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Design of distribution automation networks using survivability modeling and power flow equations

机译:使用生存能力建模和潮流方程设计配电自动化网络

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Smart grids are fostering a paradigm shift in the realm of power distribution systems. Whereas traditionally different components of the power distribution system have been provided and analyzed by different teams, smart grids require a unified and holistic approach taking into consideration the interplay of distributed generation, distribution automation topology, intelligent features, and others. In this paper, we use transient survivability metrics to create better distribution automation network designs. Our approach combines survivability analysis and power flow analysis to assess the survivability of the distribution power grid network. Additionally, we present an initial approach to automatically optimize available investment decisions with respect to survivability and investment costs. We have evaluated the feasibility of this approach by applying it to the design of a real distribution automation circuit. Our empirical results indicate that the combination of survivability analysis and power flow can provide meaningful investment decision support for power systems engineers.
机译:智能电网正在促进配电系统领域的范式转变。传统上,配电系统的不同组件是由不同的团队提供和分析的,而智能电网则需要一种统一的整体方法,其中要考虑到分布式发电,配电自动化拓扑,智能功能以及其他因素之间的相互作用。在本文中,我们使用瞬态生存能力指标来创建更好的配电自动化网络设计。我们的方法将可生存性分析和潮流分析相结合,以评估配电网的可生存性。此外,我们提供了一种初始方法,可根据生存能力和投资成本自动优化可用的投资决策。通过将其应用于实际的配电自动化电路设计中,我们已经评估了这种方法的可行性。我们的经验结果表明,可生存性分析和潮流相结合可以为电力系统工程师提供有意义的投资决策支持。

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