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Demand-Side Management via Distributed Energy Generation and Storage Optimization

机译:通过分布式能源产生和存储优化进行需求侧管理

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Demand-side management, together with the integration of distributed energy generation and storage, are considered increasingly essential elements for implementing the smart grid concept and balancing massive energy production from renewable sources. We focus on a smart grid in which the demand-side comprises traditional users as well as users owning some kind of distributed energy sources and/or energy storage devices. By means of a day-ahead optimization process regulated by an independent central unit, the latter users intend to reduce their monetary energy expense by producing or storing energy rather than just purchasing their energy needs from the grid. In this paper, we formulate the resulting grid optimization problem as a noncooperative game and analyze the existence of optimal strategies. Furthermore, we present a distributed algorithm to be run on the users' smart meters, which provides the optimal production and/or storage strategies, while preserving the privacy of the users and minimizing the required signaling with the central unit. Finally, the proposed day-ahead optimization is tested in a realistic situation.
机译:需求侧管理以及分布式能源生成和存储的集成,被视为实施智能电网概念和平衡可再生能源的大规模能源生产中日益重要的要素。我们专注于智能电网,其中需求方包括传统用户以及拥有某种分布式能源和/或储能设备的用户。通过由独立的中央机构调节的提前一天的优化过程,后者的用户打算通过生产或存储能源而不是仅仅从电网购买能源需求来减少其货币能源支出。在本文中,我们将由此产生的网格优化问题公式化为非合作博弈,并分析了最优策略的存在。此外,我们提出了一种在用户的智能电表上运行的分布式算法,该算法可提供最佳的生产和/或存储策略,同时保留用户的隐私并最大程度地减少与中央单元的所需信令。最后,在实际情况下对建议的提前一天优化进行了测试。

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