Study on Block and Hierarchical Division Control of Power Internet of Things

Jian Gao, Chao Huo, Yan Zhen, Ganghong Zhang
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Abstract

Combined with the demand of the power Internet of things for mass data transmission and processing, based on the clustering algorithm, the power Internet of things is divided into appropriate block grid, the collection with close communication or similar distance and the aggregation node are divided into the same network from the selection of the initial cluster center and the determination of the optimal cluster number K. Each grid runs independently, and the corresponding distributed controller is configured. The communication scheduling between networks is based on the multi-service traffic prediction, which not only avoids the contact between nodes that are too far away, but also makes effective use of bandwidth resources and has a certain "self-healing" function, which provides support for the optimization of subsequent distribution network. The effectiveness of the method is verified by the results of an example.
电力物联网分块与分层控制研究
结合电力物联网对海量数据传输和处理的需求,基于聚类算法,将电力物联网划分为合适的块网格,从初始聚类中心的选择和最优聚类数k的确定出发,将通信距离近或距离相近的集合与聚集节点划分为同一网络,每个网格独立运行;并配置相应的分布式控制器。网络间通信调度基于多业务流量预测,既避免了相距太远的节点之间的接触,又有效利用了带宽资源,具有一定的“自愈”功能,为后续配电网的优化提供了支持。算例验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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