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A graph theory based energy routing algorithm in Energy Local Area Network (e-LAN)

机译:能源局域网(e-LAN)中基于图论的能源路由算法

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摘要

The energy internet concept has been considered as a new development stage of the Smart Grid, which aims to increase the energy transmission efficiency and optimise the energy dispatching in time and space. Energy router is a core device in the energy internet and it connects all the devices together into a net structure and manages power flows among them. The research work presented in this paper described the energy router’s structure and function expectations from the network perspective, and improved the existing energy router design. Open-shortest-path first (OSPF) protocol and virtual circuit switching mode are referenced from the Internet in the energy local area network (e-LAN) design. This paper proposed a design of an energy routing algorithm based on graph theory in an e-LAN. A lowest-cost routing selection algorithm is designed according to the features of power transmission, and a source selection and routing design algorithm is proposed for very heavy load conditions. Both algorithms have been verified by case analyses.
机译:能源互联网概念已被视为智能电网的新发展阶段,旨在提高能源传输效率并优化时空能源分配。能源路由器是能源互联网中的核心设备,它将所有设备连接到一个网络结构中,并管理其中的电流。本文介绍的研究工作从网络角度描述了能源路由器的结构和功能预期,并改进了现有的能源路由器设计。能源局域网(e-LAN)设计中从Internet引用了开放式最短路径优先(OSPF)协议和虚拟电路交换模式。本文提出了一种基于图论的e-LAN能量路由算法设计。根据电力传输的特点设计了一种成本最低的路由选择算法,并针对极重负载的情况提出了一种源选择和路由设计算法。案例分析已验证了这两种算法。

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