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Free Floating Electric Car Sharing in Smart Cities: Data Driven System Dimensioning

机译:智能城市中的免费浮动电动汽车共享:数据驱动系统尺寸

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Car sharing is a popular means of transport in smart cities. The free floating paradigm lets the customers autonomously pick and drop available cars freely, within city limits. In this work we study the different policies when designing an electric Free Floating Car Sharing (FFCS) system. This system has the need to guarantee battery charge, a time-consuming operation, for which charging stations availability becomes a key factor for the sustainability of the whole system. We harvest the data of an already operative FFCS provider, and extract information about actual users' driving patterns. We implement a trace driven simulator to replay collected users' trips and simulate car batteries consumption for different design parameters. In this work, we limit the study to a single city, Turin (Italy), where we leverage actual trips registered over 2 months. We analyse and discuss several system design alternatives: the number of charging stations, their placement, and when to force users to return cars for charge. We identify regimes where cars never discharge and users can freely drop cars anywhere, albeit they are rarely rerouted to a charging station, possibly located in a nearby area to their original destination. Surprisingly, our data shows that even few charging stations (15 or more, i.e., 6% of city areas) guarantees the system to work almost autonomously, making thus possible free floating car sharing a feasible solution with electric cars.
机译:汽车分享是智能城市的流行运输方式。自由浮动范式让客户自主地挑选和落下可用的汽车,在城市限制内。在这项工作中,我们在设计无电浮动汽车共享(FFCS)系统时研究不同的政策。该系统需要保证电池充电,耗时的操作,其中充电站可用性成为整个系统可持续性的关键因素。我们收集了已经操作的FFCS提供商的数据,并提取有关实际用户驾驶模式的信息。我们实施了一种跟踪驱动模拟器,以重播收集的用户的旅行,并模拟不同的设计参数的汽车电池消耗。在这项工作中,我们将研究限制在一个城市,都灵(意大利),在那里我们利用2个月的实际旅行。我们分析和讨论了几种系统设计替代品:充电站的数量,他们的放置,以及何时迫使用户返回汽车的费用。我们确定了汽车从不放电,用户可以在任何地方自由下降汽车的制度,尽管它们很少被重新放置到充电站,可能位于附近地区到原始目的地。令人惊讶的是,我们的数据表明,即使有很少的充电站(15个或更多,即6 \%的城市区域)仍然可以自动地工作,从而可以使用电动汽车分享可行的解决方案。

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