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Optimized advanced metering infrastructure architecture of smart grid based on total cost, energy, and delay

机译:基于总成本,能源和延迟优化的智能电网高级计量基础架构

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Smart grid as a data communication network uses advanced metering infrastructure architecture to collect the measured data of smart meters and other devices such as power measurement units from different parts of the electrical grid and sends them to the central system to be analyzed for billing or other purposes and being stored. In this paper, we propose a three-layer aggregation architecture for advanced metering infrastructure in smart grid which deploys the M/M/1 queuing system. We develop models to calculate energy consumption of data aggregation points (DAPs) and packet delay. We derive expressions for energy consumption of DAPs, total cost of relay and DAPs, delay, and packet delay. We define a new performance metric, the multiplication of energy and cost (EC), to find the optimum number of DAPs. The results of simulation confirm validity and accuracy of our theoretical models and show that we can maintain a good balance among total cost, energy consumption and delay.
机译:作为数据通信网络的智能电网使用先进的计量基础架构来从电网的不同部分收集智能电表和其他设备(例如功率测量单元)的测量数据,并将其发送到中央系统以进行计费或其他目的进行分析并被存储。在本文中,我们提出了一种用于智能电网中高级计量基础架构的三层聚合体系结构,该体系结构部署了M / M / 1排队系统。我们开发模型来计算数据聚合点(DAP)和数据包延迟的能耗。我们导出DAP能耗,中继和DAP的总成本,延迟和数据包延迟的表达式。我们定义了一个新的性能指标,即能量和成本的乘积(EC),以找到DAP的最佳数量。仿真结果证实了我们理论模型的有效性和准确性,表明我们可以在总成本,能耗和延迟之间保持良好的平衡。

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