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Eco-driving advisory strategies for a platoon of mixed gasoline and electric vehicles in a connected vehicle system

机译:联网汽车系统中混合汽油和电动汽车混合排的生态驾驶咨询策略

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As electric vehicles (EVs) have gained an increasing market penetration rate, the traffic on urban roads will tend to be a mix of traditional gasoline vehicles (GVs) and EVs. These two types of vehicles have different energy consumption characteristics, especially the high energy efficiency and energy recuperation system of EVs. When GVs and EVs form a platoon that is recognized as an energy-friendly traffic pattern, it is critical to holistically consider the energy consumption characteristics of all vehicles to maximize the energy efficiency benefit of platooning. To tackle this issue, this paper develops an optimal control model as a foundation to provide eco-driving suggestions to the mixed-traffic platoon. The proposed model leverages the promising connected vehicle technology assuming that the speed advisory system can obtain the information on the characteristics of all platoon vehicles. To enhance the model applicability, the study proposes two eco-driving advisory strategies based on the developed optimal control model. One strategy provides the lead vehicle an acceleration profile, while the other provides a set of targeted cruising speeds. The acceleration-based eco-driving advisory strategy is suitable for platoons with an automated leader, and the speed-based advisory strategy is more friendly for platoons with a human-operated leader. Results of numerical experiments demonstrate the significance when the eco-driving advisory system holistically considers energy consumption characteristics of platoon vehicles.
机译:随着电动汽车(EV)的市场渗透率不断提高,城市道路上的交通将趋向于混合传统汽油车(GV)和EV。这两类车辆具有不同的能耗特性,尤其是电动汽车的高能效和能量回收系统。当GV和EV形成公认的节能交通方式的排时,全面考虑所有车辆的能耗特征以最大程度地提高排能的效率至关重要。为了解决这个问题,本文开发了一种最优控制模型,作为为混合交通排提供生态驾驶建议的基础。假设速度咨询系统可以获得有关所有排式车辆特性的信息,那么所提出的模型将利用有前途的联网车辆技术。为了提高模型的适用性,研究基于已开发的最优控制模型提出了两种生态驾驶咨询策略。一种策略为领先车辆提供了加速度曲线,而另一种策略则提供了一组目标巡航速度。基于加速的生态驾驶咨询策略适用于具有自动领导者的排,基于速度的咨询策略对于具有人工操纵者的排更友好。数值实验结果表明,当生态驾驶咨询系统全面考虑排量汽车的能耗特性时,该方法具有重要意义。

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