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A Resistance-Distance-Based Approach for Optimal Leader Selection in Noisy Consensus Networks

机译:噪声共识网络中基于阻力距离的最优领导者选择方法

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We study the performance of leader-follower noisy consensus networks and, in particular, the relationship between this performance and the locations of the leader nodes. Two types of dynamics are considered: 1) noise-free leaders, in which leaders dictate the trajectory exactly and followers are subject to external disturbances and 2) noise-corrupted leaders, in which both leaders and followers are subject to external perturbations. We measure the performance of a network by its coherence, an H-2 norm that quantifies how closely the followers track the leaders' trajectory. For both dynamics, there is a relationship between the coherence and resistance distances in an electrical network. Using this relationship, we derive closed-form expressions for coherence as a function of the locations of the leaders, and we give analytical solutions to the optimal leader selection problem for several classes of graphs.
机译:我们研究领导者跟随者噪声共识网络的性能,尤其是研究这种性能与领导者节点位置之间的关系。可以考虑两种类型的动力学:1)无噪声的领导者,其中领导者精确地决定了轨迹,跟随者受到外部干扰; 2)噪声损坏的领导者,其中领导者和跟随者都受到外部干扰。我们通过网络的连贯性(H-2规范)来衡量网络的绩效,该规范量化了追随者对领导者轨迹的追踪程度。对于两种动力学,电网中的相干距离和电阻距离之间都有关系。利用这种关系,我们得出了作为领导者位置的函数的连贯性的闭式表达式,并且我们针对几种图的最优领导者选择问题给出了解析解。

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