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Analysis of the Optimal Battery Sizing for Plug-in Hybrid and Battery Electric Vehicles on the Power Consumption and V2G Availability

机译:插电式混合动力汽车和电池电动汽车的最佳电池尺寸分析,基于功耗和V2G可用性

摘要

The interest in electric vehicles (EVs) experiences a strong growth. Batteries of EVs will be charged at home, which means there will be an increase in the household power consumption. This impact on the distribution and transmission grid can be minimized by e.g. (i) a coordinated charging strategy and (ii) choosing an optimal battery size for each vehicle. A second drawback of EVs are the high cost and weight of the batteries. This paper proposes some allocation scenarios to allocate battery sizes to a fleet of plug-in hybrid (PHEV) and battery electric vehicles (BEVs). Based on statistical data of Flanders (northern region in Belgium), a fleet of vehicles with realistic driving patterns is created, which is used to choose the optimal battery size. Different allocation scenarios will be compared regarding the effect on the proportion electric driving, the extra household power consumption and the fleet availability for Vehicle-to-Grid (V2G) services.
机译:对电动汽车(EV)的兴趣强劲增长。电动汽车的电池将在家里充电,这意味着家庭用电量将会增加。可以通过例如使对配电网和输电网的影响最小化。 (i)协调的充电策略,以及(ii)为每辆车选择最佳的电池尺寸。 EV的第二个缺点是电池的高成本和重量。本文提出了一些分配方案,以将电池大小分配给插电式混合动力车(PHEV)和电池电动车(BEV)。根据法兰德斯(比利时北部地区)的统计数据,创建了具有逼真的驾驶模式的车队,用于选择最佳的电池尺寸。将比较不同的分配方案,以了解对电动驾驶的比例,额外的家庭用电量以及车对网(V2G)服务的车队可用性的影响。

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