A real-time middleware platform for the smart grid

Tatjana Predojev, A. Al-Hezmi, J. Alonso-Zarate, M. Dohler
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引用次数: 11

Abstract

The currently used communications layer in the electric power grid is heavily outdated and thus not able to cope with emerging Smart Grid application requirements. Notably, new measurement devices and advanced control applications are being deployed with the aim to greatly improve the stability and efficiency of the grid. A communication infrastructure together with a middleware that delivers updates across wide areas in a timely and reliable manner is thus a cornerstone in the emerging Smart Grid. In this paper, we analyse distributed computing technologies that meet the stringent communications requirements.We show that the solutions and practices developed for Machine-To-Machine (M2M) communications, ETSI M2M middleware in particular, can be successfully applied to future Smart Grid networks. The pitfalls of the proposed architecture are identified and an upgrade is devised to provide for the critical event-driven, real-time communication required by some applications.
智能电网的实时中间件平台
目前电网中使用的通信层严重过时,无法满足新兴的智能电网应用需求。值得注意的是,新的测量设备和先进的控制应用正在部署,目的是大大提高电网的稳定性和效率。因此,通信基础设施与中间件一起,以及时可靠的方式跨大范围提供更新,是新兴智能电网的基石。本文分析了满足严格通信要求的分布式计算技术。我们展示了为机器对机器(M2M)通信开发的解决方案和实践,特别是ETSI M2M中间件,可以成功地应用于未来的智能电网网络。确定了所建议的体系结构的缺陷,并设计了升级,以提供某些应用程序所需的关键事件驱动的实时通信。
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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