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Stochastic energy management of responsive plug-in electric vehicles characterizing parking lot aggregators

机译:应对停车场聚集器的敏感插入电动汽车的随机能源管理

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Rapid advances in Plug-in Electrical Vehicle (PEV) technologies are expanding charging infrastructures especially in large shopping centers. Flexibility potential of PEVs can compensate for volatility and intermittency of electricity generation in power systems with high penetration of renewable energy sources. This paper proposes a novel multi-stage stochastic-based structure for Parking Lot Aggregators (PLA) to integrate flexibility potentials of PEVs into power systems. The proposed approach uses three trading floors of a short-term electricity market, including day-ahead, adjustment, and balancing markets, to trade the PEVs' flexibility, from 24 h before the energy delivery time until near real-time, in the electricity market. In order to extract the behavior of the PEVs in Shopping Center Parking Lots (SCPL), a data-driven approach is formulated. The suggested data-driven approach makes it possible to optimize the charging/discharging operation of a huge number of PEVs with low time and computational burdens, which is a clear need for near real-time optimization. Instead of subsidizing the responsive PEVs, the PLA maximizes the profit of the market participants, i.e. PEV owners, through trading integrated flexibility in three floors of the electricity market. The suggested approach not only maximizes the income of the PEV owners but also provides functional flexibility to electricity markets, which is a clear need for future power systems with high penetration of intermittent power. Numerical studies with real data on an SCPL and the Danish sector of the Nordic Electricity Market assures competence of the proposed approach to guarantee power system flexibility against the intermittency of renewable energy sources.
机译:插件电动车辆(PEV)技术的快速进步正在扩展充电基础设施,特别是在大型购物中心。 PEV的灵活性电位可以补偿电力系统中发电的波动性和间歇性,可再生能源高渗透。本文提出了一种用于停车场聚集器(PLA)的新型多级随机结构,以将PEV的灵活性电位集成到电力系统中。拟议的方法采用三个短期电力市场的交易楼层,包括日前,调整和平衡市场,以便在能源交付时间前24小时交易PEVS的灵活性,直至实时,在电力中市场。为了提取PEVS在购物中心停车场(SCPL)中的行为,配制了数据驱动方法。建议的数据驱动方法使得可以优化具有低时间和计算负担的大量PEV的充电/放电操作,这是对近实时优化的清晰需求。 PLA通过在电力市场的三层楼的交易综合灵活性来实现市场参与者的利润,而不是补贴响应性PEV,而不是补贴响应PEV。建议的方法不仅可以最大化PEV所有者的收入,而且还为电力市场提供功能灵活性,这是对未来的电力系统具有高渗透间歇性的电力系统。北欧电力市场对丹麦局域网的实际数据的数值研究可确保拟议方法担保能源对可再生能源间歇性的灵活性的能力。

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