Optimal placement of data aggregators in smart grid on hybrid wireless and wired communication

Mahsa Tavasoli, M. Yaghmaee, A. Mohajerzadeh
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引用次数: 19

Abstract

Advanced Metering Infrastructure (AMI) is one of the main applications of smart grids. AMI enables the transmission of commands to smart meters, that is, a two-way communication is established. The meters data is aggregated in some intermediate nodes called Data Aggregation Point (DAP) and then forwarded to the control center. DAP placement is one of the greatest challenges for the smart grid networks. The manual analysis of the best DAPs positions is costly and hard to execute in practice, especially in high-density neighborhoods. General formulation of this problem leads to an NP-hard problem. In the current study, first we investigate some of the existing literatures in this area and then present an optimization problem to find the best location for aggregators in a hybrid wireless and wired communication network including fiber optic and WIMAX. To the best of our knowledge, there is no work that presents an optimal placement of data aggregator in a hybrid wireless and wired network that helps the customers and the microgrid to communicate within themselves with less delay in getting energy services and less overhead to the data aggregator points. Numerical results show that our proposed communication network infrastructure and DAP placement model minimizes cost and data aggregator density.
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基于无线和有线混合通信的智能电网中数据聚合器的优化配置
高级计量基础设施(AMI)是智能电网的主要应用之一。AMI可以将命令传递给智能电表,即建立双向通信。仪表数据在一些称为数据聚合点(DAP)的中间节点中聚合,然后转发到控制中心。DAP的放置是智能电网面临的最大挑战之一。在实践中,手工分析最佳dap位置是昂贵且难以执行的,特别是在高密度的社区中。这个问题的一般表述导致了np困难问题。在本研究中,我们首先研究了该领域的一些现有文献,然后提出了在包括光纤和WIMAX在内的无线和有线混合通信网络中寻找聚合器最佳位置的优化问题。据我们所知,目前还没有一项研究提出在无线和有线混合网络中数据聚合器的最佳位置,以帮助客户和微电网内部通信,减少获得能源服务的延迟,减少数据聚合器点的开销。数值结果表明,我们提出的通信网络基础设施和DAP放置模型使成本和数据聚合器密度最小化。
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