同时故障下智能电网结构可靠性分析

Jonas Wäfler, P. Heegaard
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引用次数: 5

摘要

信息通信技术(ICT)在未来电网中的广泛应用带来了新的依赖关系和新的故障模式。随着设备变得越来越复杂,互联程度越来越高,多个节点同时出现故障的可能性也越来越大。一些研究研究了电网在同步故障下的行为。然而,通常用于量化结果的措施与电网的重要特征无关,其对可靠性分析的解释仍然不清楚。我们提出了考虑到电网最基本特征的两项新措施:电源连接和负荷与生产的平衡。在随机故障和故意故障情况下,对这两种方法进行了分析,认为它们适用于电网结构可靠性和生存能力分析。此外,我们使用新的措施来量化使用智能电网服务需求响应(DR)和分布式能源来缓解故障时潜在的可靠性增加。我们发现,负载减少20%的DR可能已经实现了很大一部分可能的可靠性增加与需求响应。
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Structural dependability analysis in smart grid under simultaneous failures
The pervasive use of information and communication technology (ICT) in the future power grid introduces new dependencies and new failure patterns. The simultaneous failure of several nodes may become more likely as devices get more complex and increasingly interconnected. Several studies investigated the behavior of power grids under simultaneous failures. However, the commonly used measure to quantify the outcome is agnostic to important characteristics of the power grid and its interpretation for dependability analysis remains unclear. We introduce two new measures which take the most fundamental characteristics of the power grid into account: the connectivity to power sources and the balancing of load and production. We analyze the two measures in scenarios with random and intentional node failures and conclude, that they are suitable for structural dependability and survivability analysis of power grids. Further, we use the new measures to quantify the potential dependability increase when using the smart grid services Demand Response (DR) and Distributed Energy Resources for failure mitigation. We find that a load reduction with DR by 20% may already achieve a large part of the possible dependability increase with Demand Response.
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