论文标题
朝着可持续运输:通过动态充电部署加速车辆电气化
Toward Sustainable Transportation: Accelerating Vehicle Electrification with Dynamic Charging Deployment
论文作者
论文摘要
电动汽车(EV)被积极用作可持续运输的解决方案。但是,瓶颈仍然有充电,其中两个主要问题是漫长的充电时间和电动汽车驾驶员的焦虑范围。在这项研究中,我们研究了动态充电系统的部署,即无线电电动汽车在旅途中无线充电的电气化道路,以加速EVS的采用率。我们提出了一种基于交通的部署策略,从统计上量化了其影响,并将该策略应用于纽约市(美国)和西安(中国)的两个真实交通案例研究。我们发现我们的分析估计不仅与真实数据非常匹配,而且还表明,动态充电大大扩展了城市流动性中流行EV模型的驱动范围。例如,当纽约市现有的5%的现有道路中有5%的道路配备了这项技术时,Nissan Leaf等电动汽车模型将大致维持其电池电量,而不会停止充电。如果充电道路的百分比增加到10%,则每40公里驾驶后,叶子将获得近10%的电池电量。我们的框架为公共和私人组织提供了一种解决方案,这些组织通过充电基础设施来支持和促进车辆电气化。
Electric vehicles (EVs) are being actively adopted as a solution to sustainable transportation. However, a bottleneck remains with charging, where two of the main problems are the long charging time and the range anxiety of EV drivers. In this research, we investigate the deployment of dynamic charging systems, i.e., electrified roads that wirelessly charge EVs on the go, with a view to accelerating EVs adoption rate. We propose a traffic-based deployment strategy, statistically quantify its impact, and apply the strategy to two case studies of real traffic in New York City (USA) and Xi'an (China). We find that our analytical estimates not only closely match the real data, but they also suggest that dynamic charging considerably extends the driving range of popular EV models in urban mobility. For example, when only 5% of the existing roads in New York City are equipped with this technology, an EV model such as the Nissan Leaf will approximately maintain its battery level without stopping to recharge. If the percentage of charging roads is increased to 10%, then the Leaf will gain nearly 10% of its battery after every 40 kilometers of driving. Our framework provides a solution to public and private organizations that support and facilitate vehicle electrification through charging infrastructure.