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Real-time monitoring and operation of microgrid using distributed cloud-fog architecture

机译:分布式云雾架构实时监控和运行微电网

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摘要

In this paper, a new distributed multi-agent framework based on the three layers' fog computing architecture is developed for real-time microgrid economic dispatch and monitoring. To this end, the changes of load at any time will be tracked by the proposed technique, considering unit sudden exits and entries. Moreover, to make the system more realistic, different renewable energies, including photovoltaics (PVs), wind turbines (WTs), fuel cells (FCs), and microturbines (MT) are considered in the proposed technique. To overcome the complexity of the problem, by using advantages of fog computing, a new fast consensus-based optimization algorithm is used, which is modified based on the fuzzy adaptive leader technique. Finally, the proposed technique is simulated and tested on microgrids with 6 and 14 buses, respectively. Simulation results demonstrate and validate the effectiveness of the proposed technique, as well as the capability to track the changes of load with the interactions in real-time and the fast convergence rate.
机译:本文开发了一种基于三层雾计算架构的新分布式多智能框架,用于实时微电网经济调度和监控。为此,考虑单位突然退出和条目,将跟踪随时的负载变化。此外,为了使系统更现实,不同的可再生能量,包括光伏(PVS),风力涡轮机(WTS),燃料电池(FCS)和微涡轮机(MT)被考虑在所提出的技术中。为了克服问题的复杂性,通过使用雾计算的优点,使用了一种新的快速共识的优化算法,该算法基于模糊自适应领导技术进行了修改。最后,在具有6和14个总线的微电网上模拟和测试了所提出的技术。仿真结果证明并验证了所提出的技术的有效性,以及在实时和快速收敛速率下跟踪负载变化的能力。

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