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An Integrated Approach for Dynamic Charging of Electric Vehicles by Wireless Power Transfer - Lessons Learned from Real-Life Implementation

机译:无线电力传输电动汽车动态充电的综合方法 - 从现实生活中汲取的经验教训

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The aim of this paper is to introduce a complete fast dynamic inductive charging infrastructure from the back-office system (EV management system) up to the Electric Vehicle (EV) (inductive power transfer module, positioning mechanism, electric vehicle modifications) and the EV user (User interface). Moreover, in order to assess the impact of the additional demand of inductive charging on the grid operation, an estimation of the 24-hour power profile of dynamic inductive charging is presented considering, apart from the road traffic, the probability of the need for fast charging, as well as the specifications of the proposed solution. In addition, an energy management system is presented enabling the management of the operation of the inductive charging infrastructure, the interaction with the EV users and the provision of demand response services to different stakeholders. The proposed dynamic inductive charging approach has been demonstrated within a real urban environment in order to provide useful insights regarding the experience gained from a real-field trial. The relevant practical conclusions are also discussed in this paper. Finally, a cost/benefit analysis, according to the Discounted Cash Flow (DCF) principles, is performed in order to assess the economic viability of the proposed solution.
机译:本文的目的是从后台系统(EV管理系统)引入完整的快速动态电感充电基础设施,直到电动车辆(EV)(IV)(电感电力传输模块,定位机构,电动车辆修改)和EV用户(用户界面)。此外,为了评估电感充电的额外需求对网格操作的影响,考虑到路交通,快速需求的可能性,估计动态电感充电的24小时功率曲线的估计充电,以及所提出的解决方案的规格。此外,提出了一种能量管理系统,使得能够管理归纳充电基础设施的操作,与EV用户的交互以及对不同利益相关者提供需求响应服务的互动。建议的动态归纳充电方法在真正的城市环境中已经证明,以便为从实地试验中获得的经验提供有用的见解。本文还讨论了相关的实际结论。最后,根据贴现现金流(DCF)原则,进行成本/效益分析,以评估所提出的解决方案的经济可行性。

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