动态约束工作区域配电网的远程监控

Elisavet Grigoriou, Achilleas Moukoulis, Theocharis Saoulidis, Rita Santiago, Helio Simeão, Sonia Castro, Paula Encinar Sanz, Inmaculada Prieto Borrero, A. Betzler, Sergi Cadenas, I. Ciornei
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引用次数: 0

摘要

Smart5Grid利用了第5代(5G)移动网络技术的健壮性和灵活性,为网络应用(NetApps)的可靠测试、验证和运行提供了一个开放和适应性强的平台,解决了可再生能源(RES)生产和有功配电生态系统运行的挑战,特别是。Smart5Grid旨在通过适应5G网络和支持将在实际电网设施上开发和验证的相应NetApps,支持当前能源部门和未来的智能电网利益相关者。Smart5Grid旨在为现代智能电网提供更安全、灵活、高效、可扩展和实时的通信框架。通过对自动划定工作区域的远程检查和控制,创建的Smart5Grid 5G平台的功能将有助于改善电网维护人员和检查人员的工作条件。在本文中,我们介绍了Smart5Grid项目的方法,该项目将通过支持各种配电网应用,并通过增强现实提供有关电网资产运行状况的准确结果和信息,从而实现高风险地区的远程检查和实时执行。如果进行维护工作,将启用实时控制,远程自动支持工作程序,而不会将员工置于潜在的有害环境中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Remote Monitoring at Distribution Network of Dynamically Constrained Working Areas
Smart5Grid exploits the robustness and flexibility enabled by the 5-th generation (5G) mobile network technology to contribute an open and adaptable platform for reliable testing, validation, and operation of Network Applications (NetApps), addressing the challenges of the Renewable Energy Sources (RES) production and those of the operation of the active power distribution ecosystem, in particular. Smart5Grid aims to support current energy sector and future smart grid stakeholders through the adaptation of 5G networks and the support of the respective NetApps that will be developed and validated on real power grid facilities. Smart5Grid intends to provide a more secure, flexible, efficient, scalable and real-time communication framework for modern smart grids. Through remote inspection and control of automatically delimited working areas, the capabilities of the created Smart5Grid 5G platform will facilitate the improvement of working conditions for power grid maintenance crews and inspection workers. In this paper, we presented the methodology of the Smart5Grid project, which will enable remote inspections in high-risk areas and real-time execution by supporting various distribution network applications and providing accurate results and information on the operational condition of power grid assets via augmented reality. If maintenance work is undertaken, real-time control will be enabled to support working procedures remotely and automatically, without putting employees in potentially harmful conditions.
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