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Economic Viability and Environmental Impact of In-Motion Wireless Power Transfer

机译:运动无线功率传输的经济可行性和环境影响

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In-motion charging of electric vehicles (EVs) using wireless power transfer (WPT) represents an alternative to both traditional internal combustion engine (ICE) transportation and long-range EVs. This paper focuses on understanding the economics, environmental impact, and infrastructure rollout of in-motion WPT applied to the U.S. transportation fleet. This paper represents a novel, large-scale integration of numerous research methodologies previously presented by our research group into a comprehensive study to thoroughly address potential in-motion WPT implementation scenarios using geographically diverse data sets, validated vehicle models, real-world drive cycles, variable vehicle adoption rates, and variable infrastructure deployment rates. By using both in-motion WPT and conventional charging infrastructure, the proposed vehicle and roadway architectures satisfy 97.7% of the sampled 24-h drive cycles, a 22.4% increase over a baseline short-range EV without in-motion charging. Economic results show a national return on investment but economic viability is dramatically impacted by upfront capital costs and technology adoption. An environmental impact assessment shows that total greenhouse gas emissions from light-duty vehicles and Class 8 trucks would be reduced by 29.3 trillion kg CO2-eq. (30.6%) when compared to a business as usual scenario (i.e., a scenario were current overall emissions trends continue) for the first 50 years of technology deployment. These results demonstrate that in-motion charging using WPT presents both economic and environmental benefits when compared to conventional ICE transportation and a long-range EV fleet.
机译:使用无线功率传输(WPT)的电动汽车(EV)的动态充电是传统内燃机(ICE)运输和远程EV的替代方案。本文着重了解应用于美国运输车队的动态WPT的经济性,环境影响和基础设施部署。本文代表了以前由我们的研究小组提出的众多研究方法的新颖,大规模集成,该研究使用全面的研究来彻底解决潜在的WPT实施方案,这些方案使用地理上各异的数据集,经过验证的车辆模型,实际驾驶周期,可变的车辆采用率和可变的基础设施部署率。通过同时使用运动式WPT和常规充电基础设施,拟议的车辆和道路体系结构可满足97.7%的采样24小时驾驶周期,比不进行运动式充电的基线短程电动汽车增加22.4%。经济结果表明,全国的投资回报率很高,但是前期资本成本和技术采用对经济生存能力产生了巨大影响。环境影响评估显示,轻型汽车和8类卡车的温室气体排放总量将减少29.3万亿千克二氧化碳当量。 (30.6%)与技术部署的前50年的常规业务情景(即当前总体排放趋势仍在继续的情景)相比。这些结果表明,与传统的ICE运输工具和远程EV车队相比,使用WPT进行动态充电具有经济和环境效益。

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