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LoRa mesh architecture for automation of rural electricity distribution networks

机译:洛拉网格架构,用于农村电力分配网络的自动化

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The current transformation scenario in power distribution networks forecasts the need for alternative solutions in communication systems employed in the process of making them intelligent. As a premise, these alternatives should be easy to implement and affordable to allow their adoption in rural distribution networks, where, often, the use of technologies, such as mobile, is not available. This Letter proposes a new communication architecture with mesh topology, based on LoRa technology. The architecture adapts packet prioritisation and MIMO mechanisms to ensure the communication requirements necessary for the services. In this sense, several applications and protocols of a smart grid can coexist in the same communication system. The deployment of the architecture gave rise to a routing protocol adapted to the limitations of the radio technology used. The benefits of the proposed architecture can be observed when compared to the use of traditional low power wide area network networks and cellular technologies. The robustness of the system has been proven with average latency measurement within the acceptable range for DNP3 Modbus and NBR14522 applications. The results have shown its potential employment in the management of intelligent rural distribution systems.
机译:配电网络中的当前变换方案预测了在使其智能化过程中采用的通信系统中的替代解决方案的需求。作为前提,这些替代方案应该易于实施,并且可负担得起,以便允许其在农村分销网络中采用,在那里,通常,使用技术的使用,如移动设备,不可用。这封信提出了一种基于LORA技术的网格拓扑的新的通信架构。该架构适应分组优先级和MIMO机制,以确保服务所需的通信要求。从这个意义上讲,智能电网的若干应用和协议可以在相同的通信系统中共存。该体系结构的部署产生了适用于所使用的无线电技术的限制的路由协议。与使用传统的低功率广域网网络网络和蜂窝技术相比,可以观察到所提出的架构的好处。在DNP3 Modbus和NBR14522应用程序的可接受范围内,系统的稳健性已被证明具有平均延迟测​​量。结果表明其在智能农村分配系统管理方面的潜在就业。

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