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Economic and battery health conscious vehicle-to-grid electric vehicle operation

机译:注重经济和电池健康的车辆到电网电动汽车操作

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Maximizing profits through vehicle-to-grid interactions are in conflict with the minimizing battery degradation costs, and thus a major customer concern. A holistic scheduling problem is, therefore, required to consider the impact of the charging power and that of the switching between vehicle-to-grid and grid-to-vehicle modes to account for battery health. In this paper, we propose a mixed-objective approach toward vehicle-to-grid interactions of a residential parking lot complex. The solution makes accommodation for battery health while considering the cost/profit model for the electric vehicles. We discuss the importance of system constraints in achieving both, valley filling and peak shaving. A moving horizon model is used to determine real-time schedules for the vehicles. Customer convenience is the central focus of the proposed methodology.
机译:通过车辆到电网的交互来最大化利润与最小化电池退化成本是矛盾的,因此是客户的主要关注点。因此,需要一个整体调度问题来考虑充电功率的影响以及在车辆到电网模式与电网到车辆模式之间切换的影响,以解决电池健康问题。在本文中,我们提出了一种混合目标的方法来解决住宅停车场综合体的车辆到网格的相互作用。该解决方案为电池健康提供了便利,同时考虑了电动汽车的成本/利润模型。我们讨论了系统约束在实现山谷填充和削峰方面的重要性。动视线模型用于确定车辆的实时时间表。客户便利是所建议方法的重点。

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