可生存的智能电网通信:智能电表网的救援

A. Athreya, P. Tague
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引用次数: 26

摘要

智能电网是当今世界重要的网络物理基础设施。由于这些基础设施容易由于灾难或故障而发生大规模中断,因此需要一种弹性和可生存的通信体系结构。在这项工作中,我们为智能电网提出了一种弹性和可生存的分层通信架构,该架构反映了现有电网的分层结构。网格通信的灾后恢复能力是通过网格扁平化过程实现的。这个过程涉及到智能电表和其他灾害幸存元素的更高系统级别的电网形成一个无线网状网络。网格单元的扁平网络具有一跳通信链路,有助于将网格的健康信息可靠、及时地传递到网格的工作区域。这使得公用事业供应商的控制工程师和应急服务人员能够根据实时数据迅速采取行动。我们提出了分析模型来研究扁平架构的性能作为停电面积、智能电表密度和智能电表邻居大小的函数。分析模型的结果将与OPNET的仿真结果进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Survivable smart grid communication: Smart-meters meshes to the rescue
Smart grids are critical cyber-physical infrastructures in the world now. Since these infrastructures are prone to large scale outages due to disasters or faults, a resilient and survivable communication architecture is desired. In this work, we propose a resilient and survivable hierarchical communication architecture for the smart grid that mirrors the hierarchy of the existing power grid. Post-disaster resilience in grid communication is achieved through the grid flattening process. This process involves smart-meters and other disaster surviving elements of higher system levels of the grid forming a wireless mesh network. The flattened network of grid elements with one-hop communication links help in reliable and timely relaying of grid's health information to working regions of the grid. This allows for swift action by control engineers of the utility provider and emergency services with real-time data. We propose analytical models to study the performance of the flattened architecture as a function of outage area, smart-meter density and smart-meter's neighborhood size. The results from the analytical model will be compared with simulation results from OPNET.
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