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A multi-layer control scheme for microgrid energy management

机译:微电网能源管理的多层控制方案

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Abstract: Due to the widespread diffusion of renewables, the energy management and control of microgrids with non-dispatchable generation units, storage systems, and uncontrollable loads is becoming a topic of paramount interest. This problem is made complex by the need to consider both the continuous dynamics of generators and loads, and a number of logic constraints representing the feasible operating conditions of the devices, such as latency times or charge/discharge constraints. A promising solution, already proposed in various papers, is to resort to hybrid modeling and optimization; however, this leads to very large and intractable mixed integer optimization problems when the number of devices increases. For these reasons, in this paper a multilayer control scheme of microgrids is proposed: the higher layer defines the daily energy exchange with the main network based on a simplified model of the microgrid where dispatchable devices with similar characteristics are organized in clusters. The intermediate, or supervisory, layer allocates the energy requests among the units of each cluster. Finally, the lower layer is made by local controllers of the units. Simulation results are reported to witness the potentialities of this approach.
机译:摘要:由于可再生能源的广泛传播,具有不可调度的发电单元,存储系统和不可控负荷的微电网的能量管理和控制正成为人们最关注的话题。由于需要同时考虑发电机和负载的连续动态以及代表设备的可行工作条件的许多逻辑约束(例如等待时间或充电/放电约束),因此使此问题变得复杂。在各种论文中已经提出了一种有希望的解决方案,那就是采用混合建模和优化。但是,当设备数量增加时,这会导致非常大且棘手的混合整数优化问题。出于这些原因,本文提出了一种微电网的多层控制方案:高层基于微电网的简化模型定义了与主网络的日常能量交换,在该模型中,具有相似特性的可调度设备被簇集。中间层或管理层在每个群集的单元之间分配能量请求。最后,较低的层由单元的本地控制器制成。报告了仿真结果,以证明这种方法的潜力。

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