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Optimal solar panel placement in microgrids

机译:在微电网中优化太阳能电池板的放置

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Microgrids offer a flexible, modular, and scalable solution to facilitate the adoption of renewable energy sources, e.g., solar power, in distribution networks. Noticeably, the cost of daily operation of a microgrid is tightly coupled with its long-term planning decisions, such as the placement of renewable energy sources. This paper studies the optimal placement of solar panels in a grid-connected microgrid to minimize the energy cost during daily operation. Due to the coupling between long-term planning (i.e., solar panel placement involving integer variables) and short-term operation (i.e., supply-demand balance through optimal power flow (OPF)), the problem is naturally formulated as a two-time-scale stochastic integer programming problem. To solve the two-time-scale problem efficiently, a key contribution of this paper is to derive tight analytical bounds on the optimal value of the short-term OPF problem. The analytical expressions are useful in constructing a closed-form objective function for the long-term planning problem, which can then be efficiently solved using existing integer optimization approaches. Through numerical simulations on the IEEE 13-bus distribution test feeder, we demonstrate significant cost saving due to the optimal solar panel placement, and the accuracy and efficiency of our proposed approach.
机译:微电网提供了灵活,模块化和可扩展的解决方案,以促进配电网络中太阳能等可再生能源的采用。值得注意的是,微电网的日常运行成本与其长期计划决策(例如可再生能源的放置)紧密相关。本文研究了太阳能电池板在并网微电网中的最佳放置,以最大程度地减少日常运行中的能源成本。由于长期计划(即,涉及整数变量的太阳能电池板的放置)与短期操作(即,通过最佳潮流(OPF)进行供需平衡)之间的耦合,该问题自然被表述为两次尺度随机整数规划问题。为了有效地解决两时间尺度问题,本文的主要贡献是在短期OPF问题的最优值上得出严格的分析界线。解析表达式对于构造长期计划问题的封闭形式的目标函数很有用,然后可以使用现有的整数优化方法来有效地解决该问题。通过在IEEE 13总线配电测试馈线上的数值模拟,我们证明了由于最佳的太阳能电池板放置以及我们提出的方法的准确性和效率,可以显着节省成本。

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