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A common analysis framework for smart distribution networks applied to survivability analysis of distribution automation

机译:用于配电自动化生存性分析的智能配电网络通用分析框架

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摘要

Smart distribution networks shall improve the efficiency and reliability of power distribution by intelligently managing the available power and requested load. Such intelligent power networks pose challenges for information and communication technology (ICT). Their design requires a holistic assessment of traditional power system topology and ICT architecture. Existing analysis approaches focus on analyzing the power networks components separately. For example, communication simulation provides failure data for communication links, while power analysis makes predictions about the stability of the traditional power grid. However, these insights are not combined to provide a basis for design decisions for future smart distribution networks. In this paper, we describe a common model-driven analysis framework for smart distribution networks based on the Common Information Model (CIM). This framework provides scalable analysis of large smart distribution networks by supporting analyses on different levels of abstraction. Furthermore, we apply our framework to holistic survivability analysis. We map the CIM on a survivability model to enable assessing design options with respect to the achieved survivability improvement. We demonstrate our approach by applying the mapping transformation in a case study based on a real distribution circuit. We conclude by evaluating the survivability impact of three investment options.
机译:智能配电网应通过智能管理可用功率和要求的负载来提高配电效率和可靠性。这种智能电网对信息和通信技术(ICT)构成了挑战。他们的设计需要对传统电力系统拓扑和ICT架构进行整体评估。现有的分析方法集中于分别分析电力网络组件。例如,通信仿真为通信链路提供故障数据,而功率分析则可以预测传统电网的稳定性。但是,这些见解并未组合在一起,为将来的智能配电网络的设计决策提供了基础。在本文中,我们描述了一个基于通用信息模型(CIM)的通用模型驱动的智能配电网络分析框架。该框架通过支持对不同抽象级别的分析来提供大型智能配电网络的可扩展分析。此外,我们将我们的框架应用于整体生存能力分析。我们将CIM映射到可生存性模型上,从而能够针对已实现的可生存性改进评估设计方案。我们通过在基于真实配电电路的案例研究中应用映射变换来证明我们的方法。我们通过评估三种投资方案的生存能力影响来得出结论。

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