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Dynamic optimized decision model of smart utilization for typical public building employing critical peak pricing

机译:采用关键峰值定价的典型公共建筑智能利用的动态优化决策模型

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Critical peak pricing is a flexible mechanism featuring effective lowering and suppressing peak load in power grid. In this paper, the dynamic optimized decision model of smart utilization of typical public building involving distributed generation and storage is established on the basis of critical peak pricing system and base line prediction of power generation and utilization of the building, while treating the optimal cost of end user as the target. Meanwhile, NSGA-II algorithm is selected to get the final results. At last, taking some public building in Tianjin as an example, the dynamic optimized decision model of smart utilization is built and the optimal operation strategy table is obtained. It is verified that the established model can save the expense of end user and optimize the load curve, as well as reducing the gap between peak and valley.
机译:临界峰值定价是一种灵活的机制,具有有效降低和抑制电网峰值负荷的功能。本文基于临界峰值电价系统和建筑物发电与利用的基线预测,建立了涉及分布式发电和存储的典型公共建筑智能利用的动态优化决策模型,同时处理了最优成本。最终用户作为目标。同时,选择了NSGA-II算法以获得最终结果。最后以天津某公共建筑为例,建立了智能利用的动态优化决策模型,并获得了最优运行策略表。验证了所建立的模型可以节省最终用户的费用并优化负载曲线,并减小峰谷之间的差距。

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