智能电网可靠性与弹性分析

Murtadha N. Albasrawi, Nathan Jarus, Kamlesh Joshi, Sahra Sedigh Sarvestani
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引用次数: 54

摘要

智能电网是现代基础设施系统的典型代表。在智能电网中,网络基础设施被用来提高配电的可靠性和效率。网络基础设施提供监测和决策支持,旨在提高系统的可靠性和效率。这是以易受意外故障和恶意攻击的影响为代价的,因为虚拟和物理互连的范围更大。任何故障都可以更快、更广泛地传播,因此,最终结果可能是降低可靠性。在本文中,我们描述了智能电网运行的两个阶段的评估指标:故障发生前的持续时间和不可避免的故障后的恢复阶段。前者的特点是可靠性,我们根据级联故障的信息来确定可靠性。后者是使用弹性来量化的,这反过来又可以促进恢复策略的比较。我们举例说明了这些指标在基于IEEE 9总线测试系统的智能电网中的应用。
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Analysis of Reliability and Resilience for Smart Grids
Smart grids, where cyber infrastructure is used to make power distribution more dependable and efficient, are prime examples of modern infrastructure systems. The cyber infrastructure provides monitoring and decision support intended to increase the dependability and efficiency of the system. This comes at the cost of vulnerability to accidental failures and malicious attacks, due to the greater extent of virtual and physical interconnection. Any failure can propagate more quickly and extensively, and as such, the net result could be lowered reliability. In this paper, we describe metrics for assessment of two phases of smart grid operation: the duration before a failure occurs, and the recovery phase after an inevitable failure. The former is characterized by reliability, which we determine based on information about cascading failures. The latter is quantified using resilience, which can in turn facilitate comparison of recovery strategies. We illustrate the application of these metrics to a smart grid based on the IEEE 9-bus test system.
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