Ontology-based demand-side flexibility management in smart grids using a multi-agent system

J. Hippolyte, Shaun K. Howell, B. Yuce, M. Mourshed, Hassan A. Sleiman, M. Vinyals, Loïs Vanhée
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引用次数: 26

Abstract

Power distribution network management must integrate with demand side management, alongside distributed energy resources, in order to meet sustainability, resilience, and economic challenges through a smart grid approach. This paper presents an implementation of the Universal Smart Energy Framework (USEF) through a multiagent system and a novel semantic web ontology, which aligns and enriches relevant existing standards. USEF provides a common specification of the market processes and information exchange but does not specify the internal reasoning of the different roles involved. The authors explain the systematic design and development process from the requirements of the energy-flexibility value chain to software implementation. The underpinning ontology formalizes a domain perspective which is coherent with existing standards, and is sufficient for the agent-oriented implementation of the mentioned framework. As well as contributing this model as a web ontology artifact, the presented work utilizes metaprogramming to transform the domain model into a standard agent communication language ontology. The research reported in this paper is expected to lead towards efficient and scalable development of decision support and automation software for smart grids.
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基于本体的多智能体智能电网需求侧灵活性管理
配电网络管理必须与需求侧管理以及分布式能源相结合,以便通过智能电网方法满足可持续性、弹性和经济挑战。本文提出了一种通过多智能体系统和一种新的语义web本体实现通用智能能源框架(USEF)的方法,该方法与现有的相关标准保持一致并丰富了相关标准。USEF提供了市场过程和信息交换的通用规范,但没有指定所涉及的不同角色的内部推理。从能源柔性价值链的需求到软件实现,阐述了系统的设计和开发过程。基础本体形式化了与现有标准一致的领域透视图,并且对于上述框架的面向代理的实现是足够的。在将该模型作为web本体工件的同时,本文还利用元编程将领域模型转换为标准的代理通信语言本体。本文所报道的研究预计将导致智能电网决策支持和自动化软件的高效和可扩展的发展。
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