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Optimal Allocation of Energy Storage Systems for Resilient Distribution Networks Focusing on Critical Loads

机译:专注于临界负荷的弹性分布网络能量存储系统的最佳分配

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As modern-day power grids embrace more and more the new smart technologies, the distribution networks undergo a major conversion from passive to active systems, featuring various types of distributed energy resources including solar, wind generators, and storage. The energy storage systems (ESSs) capability to shift load and power generation in time comes as an efficient solution to the intermittent nature of renewable energy sources (RES) and demand variation. Beside their benefits in daily operation enhancement of the electric grid, ESSs can be an essential support for the distribution power system in the event of a major blackout. The purpose of this paper is to determine the optimal allocation of ESSs for increased reliability and resilience of the distribution network, based on renewable distributed sources generation and taking into account the presence of critical loads. In this regard, a mixed-integer second-order cone programming method is applied, aiming to maximize the assistance of renewable sources integration, while considering the network operational constraints and the prioritization of important users.
机译:随着现代电网拥抱越来越多的新智能技术,分销网络经历了来自被动到主动系统的重大转换,具有各种类型的分布式能源,包括太阳能发电机和存储。能量存储系统(ESS)能够及时移位负载和发电的能力是一种有效的可再生能源(RES)和需求变化的间歇性的解决方案。除了在日常运行增强电网的益处之外,ESS可以是在主要停电时对分销电力系统的基本支持。本文的目的是根据可再生分布源产生,并考虑到临界负荷的存在,确定用于增加分销网络的可靠性和恢复性的ESS的最佳分配。在这方面,应用混合整数二阶锥编程方法,旨在最大限度地提高可再生源集成的协助,同时考虑网络运行限制以及重要用户的优先级。

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