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Multi-Agents for Microgrids

机译:微电网的多剂量

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Microgrid systems are built to integrate a generation mix of solar and wind renewable energy resources that are generally intermittent in nature. This paper presents a novel decentralized multi-agent system to securely operate microgrids in real-time while maintaining generation , load balance. Agents provide a normal operation in a grid-connected mode and a contingency operation in an islanded mode for fault handling. Fault handling is especially critical in microgrid operation to simulate possible contingencies and microgrid outages in a real-world scenario. A robust agent design has been implemented using MATLAB - Simulink and Java Agent Development Framework technologies to simulate microgrids with load management and distributed generators control. The microgrid of the German Jordanian University has been used for simulation for Summer and Winter photovoltaic generation and load profiles. The results show agent capabilities to operate microgrid in real-time and its ability to coordinate and adjust generation and load. In a simulated fault incident, agents coordinate and adjust to a normal operation in 0.012 seconds, a negligible time for microgrid restoration. This clearly shows that the multi-agent system is a viable solution to operate MG in real-time.
机译:构建微电网以整合一系列的太阳能和风可再生能源的组合,这些能源通常在自然界中间歇性。本文提出了一种新颖的分散的多助手系统,在维持生成,负荷平衡的同时实时牢固地运行微电网。代理在网格连接模式下提供正常操作和岛立模式以进行故障处理的应急操作。故障处理在微电网操作中尤为重要,以模拟现实世界中可能的紫外线和微电网中的中断。使用MATLAB - Simulink和Java代理开发框架技术实现了强大的代理设计,以模拟带负载管理和分布式发电机控制的MicroGrids。德国约旦大学的微电网已用于夏季和冬季光伏发电和负载型材的仿真。结果显示了代理能力,实时运行微普林,以及其协调和调整生成和负载的能力。在模拟故障事件中,代理在0.012秒内坐标和调整到正常操作,是微电网恢复的可忽略时间。这清楚地表明,多代理系统是实时操作MG的可行解决方案。

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