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Electric Vehicle Participation in Transactive Power Systems Using Real-Time Retail Prices

机译:电动汽车以实时零售价参与有功功率系统

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Smart grids can help Plug-in Electric Vehicles (PEV) manage their load in a grid-friendly way. In this paper, we consider the case of PEVs participating in a retail double auction electricity regulation market, as in the so-called "transactive control" paradigm. Price-responsive charging of PEVs is modeled in conjunction with real-time retail price signals from the utility. PEVs can defer charging or even discharge when the retail prices are high. Buy and sell reservation prices are based on expectations of future prices and opportunity costs of sold energy, respectively. Feeder capacity constraints also affect the retail price and are allowed to rise to the point at which supply equals demand. For the most advanced charging strategies, as the price rises, demand from PEVs drops, and if the constraint causes further price increases, the PEVs can begin to supply energy. The results show that when rooftop solar energy is available transactive bid-response vehicle charging strategies significantly enhance short-term electricity demand elasticity and can reduce consumer energy costs by more than 75% in comparison to the unresponsive charge case.
机译:智能电网可以帮助插电式电动汽车(PEV)以网格友好的方式管理其负荷。在本文中,我们考虑了PEV参与零售双重拍卖电力监管市场的情况,就像所谓的“主动控制”范式一样。 PEV的价格响应性充电是结合公用事业公司的实时零售价格信号建模的。当零售价高昂时,PEV可以推迟充电甚至放电。买卖保留价格分别基于对未来价格的预期和已售能源的机会成本。支线能力限制也影响零售价格,并允许其上升到供应等于需求的水平。对于最先进的充电策略,随着价格上涨,PEV的需求下降,并且如果约束导致价格进一步上涨,则PEV可以开始提供能量。结果表明,与无响应充电方式相比,当可获得屋顶太阳能时,交互式投标响应车辆充电策略显着增强了短期电力需求弹性,并可以将消费者能源成本降低75%以上。

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