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Resilient and Low-Latency Information Acquisition for FiWi Enhanced Smart Grid

机译:FiWi增强型智能电网的弹性和低延迟信息采集

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摘要

As distinct SG applications have different communication requirements in terms of reliability, latency, bandwidth, and so on, it is obviously infeasible to rely on a single communication technology for SG communications. Therefore, a hybrid communication architecture integrating both low latency fiber optic and flexible wireless technologies should be a promising candidate, which gives rise to the so-called FiWi enhanced SG. Note that SG, as a national strategic infrastructure, relies heavily on physical infrastructures, and are vulnerable to various failures. In such cases, the distribution management system of SG should be able to obtain the status of overall SG infrastructure as soon as possible, so as to carry out disaster relief for power restoration and prevention of further chain-style blackouts. Toward this end, we provide in this article an architecture of FiWi enhanced SG and study the problem of resilient and low-latency information acquisition under failures. Furthermore, we propose a heuristic greedy clustering algorithm as our solution for remaining sensors to find their near-optimal clustering paths.
机译:由于不同的SG应用程序在可靠性,等待时间,带宽等方面具有不同的通信要求,因此,依靠单一的通信技术进行SG通信显然是不可行的。因此,融合了低延迟光纤和灵活无线技术的混合通信体系结构应该是一个有前途的候选者,这产生了所谓的FiWi增强型SG。请注意,SG作为国家战略基础架构,在很大程度上依赖于物理基础架构,并且容易遭受各种故障的影响。在这种情况下,SG的配电管理系统应该能够尽快获得SG基础设施的整体状况,以便进行灾难救援以恢复电力并防止进一步的连锁式停电。为此,我们在本文中提供了FiWi增强SG的体系结构,并研究了故障情况下的弹性和低延迟信息获取问题。此外,我们提出了一种启发式贪婪聚类算法作为我们的解决方案,以使其余传感器找到其接近最佳的聚类路径。

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