A smart grid based algorithm for improving energy efficiency of large scale cooperating distributed systems

B. Nleya, A. Mutsvangwa, M. Dewa
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Abstract

A smart grid (SG) is a sophisticatedly integrated hybrid power generating system which allows bidirectional energy as well as management data exchanges. In this paper we look at improving energy efficiency in large scale cooperating power consuming as well as power generating systems. We discuss a clustered as well as hierarchical power scheduling algorithms that are geared towards optimizing the management of power tariffs, storage and distribution in a cooperative environment. From a generation perspective, solar intensity prediction is proposed for power generation forecasting and whereas from a power consumption perspective, we evaluate and model the power consumed by these distributed systems (consumers) and propose improving resource allocation, scheduling and network traffic management so as to make network and computing resources more power efficient.
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一种基于智能电网的大规模协同分布式系统能效提高算法
智能电网(SG)是一种复杂集成的混合发电系统,可以实现双向能量交换和管理数据交换。在本文中,我们着眼于提高能源效率的大型合作用电和发电系统。我们讨论了一种聚类和分层电力调度算法,这些算法旨在优化合作环境中电价、存储和分配的管理。从发电角度,我们提出了对太阳能强度进行发电预测;从功耗角度,我们对这些分布式系统(消费者)的功耗进行评估和建模,并提出了改进资源分配、调度和网络流量管理的建议,从而使网络和计算资源更加节能。
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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