Distributed multi-agent microgrids: a decentralized approach to resilient power system self-healing

C. Colson, M. H. Nehrir, R. Gunderson
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引用次数: 87

Abstract

The predominance of recent self-healing power system research has been directed towards centralized command and control functions. In this paper, a decentralized multi-agent control method for distributed microgrids is introduced. Given the complexity of a large power system spanning hundreds of miles and comprised of numerous microgrids, it is potentially unrealistic to expect that centralizing total system control functions is feasible. Therefore, the authors are particularly interested in dispersing decision-making by utilizing smart microgrid control agents that cooperate during normal and emergency situations. The combination of microgrids and agent-based control can improve power system resiliency. The method described herein lays the groundwork for a comprehensive microgrid control architecture that strikes a balance between the multiple intra-microgrid objectives defined by local operator and the situational demands of the microgrid collective as part of the power system. In this way, both self-interest and cooperation can arise, allowing microgrid agents to successfully transition from normal operations to an emergency condition and back again when conditions have resolved, independent of a central supervisor. The decentralized multi-agent methods for microgrids explored in this paper help to support what may be an enabling technology of future smart grids.
分布式多智能体微电网:弹性电力系统自愈的分散方法
近年来自愈电力系统研究的主要方向是集中指挥和控制功能。本文介绍了一种分布式微电网的分散多智能体控制方法。考虑到跨越数百英里并由众多微电网组成的大型电力系统的复杂性,期望集中整个系统控制功能是可行的,这可能是不现实的。因此,作者对利用在正常和紧急情况下合作的智能微电网控制代理来分散决策特别感兴趣。微电网与智能体控制相结合可以提高电力系统的弹性。本文描述的方法为全面的微网控制架构奠定了基础,该架构在本地运营商定义的多个微网内部目标和作为电力系统一部分的微网集体的情境需求之间取得平衡。通过这种方式,自身利益和合作都可以产生,允许微电网代理成功地从正常运行过渡到紧急情况,并在情况解决后再返回,独立于中央监督者。本文探讨的微电网分散多智能体方法有助于支持未来智能电网的使能技术。
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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