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Reliability Analysis for the Advanced Electric Power Grid: From Cyber Control and Communication to Physical Manifestations of Failure

机译:先进电网的可靠性分析:从网络控制和通信到故障的物理表现

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The advanced electric power grid is a cyber-physical system comprised of physical components, such as transmission lines and generators, and a network of embedded systems deployed for their cyber control. The objective of this paper is to qualitatively and quantitatively analyze the reliability of this cyber-physical system. The original contribution of the approach lies in the scope of failures analyzed, which crosses the cyber-physical boundary by investigating physical manifestations of failures in cyber control. As an example of power electronics deployed to enhance and control the operation of the grid, we study Flexible AC Transmission System (FACTS) devices, which are used to alter the flow of power on specific transmission lines. Through prudent fault injection, we enumerate the failure modes of FACTS devices, as triggered by their embedded software, and evaluate their effect on the reliability of the device and the reliability of the power grid on which they are deployed. The IEEE118 bus system is used as our case study, where the physical infrastructure is supplemented with seven FACTS devices to prevent the occurrence of four previously documented potential cascading failures.
机译:先进的电网是由物理组件(如传输线和发电机)组成的网络物理系统,以及为进行网络控制而部署的嵌入式系统网络。本文的目的是定性和定量地分析该网络物理系统的可靠性。该方法的最初贡献在于所分析的故障范围,该范围通过调查网络控制故障的物理表现形式而跨越了网络物理边界。作为部署用于增强和控制电网运行的电力电子设备的示例,我们研究了柔性交流输电系统(FACTS)设备,该设备用于更改特定输电线路上的电力流。通过谨慎的故障注入,我们枚举了FACTS设备的故障模式,这些故障模式是由嵌入式软件触发的,并评估了它们对设备可靠性和部署它们的电网可靠性的影响。 IEEE118总线系统用作我们的案例研究,在物理基础架构上补充了七个FACTS设备,以防止发生四个先前记录的潜在级联故障。

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