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Selection of indoor relay node positions for a three-hop low-voltage broadband power line communication system

机译:用于三跳低压宽带电力线通信系统的室内继电器节点位置的选择

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摘要

Low-voltage broadband power line communication (PLC) system transmits its information by the power line on the existed infrastructure. However, PLC attenuation and its harsh environment make it difficult to establish a reliable communication between the source and destination nodes, and relay-aided (RA) PLC technology can be used to solve this issue to increase the transmission rate and coverage. In this study, an indoor three-hop RA PLC system is under investigation for the first time. Based on a simple PLC attenuation model, the optimal relay node positions and transmitted power distribution of each node are studied to get the best system performance in theory. Then, a criterion of selection optimal relay node positions in a practical power-line network is derived by solving an optimisation problem. Finally, for a specific power-line network, the criterion for the selection of optimal relay node positions at the existed sockets between the source and destination nodes is verified. The theoretical work in this study could be useful in the design of broadband multi-hop RA PLC systems and their engineering applications.
机译:低压宽带电源线通信(PLC)系统通过电力线路在存在的基础架构上传输其信息。然而,PLC衰减及其恶劣环境使得难以在源和目的地节点之间建立可靠的通信,并且中继辅助(RA)PLC技术可用于解决此问题以提高传输速率和覆盖范围。在这项研究中,首次进行了室内三跳RA PLC系统。基于简单的PLC衰减模型,研究了每个节点的最佳中继节点位置和发射功率分布,以获得理论上的最佳系统性能。然后,通过解决优化问题导出在实际电力线网络中的选择最佳中继节点位置的标准。最后,对于特定的电力线网络,验证了用于在源区和目的地节点之间存在的套接字的最佳中继节点位置的选择的标准被验证。本研究的理论工作可用于宽带多跳RA PLC系统及其工程应用的设计。

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