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Integrated Cyber-Physical Fault Injection for Reliability Analysis of the Smart Grid

机译:集成的网络物理故障注入技术,用于智能电网的可靠性分析

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摘要

The term "Smart Grid" broadly describes emerging power systems whose physical operation is managed by significant intelligence. The cyber infrastructure providing this intelligence is composed of power electronics devices that regulate the flow of power in the physical portion of the grid. Distributed software is used to determine the appropriate settings for these devices. Failures in the operation of the Smart Grid can occur due to malfunctions in physical or cyber (hardware or software) components. This paper describes the use of fault injection in identifying failure scenarios for the Smart Grid. Software faults are injected to represent failures in the cyber infrastructure. Physical failures are concurrently represented, creating integrated cyber-physical failure scenarios that differentiate this work from related studies. The effect of these failure scenarios is studied in two cases: with and without fault detection in the distributed software. The paper concludes by utilizing the information gained to refine and improve the accuracy of the quantitative reliability model presented in our earlier work.
机译:术语“智能电网”广义上描述了新兴的电力系统,其物理运行由重要的情报管理。提供这种智能的网络基础设施由电力电子设备组成,这些设备调节电网物理部分中的电力流。分布式软件用于确定这些设备的适当设置。由于物理或网络(硬件或软件)组件的故障,可能会导致智能电网运行失败。本文介绍了在确定智能电网故障场景时使用故障注入的方法。注入软件故障以表示网络基础架构中的故障。同时表示物理故障,从而创建了集成的网络物理故障场景,从而将这项工作与相关研究区分开来。在两种情况下研究了这些故障场景的影响:在分布式软件中有无故障检测。本文通过利用所获得的信息来完善和改进我们早期工作中提出的定量可靠性模型的准确性而得出结论。

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