Minimization of distribution system losses by exploiting storage and anticipating market-driven behaviour of wind power producers

M. Farrokhseresht, N. Paterakis, M. Gibescu, J. Slootweg
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引用次数: 2

Abstract

This paper presents a stochastic bi-level optimization model to determine the optimal dispatch of energy storage systems controlled directly by the distribution system operator (DSO) in order to achieve minimization of active power losses, taking into account the profit-driven participation of wind-power producers (WPPs) connected to the distribution system, in the day-ahead and imbalance markets. The upper-level optimization problem represents the optimal AC power flow problem with the objective of minimizing the active power losses from the perspective of the DSO, while the lower-level optimization problem models the profit maximization problem faced by a competitive wind producer under uncertainty associated with market prices and its own power production profile. By exploiting the convexity of the lower-level problem, the Karush-Kuhn-Tucker conditions of the latter are derived, and the bi-level problem is cast as a single level optimization problem. A simple case study of a radial distribution system, featuring one WPP and one storage device is used to illustrate the workings of the method.
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通过利用存储和预测风力发电商的市场驱动行为,使配电系统损失最小化
本文提出了一个随机双级优化模型,以确定由配电系统运营商(DSO)直接控制的储能系统的最优调度,以实现有功损耗最小化,同时考虑到与配电系统连接的风力发电商(WPPs)在日前和不平衡市场中的利润驱动参与。其中,上层优化问题代表了从DSO角度考虑的以有功损耗最小为目标的最优交流潮流问题;下层优化问题代表了在市场价格和自身发电情况不确定的情况下,具有竞争力的风力发电商面临的利润最大化问题。利用低层次问题的凸性,导出了低层次问题的Karush-Kuhn-Tucker条件,将双层次问题转化为单层次优化问题。一个简单的案例研究,一个径向配电系统,具有一个WPP和一个存储装置来说明该方法的工作原理。
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