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Consensus Dynamics in Switching Networks for Distributing Power Packets

机译:用于分发功率包的交换网络中的共识动态

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Power packet dispatching system is one of promising technologies for energy saving. To enhance this system, we propose an efficient algorithm for distributing power packets. As the first step, we consider the consensus dynamics in a network by assuming the state variable at each node as an amount of power. In addition, we assume that networks are switching, namely the topology of a network changes in time. These assumptions are effective for distributing power packets among power network systems in terms of decentralized control. We demonstrate numerical simulations for a small-scale network and discuss the results for an application to the power packet dispatching systems, such as variability of power storage at a node, control of power distribution over a network, and topology estimation from time series.
机译:电力包调度系统是能源节能技术之一。为了增强该系统,我们提出了一种用于分配功率包的有效算法。作为第一步,我们考虑通过假设每个节点处的状态变量作为电量的状态变量来考虑网络中的共识动态。此外,我们假设网络正在切换,即网络拓扑的时间变化。这些假设在分散控制方面,对于电力网络系统之间的功率分组是有效的。我们证明了小型网络的数值模拟,并讨论了应用于电力分组调度系统的应用,例如节点处的蓄电片的可变性,网络通过网络的功率分布以及从时间序列的拓扑估计。

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