A Comparative Study of Data Storage and Processing Architectures for the Smart Grid

Maria Arenas-Martinez, Sergio Herrero-Lopez, Abel Sanchez, John R. Williams, P. Roth, P. Hofmann, A. Zeier
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引用次数: 48

Abstract

A number of governments and organizations around the world agree that the first step to address national and international problems such as energy independence, global warming or emergency resilience, is the redesign of electricity networks, known as Smart Grids. Typically, power grids have "broadcasted" power from generation plants to large population of consumers on a suboptimal way. Nevertheless, the fusion of energy delivery networks and digital information networks, along with the introduction of intelligent monitoring systems (Smart Meters) and renewable energies, would enable two- way electricity trading relationships between electricity suppliers and electricity consumers. The availability of real-time information on electricity demand and pricing, would enable suppliers optimizing their delivery systems, while consumers would have the means to minimize their bill by turning on appliances at off-peak hours. The construction of the Smart Grid entails the design and deployment of information networks and systems of unprecedented requirements on storage, real-time event processing and availability. In this paper, a series of system architectures to store and process Smart Meter reading data are explored and compared aiming to establish a solid foundation in which future intelligent systems could be supported.
智能电网数据存储与处理体系结构的比较研究
世界各地的许多政府和组织一致认为,解决能源独立、全球变暖或紧急应变能力等国家和国际问题的第一步是重新设计电网,即智能电网。通常,电网以一种次优的方式将发电厂的电力“广播”给大量消费者。然而,能源输送网络和数字信息网络的融合,以及智能监控系统(智能电表)和可再生能源的引入,将使电力供应商和电力消费者之间的双向电力交易关系成为可能。电力需求和定价的实时信息的可用性将使供应商能够优化他们的输送系统,而消费者将有办法通过在非高峰时间打开电器来减少他们的账单。智能电网的建设需要设计和部署信息网络和系统,对存储、实时事件处理和可用性提出了前所未有的要求。本文对一系列存储和处理智能电表抄表数据的系统架构进行了探讨和比较,旨在为支持未来的智能系统奠定坚实的基础。
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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