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Analysis of Dynamical Robustness to Noise in Power Grids

机译:电网噪声动态鲁棒性分析

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摘要

Resilience of power grids is a problem of tremendous practical and theoretical relevance. In this work, we model a power grid as a complex network of coupled oscillators. We investigate the robustness of synchronization, associated with the normal operating regime of the network, to partial malfunctioning of the nodes. Differently from previous efforts on power grid resilience, node malfunctioning is not modeled by removing a node from the network. Instead, we insert a continuous perturbation into the node dynamical equation, which reduces the degree of synchronization of the network. This framework enables an analytical treatment of the problem, ultimately leading to a detailed quantification of the criticality of each network node. The approach is applied to the UCTE European transmission network 1st synchronous area and to the IEEE 118-bus test case. The identification of nodes which are more critical to synchronization yields non-trivial hints at a complex interplay between topology and dynamics in shaping dynamical robustness of power grids.
机译:电网的弹性是一个在实践和理论上都具有重大意义的问题。在这项工作中,我们将电网建模为耦合振荡器的复杂网络。我们调查与网络的正常运行方式相关联的同步的鲁棒性,以解决节点的部分故障。与以前在电网弹性方面的努力不同,节点故障不是通过从网络中删除节点来建模的。取而代之的是,我们在节点动力学方程中插入一个连续的扰动,从而降低了网络的同步程度。该框架可以对问题进行分析处理,最终导致对每个网络节点的关键性进行详细的量化。该方法适用于UCTE欧洲传输网络第一同步区域和IEEE 118总线测试案例。对同步更关键的节点的识别在塑造电网动态鲁棒性时在拓扑和动力学之间的复杂相互作用方面产生了重要的提示。

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