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Electrification potential of the car - estimate from a mid-size Swedish town

机译:汽车的电气化潜力 - 估计中级瑞典镇

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An electrification of vehicles can contribute to increased energy efficiency and decreased air pollution in urban environments. The high vehicle costs involved, especially for the batteries, means that careful considerations of the options are needed. We have investigated the optimal design and potential for plug-in hybrid electric vehicles (PHEV) under various viability conditions with the help of a data set for individual vehicle movements from a mid-size Swedish town. In the estimates each car is equipped with a battery cost-optimized in size with respect to the individual car movement pattern and charging options expressed as the minimum break time interval required for considering recharging. The resulting optimal battery size is relatively small for lower economic viability, but increases with raised charging options. For high economic competitiveness the optimal sizes are larger but decreasing with better recharging possibilities. The results point to a PHEV design strategy with a small battery in an introductory phase and then an increased size when the economic competitiveness is further enhanced. Still the resulting optimal battery size is highly dependent on the specific movement pattern of the individual car. It is now urgent for the continued development, planning, and estimates of proliferation and impact of electrified vehicles that further statistical data, today mostly lacking, for the movement patterns of individual vehicles in various regions are assembled and utilized.
机译:车辆的电气化有助于提高能源效率,降低空气污染城市环境。高车辆所涉及的费用,尤其是对电池,意味着需要的选项仔细考虑。我们已经调查了优化设计和潜在的插件与从一个中等规模的瑞典小镇个别车辆的运动数据集的帮助各种生存力的条件下混合电动车(PHEV)。在估算各车上装有一个电池成本优化的尺寸相对于所述各台电梯轿厢的运动模式和充电表示为考虑再充电所需的最小断开时间间隔的选项。将得到的最佳的电池尺寸为较低经济可行性比较小,但具有提高的充电的选项增加。对于高经济竞争力的最佳尺寸较大,但具有更好的充电的可能性降低。结果指出,在一个介绍阶段小电池,然后在经济竞争力得到进一步提高增加的大小PHEV设计策略。仍然得到的最佳的电池尺寸是高度依赖于各轿厢的特定运动图案。它现在是持续发展,迫切规划和增殖和电气化的车辆,进一步的统计数据,目前普遍缺乏,个别车辆的各个地区的运动模式的影响的估算组装和使用。

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