Dynamic, self-organized clusters as a means to supply and demand matching in large-scale energy systems

Selma Čaušević, M. Warnier, F. Brazier
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引用次数: 12

Abstract

Centralized management of power systems is becoming more challenging due to the increased introduction of distributed renewable energy resources, along with demand increase and aging infrastructures. To address these challenges, this paper proposes new mechanisms for decentralized energy management. Based on self-organization of consumers, prosumers and producers into virtual groups, called clusters, supply and demand of electricity is locally matched. Distributed multi-agent systems are used as a way to represent virtual cluster members. The mechanisms are illustrated, and static and dynamic virtual clusters are compared. Dynamic reconfiguration is achieved by varying the time periods for which clustering is performed. The proposed clustering mechanisms demonstrate that large-scale centralized energy systems can operate in a decentralized fashion when only local information is available.
动态、自组织集群作为大规模能源系统供需匹配的手段
由于分布式可再生能源的增加,以及需求的增加和基础设施的老化,电力系统的集中管理变得越来越具有挑战性。为了应对这些挑战,本文提出了分散能源管理的新机制。基于消费者、生产消费者和生产者的自我组织,形成虚拟群体,称为集群,电力供应和需求是局部匹配的。分布式多代理系统被用作表示虚拟集群成员的一种方式。说明了虚拟集群的实现机制,并对静态和动态虚拟集群进行了比较。动态重新配置是通过改变执行集群的时间段来实现的。所提出的聚类机制表明,当只有本地信息可用时,大型集中式能源系统可以以分散的方式运行。
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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