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Determination of Feasible Power Variability Ranges in Active Distribution Networks with Uncertain Generation and Demand

机译:不确定发电量和需求量的有源配电网中可行功率变动范围的确定

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Active distribution networks are promising to provide ancillary services to the utilities in addition to traditional generation. The idea is to make use of the controllable distributed energy resources within the distribution network to regulate the power exchange with its upper level grid on the basis of a set point determined by the utility. However, determining an interval of feasible set points for this power exchange is challenging because of the uncertainty affecting the uncontrolled generation and demand. This paper proposes a novel methodology to compute feasible variability ranges for the power exchange with the upper level grid. In particular, the method seeks for the range maximizing the probability that a set point within the range is feasible, given a realization of the uncertain generation/demand. The proposed method combines numerical optimization and probabilistic forecasts with concepts from the theory of multi-parametric programming. Simulations based on a modified European CIGRE Low Voltage benchmark grid are used to illustrate the proposed findings.
机译:主动配电网络有望为传统发电企业以外的公用事业提供辅助服务。想法是利用配电网内可控的分布式能源,根据公用事业确定的设定点来调节与其上层电网的电力交换。然而,由于不确定性影响不受控制的发电和需求,因此确定用于该功率交换的可行设定点的间隔是具有挑战性的。本文提出了一种新颖的方法来计算可行的可变范围,用于与高层电网的电力交换。特别地,在实现不确定的产生/需求的情况下,该方法寻求范围最大化设定值在该范围内可行的概率的范围。所提出的方法将数值优化和概率预测与来自多参数规划理论的概念相结合。基于修改后的欧洲CIGRE低压基准网格的模拟用于说明建议的发现。

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