Smart Grid Architecture, Communications and Data Model: The WiseGRID approach

D. Stratogiannis, Stamatia Gkiala-Fikari
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Abstract

Current technical, social, economic and environmental trends impose the optimization of power grid and energy management via the digitalization and Smart Grid (SG) development. The SG incorporates advanced communications and pervasive computing capabilities ensuring improvement in terms of control, efficiency, reliability, flexibility and safety along with novel advanced services to customers and business actors in the energy market. In this paper, the architecture, communications and enhanced data model developed under the WiseGRID project are presented, exploring the main challenges and requirements for the design and deployment of the ICT infrastructure required as part of a complex SG system. In particular, in this work special focus is given on the Smart Grid Architecture Model (SGAM) employed and on two of the main ICT tools developed to establish the interoperability among the entities involved in the SG. Finally, the work performed towards the development of a harmonized data model for SGs is presented in order to be used during the demonstration phase of the project.
智能电网架构、通信和数据模型:WiseGRID方法
当前的技术、社会、经济和环境趋势通过数字化和智能电网(SG)的发展对电网和能源管理进行了优化。SG集成了先进的通信和普适性计算能力,确保了在控制、效率、可靠性、灵活性和安全性方面的改进,并为能源市场的客户和业务参与者提供了新颖的先进服务。本文介绍了在WiseGRID项目下开发的体系结构、通信和增强数据模型,探讨了设计和部署作为复杂SG系统一部分所需的ICT基础设施的主要挑战和要求。特别是,本工作特别关注所采用的智能电网架构模型(SGAM)和为在SG中涉及的实体之间建立互操作性而开发的两个主要ICT工具。最后,介绍了为SGs开发统一数据模型所做的工作,以便在项目的演示阶段使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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