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Eco-driving control for connected and automated electric vehicles at signalized intersections with wireless charging

机译:用于无线充电的信号交叉口的连接和自动电动车辆的生态驾驶控制

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摘要

Electric vehicles have been well recognized by many as a solution to reduce greenhouse emissions, improve mobility, and decrease energy consumption in the transportation system. In this paper, we propose a novel wireless charging scheme for electric vehicles. The proposed scheme deploys partial wireless charging lane to intersections, so as to utilize the slow movement of vehicles at traffic lights for recharging. Furthermore, an eco-driving control strategy for electric vehicles at intersections with wireless charging, i.e., W-eco-driving, is developed, aiming to decrease the total energy consumption and increase traffic efficiency. With the aid of connected and automated vehicles technology, driving and surrounding data are accessible in real-time. Then electric vehicles can be controlled using the W-eco-driving strategy accurately. The proposed strategy is finally validated based on a specific intersection configuration. Both single electric vehicle control and electric vehicle platooning are discussed in test examples. We also investigate the influences of wireless charging power, location and length. Numerical results show that the wireless charging scheme with W-eco-driving is able to increase the driving range and decrease the travel cost simultaneously. The total travel cost can be saved up to 16% by following W-eco-driving. We further provide some suggestions about the construction of wireless charging lanes in the vicinity of signalized intersections. Compared with the pursuit of a long wireless charging lane, it is more important to put it in a proper position in the early stage of construction.
机译:许多电动车被充分认识到许多解决方案,以减少温室排放,改善移动性和降低运输系统的能量消耗。在本文中,我们提出了一种用于电动车的新型无线充电方案。该方案将部分无线充电道部署到交叉口,以便利用车辆在交通灯处的慢速移动进行充电。此外,开发了一种用于无线充电的交叉路口的电动车辆的生态驱动控制策略,即W-Eco-驾驶,旨在降低总能耗并提高流量效率。借助于连接和自动车辆技术,可以实时访问驾驶和周围数据。然后可以准确地使用W-Eco驾驶策略来控制电动车辆。最终基于特定的十字路图配置验证了所提出的策略。在测试实施例中讨论了单一电动车辆控制和电动车辆排。我们还研究了无线充电电源,位置和长度的影响。数值结果表明,具有W-生态驱动的无线充电方案能够增加驾驶范围并同时降低行程成本。通过遵循W-Eco-Sive,总旅行费用可以节省高达16%。我们还提供了一些关于在信号交叉口附近建造无线充电通道的建议。与追求长无线充电通道相比,将其放在施工早期阶段的适当位置更为重要。

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