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Three-phase AC optimal power flow based distribution locational marginal price

机译:三相交流最优电流基于基于电流的分布位置边际价格

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Designing market mechanisms for electricity distribution systems has been a hot topic due to the increased presence of smart loads and distributed energy resources (DERs) in distribution systems. The distribution locational marginal pricing (DLMP) methodology is one of the real-time pricing methods to enable such market mechanisms and provide economic incentives to active market participants. Determining the DLMP is challenging due to high power losses, the voltage volatility, and the phase imbalance in distribution systems. Existing DC Optimal Power Flow (OPF) approaches are unable to model power losses and the reactive power, while single-phase AC OPF methods cannot capture the phase imbalance. To address these challenges, in this paper, a three-phase AC OPF based approach is developed to define and calculate DLMP accurately. The DLMP is modeled as the marginal cost to serve an incremental unit of demand at a specific phase at a certain bus, and is calculated using the Lagrange multipliers in the three-phase AC OPF formulation. Extensive case studies have been conducted to understand the impact of system losses and the phase imbalance on DLMPs as well as the potential benefits of flexible resources.
机译:由于在分配系统中增加了智能负载和分布式能源(DERS)的存在,指定电力分配系统的市场机制是一种热门话题。分布位置边际定价(DLMP)方法是实现此类市场机制的实时定价方法之一,并为主动市场参与者提供经济激励措施。确定DLMP由于高功率损耗,电压波动性和分配系统中的相位不平衡而具有挑战性。现有的DC最佳功率流(OPF)方法无法模拟功率损耗和无功功率,而单相AC OPF方法无法捕获相位不平衡。为了解决这些挑战,在本文中,开发了一种基于三相OPF的方法来定义和计算DLMP。 DLMP被建模为边际成本,以在特定阶段在特定阶段在特定阶段提供增量单位,并在三相AC OPF配方中使用拉格朗日乘数计算。已经进行了广泛的案例研究,以了解系统损失的影响以及对DLMPS的相位不平衡以及灵活资源的潜在益处。

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