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A stochastic mixed integer linear programming formulation for the balancing energy activation problem under uncertainty

机译:不确定条件下平衡能量激活问题的随机混合整数线性规划公式

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In the activation market, the Transmission System Operator selects and activates balancing energy bids to cover the system imbalance. Growing use of intermittent energy sources increases uncertainty in system operation and new EU regulations, including a so-called Activation Optimization Function and new Standard Products for manual frequency restoration reserves (mFRR), will change the activation process significantly. However, commonly used price-based bid selection approaches are incapable of taking intertemporal constraints and uncertainty into account in the activation process. This paper presents a new optimization formulation, built on stochastic unit commitment principles, using imbalance forecast scenarios to propose bid activation schedules minimizing expected activation costs. Unlike earlier approaches, intertemporal characteristics of the proposed mFRR product are modeled in detail. The optimization procedure is implemented in a rolling horizon simulation and demonstrated using Norwegian imbalance and market data. Compared to a corresponding deterministic approach, the stochastic strategy significantly reduces activation costs.
机译:在激活市场中,传输系统运营商选择并激活平衡能量投标以弥补系统不平衡。间歇性能源的日益使用增加了系统运行的不确定性,新的欧盟法规(包括所谓的激活优化功能和用于手动频率恢复储备(mFRR)的新标准产品)将极大地改变激活过程。但是,常用的基于价格的出价选择方法无法在激活过程中考虑跨时限和不确定性。本文提出了一种基于随机单位承诺原则的新的优化公式,它使用不平衡预测方案来提出可最小化预期激活成本的出价激活时间表。与早期的方法不同,拟议的mFRR产品的跨时特征将被详细建模。优化过程在滚动模拟中实现,并使用挪威不平衡和市场数据进行了演示。与相应的确定性方法相比,随机策略显着降低了激活成本。

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