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Optimized Operational Management of an EV Sharing Community Integrated with Battery Energy Storage and PV Generation

机译:结合电池储能和光伏发电的电动汽车共享社区的优化运营管理

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Sharing schemes are emerging in residential and business sectors to reduce the purchase and operation cost of individuals. This paper proposes a framework to support the operational management of a shared EV fleet. An optimization algorithm is developed to coordinate the charging and reservation assignment using mixed integer programming. The integration with local PV production and battery storage is taken into account. A booking algorithm is also developed to determine whether a reservation can be accepted or not. Monte Carlo simulation is performed in the case study to demonstrate an application of the proposed framework with the Swedish travel patterns. The result provides an overview about the utilization rate of the fleet with different number of EVs, which can support the investment decision of an EV sharing community. The result also shows that the EVs and battery are effectively coordinated to minimize the total cost, satisfy the reservations and comply with grid limits.
机译:共享计划正在住宅和商业部门中出现,以减少个人的购买和运营成本。本文提出了一个框架来支持共享电动车车队的运营管理。开发了一种优化算法,以使用混合整数编程来协调充电和预留分配。考虑与本地光伏生产和电池存储的集成。还开发了预订算法来确定是否可以接受预订。在案例研究中进行了蒙特卡洛模拟,以证明所提出的框架在瑞典旅行模式中的应用。结果提供了有关具有不同电动汽车数量的车队利用率的概述,这可以支持电动汽车共享社区的投资决策。结果还表明,电动汽车和电池可以有效地协调,以最大程度地降低总成本,满足预定要求并遵守电网限制。

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