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A Novel Routing Algorithm for Power Line Communication over a Low-voltage Distribution Network in a Smart Grid

机译:智能电网中低压配电网电力线通信的新型路由算法

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摘要

A novel artificial cobweb routing algorithm (ACRA) for routing the tree-type physical topology of a low-voltage distribution network in a smart grid is proposed and analyzed in this paper. The establishment, maintenance and reconstruction of the route are presented. The artificial cobweb routing algorithm is shown to have broad general applicability for power line communication. To provide a theoretical foundation for further research, the communication delay of the network is calculated accurately. Simulation analysis of the communication delay and throughputs, which were based on Opnet14.5, demonstrate the accuracy of the theoretical calculation. For the performance evaluation of ACRA, a test-bed that includes PLC nodes with the ACRA is set up in a noisy environment. Experimental results show the feasibility of the ACRA algorithm. These indicate that ACRA is effective for guaranteeing Quality of Service (QoS) and reliability in power line communication.
机译:提出并分析了一种用于智能电网中低压配电网的树型物理拓扑路由的新型人工蜘蛛网路由算法(ACRA)。介绍了路线的建立,维护和重建。人工蜘蛛网路由算法显示出对电力线通信具有广泛的通用性。为进一步研究提供理论依据,准确计算了网络的通信时延。基于Opnet14.5的通信延迟和吞吐量的仿真分析证明了理论计算的准确性。为了评估ACRA的性能,在嘈杂的环境中建立了一个包含PLC节点和ACRA的测试台。实验结果表明了该算法的可行性。这些表明ACRA对于保证电力线通信中的服务质量(QoS)和可靠性是有效的。

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