不同组件之间的相互作用来实现。本文提出了一个模型,称为修改隐含相互依赖模型(MIIM),用于捕获这些交互。从美国西南部的一家电力公司获得的数据被用来确保模型的有效性。该模型的性能在一个特定的电力系统应用,即状态估计,被证明使用IEEE 118总线系统。结果表明,在电力和/或通信系统发生故障时,该模型比其前身隐含相互依赖模型(IIM)[1]更准确地预测系统状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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