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The eco-driving effect of electric vehicles compared to conventional gasoline vehicles

机译:与传统汽油车相比,电动车的环保驾驶效果

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摘要

Eco-driving is attractive to the public, not only users of internal-combustion-engine vehicles (ICEVs) including hybrid electric vehicles (HEVs) but also users of electric vehicles (EVs) have interest in eco-driving. In this context, a quantitative evaluation of eco-driving effect of EVs was conducted using a chassis dynamometer (C/D) with an “eco-driving test mode.” This mode comprised four speed patterns selected from fifty-two real-world driving datasets collected during an eco-driving test-ride event. The four patterns had the same travel distance (5.2 km), but showed varying eco-driving achievement levels. Three ICEVs, one HEV and two EVs were tested using a C/D. Good linear relationships were found between the eco-driving achievement level and electric or fuel consumption rate of all vehicles. The reduction of CO2 emissions was also estimated. The CO2-reduction rates of the four conventional (including hybrid) vehicles were 10.9%–12.6%, while those of two types of EVs were 11.7%–18.4%. These results indicate that the eco-driving tips for conventional vehicles are effective to not only ICEVs and HEVs but also EVs. Furthermore, EVs have a higher potential of eco-driving effect than ICEVs and HEVs if EVs could maintain high energy conversion efficiency at low load range. This study is intended to support the importance of the dissemination of tools like the intelligent speed adaptation (ISA) to obey the regulation speed in real time. In the future, also in the development and dissemination of automated driving systems, the viewpoint of achieving the traveling purpose with less kinetic energy would be important.
机译:生态驾驶对公众具有吸引力,不仅包括混合动力电动汽车(HEV)在内的内燃机汽车(ICEV)的使用者,而且电动汽车(EV)的使用者都对生态驾驶感兴趣。在这种情况下,使用底盘测功机(C / D)和“生态驾驶测试模式”对电动汽车的生态驾驶效果进行了定量评估。该模式包括从在生态驾驶测试骑行事件期间收集的五十二个现实驾驶数据集中选择的四个速度模式。这四个模式具有相同的行驶距离(5.2公里),但显示出不同的生态驾驶成就水平。使用C / D测试了3辆ICEV,1辆HEV和2辆EV。在所有车辆的环保驾驶成就水平与电动或燃油消耗率之间发现良好的线性关系。还估计了二氧化碳排放量的减少。四种传统(包括混合动力)车辆的二氧化碳减排率分别为10.9%至12.6%,而两种类型的电动汽车的二氧化碳减排率分别为11.7%至18.4%。这些结果表明,传统车辆的生态驾驶技巧不仅对ICEV和HEV有效,对EV也有效。此外,如果电动汽车可以在低负载范围内保持较高的能量转换效率,那么电动汽车具有比ICEV和HEV更高的生态驾驶效果潜力。这项研究旨在支持传播诸如智能速度自适应(ISA)之类的工具以实时服从调节速度的重要性。将来,同样在自动驾驶系统的开发和推广中,以较少的动能实现行驶目的的观点将是重要的。

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