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Applying DTN routing for reservation-driven EV Charging management in smart cities

机译:将DTN路由应用于智慧城市中的预订驱动型EV充电管理

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Charging management for Electric Vehicles (EVs) on-the-move (moving on the road with certain trip destinations) is becoming important, concerning the increasing popularity of EVs in urban city. However, the limited battery volume of EV certainly influences its driver's experience. This is mainly because the EV needed for intermediate charging during trip, may experience a long service waiting time at Charging Station (CS). In this paper, we focus on CS-selection decision making to manage EVs' charging plans, aiming to minimize drivers' trip duration through intermediate charging at CSs. The anticipated EVs' charging reservations including their arrival time and expected charging time at CSs, are brought for charging management, in addition to taking the local status of CSs into account. Compared to applying traditionally applying cellular network communication to report EVs' charging reservations, we alternatively study the feasibility of applying Vehicle-to-Vehicle (V2V) communication with Delay/Disruption Tolerant Networking (DTN) nature, due primarily to its flexibility and cost-efficiency in Vehicular Ad hoc NETworks (VANETs). Evaluation results under the realistic Helsinki city scenario show that applying the V2V for reservation reporting is promisingly cost-efficient in terms of communication overhead for reservation making, while achieving a comparable performance in terms of charging waiting time and total trip duration.
机译:考虑到电动汽车在城市中的日益普及,正在行驶中的电动汽车(在具有特定旅行目的地的道路上行驶)的充电管理变得越来越重要。但是,电动汽车的有限电池容量肯定会影响其驾驶者的体验。这主要是因为在旅途中进行中间充电所需的EV可能会在充电站(CS)经历较长的服务等待时间。在本文中,我们将重点放在CS选择决策上,以管理EV的充电计划,旨在通过在CS进行中间充电来最大程度地缩短驾驶员的出行时间。除了考虑CS的本地状态外,还将预期的EV充电预约(包括其到达时间和到达CS的预期充电时间)用于充电管理。与将传统应用蜂窝网络通信应用于报告电动汽车的充电预约相比,我们主要研究其具有灵活性和成本优势的方法,即研究具有延迟/干扰容忍网络(DTN)性质的车对车(V2V)通信的可行性。车载Ad hoc NETworks(VANET)的效率。在实际的赫尔辛基城市场景下进行的评估结果表明,将V2V用于预订报告,在进行预订的通信开销方面有望实现成本效益,同时在充电等待时间和总行程持续时间方面可以达到可比的性能。

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