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LTE-D2D Assisted Communication in Smart Grid Neighborhood Area Networks

机译:LTE-D2D在智能电网邻域网络中辅助通信

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Deployment of charging stations for electric vehicles and phasor measurement units for wide area monitoring have put stringent requirements in terms of real-time data handling capacity and latency on the communication infrastructure in smart grids. Next-generation cellular standards and Device-to-Device (D2D) communication technology offer promising solutions to address these challenges. This paper proposes a hierarchical communication infrastructure utilizing LTE and LTE-D2D modes for information exchange in smart grid Neighborhood Area Network (NAN). Direct link between smart meter and NAN gateway is replaced by two-hop relay communication through local data aggregators. A set of smart meters form a cluster and transmit their status reports periodically to their local aggregator in LTE-D2D assisted mode. Each local aggregator then forwards cumulative reports to regional data aggregator via LTE mode. The proposed framework reduces bandwidth requirement and total uploading time for networks involving high density of devices and producing a large volume of data. Performance of the proposed architecture is compared with WLAN assisted and LTE-Direct transmission modes for NAN communication.
机译:用于广域监测的电动汽车和Phasor测量单元的充电站的部署在智能电网中通信基础设施的实时数据处理能力和延迟方面对智能电网的实时数据处理能力和延迟进行了严格的要求。下一代蜂窝标准和设备到设备(D2D)通信技术提供了有希望的解决方案来解决这些挑战。本文提出了一种利用LTE和LTE-D2D模式的分层通信基础设施,用于智能电网邻域网(NAN)中的信息交换。智能电表和NAN网关之间的直接链路由本地数据聚合器的两跳继电器通信替换。一组智能电表表格形成群集,并定期将其状态报告发送到LTE-D2D辅助模式中的本地聚合器。然后,每个本地聚合器通过LTE模式将累积报告转发到区域数据聚合器。所提出的框架可降低涉及高密度的网络和产生大量数据的网络的带宽要求和总上传时间。将所提出的架构的性能与WLAN辅助和LTE-Direct传输模式进行比较。

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