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Analysis of communication networks for smart substations using a virtualized execution platform

机译:使用虚拟化执行平台的智能变电站通信网络分析

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The current development of the power grid towards a Smart Grid advances the complexity of the system, involving active control, new software components and large amounts of data. This, in turn, requires new approaches for the ICT infrastructure to guarantee real-time capability and reliability. In this work, we present our design of a novel infrastructure for smart substations in the transmission grid, applying the concept of virtualization to substation devices. Since virtualization has already been successfully applied for fault-tolerant and dependable computer systems, it promises to be a valuable concept for substation automation. However, virtualization poses additional challenges to the real-time capability of the substation infrastructure in terms of additional traffic and resource allocation. For analysing the impact on substation communication, we apply simulations and the analytical technique Network Calculus to provide guarantees on the performance of the proposed communication infrastructure. In addition, the performance of the execution platform is studied empirically, measuring occurring delays in a test-bed set-up. Finally, we combine the results from both evaluations to derive an end-to-end delay bound for a power grid related example. Our results show that, other than Fast Ethernet, Gigabit Ethernet networks can guarantee the secure operation of virtualized, fault-tolerant substation infrastructures.
机译:当前电网向智能电网的发展提高了系统的复杂性,涉及主动控制,新的软件组件和大量数据。反过来,这要求ICT基础设施采用新方法以保证实时功能和可靠性。在这项工作中,我们将为传输网格中的智能变电站提供新颖的基础架构设计,并将虚拟化的概念应用于变电站设备。由于虚拟化已成功应用于容错和可靠的计算机系统,因此它有望成为变电站自动化的重要概念。但是,就额外的流量和资源分配而言,虚拟化对变电站基础架构的实时能力提出了额外的挑战。为了分析对变电站通信的影响,我们应用了仿真和分析技术Network Calculus来为所提议的通信基础设施的性能提供保证。此外,还对实验平台的性能进行了实证研究,测量了测试平台设置中发生的延迟。最后,我们将两次评估的结果结合起来,得出与电网相关的示例的端到端延迟范围。我们的结果表明,除快速以太网外,千兆以太网还可以保证虚拟化的容错变电站基础设施的安全运行。

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