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Adaptive Distributed EMS for Small Clusters of Resilient LVDC Microgrids

机译:适用于小型LVDC微电网集群的自适应分布式EMS

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Microgrids, storage technologies and renewables are cited as viable options to address resilience challenges faced by the power grids due to natural or man-made disasters. They are also cited as enablers for the recent research interest in low voltage DC microgrids. In this work, an architecture of a resilient small community of microgrids is presented. Furthermore, a distributed and adaptive energy management system is proposed for the tertiary power flow control of a small cluster of DC microgrids, that operate in a cooperative manner to achieve a high level of independence and resilience. To do this, each microgrid accepts to share its storage and generation resources either for economic reasons or for security in case of emergency situations. The proposed EMS replaces the conventional tertiary control that adjusts the power set points of the microgrids' cluster with a cooperative-based power exchange regulator. The model is based on a general-consensus problem and by making use of modern stochastic optimization techniques, such as stochastic-adaptive mixed integer programming. On the physical layer, where the actual commands are sent from the EMS layer to each power flow converter, an exchange of data occurs only with its neighboring converters (adjacent nodes). This is modeled as a sparse communication graph spanned across the microgrids' cluster.
机译:微电网,存储技术和可再生能源被认为是应对自然或人为灾难造成的电网弹性挑战的可行选择。他们也被认为是对低压直流微电网的最新研究兴趣的推动者。在这项工作中,提出了一个微电网的弹性小社区的体系结构。此外,提出了一种分布式自适应能量管理系统,用于控制直流微电网小集群的三次功率流,该微电网以协作方式运行以实现高水平的独立性和弹性。为此,出于经济原因或在紧急情况下的安全性,每个微电网都接受共享其存储和发电资源。拟议的EMS取代了传统的三次控制,后者使用基于协作的功率交换调节器来调整微电网集群的功率设定点。该模型基于一个普遍共识的问题,并利用了现代随机优化技术,例如随机自适应混合整数规划。在实际层中,实际命令是从EMS层发送到每个功率流转换器的,仅与它的相邻转换器(相邻节点)进行数据交换。这被建模为跨微电网集群的稀疏通信图。

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