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Comprehensive Real-Time Microgrid Power Management and Control With Distributed Agents

机译:使用分布式代理的全面实时微电网电源管理和控制

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Advances in smart grid technology have yet to coalesce into a comprehensive solution integrating the landscape of future power systems. The microgrid concept may offer a solution for combining advanced components and enabling technologies within an infrastructure that must expand to meet emerging demands. As autonomous power system entities, microgrids require robust real-time power management and control to simultaneously operate jointly with the utility, provide reliable service, and help achieve customer-driven objectives utilizing local power system assets. In this paper, a decentralized control architecture for microgrids is presented, along with a simulation environment appropriate for on-going investigations into real-time, agent-based decision-making. Challenges faced by operating self-organizing multi-agent system (MAS) are presented, as well as results for a representative power management scenario for a multi-asset microgrid capable of operating in grid-interconnected or islanded mode. The system and formulations presented demonstrate the viability and capability of decentralized agent-based control for microgrids and illustrate their potential towards achieving smart grid goals.
机译:智能电网技术的进步尚未融合为一个集成了未来电力系统前景的综合解决方案。微电网概念可能会提供一种解决方案,用于组合必须扩展才能满足新兴需求的基础架构中的高级组件和支持技术。作为独立的电力系统实体,微电网需要强大的实时电力管理和控制功能,以与公用设施同时运行,提供可靠的服务并利用本地电力系统资产帮助实现客户驱动的目标。在本文中,提出了一种用于微电网的分散控制架构,以及适用于正在进行的基于代理的实时决策研究的仿真环境。介绍了运行自组织多智能体系统(MAS)所面临的挑战,以及针对能够以并网或孤岛模式运行的多资产微电网的代表性电源管理方案的结果。提出的系统和公式说明了基于分散代理的微电网控制的可行性和功能,并说明了其实现智能电网目标的潜力。

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