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首页> 外文期刊>IEEE Transactions on Signal Processing >Controllability of Bandlimited Graph Processes Over Random Time Varying Graphs
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Controllability of Bandlimited Graph Processes Over Random Time Varying Graphs

机译:带限图过程在随机时变图上的可控性

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Controllability of complex networks arises in many technological problems involving social, financial, road, communication, and smart grid networks. In many practical situations, the underlying topology might change randomly with time, due to link failures such as changing friendships, road blocks or sensor malfunctions. Thus, it leads to poorly controlled dynamics if randomness is not properly accounted for. We consider the problem of controlling the network state when the topology varies randomly with time. Our problem concerns target states that are bandlimited over the graph; these are states that have nonzero frequency content only on a specific graph frequency band. We thus leverage graph signal processing and exploit the bandlimited model to drive the network state from a fixed set of control nodes. When controlling the state from a few nodes, we observe that spurious, out-of-band frequency content is created. Therefore, we focus on controlling the network state over the desired frequency band, and then use a graph filter to get rid of the unwanted frequency content. To account for the topological randomness, we develop the concept of controllability in the mean, which consists of driving the expected network state towards the target state. A detailed mean squared error analysis is performed to quantify the statistical deviation between the final controlled state on a particular graph realization and the actual target state. Finally, we propose different control strategies and evaluate their effectiveness on synthetic network models and social networks.
机译:复杂网络的可控性出现在涉及社会,金融,道路,通信和智能电网的许多技术问题中。在许多实际情况下,由于链接故障(例如,更改友谊,障碍或传感器故障),底层拓扑可能会随时间随机变化。因此,如果没有适当考虑随机性,则会导致动力学控制不佳。我们考虑当拓扑随时间随机变化时控制网络状态的问题。我们的问题涉及在图形上有带宽限制的目标状态;这些是仅在特定图形频段上具有非零频率内容的状态。因此,我们利用图形信号处理并利用带宽限制模型从一组固定的控制节点驱动网络状态。当从几个节点控制状态时,我们观察到创建了虚假的带外频率内容。因此,我们专注于控制所需频带上的网络状态,然后使用图形滤波器来消除不需要的频率内容。为了说明拓扑随机性,我们提出了均值可控性的概念,该概念包括将预期的网络状态驱向目标状态。执行详细的均方误差分析以量化特定图形实现上的最终控制状态与实际目标状态之间的统计偏差。最后,我们提出了不同的控制策略,并在综合网络模型和社交网络上评估了它们的有效性。

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