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An economic model predictive cruise controller for electric vehicles using Gaussian Process prediction ?

机译:使用高斯过程预测的电动汽车经济模型预测巡航控制器

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Recent political decisions in most developed countries urge car manufacturers to reduce vehicle emissions and fuel consumptions, essentially through development of hybrid and battery electric vehicles. Alongside with transfer to electro mobility, many OEMs promote research in car2x communication and cloud services as such connectivity features offer new opportunities to vehicular technology. This work presents a framework for an economic cruise controller for electric vehicles (EVs) utilizing traffic speed data obtained from a cloud server and aiming for real time applicability. Within the scope of this research, an economic model predictive cruise controller based on leading vehicle speed prediction is designed. Novelty of this approach is to utilize real time traffic speed data which significantly improves leading vehicle speed prediction. Error in speed prediction is compared to existing approaches and computed energy consumption using model predictive control is analyzed and discussed for different approaches of leading vehicle speed prediction.
机译:在大多数发达国家,最近的政治决定敦促汽车制造商主要通过发展混合动力和电池电动汽车来减少汽车排放和燃料消耗。除了向电动汽车转移之外,许多原始设备制造商还促进了对car2x通信和云服务的研究,因为此类连接功能为车辆技术提供了新的机遇。这项工作提出了一种用于电动汽车(EV)的经济型巡航控制器的框架,该控制器利用从云服务器获取的交通速度数据,并旨在实现实时适用性。在本研究范围内,设计了一种基于领先车速预测的经济模型预测巡航控制器。这种方法的新颖之处在于利用了实时交通速度数据,该数据大大改善了领先的车辆速度预测。将速度预测中的误差与现有​​方法进行比较,并针对领先的车速预测的不同方法分析和讨论了使用模型预测控制的计算出的能耗。

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