Petrariu Adrian I, Coca Eugen, Lavric Alexandru
Computers, Electronics and Automation Department, Stefan cel Mare University of Suceava, 720229 Suceava, Romania.
MANSiD Research Center, Stefan cel Mare University of Suceava, 720229 Suceava, Romania.
Sensors (Basel). 2021 Dec 3;21(23):8093. doi: 10.3390/s21238093.
Electric power infrastructure has revolutionized our world and our way of living has completely changed. The necessary amount of energy is increasing faster than we realize. In these conditions, the grid is forced to run against its limitations, resulting in more frequent blackouts. Thus, urgent solutions need to be found to meet this greater and greater energy demand. By using the internet of things infrastructure, we can remotely manage distribution points, receiving data that can predict any future failure points on the grid. In this work, we present the design of a fully reconfigurable wireless sensor node that can sense the smart grid environment. The proposed prototype uses a modular developed hardware platform that can be easily integrated into the smart grid concept in a scalable manner and collects data using the LoRaWAN communication protocol. The designed architecture was tested for a period of 6 months, revealing the feasibility and scalability of the system, and opening new directions in the remote failure prediction of low voltage/medium voltage switchgears on the electric grid.
电力基础设施彻底改变了我们的世界,我们的生活方式也发生了翻天覆地的变化。能源的需求量增长速度超过了我们的想象。在这种情况下,电网被迫突破其极限运行,导致停电更加频繁。因此,迫切需要找到解决方案来满足日益增长的能源需求。通过使用物联网基础设施,我们可以远程管理配电点,接收能够预测电网未来任何故障点的数据。在这项工作中,我们展示了一种可完全重新配置的无线传感器节点的设计,该节点能够感知智能电网环境。所提出的原型使用了一个模块化开发的硬件平台,该平台可以轻松地以可扩展的方式集成到智能电网概念中,并使用LoRaWAN通信协议收集数据。所设计的架构经过了6个月的测试,揭示了该系统的可行性和可扩展性,并为电网中低压/中压开关设备的远程故障预测开辟了新的方向。