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Consensus-based distribution of power packets and decentralized control for routing
Chaos: An Interdisciplinary Journal of Nonlinear Science ( IF 2.9 ) Pub Date : 2020-03-05 , DOI: 10.1063/1.5134735
Seongcheol Baek 1 , Hiroyasu Ando 2 , Takashi Hikihara 1
Affiliation  

A power packet distribution network is expected to be one of the advanced power distribution systems, providing high controllability in both energy management and failure management. Regarding network operations, the power packet transmission is governed by switching operation within each of the routers. Here, the power distribution through power packets exhibits consensus-like dynamical behaviors. These features lead to the question of a consensus dynamics on switching topology and routing controls for appropriate power flows. Our approach to the above subjects is based on the dynamical modeling and the emulation of dynamics through the decentralized control of routers. The simulations on a ring-structure network, of the power distribution, reveal that the dynamical solution of the unbiased distribution is feasible via the decentralized control, while in the biased case, the result shows two behavioral fragments, which is quite different from the dynamical solution. In this discussion, we propose a decentralized algorithm that contains only fundamental functions for the packet transmission and is able to be redesigned or extended for further applications.

中文翻译:

电力数据包的基于共识的分配和路由的分散控制

功率分组分配网络有望成为先进的功率分配系统之一,在能量管理和故障管理方面都具有高度可控性。关于网络操作,功率分组传输由每个路由器内的交换操作控制。在此,通过功率分组的功率分布表现出类似共识的动态行为。这些特征导致了针对适当功率流的开关拓扑和路由控制的共识动力学问题。我们针对上述主题的方法基于动态建模和通过路由器的分散控制进行的动态仿真。在功率分布的环形结构网络上进行的仿真表明,通过分散控制,无偏分布的动力学解决方案是可行的,而在有偏见的情况下,结果显示了两个行为片段,这与动态解有很大不同。在此讨论中,我们提出了一种分散算法,该算法仅包含用于分组传输的基本功能,并且可以重新设计或扩展以用于进一步的应用。
更新日期:2020-04-10
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