A synthesis of communication architectures and services of smart grid systems

Zahid Soufiane, B. Slimane, En-Nouaary Abdeslam
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引用次数: 10

Abstract

The future electrical grid or the Smart Grid is an intelligent power network featured by its two-way flows of electricity and information. With an integrated communication infrastructure, Smart Grid manages the operation of all connected components to provide reliable and sustainable electricity supplies. However, utilities from all over the world are now facing the key challenge of finding the most appropriate architecture that can satisfy their future communication needs. The architecture models given by the international organizations of standardization are conceptual, so it is insufficient to grab the relation between the network components. In this paper, we introduce the current architectures proposed by international organizations, that is, NIST, ITU and IEEE. And we highlight their limits which prevent us from understanding the communication flow in the system. Then, we present a communication infrastructure model based on these international roadmaps and guides. Unlike other architectures, this one fulfills the six functionalities that Smart Grid network must achieve. Finally, we present the communication technologies that can be used for interconnecting the components and standards for each section. This paper is a preliminary step in our work. In fact, we aim in the future work to check our architecture by modeling the system and take the step of verification and validation.
智能电网系统通信体系结构与服务的综合
未来电网或智能电网是以电力和信息双向流动为特征的智能电网。通过集成的通信基础设施,智能电网管理所有连接组件的运行,以提供可靠和可持续的电力供应。然而,来自世界各地的实用程序现在都面临着寻找能够满足其未来通信需求的最合适的体系结构的关键挑战。国际标准化组织给出的体系结构模型都是概念性的,不足以把握网络组件之间的关系。本文介绍了NIST、ITU和IEEE等国际组织提出的现有架构。我们强调了它们的局限性,这阻碍了我们理解系统中的通信流。然后,我们提出了一个基于这些国际路线图和指南的通信基础设施模型。与其他体系结构不同,这个体系结构实现了智能电网网络必须实现的六个功能。最后,我们提出了可用于组件互连的通信技术和每个部分的标准。这篇论文是我们工作的第一步。事实上,在未来的工作中,我们的目标是通过对系统建模来检查我们的体系结构,并采取验证和确认的步骤。
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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