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Retail and Wholesale Electricity Pricing Considering Electric Vehicle Mobility

机译:考虑电动汽车机动性的零售和批发电力定价

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We consider the operation of multiple charging network operators (CNOs), each serving a population of electric vehicle (EV) drivers who subscribe to them for charging services. The CNOs set retail prices for the charging stations they operate, which effectively control the electricity demand and queues formed at their charging stations. The stations' electricity demand also ties the CNOs' retail optimization problem to their position in the wholesale market of electricity, creating a coupling between the electric transportation systems and the bulk power grid, which is managed by an independent system operator (ISO). In this paper, we provide retail pricing mechanisms and iterative wholesale market-clearing algorithms that together maximize social welfare in this coupled system. Specifically, our algorithm would enable the CNO to reduce its electricity costs and the customers' travel delays (including charging station queueing times) and the ISO to reduce societal electricity costs by tapping into the EVs' flexibility as mobile electric loads. Our theoretical analysis relies on the application of congestion pricing techniques to a capacitated user equilibrium problem on an energy-and-time expanded transportation network model. This expanded network allows us to track the travel costs of individual EVs, including their limited battery charge, the cost of waiting in queues at public charging stations, as well as the temporally variant nature of travel times.
机译:我们考虑了多个充电网络运营商(CNO)的运营,每个运营商都为订阅电动汽车(EV)的驾驶员提供充电服务。 CNO为其运营的充电站设定零售价,从而有效控制用电需求并在其充电站形成排队。这些电站的电力需求还将CNO的零售优化问题与他们在电力批发市场中的地位联系在一起,从而在电力运输系统和大电网之间建立了耦合,并由独立系统运营商(ISO)管理。在本文中,我们提供了零售定价机制和迭代批发市场清算算法,可在此耦合系统中共同最大化社会福利。具体来说,我们的算法将使CNO降低EV的电力成本和客户的旅行延误(包括充电站排队时间),而ISO则可以通过利用EV的灵活性作为移动电力负荷来降低社会的电力成本。我们的理论分析依赖于在能源和时间扩展的运输网络模型上将拥堵定价技术应用于有能力的用户均衡问题。这个扩展的网络使我们能够跟踪单个电动汽车的行驶成本,包括其有限的电池充电,在公共充电站排队等候的成本以及行驶时间随时间变化的性质。

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