A Framework for Optimizing Measurement-Based Power Distribution under Communication Network Constraints

M. Kallitsis, G. Michailidis, M. Devetsikiotis
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引用次数: 22

Abstract

In this paper, we propose a framework for coupling the communication network of a smart grid with the power distribution network in an effort to better utilize the scarce energy resources. We believe that an agile, robust and effective communication infrastructure, relying on a service-oriented network paradigm is essential for proper operation of a greener and smarter electricity grid. The communication and power components of the grid should not be studied in isolation and we suggest a model where the communication delays are integrated in an electricity market pricing model such that the power demand affects the allocation of communication resources and vice versa. Power demand could be monitored and predicted via smart meters that would allow a dynamic pricing scheme. This serves as a feedback mechanism towards the consumers which can then reduce their consumption or activate alternative sources of energy to alleviate the local distribution system.
通信网络约束下基于测量的电力分配优化框架
本文提出了一种智能电网通信网络与配电网耦合的框架,以更好地利用稀缺的能源资源。我们认为,以服务为导向的网络模式为基础的敏捷、稳健和有效的通信基础设施,对于绿色智能电网的正常运行至关重要。不应孤立地研究电网的通信和电力组件,我们建议在电力市场定价模型中集成通信延迟的模型,以便电力需求影响通信资源的分配,反之亦然。电力需求可以通过智能电表进行监测和预测,从而实现动态定价方案。这是对消费者的一种反馈机制,可以减少他们的消费或激活替代能源,以缓解当地的分配系统。
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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