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The effect of mobility forecasts for stochastic charge scheduling of aggregated PEV

机译:迁移率预测对聚合PEV随机费用调度的影响

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Plug-in Electric Vehicles (PEV) integration into innovative smart grids has been studied widely. Recently, special attention is paid to the role of the aggregation agent, which might be responsible of controlling the charge schedules to its own and the system's benefit. Furthermore, an increasing awareness of the stochasticity involved in PEV charging, reflected in a number of recent publications, can be observed. Among others, the PEV energy retail problem with interactions in day-ahead and balancing markets has been formulated from the aggregator's perspective, taking into account location dependent network tariffs in the form of capacity prices for active power. However, a numerical quantification of the benefit from accounting for stochasticity has yet to be carried out. Therefore, this paper uses standard methodology to calculate stochastic programming quality metrics such as the value of the stochastic solution (VSS) and the expected value of private information (EVPI) for an established PEV energy retail aggregator model. Applied to a real medium voltage system with urban characteristics and realistic spatial PEV mobility, different levels of mobility forecasts are included as information at the first-stage here and now decisions.
机译:插入式电动汽车(PEV)集成到创新的智能电网中的研究得到了广泛的研究。最近,人们特别注意凝集剂的作用,它可能负责控制充电时间表以达到其自身和系统的利益。此外,可以观察到对电动汽车充电所涉及的随机性的认识不断提高,反映在许多最新出版物中。除其他外,从聚集者的角度出发,考虑了与位置相关的网络电价,以有功功率的容量价格的形式,提出了与日间市场和平衡市场互动的PEV能源零售问题。然而,尚未进行对随机性考虑的收益进行数值量化。因此,本文使用标准方法来计算随机规划质量指标,例如已建立的PEV能源零售聚合模型的随机解(VSS)值和私人信息期望值(EVPI)。应用于具有城市特征和现实的空间PEV迁移率的实际中压系统时,此处和现在的决策的第一阶段都将不同级别的迁移率预测作为信息包括在内。

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