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A user-mode distributed energy management architecture for smart grid applications

机译:用于智能电网应用的用户模式分布式能源管理架构

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摘要

Future smart grids will require a flexible, observable, and controllable network architecture for reliable and efficient energy delivery under uncertain conditions. They will also necessitate variability in distributed energy generators and demand-side loads. This study presents a tree-like user-mode network architecture responding to these requirements. The approaches presented for the next-generation grid architecture facilitate the management of distributed generation strategies based on renewable sources, distributed storage, and demand-side load management. The authors draw a framework for the future digital power grid concept and assess its viability in relation to volatile, diverse generation and consumption possibilities. In this sense, probabilistic energy balance analyses of tree-like user-mode networks with a stochastic end-user population are conducted to investigate the energy reliability of the proposed grid. A case study based on published generation and consumption profile data is also presented, and several generation scenarios formed by variants of this data are discussed.
机译:未来的智能电网将需要灵活,可观察和可控制的网络架构,以便在不确定的条件下可靠,高效地输送能量。它们还将需要分布式能源产生器和需求侧负载的可变性。这项研究提出了一种响应这些要求的树状用户模式网络体系结构。为下一代网格体系结构介绍的方法有助于基于可再生资源,分布式存储和需求侧负载管理的分布式发电策略管理。作者为未来的数字电网概念画了一个框架,并评估了其在易变,多样化发电和消费可能性方面的可行性。从这个意义上讲,进行了具有随机最终用户数量的树状用户模式网络的概率能量平衡分析,以研究所提议电网的能量可靠性。还提供了基于已发布的发电量和消费量数据的案例研究,并讨论了由该数据的变体形成的几种发电情景。

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